Claims
- 1. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant comprising:
- at least one compressor means for compressing gases from a lower pressure to a higher pressure and each such compressor comprising at least one stage and each such stage comprising a supply end and a delivery end;
- means for driving each of said compressors;
- at least one expander means for expanding gas from a higher pressure to a lower pressure and each such expander comprising at least one stage and each such stage comprising an inlet end and a discharge end;
- at least two separate containers for containing char fuel;
- at least one product gas collector pipe;
- at least one reactant gas supply source;
- each such compressor whose number of stages exceeds one further comprising fixed open gas flow connections from the delivery end of each compressor stage, except one, to the supply end of one other stage of said compressor, whereby said stages of said compressor are connected in series so that the pressure of a particular gas mass, at delivery from each stage, increases as said gas mass is compressed through said series connected stages, from the supply end to the delivery end of each stage, with the first stage in said series through which a gas mass first flows being both the lowest pressure stage and also that one stage whose supply end does not have a fixed open gas flow connection from the delivery end of any other stage or said compressor, and with the last stage in said series through which a gas mass last flows being both the highest pressure stage and also that one stage whose delivery end does not have a fixed open gas flow connection to the supply end of any other stage of said compressor;
- fixed open gas flow connections from the supply end of the lowest pressure stage of each of said compressors to at least one reactant gas supply source;
- each such expander whose number of stages exceeds one further comprising fixed open gas flow connections from the discharge end of each expander stage, except one, to the inlet end of one other stage of said expander, whereby said stages of said expander are connected in series so that the pressure of a particular gas mass at discharge from each stage, decreases as said gas mass is expanded through said series connected stages, from the inlet end to the discharge end of each stage, with the first stage in said series through which a gas mass first flows being both the highest pressure stage and also that one stage whose inlet end does not have a fixed open gas flow connection from the discharge end of any other stage of said expander, and with the last stage in said series through which a gas mass last flows being both the lowest pressure stage and also that one stage whose discharge end does not have a fixed open gas flow connection to the inlet end of any other stage of said expander;
- fixed open gas flow connections from the discharge end of the lowest pressure stage of each of said expanders to a separate product gas collector pipe;
- changeable flow connections, which are openable and closeable, from each of said containers to each delivery end of each stage of each of said compressors and to each inlet end of each stage of each of said expanders;
- each cyclic char gasifier plant comprising a number of said containers, with changeable gas flow connections to said compressors and to said expanders, at least equal to the sum of the number of compressor stages of all compressors and the number of expander stages of all expanders;
- means for opening and closing said changeable gas flow connections so that, each container is opened for a time period to each delivery end of each stage of each of said compressors, in a sub-sequence of time periods of open gas flow connections to compressors, said sub-sequence proceeding in time order of increasing compressor stage delivery pressure, and is opened for a time period to each inlet end of each stage of said expanders, in a sub-sequence of time periods of open gas flow connections to expanders, said sub-sequence proceeding in time order of decreasing expander stage inlet pressure, said sub-sequence of connections to said compressor being followed by said sub-sequence of connections to said expanders, and these together comprise one sequence of time periods of open gas flow connections, each of said containers is opened to only one stage during any one time period of said sequence of time periods, said sequence of time periods of open gas flow connections to said compressors and to said expanders is repeated for each of said containers by said means for opening and closing;
- means for controlling said means for opening and closing so that said repeated sequences of time periods of open gas flow connections are a continuous series of time periods for any one containing means, and so that the delivery end of each stage of each compressor has an open gas flow connection to at least one containing means, and the inlet end of each stage of each expander has an open gas flow connection to at least one containing means, during all time periods, whenever said plant is operating.
- 2. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant comprising:
- at least one compressor means for compressing gases from a lower pressure to a higher pressure and each such compressor comprising at least one stage and each such stage comprising a supply end and a delivery end;
- means for driving each of said compressors;
- at least one expander means for expanding gas from a higher pressure to a lower pressure and each such expander comprising at least one stage and each such stage comprising an inlet end and a discharge end;
- at least two separate containers each such container comprising means for containing char fuel and any gas compressed into said char fuel, said means for containing char fuel comprising a char fuel mass contained within a geological formation;
- at leat one product gas collector pipe;
- at least one reactant gas supply source;
- each such compressor whose number of stages exceeds one further comprising fixed open gas flow connections from the delivery end of each compressor stage, except one, to the supply end of one other stage of said compressor, whereby said stages of said compressor are connected in series so that the pressure of a particular gas mass, at delivery from each stage, increases as said gas mass is compressed through said series connected stages, from the supply end to the delivery end of each stage, with the first stage in said series through which a gas mass first flows being both the lowest pressure stage and also that one stage whose supply end does not have a fixed open gas flow connection from the delivery end of any other stage of said compressor, and with the last stage in said series through which a gas mass last flows being both the highest pressure stage and also that one stage whose delivery end does not have a fixed open gas flow connection to the supply end of any other stage of said compressor;
- fixed open gas flow connections from the supply end of the lowest pressure stage of each of said compressors to at least one reactant gas supply source;
- each such expander whose number of stages exceeds one further comprising fixed open gas flow connections from the discharge end of each expander stage, except one, to the inlet end of one other stage of said expander, whereby said stages of said expander are connected in series so that the pressure of a particular gas mass at discharge from each stage, decreases as said gas mass is expanded through said series connected stages, from the inlet end to the discharge end of each stage, with the first stage in said series through which a gas mass first flows being both the highest pressure stage and also that one stage whose inlet end does not have a fixed open gas flow connection from the discharge end of any other stage of said expander, and with the last stage in said series through which a gas mass last flows being both the lowest pressure stage and also that one stage whose discharge end does not have a fixed open gas flow connection to the inlet end of any other stage of said expander;
- fixed open gas flow connections from the discharge end of the lowest pressure stage of each of said expanders to a separate product gas collector pipe;
- changeable gas flow connections, which are openable and closeable, from each of said containers to each delivery end of each stage of each of said compressors and to each inlet end of each stage of each of said expanders;
- each cyclic char gasifier plant comprising a number of said containers, with changeable gas flow connections to said compressors and to said expanders, at least equal to the sum of the number of compressor stages of all compressors and the number of expander stages of all expanders;
- means for opening and closing said changeable gas flow connections so that, each container is opened for a time period to each delivery end of each stage of each of said compressors, in a sub-sequence of time periods of open gas flow connections to compressors, said sub-sequence proceeding in time order of increasing compressor stage delivery pressure, and is opened for a time period to each inlet end of each stage of each of said expanders, said sub-sequence proceeding in time order of decreasing expander stage inlet pressure, said sub-sequence of connections to said compressor being followed by said sub-sequence of connections to said expanders, and these together comprise one sequence of time periods of open gas flow connections, each of said containers is opened to only one stage during any one time period of said sequence of time periods, said sequence of time periods of open gas flow connections to said compressors and to said expanders is repeated for each of said containers by said means for opening and closing;
- means for controlling said means for opening and closing so that said repeated sequences of time periods of open gas flow connections are a continuous series of time periods for any one containing means, and so that the delivery end of each stage of each compressor has an open gas flow connection to at least one containing means, and the inlet end of each stage of each expander has an open gas flow connection to at least one containing means, during all time periods, whenever said plant is operating.
