Claims
- 1. Air conditioning apparatus for a building having an electrical grid operatively connected to receive electricity from a utility, said apparatus comprising compression refrigeration apparatus including an electric motor operatively connected to drive a compressor, and being operable to make ice by pumping heat from water to a heat sink and to store such ice, absorption refrigeration apparatus, a cogenerator operable to generate electricity and heat, means for operably connecting said cogenerator to provide electricity to the electrical grid of the building, an air handler, a plurality of induction mixing units each of which includes means operable to cause a flow of recirculated air from a space to be conditioned, and, when conditioned air is circulated thereto, to deliver to the space a mixture of conditioned air and recirculated air, means for circulating air to be conditioned through said air handler and then to said induction mixing units, means for transferring heat from air in said air handler to ice which has been produced by said compression refrigeration apparatus, means operatively connecting said absorption refrigeration apparatus to pump heat to a heat sink from air in said induction mixing units or from air in said air handler, means operatively connecting the electric motor of said compression refrigeration apparatus to the building electrical grid for energization thereby, and means for transferring heat generated by said cogenerator into energizing relationship with said absorption refrigeration apparatus.
- 2. Air conditioning apparatus comprising a plurality of induction mixing units, means for dehumidifying air, said dehumidifying means comprising a coil, means for causing air to be dehumidified to flow in heat transfer relationship with said coil, and means for circulating a low temperature heat transfer fluid through said coil, said circulating means including means for transferring heat from the heat transfer fluid to stored ice, and means including compression refrigeration apparatus comprising a compressor, a condensor, an expander and means for transferring compressor heat to a heat sink for producing the stored ice, means for circulating dehumidified air to said induction mixing units, means operable to control its moisture content and temperature so that the dehumidified air is incapable, at the rate at which it is required for humidity control, of maintaining the desired space temperature at the maximum design cooling load, means operable to control the rate at which dehumidified air is delivered by each of said inductio mixing units to the space it serves, means operable to control the rate at which dehumidified air is delivered to said inductio mixing units so that dehumidified air is available at the rate required from time to time by each of said induction mixing units, means operable to cause a flow of recirculated air from the space to each of said induction mixing units, each of said induction mixing units being operable, when dehumidified air is delivered thereto, to deliver to the space it serves a mixture of dehumidified air and recirculated air, and means for transferring heat from recirculated air before it is returned to the space mixed with dehumidified air, said last-named means comprising said compression refrigeration apparatus.
- 3. Apparatus as claimed in claim 2 wherein said means for transferring heat from recirculated air before it is returned to the space additionally comprises an evaporative cooler.
- 4. Apparatus as claimed in claim 2 which additionally includes means for diverting compressor heat from the heat sink and for transferring that heat to recirculated air before it is returned to the space.
- 5. Air conditioning apparatus comprising a first cooling coil, a second cooling coil, absorption refrigeration apparatus operably connected to transfer heat from said first cooling coil, an ice storage tank operably connected to transfer heat from said second cooling coil, means for causing air to flow first in heat transfer relationship with said first coil and then in heat transfer relationship with said second coil, and means responsive to the temperature of air leaving said first coil after heat transfer therewith, and operable to control the transfer of heat from said first coil to said absorption refrigeration apparatus to maintain the temperature of that air at a predetermined temperature.
- 6. An air conditioning system comprising compression refrigeration apparatus including a compressor, and being operable to make ice or chilled water by pumping heat from water to a heat sink and to store such ice or chilled water, absorption refrigeration apparatus, a heat engine operable to generate shaft work and heat, means for operably connecting said heat engine in driving relationship with the compressor of said compression refrigeration apparatus, an air handled, a plurality of air outlets, means for circulating air to be conditioned through said air handled, then to said air outlets and from said outlets to a plurality of spaces to be conditioned, means for transferring heat from air in said air handler to ice or chilled water which has been produced by said compression refrigeration apparatus, means operatively connecting said absorption refrigeration apparatus
- (a) a pump heat to a heat sink from air in said air handler before heat is transferred therefrom to ice or chilled water or
- (b) to pump heat to a heat sink and, as a consequence, to lower the temperature of at least one of the spaces, and
- means for transferring heat generated by said heat engine into energizing relationship with said absorption refrigeration apparatus.
- 7. Air conditioning apparatus comprising a plurality of air outlets each of which is operable to deliver air to a space to be conditioned, means including refrigeration apparatus operable to make ice by pumping heat from water to a heat sink and to store such ice, means for dehumidifying outside air or a mixture of outside air and return air, said dehumidifying means including a coil, means for causing air to be dehumidified to flow in heat transfer relationship with said coil, and means for circulating a low temperature heat transfer fluid through said coil, said circulating means including means for transferring heat from the heat transfer fluid to ice made and stored by said means operable to make and store ice, means for circulating dehumidified air to said air outlets to a rate per unit of area in the spaces served by said air outlets which varies between a predetermined minimum rate greater than zero and a maximum rate, the maximum rate being substantially less than that which would be required to maintain the design temperature in each of the spaces at the maximum design cooling load with air supplied to the space at a dry bulb temperature of 55.degree. F., means operable to control its moisture content and temperature so that the dehumidified air is incapable, at the rate at which it is required for humidity control, of maintaining the desired space temperature at the maximum design cooling load, means operable to control the rate at which dehumidified air is delivered by said air outlet to the spaces they serve to one not less than the predetermined minimum rate and higher than that minimum when required to maintain a monitored condition of the space within control limits.
- 8. An air conditioning system as claimed in claim 7 wherein said means for conditioning outside air additionally includes a dehumidifier having a contactor in which air is dehumidified by a liquid desiccant and a regenerator in which the desiccant of said dehumidifier is regenerated, means for transferring heat to desiccant to enable regeneration thereof in said regenerator, and means for transferring heat to a heat sink from the liquid desiccant which dehumidifies air in said contactor and said means for causing outside air to flow in heat transfer relationship with said cooling coil is operable to cause the outside air that has flowed in dehumidifying relationship with the desiccant of said dehumidifier to flow in heat transfer relationship with said cooling coil.
- 9. An air conditioning system as claimed in claim 7 which additionally includes
- a first dehumidifier which uses a desiccant and means for regenerating the desiccant of said dehumidifier by directing relief air from a building served by the system in regenerating relationship therewith, and
- means for causing the outside air to flow in dehumidifying relationship with said first dehumidifier before it flows in heat exchange relationship with said cooling coil so that the air is conditioned by heat transfer to said coil.