- 3. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 2:
- wherein at least one of said expanders is an expander engine, said expander engine comprising means for expanding gas from a higher pressure to a lower pressure so that mechanical work is done by said expanding gas upon said expander engine;
- and further comprising at least one work absorber driven by said expander engines, said work absorber comprising means for absorbing the mechanical work done upon said expander engine.
- 4. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant comprising:
- at least one compressor means for compressing gases from a lower pressure to a higher pressure and each such compressor comprising at least one stage and each such stage comprising a supply end and a delivery end;
- means for driving each of said compressors;
- at least one expander means for expanding gases from a higher pressure to a lower pressure and each such expander comprising at least one stage and each such stage comprising an inlet end and a discharge end;
- at least two separate containers, each of said containers comprising pressure vessel means for containing char fuel and any gas compressed into said char fuel;
- at least one product gas collector pipe;
- at least one reactant gas supply source;
- each such compressor whose number of stages exceeds one further comprising fixed open gas flow connections from the delivery end of each compressor stage, except one, to the supply end of one other stage of said compressor, whereby said stages of said compressor are connected in series so that the pressure of a particular gas mass, at delivery from each stage, increases as said gas mass is compressed through said series connected stages, from the supply end to the delivery end of each stage, with the first stage in said series through which a gas mass first flows being both the lowest pressure stage and also that one stage whose supply end does not have a fixed open gas flow connection from the delivery end of any other stage of said compressor, and with the last stage in said series through which a gas mass last flows being both the highest pressure stage and also that one stage whose delivery end does not have a fixed open gas flow connection to the supply end of any other stage of said compressor;
- fixed open gas flow connections from the supply end of the lowest pressure stage of each of said compressors to at least one reactant gas supply source;
- each such expander whose number of stages exceeds one further comprising fixed open gas flow connections from the discharge end of each expander stage, except one, to the inlet end of one other stage of said expander, whereby said stages of said expander are connected in series so that the pressure of a particular gas mass, at discharge from each stage, decreases as said gas mass is expanded through said series connected stages, from the inlet end to the discharge end of each stage, with the first stage in said series through which a gas mass first flows being both the highest pressure stage and also that one stage whose inlet end does not have a fixed open gas flow connection from the discharge end of any other stage of said expander, and with the last stage in said series through which a gas mass last flows being both the lowest pressure stage and also that one stage whose discharge end does not have a fixed open gas flow connection to the inlet end of any other stage of said expander;
- fixed open gas flow connections from the discharge end of the lowest pressure stage of each of said expanders to a separate product gas collector pipe;
- changeable gas flow connections, which are openable and closeable, from each of said containers to each delivery end of each stage of each of said compressors and to each inlet end of each stage of each of said expanders;
- each cyclic char gasifier plant comprising a number of said containers, with changeable gas flow connections to said compressors and to said expanders, at least equal to the sum of the number of compressor stages of all compressors and the number of expander stages of all expanders;
- at least one refuel mechanism, said refuel mechanism comprising:
- means for transferring a volume of solid materials from a supply source into said containing means when said refuel transfer means is connected to said containing means;
- means for connecting said refuel transfer means to said containing means for a time period for refueling and for disconnecting said refuel transfer means from said containing means at the end of said refuel time period;
- means for sealing said means for connecting and disconnecting against gas leakage; at least one coke removal mechanism, said coke removal mechanism comprising;
- means for transferring a volume of solid materials out of said containing means when said coke removal transfer means is connected to said containing means;
- means for connecting said coke removal transfer means to said containing means for a time period for coke removal and for disconnecting said coke removal transfer means from said containing means at the end of said coke removal time period;
- means for sealing said means for connecting and disconnecting against gas leakage;
- means for opening and closing said changeable gas flow connections so that each container is opened for a time period to each delivery end of each stage of each of said compressors, in a sub-sequence of time periods of open gas flow connections to compressors, said sub-sequence proceeding in time order of increasing compressor stage delivery pressure, and is opened for a time period to each inlet end of each stage of each of said expanders, in a sub-sequence of time periods of open gas flow connections to expanders, said sub-sequence proceeding in time order of decreasing expander stage inlet pressure, said sub-sequence of connections to said compressors being followed by said sub-sequence of connections to said expanders, and these together comprise one sequence of time periods of open gas flow connections, each of said containers is opened to only one stage during any one time period of said sequence of time periods, said sequence of time periods of open gas flow connections to said compressors and to said expanders is repeated for each of said containers by said means for opening and closing;
- means for controlling said means for opening and closing, and said means for connecting said refuel transfer means and said means for connecting said coke removal transfer means, so that said repeated sequence of time periods of open gas flow connections, and any time periods available only for refueling and for coke removal, are a continuous series of time periods for any one containing means, and so that the delivery end of each stage of each compressor has an open flow connection to at least one containing means, and the inlet end of each stage of each expander has an open gas flow connection to at least one containing means, during all time periods, whenever said plant is operating, and further so that the refuel ratio is an integral number, and further so that the coke removal ratio is an integral number.
- 5. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 4:
- wherein at least one of said expanders is an expander engine, said expander engine comprising means for expanding gas from a higher pressure to a lower pressure so that mechanical work is done by said expanding gas upon said expander engine;
- and further comprising at least one work absorber driven by said expander engines, said work absorber comprising means for absorbing the mechanical work done upon said expander engine.
- 6. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 5;
- and further comprising at least one post compression heater placed in the gas flow connections from the delivery end of at least one stage of said compressor to said containers, said post compression heaters comprising means for heating the reactant gas being compressed into containers.
- 7. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 4:
- and further comprising:
- a vacuum pump comprising means for pumping each of said containing means down to a pressure below the pressure at which the gases therefrom are discharged from said plant, said pumping means having at least one stage and each such stage comprising an inlet end and a discharge end;
- each such vacuum pump whose number of stages exceeds one further comprising fixed open gas flow connections from the discharge end of each vacuum pump stage, except one, to the inlet end of one other stage of said vacuum pump, whereby said stages of said vacuum pump are connected in series so that the pressure of a particular gas mass, at delivery from each stage, increases as said gas mass is pumped through said series connected stages, from the inlet end to the discharge end of each stage, with the first stage in said series through which a gas mass first flows being both the lowest pressure stage and also that one stage whose inlet end does not have a fixed open gas flow connection from the discharge end of any other stage of said vacuum pump, and with the last stage in said series through which a gas mass last flows being both the highest pressure stage and also that one stage whose discharge end does not have a fixed open gas flow connection to the inlet end of any other stage of said vacuum pump;
- a means for driving said vacuum pumping means;
- a vacuum expander comprising means for expanding gases from the supply pressure of said gases down to the pressure within said containing means, said expanding means having at least one stage and each such stage comprising a supply end and a delivery end;
- each such vacuum expander whose number of stages exceeds one further comprising fixed open gas flow connections from the delivery end of each expander stage, except one, to the supply end of one other stage of said expander, whereby said stages of said expander are connected in series so that the pressure of a particular gas mass, at discharge from each stage, decreases as said gas mass is expanded through said series connected stages, from the supply end to the delivery end of each stage, with the first stage in said series through which a gas mass first flows being both the highest pressure stage and also that one stage whose supply end does not have a fixed open gas flow connection from the delivery end of any other stage of said expander, and with the last stage in said series through which a gas mass last flows being both the lowest pressure stage and also that one stage whose delivery end does not have a fixed open gas flow connection to the supply end of any other stage of said expander;
- and further fixed open gas flow connections from, the discharge end of the highest pressure stage of said vacuum pump to a product gas collector pipe, the supply end of the lowest pressure stage of said vacuum expander to at least one reactant gas supply source;
- and further changeable gas flow connections, which are openable and closeable, from each of said containers to the delivery end of each stage of said vacuum expander and to the inlet end of each stage of said vacuum pump;
- wherein each cyclic char gasifier plant comprises a number of said containing means, with changeable gas flow connections to said compressor and to said expander and to said vacuum pump and to said vacuum expander, at least equal to the sum of the number of compressor stages and the number of expander stages and the number of vacuum pump stages and the number of vacuum expander stages;
- and further wherein said means for opening and closing also functions so that said sequences of time periods of open gas flow connections further comprises a sub-sequence of open gas flow connections to the inlet end of each stage of said vacuum pump, and next thereafter to the delivery end of each stage of said vacuum expander, said sub-sequence of open gas flow connections to said vacuum pump and to said vacuum expander following next after said sub-sequence of connections to said expanders;
- and further wherein said means for controlling said means for opening and closing also functions so that the delivery end of each stage of said vacuum expander has an open gas flow connection to at least one containing means, and the inlet end of each stage of said vacuum pump has an open gas flow connection to at least one containing means during all time periods, whenever said plant is operating.
- 8. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 7;
- wherein at least one of said expanders is an expander engine, said expander engine comprising means for expanding gas from a higher pressure to a lower pressure so that mechanical work is done by said expanding gas upon said expander engine;
- and further comprising at least one work absorber driven by said expander engines, said work absorber comprising means for absorbing the mechanical work done upon said expander engine.
- 9. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 1:
- and further comprising at least one char fuel heater, said char fuel heater comprising means for heating a portion of the char fuel within each of said containing means to that temperature at which said char will react rapidly with oxygen in adjacent compressed reactant gases when said cyclic char gasifier plant is being started.
- 10. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 9:
- wherein each of said containers comprises means for containing char fuel and any gas compressed into said char fuel, said means for containing char fuel comprising a char fuel mass contained within a geological formation.
- 11. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 10:
- and further comprising:
- a steam boiler as one of said reactant gas supply sources, said steam boiler comprising means for generating steam at a pressure at least equal to the maximum pressure reached by said containing means while being compressed with reactant gas containing appreciable oxygen gas;
- fixed open gas flow connections from said steam reactant gas supply source to the discharge end of at least one compressor stage compressing reactant gas containing appreciable oxygen gas;
- means for controlling the flow rate of said steam reactant through said fixed open gas flow connections so that the mass ratio of steam to oxygen flowing has the same set value at the same pressure for all containing means while being compressed with reactant gas containing appreciable oxygen gas, said set values of steam to oxygen mass ratio being greater than those values yielding expander inlet temperatures above those which the expander materials can survive functionally, and less than those values yielding char fuel temperatures below the rapid oxidation reaction temperature of said char fuel;
- and wherein another of said reactant gas supply sources is the atmosphere.