- 10. An air conditions system as claimed in claim 9 which additionally includes means for cooling a fluid by transferring heat from the fluid to air that has been conditioned by heat transfer to said cooling coil and means for heating the cooled fluid by transferring heat thereto from air that is yet to be conditioned by contact with said cooling coil.
- 11. An air conditioning system as claimed in claim 7 wherein each of said plurality of air outlets is an induction mixing unit which includes a fan and is operable, when said fan is energized, to induce air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space, and which additionally includes a coil in heat transfer relationship with air each of said induction units induces to flow from the space it serves or a mixture of conditioned air with such induced air, means for transferring heat to a heat sink from each of said coils, and a control for each of said coils of said induction mixing units, each of said controls being effective in a first position and ineffective in a second position to prevent the circulation of chiller water to the one of said coils which serves a given space.
- 12. An air conditioning system as claimed in claim 11 wherein each of said controls is responsive to a signal from a sensor which indicates occupancy of the space and assumes the second position in response to such a signal indicating that the space served by the associated one of said coils is occupied.
- 13. An air conditioning system as claimed in claim 7 which additionally includes a plurality of cooling means each of which is operable, when heat is transferred therefrom, to lower the temperature of one of the spaces, and means for transferring heat to a heat sink from each of said cooling means.
- 14. An air conditioning system as claimed in claim 13 wherein said means for transferring heat from each of said cooling means includes means for circulating a fluid in heat transfer relationship with said cooling means and is operable to transfer heat from the fluid to ice stored by said means for making and storing ice.
- 15. An air conditioning system as claimed in claim 13 wherein said means for transferring heat from said coil to a heat sink comprises refrigeration apparatus which includes a compressor, and which additionally includes a dehumidifier which employs a desiccant, a heat engine operable shaft work and heat, means for operably connecting said heat engine in driving relationship with said compressor, means for transferring heat from said heat engine into regenerating relationship with the desiccant of said humidifier, means for causing air to be dehumidifier to flow in dehumidifying relationship with said dehumidifier which employs a desiccant before it flows in heat transfer relationship with said coil, and means for causing regenerating air to flow in regenerating relationship with the desiccant of said dehumidifier.
- 16. An air conditioning system as claimed in claim 15 which additionally includes absorption refrigeration apparatus, means for transferring heat from said heat engine into energizing relationship with said absorption refrigeration apparatus, and means for transferring heat to said absorption apparatus,
- (a) from dehumidified air before that air flows in heat transfer relationship with said coil, or
- (b) from said plurality of cooling means.
- 17. An air conditioning system as claimed in claim 16 wherein said means for transferring heat to said absorption apparatus is operable to transfer heat thereto from said plurality of cooling means.
- 18. An air conditioning system as claimed in claim 13 wherein said refrigeration apparatus of said means operable to make and store ice is compression refrigeration apparatus which includes a compressor, and which additionally includes absorption refrigeration apparatus, a heat engine operable to generate shaft work and heat, means for operably connecting said heat engine in driving relationship with said compressor, means for transferring heat from said heat engine into energizing relationship with said absorption refrigeration apparatus, and means for transferring heat to said absorption apparatus,
- (a) from air to be dehumidified before that air is circulated in heat transfer relationship with said coil, or
- (b) from a plurality of cooling means each of which is operable to serve one of the spaces by lowering the temperature thereof when heat is transferred therefrom.
- 19. An air conditioning system as claimed in claim 18 wherein said means for transferring heat to said absorption apparatus is operable to transfer heat thereto from said plurality of cooling means.
- 20. An air conditioning system as claimed in claim 7 which additionally includes a first dehumidifier which uses a desiccant and means for regenerating the desiccant of said dehumidifier by directing relief air from a building served by the system in regenerating relationship therewith, means for causing the outside air to flow in dehumidifying relationship with said first dehumidifier before it flows in heat exchange relationship with said cooling coil, and means for mixing return air from the building served by the system with air that has been dehumidified by said first dehumidifier before that air flows in heat transfer relationship with said cooling coil so that the mixture of dehumidified air and return air is conditioned by heat transfer to said coil.
- 21. An air conditioning system as claimed in claim 13 wherein each of said plurality of air outlets in an induction mixing unit which includes a fan and is operable, when said fan is energized, to induce air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space.
- 22. An air conditioning system as claimed in claim 21 which additionally includes a control for each of said mixing units, each of said controls being effective in a first position and ineffective in a second position to prevent the operation of the fan of the one of said induction mixing units which serves a given space.
- 23. An air conditioning system as claimed in claim 13 wherein said means for transferring heat from said coil comprises refrigeration apparatus operable to make chilled water or ice by pumping heat from water to a heat sink, and includes means for storing such chilled water or ice, said means for transferring heat from each of said cooling means is operable to accomplish such heat transfer to chilled water or ice stored by said storing means by circulating a low temperature heat transfer fluid, and which additionally includes a control for each of said cooling means, each of said controls being effective in a first position and ineffective in a second position to prevent the circulation of a heat transfer fluid through the one of said cooling means which serves a given space.
- 24. An air conditioning system as claimed in claim 23 where in said control is responsive to a signal from a sensor and assumes the second position in response to such a signal indicating that the space served by the associated one of said cooling means is occupied.
- 25. An air conditioning system as claimed in claim 22 wherein said control is responsive to a signal from a sensor and assumes the second position in response to such a signal indicating that the space served by the associated one of said cooling means is occupied.
- 26. An air conditioning system as claimed in claim 7 wherein each of said plurality of air outlets is an induction mixing unit including a conditioned air inlet and an outlet to an associated space, and is operable when conditioned air enters said conditioned air inlet and flows through said unit and said outlet to induce a flow of air from the space into said induction mixing unit, mixture of the induced air with the conditioned air, and delivery of the mixture of induced air and conditioned air through the outlet to the associated space.
- 27. An air conditioning system as claimed in claim 21 wherein each of said cooling means is positioned for heat transfer with air recirculated by one of said induction mixing units or with a mixture of conditioned air and such recirculated air.
- 28. An air conditioning system as claimed in claim 7 which additionally includes an induction box that is operably connected to receive the conditioned air, to induce a flow of recirculated air, and to deliver a mixture of the conditioned air and recirculated air to each of said air outlets, and wherein each of said air outlets includes means for varying the rate at which it delivers the mixture of conditioned air and recirculated air to the space it serves.