- 12. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 11:
- wherein at least one of said expanders is an expander engine, said expander engine comprising mean for expanding gas from a higher pressure to a lower pressure so that mechanical work is done by said expanding gas upon said expander engine;
- and further comprising at least one work absorber driven by said expander engines, said work absorber comprising means for absorbing the mechanical work done upon said expander engine.
- 13. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 11:
- wherein said fixed open gas flow connections from said steam reactant gas supply source connect to the discharge end of at least two compressor stages compressing reactant gas containing appreciable oxygen gas;
- and further wherein said means for controlling the flow rate of said steam reactant through said fixed open gas flow connections, controls so that mass ratio of steam to oxygen has at least two different set values at differing pressures, and said set values of mass ratio of steam to oxygen change to larger values as pressure increases;
- and further wherein there are at least two separate expanders, a first expander and a second expander;
- and further wherein there are a number of separate product gas collector pipes equal to the number of separate expanders;
- and further comprising fixed open gas flow connections from each of said separate product gas collector pipes to the discharge end of the lowest pressure stage of but one of said separate expanders;
- and further wherein said sub-sequence of open gas flow connections to expanders, carried out by said means for opening and closing, proceeds first to said first separate expander, and after being connected to the lowest pressure stage of said first expander proceeding next thereafter to said second separate expander, and said sub-sequence to expanders continues similarly thereafter to each of said separate expanders in turn.
- 14. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 13:
- wherein at least one of said expanders is an expander engine, said expander engine comprising means for expanding gas from a higher pressure to a lower pressure so that mechanical work is done by said expanding gas upon said expander engine;
- and further comprising at least one work absorber driven by said expander engines, said work absorber comprising means for absorbing the mechanical work done upon said expander engine.
- 15. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant comprising:
- at least one compressor means for compressing gases from a lower pressure to a higher pressure and each such compressor comprising at least one stage and each such stage comprising a supply end and a delivery end;
- means for driving each of said compressors;
- at least one expander means for expanding gas from a higher pressure to a lower pressure and each such expander comprising at least one stage and each such stage comprising an inlet end and a discharge end;
- at least two separate containers, each of said containers comprising pressure vessel means for containing char fuel and any gas compressed into said char fuel;
- at least one product gas collector pipe;
- at least one reactant gas supply source;
- at least one char fuel heater, said char fuel heater comprising means for heating a portion of the char fuel within each of said containing means to that temperature at which said char will react rapidly with oxygen in adjacent compressed reactant gases when said cyclic char gasifier plant is being started;
- each such compressor whose number of stages exceeds one further comprising fixed open gas flow connections from the delivery end of each compressor stage, except one, to the supply end of one other stage of said compressor, whereby said stages of said compressor are connected in series so that the pressure of a particular gas mass, at delivery from each stage, increases as said gas mass is compressed through said series connected stages, from the supply end to the delivery end of each stage, with the first stage in said series through which a gas mass first flows being both the lowest pressure stage and also that one stage whose supply end does not have a fixed open gas flow connection from the delivery end of any other stage of said compressor, and with the last stage in said series through which a gas mass last flows being both the highest pressure stage and also that one stage whose delivery end does not have a fixed open gas flow connection to the supply end of any other stage of said compressor;
- fixed open gas flow connections from the supply end of the lowest pressure stage of each of said compressors to at least one reactant gas supply source;
- each such expander whose number of stages exceeds one further comprising fixed open gas flow connections from the discharge end of each expander stage, except one, to the inlet end of one other stage of said expander, whereby said stages of said expander are connected in series so that the pressure of a particular gas mass, at discharge from each stage, decreases as said gas mass is expanded through said series connected stages, from the inlet end to the discharge end of each stage, with the first stage in said series through which a gas mass first flows being both the highest pressure stage and also that one stage whose inlet end does not have a fixed open gas flow connection from the discharge end of any other stage of said expander, and with the last stage in said series through which a gas mass last flows being both the lowest pressure stage and also that one stage whose discharge end does not have a fixed open gas flow connection to the inlet end of any other stage of said expander;
- fixed open gas flow connections from the discharge end of the lowest pressure stage of each of said expanders to a separate product gas collector pipe;
- changeable gas flow connections, which are openable and closeable, from each of said containers to each delivery end of each stage of each of said compressors and to each inlet end of each stage of each of said expanders;
- each cyclic char gasifier plant comprising a number of said containers, with changeable gas flow connections to said compressors and to said expanders at least equal to the sum of the number of compressor stages of all compressors and the number of expander stages of all expanders;
- at least one refuel mechanism, said refuel mechanism comprising:
- means for transferring a volume of solid materials from a supply source into said containing means when said refuel transfer means is connected to said containing means;
- means for connecting said refuel transfer means to said containing means for a time period for refueling and for disconnecting said refuel transfer means from said containing means at the end of said refuel time period;
- means for sealing said means for connecting and disconnecting against gas leakage;
- means for opening and closing said changeable gas flow connections so that, each container is opened for a time period to each delivery end of each stage of each of said compressors, in a sub-sequence of time periods of open gas flow connections to compressors, said sub-sequence proceeding in time order of increasing compressor stage delivery pressure, and is opened for a time period to each inlet end of each stage of each of said expanders, in a sub-sequence of time periods of open gas flow connections to expanders, said sub-sequence proceeding in time order of decreasing expander stage inlet pressure, said sub-sequence of connections to said compressors being followed by said sub-sequence of connections to said expanders, and these together comprise one sequence of time periods of open gas flow connections, each of said containers is opened to only one stage during any one time period of said sequence of time periods, said sequence of time periods of open gas flow connections to said compressors and to said expanders is repeated for each of said containers by said means for opening and closing;
- means for controlling said means for opening and closing, and said means for connecting said refuel transfer means, so that said repeated sequences of time periods of open gas flow connections, and any time periods available only for refueling, are a continuous series of time periods for any one containing means, and so that the delivery end of each stage of each compressor has an open gas flow connection to at least one containing means, and the inlet end of each stage of each expander has an open gas flow connection to at least one containing means during all time periods, whenever said plant is operating.
- 16. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 4:
- and further comprising at least one char fuel heater, said char fuel heater comprising means for heating a portion of the char fuel within each of said containing means to that temperature at which said char will react rapidly with oxygen in adjacent compressed reactant gases when said cyclic char gasifier plant is being started.
- 17. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 16:
- and further comprising:
- a steam boiler as one of said reactant gas supply sources, said steam boiler comprising means for generating steam at a pressure at least equal to the maximum pressure reached by said containing means while being compressed with reactant gas containing appreciable oxygen gas;
- fixed open gas flow connections from said steam reactant gas supply source to the discharge end of at least one compressor stage compressing reactant gas containing appreciable oxygen gas;
- means for controlling the flow rate of said steam reactant through said fixed open gas flow connections so that the mass ratio of steam to oxygen flowing has the same set value at the same pressure for all containing means while being compressed with reactant gas containing appreciable oxygen gas, said set values of steam to oxygen mass ratio being greater than those values yielding expander inlet temperature above those which the expander materials can survive functionally, and less than those values yielding char fuel temperatures below the rapid oxidation reaction temperature of said char fuel;
- and wherein another of said reactant gas supply sources is the atmosphere.
- 18. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 17:
- wherein at least one of said expanders is an expander engine, said expander engine comprising means for expanding gas from a higher pressure to a lower pressure so that mechanical work is done by said expanding gas upon said expander engine;
- and further comprising at least one work absorber driven by said expander engines, said work absorber comprising means for absorbing the mechanical work done upon said expander engine.
- 19. A machine for gasifying char fuels comprising at least one cycle char gasifier plant as described in claim 18:
- and further comprising:
- an additional reactant gas supply source comprising means for supplying an oxygen rich gas whose oxygen content exceeds that of air;
- fixed open gas flow connections from said oxygen rich reactant gas supply source to the discharge end of at least one compressor stage compressing reactant gas containing appreciable oxygen gas;
- means for controlling the supply of said oxygen rich reactant flowing through said fixed open gas flow connections so that the mass ratio of oxygen to nitrogen flowing has the same set value at the same pressure for all containing means while being compressed with reactant gases, any of which contain appreciable oxygen gas.
- 20. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 17:
- wherein said fixed open gas flow connections from said steam reactant gas supply source connect to the discharge end of at least two compressor stages compressing reactant gas containing appreciable oxygen gas;
- and further wherein said means for controlling the flow rate of steam controls so that said mass ratio of steam to oxygen has at least two different set values at differing pressures, and said set values of mass ratio of steam to oxygen change to larger values as pressure increases;
- and further wherein there are at least two separate expanders, a first expander and a second expander;
- and further wherein there are a number of separate product gas collector pipes equal to the number of separate expanders;
- and further comprising fixed open gas flow connections from each of said separate product gas collector pipes to the discharge end of the lowest pressure stage of but one of said separate expanders; p1 and further wherein said sub-sequence of open gas flow connections to expanders, carried out by said means for opening and closing, proceeds first to said first separate expander, and after being connected to the lowest pressure stage of said first expander proceeding next thereafter to said second separate expander, and said sub-sequence to expanders continues similarly thereafter to each of said separate expanders in turn.
- 21. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 20:
- wherein at least one of said expanders is an expander engine, said expander engine comprising means for expanding gas from a higher pressure to a lower pressure so that mechanical work is done by said expanding gas upon said expander engine; and further comprising at least one work absorber driven by said expander engines, said work absorber comprising means for absorbing the mechanical work done upon said expander engine.
- 22. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 21:
- and further comprising:
- an additional reactant gas supply source comprising means for supplying an oxygen rich gas whose oxygen gas content exceeds that of air;
- fixed open gas flow connections from said oxygen rich reactant gas supply source to the discharge end of at least two compressor stages compressing reactant gas containing appreciable oxygen gas;
- means for controlling the supply of said oxygen rich reactant flowing through said fixed open gas flow connections so that the mass ratio of oxygen to nitrogen flowing has the same set value at the same pressure for all containing means while being compressed with reactant gases, any of which contain appreciable oxygen gas, and said mass ratio of oxygen to nitrogen has at least two different set values at differing pressures, and said set values of mass ratio of oxygen to nitrogen change to larger values as pressure increases.
- 23. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 11, 12, 13, 17, 18, or 20:
- wherein there are at least two separate compressors, a first compressor and a second compressor;
- and wherein there are at least two reactant gas supply sources, the atmosphere, and a steam boiler;
- and further wherein said first compressor comprises fixed open gas flow connections from the delivery end of each compressor stage, except the highest pressure compressor stage, to the supply end of the next higher pressure compressor stage of that same compressor, and from the supply end of the lowest pressure compressor stage to the atmosphere;
- and further wherein said second compressor comprises fixed open gas flow connections from the delivery end of each compressor stage, except the highest pressure compressor stage, to the supply end of the next higher pressure compressor stage of that same compressor, and from the supply end of the lowest pressure compressor stage to the discharge end of one stage of one of said expanders;
- and further wherein said sub-sequence of open gas flow connections to compressors, carried out by said means for opening and closing, proceeds first to said first separate compressor, and after being connected to the highest pressure stage of said first compressor, proceeding next thereafter to said second separate compressor.