- 29. An air conditioning system as claimed in claim 28 wherein each of said air outlets is operably connected to receive conditioned air in addition to the mixture of conditioned air and recirculated air it is connected to receive from said induction box, and to deliver to the space it serves a mixture of the conditioned air with the mixture of conditioned air and recirculated air, and wherein each of said air outlets includes means for varying the rates at which it receives (1) the conditioned air and (2) the mixture of conditioned air and recirculated air.
- 30. An air conditioning system as claimed in claim 29 wherein each of said means for varying the rate at which said air outlets receive air is responsive to the temperature of the space served by the one of said outlets it controls, and is operable to modulated the rate at which conditioned air is received to maintain such temperatures within control limits.
- 31. An air conditioning system as claimed in claim 7 wherein each of said plurality of air outlet is an induction mixing unit operable to induce air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space, and wherein said cooling means operable to lower the temperature of each of the spaces by transferring heat to a heat sink includes a plurality of cooling means, one of which is operable to lower the temperature of each of the spaces served by the apparatus when heat is transferred therefrom to a heat sink.
- 32. An air conditioning system as claimed in claim 31 wherein the cooling means operable to lower the temperature of each of the spaces by transferring heat to a heat sink comprises a plurality of heat pumps, each of which is operable to pump heat to a heat sink from one of said plurality of cooling means.
- 33. An air conditioning system as claimed in claim 32 wherein at least some of said heat pumps are also operable to pump heat from a heat source to the associated one of said plurality of cooling means.
- 34. An air conditioning system as claimed in claim 15 wherein said means for causing air to be dehumidifier to flow in dehumidifying relationship with said dehumidifier and in heat transfer relationship with said coil is operable to cause the air to flow first in dehumidifying relationship with said dehumidifier and then in heat transfer relationship with said coil.
- 35. An air conditioning system as claimed in claim 34 wherein said means for causing air to be dehumidified to flow in dehumidifying relationship with said dehumidifier and in heat transfer relationship with said coil is operable to cause the air to flow first in heat transfer relationship with said coil and then in dehumidifying relationship with said dehumidifier.
- 36. An air conditioning system as claimed in claim 35 which additionally includes a second cooling coil and means operably connecting refrigeration apparatus to transfer heat from said second coil, and wherein said means for causing air to be dehumidified to flow in dehumidifying relationship with said dehumidifier and in heat transfer relationship with said coil is operable to cause the air to be dehumidified to flow in heat transfer relationship with said second coil after it flows in dehumidifying relationship with said dehumidifier.
- 37. An air conditioning system as claimed in claim 31 which additionally includes means operable to circulate a heat transfer fluid through a building served by the system and refrigeration apparatus operable to transfer heat from the heat transfer fluid to a heat sink, and wherein said cooling means operable to lower the temperature of each of the spaces comprises a coil positioned for heat transfer with air each of said induction mixing units induces to flow, or a mixture of conditioned air with such induced air.
- 38. An air conditioning system as claimed in claim 7 wherein each of said air outlets includes means operable to control the rate at which it delivers conditioned air to the space it serves.
- 39. An air conditioning system as claimed in claim 10 which substantially includes a plurality of cooling means each of which is operable, when heat is transferred there from, to lower the temperature of one of the spaces, means operable to circulate a heat transfer fluid through a building served by the system, means for transferring heat from each of said cooling means to the circulated heat transfer fluid, and means for transferring heat from the circulated heat transfer fluid to a heat sink.
- 40. An air conditioning system as claimed in claim 39 wherein each of the plurality of air outlets is an induction mixing unit operable to induce air to flow from the space it serves and to return to the space a mixture of induced air and conditioned air, and each of said cooling means is a second coil positioned for heat transfer with air one of said induction mixing units induces to flow from the space it serves or a mixture of conditioned air with such induced air.
- 41. An air conditioning system as claimed in claim 40 wherein said means for transferring heat from said second cooling coils to a heat sink comprises refrigeration apparatus and is operable to transfer heat from said cooling coils to the refrigerant of said refrigeration apparatus.
- 42. An air conditioning system as claimed in claim 41 wherein the system is operable to transfer heat from said second cooling coils to ice made and stored by said refrigeration apparatus of said means operable to make and store ice.
- 43. An air conditioning system as claimed in claim 42 wherein the system is operable to transfer heat from said second cooling coils to ice made and stored by said refrigeration apparatus of said means operable to make and store ice.
- 44. An air conditioning system as claimed in claim 42 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink includes absorption refrigeration apparatus.
- 45. An air conditioning system as claimed in claim 42 wherein said refrigeration apparatus of said means operable to make and store ice is also operable to pump heat from the circulated heat transfer fluid to a heat sink.
- 46. An air conditioning system as claimed in claim 42 which additionally include a plurality of third coils each of which is positioned for heat transfer with conditioned air delivered to one of said induction mixing units, air said induction mixing unit induces to flow from the space or a mixture of the two and a plurality of heat pumps, each of which is operable to pump heat to the circulated heat transfer fluid from one of said plurality of third coils.
- 47. An air conditioning system as claimed in claim 41 wherein each of said induction mixing units includes means operable to control the rate at which it delivers conditioned air to the space it serves.
- 48. An air conditioning system as claimed in claim 41 which additionally includes a plurality of third coils each of which is positioned for heat transfer with conditioned air delivered to one of said induction mixing units, air said induction mixing unit induces to flow from the space or a mixture of the two and a plurality of heat pumps, each of which is operable to pump heat to the circulated heat transfer fluid from one of said plurality of third coils.
- 49. An air conditioning system as claimed in claim 41 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink includes absorption refrigeration apparatus.
- 50. An air conditioning system as claimed in claim 41 wherein said refrigeration apparatus operable to make and store ice is also operable to pump heat from the circulated heat transfer fluid to a heat sink.
- 51. An air conditioning system as claimed in claim 41 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink is operable to transfer heat from the heat transfer fluid to ice made and stored by said refrigeration apparatus.
- 52. An air conditioning system as claimed in claim 48 wherein at least some of said heat pumps are also operable to pump heat from a heat sink to the associated one of said plurality of coils.
- 53. An air conditioning system as claimed in claim 46 wherein at least some of said heat pumps are also operable to pump heat from a heat sink to the associated one of said plurality of coils.
- 54. An air conditioning system as claimed in claim 7 which additionally includes a plurality of cooling means each of which is operable, when heat is transferred therefrom, to lower the temperature of one of the spaces, means operable to circulate a heat transfer fluid through a building served by the system, means for transferring heat from each of said cooling means to the circulated heat transfer fluid, and means for transferring heat from the circulated heat transfer fluid to a heat sink.
- 55. An air conditioning system as claimed in claim 54 where in each of said plurality of air outlets is an induction mixing unit operable to induce air to flow from the space it serves and to return to the space a mixture of induced air and conditioned air, and each of said cooling means is a second coil positioned for heat transfer with air one of said induction mixing units induces to flow from the space it serves or a mixture of conditioned air with such induced air.
- 56. An air conditioning system as claimed in claim 35 wherein said means for transferring heat from said cooling coil to a heat sink comprises refrigeration apparatus and is operable to transfer heat from said cooling coil to the refrigerant of said refrigeration apparatus.
- 57. An air conditioning system as claimed in claim 56 wherein said refrigeration apparatus is operable to make and store chilled water or ice, and the system is operable to transfer heat from said cooling coil to chilled water or ice made and stored by said refrigeration apparatus.
- 58. An air conditioning system as claimed in claim 57 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink is operable to transfer heat from the heat transfer fluid to chilled water or ice made and stored by said refrigeration apparatus.
- 59. An air conditioning system as claimed in claim 57 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink includes absorption refrigeration apparatus.
- 60. An air conditioning system as claimed in claim 57 wherein said refrigeration apparatus operable to make and store chilled water or ice is also operable to pump heat from the circulated heat transfer fluid to a heat sink.
- 61. An air conditioning system as claimed in claim 57 which additionally includes a plurality of third coils each of which is positioned for heat transfer with conditioned air delivered to one of said induction mixing units, air said induction mixing units induces to flow from the space or a mixture of the two and a plurality of heat pumps, each of which is operable to pump heat to the circulated heat transfer fluid from one of said plurality of third coils.
- 62. An air conditioning system as claimed in claim 56 wherein each of said induction mixing units includes means operable to control the rate at which it delivers dehumidified air to the space it serves.
- 63. An air conditioning system as claimed in claim 56 which additionally includes a plurality of third coils each of which is positioned for heat transfer with conditioner air delivered to one of said induction mixing units, air said induction mixing units induces to flow from the space or a mixture of the two and a plurality of heat pumps, each of which is operable to pump heat to the circulated heat transfer fluid from one of said plurality of third coils.
- 64. An air conditioning system as claimed in claim 56 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink includes absorption refrigeration apparatus.
- 65. An air conditioning system as claimed in claim 56 wherein said refrigeration apparatus operable to make and store chilled water or ice is also operable to pump heat from the circulated heat transfer fluid to a heat sink.
- 66. An air conditioning system as claimed in claim 56 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink is operable to transfer heat from the heat transfer fluid to chilled water or ice made and stored by said refrigeration apparatus.
- 67. An air conditioning system as claimed in claim 63 wherein at least some of said heat pumps are also operable to pump heat from a heat sink to the associated one of said plurality of coils.
- 68. An air conditioning system as claimed in claim 61 wherein at least some of said heat pumps are also operable to pump heat from a heat sink to the associated one of said plurality of coils.
- 69. An air conditioning system as claimed in claim 7 wherein each of said plurality of air outlets is an induction mixing unit which includes a fan and is operable, when said fan is energized, to induce air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space, and which additionally includes a control operably associated with each of said induction mixing units, each of said controls being effective in a first position and ineffective in a second position to prevent the operation of the fan of the associated one of said induction mixing units.
- 70. An air conditioning system as claimed in claim 69 wherein said control is responsive to a signal from a sensor and assumes the second position in response to such a signal indicating that the space served by the associated one of said fans is occupied.
- 71. An air conditioning system as claimed in claim 7 wherein said means for conditioning outside air additionally includes a dehumidifier which uses a desiccant for dehumidifying air, a second cooling coil, and a washer, and said means for causing outside air to flow in heat transfer relationship with said cooling coil is additionally operable to cause air that has flowed in heat transfer relationship with said cooling coil to flow in dehumidifying relationship with the desiccant of said dehumidifier, in heat transfer relationship with said second cooling coil and through said washer to produce the cold conditioned air.
- 72. An air conditioning system as claimed in claim 55 which additionally includes a conditioned air coil in heat transfer relationship with conditioned air delivered to each of said units, and means for circulating the heat transfer fluid through each of said conditioned air coils.
- 73. An air conditioner system as claimed in claim 8 which additionally includes
- a first dehumidifier which uses a desiccant and means for regenerating the desiccant of said dehumidifier by directing relief air from a building served by the system in regenerating relationship therewith, and
- means for causing the outside air to flow in dehumidifying relationship with said first dehumidifier before it flows in heat exchange relationship with said cooling coil so that the air is conditioned by heat transfer to said coil.
- 74. An air conditioning system as claimed in claim 8 wherein each of said plurality of air outlets is an induction mixing unit which includes a fan and is operable, when said fan is energized, to induce air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space, and which additionally includes a control operably associated with each of said induction mixing units, each of said controls being effective in a first position and ineffective in a second position to prevent the operation of the fan of the associated one of said induction mixing units.
- 75. An air conditioning system as claimed in claim 74 wherein said control is responsive to a signal from a sensor and assumes the second position in response to such a signal indicating that the space served by the associated one of said fans is occupied.
- 76. An air conditioning system as claimed in claim 8 wherein each of said plurality of air outlets is an induction mixing unit including a conditioned air inlet and an outlet to an associated space, and is operable when conditioned air enters said conditioned air inlet and flows through said unit and said outlet to induce a flow of air from the space into said induction mixing unit, mixture of the induced air with the conditioned air, and delivery of the mixture of induced air and conditioned air through the outlet to the associated space.
- 77. An air conditioning system as claimed in claim 8 wherein each of said plurality of air outlets is an induction mixing unit which includes a fan and is operable, when said fan is energized, to induce air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space, and which substantially includes a coil in heat transfer relationship with air each of said units induces to flow from the space it serves or a mixture of such induced air and conditioned air, means for circulating a heat transfer fluid in heat transfer relationship with each of said coils, means for transferring heat to a heat sink from the heat transfer fluid, and a control for each of said coils, each of said controls being effective in a first position and ineffective in a second position to prevent the circulation of the heat transfer fluid in heat exchange relationship with said coil of the one of said induction mixing units which serves a given space.