- 24. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 1, 2, 4, 7, 9, 10, 11, 15, 16, or 17:
- and further comprising:
- a time period control means comprising:
- means for sensing the maximum pressure reached in each container during compression connected as an input to a controller operative upon said means for opening and closing;
- said controller comprising means for adjusting the length of the time period during which said changeable gas flow connections are unchanged, so that as maximum compression pressure decreases below a set value, said time period increases, and as maximum compression pressure increases above a set value, said time period decreases;
- means for adjusting said set values of maximum pressure reached during compression.
- 25. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 3, 5, 12, 14, 18, or 21:
- and further comprising:
- a time period control means comprising:
- means for sensing the maximum pressure reached in each container during compression connected as an input to a controller operative upon said means for opening and closing;
- said controller comprising means for adjusting the length of the time period during which said changeable gas flow connections are unchanged, so that as maximum compression pressure decreases below a set value, said time period increases, and as maximum compression pressure increases above a set value, said time period decreases;
- means for adjusting said set values of maximum pressure reached during compression;
- an expander flow rate control means comprising:
- means for sensing the minimum expansion pressure reached at inlet to each stage of each of said expanders, at least one such means for sensing being installed at each stage inlet of each of said expanders;
- each such means for sensing being connected as an input to a means for controlling the flow rate of gas into that same stage, so that as minimum expansion pressure decreases below a set value, said flow rate decreases, and as minimum expansion pressure increases above a set value, said flow rate increases;
- means for adjusting said set values of minimum pressures reached during expansion.
- 26. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 12, 14, 18, or 21:
- and further comprising:
- a time period control means comprising:
- means for sensing the maximum pressure reached in each container during compression connected as an input to a controller operative upon said means for opening and closing;
- said controller comprising means for adjusting the length of the time period during which said changeable gas flow connections are unchanged, so that as maximum compression pressure decreases below a set value, said time period increases, and as maximum compression pressure increases above a set value, said time period decreases;
- means for adjusting said set values of maximum pressure reached during compression;
- an expander flow rate control means comprising:
- means for sensing the minimum expansion pressure reached at inlet to each stage of each of said expanders, at least one such means for sensing being installed at each stage inlet of each of said expanders;
- each such means for sensing being connected as an input to a means for controlling the flow rate of gas into that same stage, so that as minimum expansion pressure decreases below a set value, said flow rate decreases, and as minimum expansion pressure increases above a set value, said flow rate increases;
- means for adjusting said set values of minimum pressure reached during expansion; an expander inlet temperature control means comprising:
- means for sensing the maximum temperature of the gas at inlet to said expanders connected as an input to a means for controlling the set values of steam to oxygen ratio to which said means for controlling the flow rate of steam controls, so that as maximum expander gas inlet temperature increases above a set value of temperature, said set values of steam to oxygen ratio increase, and as maximum expander gas inlet temperature decreases below a set value of temperature, said set values of steam to oxygen ratio decrease, said set values of temperature being determined by the kinds of materials used in said expanders.
- 27. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 4, 5, 17, 18, 20, or 21:
- and further comprising means for adjusting the coke ratio comprising means for adjusting the coke removal ratio.
- 28. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 16, 17, 18, 20, or 21:
- and further comprising a coke removal ratio control means comprising:
- means for sensing the ash level within each container connected as an input to a controller operative upon said means for connecting and disconnecting said coke removal transfer means;
- said controller comprising means for adjusting the coke removal ratio so that as ashes accumulate above a set level within said container, said coke removal ratio is decreased, and as ashes are removed to below a set level within said container, said coke removal ratio is increased.
- 29. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 5, 6, 18, or 21:
- and further comprising a precompression cooler placed in the fixed open gas flow connection to the supply end of at least one stage of at least one of said compressors, said precompression cooler comprising means for cooling the reactant gas entering said compressor.
- 30. A machine for gasifying char fuels comprising a first cyclic char gasifier plant as recited in claim 11, 13, 17, 19, 20, or 22, combined functionally with at least one other cyclic char gasifier plant, at least one of said other cyclic char gasifier plants comprising:
- at least one compressor means for compressing gases from a lower pressure to a higher pressure and each such compressor comprising at least one stage and each such stage comprising a supply end and a delivery end;
- means for driving each of said compressors;
- at least one expander means for expanding gases from a higher pressure to a lower pressure and each such expander comprising at least one stage and each such stage comprising an inlet end and a discharge end;
- at least two separate containers, each of said containers comprising pressure vessel means for containing char fuel and any gas compressed into said char fuel;
- at least one product gas collector pipe;
- at least one reactant gas supply source;
- each such compressor whose number of stages exceeds one further comprising fixed open gas flow connections from the delivery end of each compressor stage, except one, to the supply end of one other stage of said compressor, whereby said stages of said compressor are connected in series so that the pressure of a particular gas mass, at delivery from each stage, increases as said gas mass is compressed through said series connected stages, from the supply end to the delivery end of each stage, with the first stage in said series through which a gas mass first flows being both the lowest pressure stage and also that one stage whose supply end does not have a fixed open gas flow connection from the delivery end of any other stage of said compressor, and with the last stage in said series through which a gas mass last flows being both the highest pressure stage and also that one stage whose delivery end does not have a fixed open gas flow connection to the supply end of any other stage of said compressor;
- fixed open gas flow connections from the supply end of the lowest pressure stage of each of said compressors to at least one reactant gas supply source;