- 78. An air conditioning system as claimed in claim 8 wherein each of said air outlets includes means operable to control the rate at which it delivers conditioned air to the space it serves.
- 79. An air conditioning system as claimed in claim 77 which additionally includes a conditioned air coil in heat transfer relationship with conditioned air delivered to each of said units, and means for circulating the heat transfer fluid through each of said conditioner air coils.
- 80. An air conditioning system as claimed in claim 77 wherein each of said controls is responsive to a signal from a sensor which indicates occupancy of the space and assumes the second position in response to such a signal indicating that the spaced served by the associated one of the coils is occupied.
- 81. An air conditioning system as claimed in claim 8 which additionally includes a plurality of cooling means such of which is operably, when heat is transferred therefrom, to lower the temperature of one of the spaces, and means for transferring heat to a heat sink from each of said cooling means.
- 82. An air conditioning system as claimed in claim 81 wherein each of said plurality of air outlets is an induction mixing unit which includes a fan and is operable, when said fan is energized, to induce air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space.
- 83. An air conditioning system as claimed in claim 7 which additionally includes means for cooling a fluid by transferring heat from the fluid to conditioned air that has flowed in heat transfer relationship with said cooling coil before that air is circulated to said air outlets, and means for heating the fluid by transferring heat to the cooled fluid from air that is yet to be conditioned by contact with said cooling coil.
- 84. An air conditioning system as claimed in claim 83 wherein said means for transferring heat from said cooling coil to a heat sink includes a refrigeration apparatus and means operable to transfer heat from said coil to the refrigerant of said refrigeration apparatus.
- 85. An air conditioning system as claimed in claim 83 wherein each of said plurality of air outlets is an induction mixing unit operable to induce air to flow from the space it serves and to return to the space a mixture of induced air and conditioned air and each of said induction mixing units includes a second coil positioned for heat transfer with air one of said induction mixing units induces to flow from the space it serves or a mixture of conditioned air with such induced air.
- 86. An air conditioned system as claimed in claim 85 wherein said means operable to transfer heat from each of said second coils includes a plurality of heat pumps, each of which is operable to pump heat from one of said second coils.
- 87. An air conditioning system as claimed in claim 86 wherein at least some of said heat pumps are also operable to pump heat from a heat source to the associated ones of said second coils.
- 88. An air conditioning system as claimed in claim 87 which additionally includes a plurality of third coils, means for circulating a heat transfer fluid through said third coils, and means for transferring heat from the heat transfer fluid to a heat sink.
- 89. An air conditioning system as claimed in claim 88 which additionally includes means for transferring heat to the heat transfer fluid from a heat source.
- 90. An air conditioning system as claimed in claim 85 wherein said means for transferring heat from said second coils is operable to circulate a heat transfer fluid through said second coils and to transfer heat from the heat transfer fluid to a heat sink.
- 91. An air conditioning system as claimed in claim 90 wherein said means for transferring heat from said second coils is operable to transfer heat from the heat transfer fluid to ice stored by said storing means.
- 92. An air conditioning system as claimed in claim 91 wherein said each of said induction mixing units includes means operable to control the rate at which it delivers dehumidified air to the space it serves, and which additionally includes means operable to control said means for circulating conditioned air so that air is available at substantially the rate required by said mixing units.
- 93. An air conditioning system as claimed in claim 7 which additionally includes a plurality of cooling means each of which is operable, when heat is transferred therefrom, to lower the temperature of one of the spaces, and means including a circulating system for a heat transfer fluid for transferring heat to a heat sink from each of said cooling means.
- 94. An air conditioning system as claimed in claim 93 wherein said means for transferring heat to a heat sink from each of said cooling means comprises refrigeration apparatus.
- 95. An air conditioning system as claimed in claim 94 wherein said refrigeration apparatus is absorption refrigeration apparatus.
- 96. An air conditioning system as claimed in claim 94 wherein said refrigeration apparatus is compression refrigeration apparatus.
- 97. An air conditioning system as claimed in claim 95 wherein each of said plurality of air outlets is an induction mixing unit which includes a fan and is operable, when said fan is energized, to induce air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space, and each of said cooling means is a coil positioned for heat transfer with conditioned air delivered to one of said induction mixing units, air which one of said induction mixing units induces to flow, or a mixture of the two.
- 98. An air conditioning system as claimed in claim 96 wherein each of said plurality of air outlets is an induction mixing unit which includes a fan and is operable, when said fan is energized, to induced air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space, and each of said cooling means is a coil positioned for heat transfer with conditioned air delivered to one of said induction mixing units, air which one of said induction mixing units induces to flow, or a mixture of the two.
- 99. An air conditioning system as claimed in claim 97 wherein said circulating system is operable to transfer heat from each of said coils to the heat transfer fluid and said absorption refrigeration apparatus is operable to pump heat from the heat transfer fluid to a heat sink.
- 100. An air conditioning system as claimed in claim 98 wherein said circulating system includes means operable to transfer heat from each of said coils to the heat transfer fluid and said compression refrigeration apparatus is operable to pump heat from the heat transfer fluid to a heat sink.
- 101. An air conditioning system as claimed in claim 98 wherein said circulating system is operable to transfer heat from the heat transfer fluid to a heat sink and the system includes a plurality of compression refrigeration apparatuses, one which is operable to pump heat from each of said coils of said induction mixing units to the heat transfer fluid.
- 102. An air conditioning system as claimed in claim 8 which additionally includes an induction box that is operably connected to receive the conditioned air, to induce a flow of recirculated air, and to deliver a mixture of the conditioned air and recirculated air to each of said air outlets, and wherein each of said air outlets includes means for varying the rate at which it delivers the mixture of conditioned air and recirculated air to the space it serves.
- 103. An air conditioning system as claimed in claim 102 wherein each of said air outlets is operably connected to receive conditioned air in addition to the mixture of conditioned air and recirculated air it is connected to receive from said induction box, and to deliver to the space it serves a mixture of the conditioned air with the mixture of conditions air and recirculated air, and wherein each of said air outlets includes means for varying the rates at which it receives (1) the conditioned air and (2) the mixture of conditioned air and recirculated air.
- 104. An air conditioning system as claimed in claim 103 wherein each of said means for varying the rate at which said air outlets receive air is responsive to the temperature of the space served by the one of said outlets it controls, and is operable to modulate the rate at which conditioned air is received to maintain such temperature within control limits.
- 105. An air conditioning system as claimed in claim 8 wherein each of said plurality of air outlets is an induction mixing unit operable to induce air to flow from the space it serves and to return a mixture of induced air and conditioned air to the space, and which additionally includes a plurality of cooling means, one of which is operable to lower the temperature of each of the spaces served by the apparatus when the heat is transferred therefrom to a heat sink.
- 106. An air conditioning system as claimed in claim 105 wherein the cooling means operable to lower the temperature of each of the spaces by transferring heat to a heat sink comprises a plurality of heat pumps, each of which is operable to pump heat to a heat sink from one of said plurality of cooling means.
- 107. An air conditioning system as claimed in claim 106 wherein at least some of said heat pumps are also operable to pump heat from a heat source to the associated one of said plurality of cooling means.
- 108. An air conditioning system as claimed in claim 105 which additionally includes means operable to circulate a heat transfer fluid through a building served by the system and refrigeration apparatus operable to transfer heat from the heat transfer fluid to a heat sink, and wherein said cooling means operable to lower the temperature of each of the spaces comprises a coil positioned for heat transfer with air each of said induction mixing units induces to flow, or a mixture of conditioned air with such induced air.
- 109. An air conditioning system as claimed in claim 8 which additionally includes a plurality of cooling means each of which is operable, when heat is transferred therefrom, to lower the temperature of one of the spaces, means operable to circulate a heat transfer fluid through a building served by the system, means for transferring heat from each of said cooling means to the circulated heat transfer fluid, and means for transferring heat from the circulated heat transfer fluid to a heat sink.
- 110. An air conditioning system as claimed in claim 109 wherein each of said plurality of air outlets is an induction mixing unit operable to induce air to flow from the space it serves and to return to the space a mixture of induced air and conditioned air, and each of said cooling means is a second coil positioned for heat transfer with air one of said induction mixing units induces to flow from the space it serves or a mixture of conditioned air with such induced air.
- 111. An air conditioning system as claimed in claim 110 wherein said means for transferring heat from said cooling coil to a heat sink comprises refrigeration apparatus and is operable to transfer heat from said cooling coil to the refrigerant of said refrigeration apparatus.
- 112. An air conditioning system as claimed in claim 110 wherein said refrigeration apparatus is operable to make and store chilled water or ice, and the system is operable to transfer heat from said cooling coil to chilled water or ice made and stored by said refrigeration apparatus.
- 113. An air conditioning system as claimed in claim 112 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink is operable to transfer heat from; the heat transfer fluid to chilled water or ice made and stored by said refrigeration apparatus.
- 114. An air conditioning system as claimed in claim 112 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink includes absorption refrigeration apparatus.
- 115. An air conditioning system as claimed in claim 112 wherein said refrigeration apparatus operable to make and store chilled water or ice is also operable to pump heat from the circulated heat transfer fluid to a heat sink.
- 116. An air conditioning system as claimed in claim 112 which additionally includes a plurality of third coils each of which is positioned for heat transfer with conditioned air delivered to one of said induction mixing units, air said induction mixing unit induces to flow from the space or a mixture of the two and a plurality of heat pumps, each of which is operable to pump heat to the circulated heat transfer fluid from one of said plurality of third coils.
- 117. An air conditioning system as claimed in claim 111 wherein each of said induction mixing units includes means operable to control the rate at which it delivers dehumidified air to the space it serves.
- 118. An air conditioning system as claimed in claim 111 which additionally includes a plurality of third coils each of which is position for heat transfer with conditioned air delivered to one of said induction mixing units, air said induction mixing unit induces to flow from the space or a mixture of the two and a plurality of heat pumps, each of which is operable to pump heat to the circulated heat transfer fluid from one of said plurality of third coils.
- 119. An air conditioning system as claimed in claim 111 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink includes absorption refrigeration apparatus.
- 120. An air conditioning system as claimed in claim 111 wherein said refrigeration apparatus operable to make and store chilled water or ice is also operable to pump heat from the circulated heat transfer fluid to a heat sink.
- 121. An air conditioning system as claimed in claim 111 wherein said means for transferring heat from the circulated heat transfer fluid to heat sinks is operable to transfer heat from the heat transfer fluid to chilled water or ice made and stored by said refrigeration apparatus.
- 122. An air conditioning system as claimed in claim 116 wherein at least some of said heat pumps are also operable to pump heat from a hat sink to the associated one of said plurality of coils.
- 123. An air conditioning system as claimed in claim 116 wherein at least some of said pumps are also operable to pump heat from a heat sink to the associated one of said plurality of coils.
- 124. An air conditioning system as claimed in claim 110 which additionally includes a conditioned air coil in heat transfer relationship with conditioned air delivered to each of said units, and means for circulating the heat transfer fluid through each of said conditioned air coils.
- 125. Air conditioning apparatus as claimed in claim 7 which additionally includes means operable to transfer to air which said air outlets deliver to the spaces they serve heat pumped from water by the compression refrigeration apparatus of said means operable to make ice by pumping heat from water to a heat sink.
- 126. An air conditioning system as claimed in claim 8 which additionally includes means for storing a supply of the liquid desiccant, means for circulating desiccant from said storing means to said regenerator, means for circulating desiccant from said storing means to said contactor, and wherein said means for transferring heat to desiccant to enable regeneration thereof in said regenerator is operable so to transfer heat pumped from water by said refrigeration apparatus.
- 127. An air conditioning system as claimed in claim 8 which additionally includes means for storing a supply of the liquid desiccant, means for circulating desiccant from said storing means to said regenerator, means for circulating desiccant from said storing means to said contactor, supplemental refrigeration apparatus, and means for transferring heat from the stored liquid desiccant to the refrigerant of said supplemental refrigeration apparatus.
- 128. An air conditioning system as claimed in claim 8 which additionally includes means for storing a supply of the liquid desiccant, means for circulating desiccant from said storing means to said regenerator, means for circulating desiccant from said storing means to said contactor, supplemental refrigeration apparatus, and means for transferring heat from the stored liquid desiccant to the refrigerant of said supplemental refrigeration apparatus.
- 129. An air conditioning system as claimed in claim 126 which additionally includes means for transferring heat from desiccant in said storing means to a heat sink.
- 130. An air conditioning system as claimed in claim 128. wherein said supplemental refrigeration apparatus is absorption refrigeration apparatus.