- each such expander whose number of stages exceeds one further comprising fixed open gas flow connections from the discharge end of each expander stage, except one, to the inlet end of one other stage of said expander, whereby said stages of said expander are connected in series so that the pressure of a particular gas mass, at discharge from each stage, decreases as said gas mass is expanded through said series connected stages, from the inlet end to the discharge end of each stage, with the first stage in said series through which a gas mass first flows being both the highest pressure stage and also that one stage whose inlet and does not have a fixed open gas flow connection from the discharge end of any other stage of said expander, and with the last stage in said series through which a gas mass last flows being both the lowest pressure stage and also that one stage whose discharge end does not have a fixed open gas flow connection to the inlet end of any other stage of said expander;
- fixed open gas flow connections from the discharge end of the lowest pressure stage of each of said expanders to a separate product gas collector pipe;
- changeable gas flow connections, which are openable and closeable, from each of said containers to each delivery end of each stage of each of said compressors and to each inlet end of each stage of each of said expanders;
- each cyclic char gasifier plant comprising a number of said containers, with changeable gas flow connections to said compressors and to said expanders, at least equal to the sum of the number of compressor stages of all compressors and the number of expander stages of all expanders;
- at least one refuel mechanism, said refuel mechanism comprising;
- means for transferring a volume of solid materials from a supply source into said containing means when said refuel transfer means is connected to said containing means;
- means for connecting said refuel transfer means to said containing means for a time period for refueling and for disconnecting said refuel transfer means from said containing means at the end of said refuel time period;
- means for sealing said means for connecting and disconnecting against gas leakage;
- at least one coke removal mechanism, said coke removal mechanism comprising:
- means for transferring a volume of solid materials out of said containing means when said coke removal transfer means is connected to said containing means;
- means for connecting said coke removal transfer means to said containing means for a time period for coke removal and for disconnecting said coke removal transfer means from said containing means at the end of said coke removal time period;
- means for sealing said means for connecting and disconnecting against gas leakage;
- means for opening and closing said changeable gas flow connections so that, each container is opened for a time period to each delivery end of each stage of each of said compressors, in a sub-sequence of time periods of open gas flow connections to compressors, said sub-sequence proceeding in time order of increasing compressor stage delivery pressure, and is opened for a time period to each inlet end of each stage of each of said expanders, in a sub-sequence of time periods of open gas flow connections to expanders, said sub-sequence proceeding in time order of decreasing expander stage inlet pressure, said sub-sequence of connections to said compressors being followed by said sub-sequence of connections to said expanders, and these together comprise one sequence of time periods of open gas flow connections, each of said containers is opened to only one stage during any one time period of said sequence of time periods, said sequence of time periods of open gas flow connections to said compressors and to said expanders is repeated for each of said containers by said means for opening and closing;
- means for controlling said means for opening and closing, and said means for connecting said refuel transfer means and said means for connecting said coke removal transfer means, so that said repeated sequence of time periods of open gas flow connections, and any time periods available only for refueling and for coke removal, are a continuous series of time periods for any one containing means, and so that the delivery end of each stage of each compressor has an open gas flow connection to at least one containing means, and the inlet end of each stage of each expander has an open gas flow connection to at least one containing means during all time periods, whenever said plant is operating, and further so that the refuel ratio of the number of sequences of time periods of open gas flow connections to the number of time periods utilized for refueling is a ratio of integral numbers, and further so that the coke removal ratio of the number of sequences of time periods of open gas flow connections to the number of time periods utilized for coke removal is a ratio of integral numbers;
- at least one fixed open gas flow connection from at least one of said product gas collector pipes of said first cyclic char gasifier plant to the supply end of the lowest pressure stage of the compressor of said at least one other cyclic char gasifier plant.
- 31. A machine for gasifying char fuels comprising a first cyclic char gasifier plant combined functionally with a second cyclic char gasifier plant as described in claim 30:
- wherein at least one of said expanders in said second cyclic char gasifier plant is an expander engine, said expander engine comprising means for expanding gas from a higher pressure to a lower pressure so that mechanical work is done by said expanding gas upon said expander engine;
- and wherein said second cyclic char gasifier plant further comprises at least one work absorber driven by said expander engines, said work absorber comprising means for absorbing the mechanical work done upon said expander engine.
- 32. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 5:
- and further comprising:
- a time period control means comprising:
- means for sensing the maximum pressure reached in each container during compression connected as an input to a controller operative upon said means for opening and closing;
- said controller comprising means for adjusting the length of the time period during which said changeable gas flow connections are unchanged, so that as maximum compression pressure decreases below a set value, said time period increases, and as maximum compression pressure increases above a set value, said time period decreases;
- means for adjusting said set values of maximum pressure reached during compression;
- an expander flow rate control means comprising:
- means for sensing the minimum expansion pressure reached at inlet to each stage of each of said expanders, at least one such means for sensing being installed at each stage inlet of each of said expanders;
- each such means for sensing being connected as an input to a means for controlling the flow rate of gas into that same stage, so that as minimum expansion pressure decreases below a set value, said flow rate decreases, and as minimum expansion pressure increases above a set value, said flow rate increases;
- means for adjusting said set values of minimum pressures reached during expansion; means for adjusting the coke ratio comprising means for adjusting the coke removal ratio;
- a precompression cooler placed in the fixed open gas flow connection to the supply end of at least one stage of at least one of said compressors, said precompression cooler comprising means for cooling the reactant gas entering said compressor.