- 131. An air conditioning system as claimed in claim 126 wherein said refrigeration apparatus is of the compression type, and which additionally includes a combustion engine operably connected in driving relationship with the compressor of said compression refrigeration apparatus and wherein said means for transferring heat to desiccant to enable regeneration thereof in said regenerator is operable so to transfer heat from said combustion engine.
- 132. The air conditioning system claimed in claim 83 wherein said means for cooling a fluid comprises a second coil through which the fluid is circulated and wherein said means for heating the fluid comprises a third coil through which the fluid is circulated, said system further comprising means for circulating the fluid through and between said second and third coils.
- 133. An air conditioning system as claimed in claim 8 wherein said refrigeration apparatus is of the compression type, and which additionally includes a combustion engine operably connected in driving relationship with the compressor of said compression refrigeration apparatus and wherein said means for transferring heat to desiccant to enable regeneration thereof in said regenerator is operable so to transfer heat from said combustion engine.
- 134. An air conditioning system as claimed in claim 127 wherein said supplemental refrigeration apparatus is absorption refrigeration apparatus.
- 135. An air conditioning system as claimed in claim 8 wherein said refrigeration apparatus is of the compression type, and which additionally includes a combustion engine operably connected in driving relationship with the compressor of said compression refrigeration apparatus and wherein said means for transferring heat to desiccant to enable regeneration thereof in said regenerator is operable so to transfer heat from said combustion engine.
- 136. An air conditioning system as claimed in claim 8 which additionally includes means for storing a supply of the liquid desiccant, means for circulating desiccant from said storing means to said regenerator, means for circulating desiccant from said storing means to said contactor, and means for transferring heat pumped by said refrigeration apparatus from said coil to dilute desiccant before that desiccant is delivered to said regenerator.
- 137. An air conditioning system as claimed in claim 8 which additionally includes means for storing a supply of the liquid desiccant, means for circulating desiccant from said storing means to said regenerator, means for circulating desiccant from said storing means to said contactor, and means for transferring heat pumped by said refrigeration apparatus from water in making ice to dilute desiccant before that desiccant is delivered to said regenerator.
- 138. An air conditioning system as claimed in claim 137 wherein said refrigeration apparatus which is operable to make ice is also operable, in a second mode, to make chilled water, and which additionally includes means for transferring heat to chilled water produced by said refrigeration apparatus operating in the second mode from air that said air outlets deliver to the spaces they serve.
- 139. An air conditioning system as claimed in claim 7 which additionally includes an indirect evaporative cooler, a heat exchanger, means for transferring heat from said heat exchanger to said indirect evaporative cooler, and means for causing the outside air to flow in heat transfer relationship with said heat exchanger before it flows in heat exchange relationship with said cooling coil so that the air that has been cooled by heat transfer to said heat exchanger is conditioned by heat transfer to said coil.
- 140. An air conditioning system as claimed in claim 136 wherein said means for storing a supply of the liquid desiccant comprises two storage tanks, said means for circulating desiccant from said storing means to said regenerator is operable to circulate desiccant from the first of said tanks to said regenerator and to return regenerated desiccant from said regenerator to the second of said tanks, and said means for circulating desiccant from said storing means to said contactor is operable to circulate desiccant from the second of said tanks to said contactor and to return diluted desiccant from said contactor to the first of said tanks.
- 141. An air conditioning system as claimed in claim 137 wherein said means for storing a supply of the liquid desiccant comprises two storage tanks, said means for circulating desiccant from said storing means to said regenerator is operable to circulate desiccant from the first of said tanks to said regenerator and to return regenerated desiccant from said regenerator to the second of said tanks, and said means for circulating desiccant from said storing means to said contactor is operable to circulate desiccant from the second of said tanks to said contactor and to return diluted desiccant from said contactor to the first of said tanks.
- 142. An air conditioning system as claimed in claim 71 which additionally includes means for transferring heat of sorption from said desiccant dehumidifier to an indirect evaporative cooler, said means being operable as a consequence of such heat transfer to lower the temperature of the air which flows in heat transfer relationship with said second coil.
- 143. An air conditioning system as claimed in claim 7 which additionally includes
- a first dehumidifier which uses a desiccant and means for regenerating the desiccant of said dehumidifier by directing air and heat including heat of sorption from said first dehumidifier into regenerating relationship therewith, and
- means for causing the outside air to flow in dehumidifying relationship with said first dehumidifier before it flows in heat exchange relationship with said cooling coil so that the air is conditioned by heat transfer to said coil.
- 144. An air conditioning system as claimed in claim 143 which additionally includes means for cooling a fluid by transferring heat from the fluid to air that has been conditioned by heat transfer to said cooling coil and means for heating the cooled fluid by transferring heat thereto from air that is yet to be conditioned by contact with said cooling coil.
- 145. An air conditioning system as claimed in claim 144 which additionally includes a plurality of cooling means each of which is operable, when heat is transferred therefrom, to lower the temperature of one of the spaces, means operable to circulate a heat transfer fluid through a building served by the system, means for transferring heat from each of said cooling means to the circulated heat transfer fluid, and means for transferring heat from the circulated heat transfer fluid to a heat sink.
- 146. An air conditioning system as claimed in claim 145 wherein each of the plurality of air outlets is an induction mixing unit operable to induce air to flow from the space it serves and to return to the space a mixture of induced air and conditioned air, and each of said cooling means is a second coil positioned for heat transfer with air one of said induction mixing units induces to flow from the space it serves or a mixture of conditioned air with such induced air.
- 147. An air conditioning system as claimed in claim 146 wherein said means for transferring heat from said second cooling coils to a heat sink comprises refrigeration apparatus and is operable to transfer heat from said cooling coils to the refrigerant of said refrigeration apparatus.
- 148. An air conditioning system as claimed in claim 147 wherein said means for transferring heat from said second cooling coils to a heat sink comprises refrigeration apparatus and is operable to transfer heat from said cooling coils to the refrigerant of said refrigeration apparatus.
- 149. An air conditioning system as claimed in claim 148 wherein the system is operable to transfer heat from said second cooling coils to ice made and stored by said refrigeration apparatus of said means operable to make and store ice.
- 150. An air conditioning system as claimed in claim 148 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink includes absorption refrigeration apparatus.
- 151. An air conditioning system as claimed in claim 148 wherein said refrigeration apparatus operable to make and store ice is also operable to pump heat from the circulated heat transfer fluid to a heat sink.
- 152. An air conditioning system as claimed in claim 148 which additionally includes a plurality of third coils each of which is positioned for heat transfer with conditioned air delivered to one of said induction mixing units, air said induction mixing unit induces to flow from the space or a mixture of the two and a plurality of heat pumps, each of which is operable to pump heat to the circulated heat transfer fluid from one of said plurality of third coils.
- 153. An air conditioning system as claimed in claim 147 wherein each of said induction mixing units includes means operable to control the rate at which it delivers conditioned air to the space it serves.
- 154. An air conditioning system as claimed in claim 147 which additionally includes a plurality of third coils each of which is positioned for heat transfer with conditioned air delivered to one of said induction mixing units, air said induction mixing unit induces to flow from the space or a mixture of the two and a plurality of heat pumps, each of which is operable to pump heat to the circulated heat transfer fluid from one of said plurality of third coils.
- 155. An air conditioning system as claimed in claim 147 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink includes absorption refrigeration apparatus.
- 156. An air conditioning system as claimed in claim 147 wherein said refrigeration apparatus operable to make and store ice is also operable to pump heat from the circulated heat transfer fluid to a heat sink.
- 157. An air conditioning system as claimed in claim 147 wherein said means for transferring heat from the circulated heat transfer fluid to a heat sink is operable to transfer heat from the heat transfer fluid to ice made and stored by said refrigeration apparatus.
- 158. An air conditioning system as claimed in claim 154 wherein at least some of said heat pumps are also operable to pump heat from a heat sink to the associated one of said plurality of coils.
- 159. An air conditioning system as claimed in claim 152 wherein at least some of said heat pumps are also operable to pump heat from a heat sink to the associated one of said plurality of coils.
- 160. An air conditioning system as claimed in claim 7 wherein said refrigeration apparatus is compression refrigeration apparatus including a compressor and an electric motor operably connected in driving relationship with said compressor, and which additionally includes absorption refrigeration apparatus, means for converting a fuel into electricity and heat, means for operably connecting said last-named means
- (a) as a source for electricity for said motor, and
- (b) as a source for energizing heat for said absorption refrigeration apparatus, and
- means operably connecting said absorption refrigeration apparatus
- (c) to pump heat to a heat sink from air to be conditioned before heat is transferred therefrom to ice or chilled water or
- (d) to pump heat to a heat sink and, as a consequence, to lower the temperature of at least one of the spaces.
- 161. An air conditioning system as claimed in claim 10 wherein said means for cooling and heating a fluid comprises a first coil in heat transfer relationship with air that has been cooled by heat transfer to said coiling coil, a second coil in heat transfer relationship with air that is yet to be conditioned by contact with said cooling coil, and means for causing a heat transfer fluid to flow first in heat transfer relationship with said first coil and then in heat transfer relationship with said second coil.
- 162. An air conditioning system as claimed in claim 7 which additionally includes absorption refrigeration apparatus, means for converting a fuel into electricity and heat, means for operably connecting said last-named means
- (a) as a source for electricity for a building served by the system, and
- (b) as a source for energizing heat for said absorption refrigeration apparatus, and
- means operably connecting said absorption refrigeration apparatus
- (c) to pump heat to a heat sink from air to be conditioned before heat is transferred therefrom to ice, or
- (d) to pump heat to a heat sink and, as a consequence, to lower the temperature of at least one of the spaces.
- 163. An air conditioning system as claimed in claim 7 wherein said refrigeration apparatus is compression refrigeration apparatus including a compressor and an electric motor operably connected in driving relationship with said compressor, and which additionally includes absorption refrigeration apparatus, means for converting a fuel into electricity and heat, means for operably connecting said last-named means
- (a) as a source for electricity for said motor, and
- (b) as a source for energizing heat for said absorption refrigeration apparatus, and
- means operably connecting said absorption refrigeration apparatus to pump heat to a heat sink and, as a consequence, to lower the energy needed to produce ice required by the system.
- 164. An air conditioning system as claimed in claim 7 which additionally includes absorption refrigeration apparatus, means for converting a fuel into electricity and heat, means for operably connecting said last-named means
- (a) as a source for electricity for a building served by the system, and
- (b) as a source for energizing heat for said absorption refrigeration apparatus, and
- means operably connecting said absorption refrigeration apparatus to pump heat to a heat sink and, as a consequence, to lower the energy needed to produce ice required by the system.
- 165. An air conditioning system as claimed in claim 144 wherein said means for cooling and heating a fluid comprises a first coil in heat transfer relationship with air that has been cooled by heat transfer to said coiling coil, a second coil in heat transfer relationship with air that is yet to be conditioned by contact with said cooling coil, and means for causing a heat transfer fluid to flow first in heat transfer relationship with said first coil and then in heat transfer relationship with said second coil.
- 166. An air conditioning system as claimed in claim 83 which additionally includes a plurality of cooling means each of which is operable, when heat is transferred therefrom, to lower the temperature of one of the spaces, means operable to circulate a heat transfer fluid through a building served by the system, means for transferring heat from each of said cooling means to the circulated heat transfer fluid, and means for transferring heat from the circulated heat transfer fluid to a heat sink.
- 167. An air conditioning system as claimed in claim 13 wherein said refrigeration apparatus of said means operable to make and store ice is compression refrigeration apparatus which includes a compressor, and which additionally includes absorption refrigeration apparatus, a heat engine operable to generate shaft work and heat, means for operably connecting said heat engine in driving relationship with said compressor, means for transferring heat from said heat engine into energizing relationship with said absorption refrigeration apparatus, and means operably connecting said absorption refrigeration apparatus to pump heat to a heat sink and, as a consequence, to lower the energy needed to produce ice required by the system.
REFERENCE TO RELATED APPLICATIONS
This is a continuation in part of application Ser. No. 049,260, filed May 12, 1987 as a continuation in part of Application Ser. No. 861,058, filed May 8, 1986; the latter application is also a continuation in part of application Ser. No. 841,454, filed Mar. 19, 1986, as a continuation in part of application Ser. No. 732,561, filed May 9, 1985, as a continuation in part of application Ser. No. 719,357, filed Apr. 3, 1985. All related applications are now abandoned.
US Referenced Citations (12)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1077372 |
Jul 1967 |
GBX |
Continuation in Parts (5)
|
Number |
Date |
Country |
Parent |
49260 |
May 1987 |
|
Parent |
861058 |
May 1986 |
|
Parent |
841454 |
Mar 1986 |
|
Parent |
732561 |
May 1985 |
|
Parent |
719357 |
Apr 1985 |
|