- 33. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 12 or 14:
- and further comprising:
- a time period control means comprising:
- means for sensing the maximum pressure reached in each container during compression connected as an input to a controller operative upon said means for opening and closing;
- said controller comprising means for adjusting the length of the time period during which said changeable gas flow connections are unchanged, so that as maximum compression pressure decreases below a set value, said time period increases, and as maximum compression pressure increases above a set value, said time period decreases;
- means for adjusting said set values of maximum pressure reached curing compression; an expander flow rate control means comprising:
- means for sensing the minimum expansion pressure reached at inlet to each stage of each of said expanders, at least one such means for sensing being installed at each stage inlet of each of said expanders;
- each such means for sensing being connected as an input to a means for controlling the flow rate of gas into that same stage, so that as minimum expansion pressure decreases below a set value, said flow rate decreases, and as minimum expansion pressure increases above a set value, said flow rate increases;
- means for adjusting said set values of minimum pressure reached during expansion;
- an expander inlet temperature control means comprising:
- means for sensing the maximum temperature of the gas at inlet to said expanders connected as an input to a means for controlling the set values of steam to oxygen ratio to which said means for controlling the flow rate of steam controls, so that as maximum expander gas inlet temperature increases above a set value of temperature, said set values of steam to oxygen ratio increase, and as maximum expander gas inlet temperature decreases below a set value of temperature, said set values of steam to oxygen ratio decrease, said set values of temperature being determined by the kinds of materials used in said expanders;
- wherein there are at least two separate compressors, a first compressor and a second compressor;
- and wherein there are at least two reactant gas supply sources, the atmosphere, and a steam boiler;
- and further wherein said first compressor comprises fixed open gas flow connections from the delivery end of each compressor stage, except the highest pressure compressor stage, to the supply end of the next higher pressure compressor state of that same compressor, and from the supply end of the lowest pressure compressor stage to the atmosphere;
- and further wherein said second compressor comprises fixed open gas flow connections from the delivery end of each compressor stage, except the highest pressure compressor stage, to the supply end of the next higher pressure compressor stage of that same compressor, and from the supply end of the lowest pressure compressor stage to the discharge end of one stage of one of said expanders;
- and further wherein said sub-sequence of open gas flow connections to compressors, carried out by said means for opening and closing, proceeds first to the highest pressure stage of said first compressor, proceeding next thereafter to said second separate compressor.
- 34. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 18, 19, 21, or 22:
- and further comprising:
- a time period control means comprising:
- means for sensing the maximum pressure reached in each container during compression connected as an input to a controller operative upon said means for opening and closing;
- said controller comprising means for adjusting the length of the time period during which said changeable gas flow connections are unchanged, so that as maximum compression pressure decreases below a set value, said time period increases, and as maximum compression pressure increases above a set value, said time period decreases;
- means for adjusting said set values of maximum pressure reached during compression;
- an expander flow rate control means comprising:
- means for sensing the minimum expansion pressure reached at inlet to each stage of said expanders, at least one such means for sensing being installed at each stage inlet of each of said expanders;
- each such means for sensing being connected as an input to a means for controlling the flow rate of gas into that same stage, so that as minimum expansion pressure decreases below a set value, said flow rate decreases, and as minimum expansion pressure increases above a set value, said flow rate increases;
- means for adjusting said set values of minimum pressures reached during expansion; an expander inlet temperature control means comprising:
- means for sensing the maximum temperature of the gas at inlet to said expanders connected as an input to a means for controlling the set values of steam to oxygen ratio to which said means for controlling the flow rate of steam controls, so that as maximum expander gas inlet temperature increases above a set value of temperature, said set values of steam to oxygen ratio increases, and as maximum expander gas inlet temperature decreases below a set value of temperature, said set values of steam to oxygen ratio decrease, said set values of temperature being determined by the kinds of materials used in said expanders;
- means for adjusting the coke ratio comprising means for adjusting the coke removal ratio;
- wherein there are at least two separate compressors, a first compressor and a second compressor;
- and wherein there are at least two reactant gas supply sources, the atmosphere, and a steam boiler;
- and further wherein said first compressor comprises fixed open gas flow connections from the delivery end of each compressor stage, except the highest pressure compressor stage, to the supply end of the next higher pressure compressor stage of that same compressor, and from the supply end of the lowest pressure compressor stage to the atmosphere;
- and further wherein said second compressor comprises fixed open gas flow connections from the delivery end of each compressor stage, except the highest pressure stage, to the supply end of the next higher pressure compressor stage of that same compressor, and from the supply end of the lowest pressure compressor stage to the discharge end of one stage of one of said expanders;
- and further wherein said sub-sequence of open gas flow connections to compressors, carried out by said means for opening and closing, proceeds first to said first separate compressor, and after being connected to the highest pressure stage of said first compressor proceeding next thereafter to said second separate compressor.
- 35. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 1, 2, 3, 4, or 5:
- and further comprising means for stopping said cyclic char gasifier plant comprising:
- means for reducing the power output of said compressor drive means to essentially zero;
- means for reducing the mechanical work output of said expanders to essentially zero.
- 36. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 9, 10, 12, 15, or 16:
- and further comprising means for recirculating reacted gas from said product gas collector pipe to the supply end of the lowest pressure compressor stage and for stopping the flow of reactant gas thereto whenever said cyclic char gasifier plant is to be stopped.
- 37. A machine for gasifying char fuels comprising at least one cyclic char gasifier plant as described in claim 11, 17, 18, 19, 20, 21, or 22:
- and further comprising means for supplying sufficient excess steam flow to each container being compressed with reactant gas containing appreciable oxygen gas as to reduce the temperature of the char fuel therein to below its rapid reaction temperature whenever said cyclic char gasifier plant is to be stopped.
CROSS REFERENCES TO RELATED APPLICATIONS
This application is a continuation in part of my earlier filed U.S. patent application entitled, "Improved Cyclic Char Gasifier," Ser. No. 06/328148, filing date Dec. 7, 1981, which is, in turn, a continuation in part of my still earlier filed U.S. patent application entitled, "Cyclic Char Gasifier," Ser. No. 06/121973, filing date Feb. 15, 1980 both abandoned.
US Referenced Citations (9)
Continuations (1)
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121973 |
Feb 1980 |
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Continuation in Parts (1)
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328148 |
Dec 1981 |
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