Claims
- 1. Process for an operation of a generator absorption heat pump heating installation for wherein heating energy to the supplied to a heating liquid to be heated flowing back from the heating system can be supplied both by high temperature heat taken from a directly heated generator means and from low temperature heat absorbed by an absorption heat pump means, the method comprising the steps of: operating the absorption heat pump means with a periodic change of operating phases including a generation phase with condensation and an evaporation phase with absorption at different pressure levels, supplying, in the generation phase, high temperature heat through the generator means to a working substance solution circuit and supplying useful heat during the condensation phase of resulting vapor of a condenser to the heating liquid, supplying, during the absorption phase, the high temperature heat to the coolant in an evaporator means and as useful heat in an absorber means to the heating liquid, and automatically alternately switching both high and low temperature heat supply on when a heating liquid return or supply temperature drops below a predetermined lower temperature limit and off when the hot liquid return or supply temperature rises above a predetermined upper temperature limit.
- 2. Process according to claim 1, further comprising the step of diverting substantially a maximum calorific power of the heat pump heating installation at low external temperatures by a high heat temperature heat supply to the generator means and from the generator means to a working substance solution circuit means of the absorption heat pump means, and the condensate produced in the condenser means following a complete filling of a coolant accumulator means is returned to the absorber means in the absorption heat pump means, the using the working substance solution as a heat carrier between the generator means and the condenser means through which the heating liquid flows.
- 3. Process according to one of claims 1 or 2, further comprising the steps of maintaining a minimum running time for obtaining a very high heat absorption on the evaporator means and performance figure rise of the generator means and absorber means operation of the heat pump heating installation.
- 4. Monovalent alternative generator absorption heat pump installation up to a calorific capacity of approximately 20 kW, the heat pump heating installation comprising heat pump means including an evaporator means heatable by external heat having a heat exchanger means through which a coolant flows, an absorber means connected on a cold vapor side to the evaporator means and including a heat exchanger means through which heating liquid of the heating system flows, a condenser means connected on a coolant side to the evaporator means and to the absorber means and including a heat exchanger means through which the heating liquid flows, a generator means directly heatable by primary energy including a heat exchanger means constructed as a thermosiphon connected to the absorber means at a low point and a high point of the absorber means so as to permit natural circulation of a working substance solution from the absorber means through the generator means and back to the absorber means and to a working substance accumulator means of the condenser means, stop valve means respectively provided in connecting lines between the evaporator means and the absorber means and between the condenser means and the evaporator means, said stop valve means between the evaporator means and the absorber means includes a one-way valve means for allowing a vapor flow only to the absorber means, said stop valve means between the condenser means and the evaporator means includes a one-way valve means for only allowing a liquid flow to the evaporator means and closing when the evaporator means is completely filled with liquid so as to permit a flow back into the absorber means by a liquid line means, whereby heating liquid can be passed through the heat exchanger means of the condenser means during high temperature heat supply and through the heat exchange means of the absorber means during the low temperature heat supply, and wherein a switching over of the heating liquid flow can be alternately automatically performed by a changeover valve means when the heating liquid return or supply temperature drops below a predetermined preset temperature.
- 5. Installation according to claim 4, wherein the generator means includes a waste gas cooler means connected downstream of the condenser means on a heating liquid side.
- 6. Installation according to one of claims 4 or 5, wherein the generator means and the absorber means are separated from one another, and wherein the absorber means is constructed as a working substance solution accumulator.
- 7. Installation according to claim 6, wherein vapor chamber means of the absorber means and the generator means are connected by a vapor pressure compensating line means.
- 8. Installation according to claim 7, wherein the high point of the absorber means includes a high outlet means for a rich solution and low point of the absorber means includes low outlet means for a weak solution, said high outlet means and low outlet means are arranged in such a way that a natural concentration stratification during a discharge of the solution can be utilized with a minimum reabsorption.
- 9. Installation according to claim 8, wherein the absorber means includes means which, during absorption, returns to a lower part of the absorber means sprayed on solution and brings about a forces circulation for preventing stratification of a concentration of the solution.
- 10. Installation according to claim 9, wherein at least one of the condenser means is provided with a coolant accumulator and the evaporator means is constructed as a coolant accumulator.
- 11. Installation according to claim 10, wherein the stop valve means between the condenser means and the evaporator means closes when maximum permitted filling does not permit a vapor flow from the evaporator means to the condenser means so as to bring about an entry of liquid into the absorber means through the liquid line means between the condenser means and the absorber means.
- 12. Installation according to claim 11, wherein said stop valve means includes a one-way float valve means.
- 13. Installation according to claim 12, wherein the working substance solution includes a plurality of coolant components having lower boiling fractions which remain in the coolant accumulator as the low temperature heat drops.
- 14. Installation according to claim 13, wherein a heat exchanger means is interposed between the absorber means and the generator means.
- 15. Process according to claim 1, wherein the heating pump installation is for at least one of space heating and water heating.
- 16. Installation according to one of claims 4 or 5, wherein vapor chamber means of the absorber means and the generator means are connected by a vapor pressure compensating line means.
- 17. Installation according to one of claims 4 or 5, wherein the hight point of the absorber means includes a high outlet line means for a rich solution and the low point of the absorber means includes low outlet means for a weak solution, said high outlet means and said low outlet means are arranged in such a manner that a natural concentration stratification during a discharge of the solution can be utilized with a minimum reabsorption.
- 18. Installation according to claim 17, wherein the absorber means includes means which, during absorption, returns to a lower part of the absorber sprayed on solution and brings about a forced circulation for preventing stratification of a concentration of solution.
- 19. Installation according to one of claims 4 or 5, wherein the condenser means is provided with a coolant accumulator means.
- 20. Installation according to one of claims 4 or 5, wherein the evaporator means is constructed as a coolant accumulator means.
- 21. Installation according to one of claims 4 or 5, wherein the stop valve means between the condenser means and the evaporator means closes when maximum permitted filling does not permit a vapor flow from the evaporator means to the condenser means so as to bring about an entry of liquid into the absorber means through the liquid line means between the condenser means and the absorber means.
- 22. Installation according to claim 21, wherein said stop valve means includes a one-way float valve means.
- 23. Installation according to one of claims 4 or 5, wherein the working substance solution of the heat pump heating installation includes a plurality of coolant components having lower boiling fractions which remain in a coolant accumulator as the low temperature heat drops.
- 24. Installation according to one of claims 4 or 5, wherein a heat exchanger means is interposed between the absorber means and the generator means.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation of U.S. application Ser. No. 242,128, filed Sept. 9, 1988, now abandoned; which is a continuation of U.S. application Ser. No. 130,659, filed Dec. 4, 1987, now abandoned; which is continuation of U.S. application Ser. No. 009,668, filed Feb. 2, 1987, now abandoned; which a continuation of U.S. application Ser. No. 776,881, filed Sept. 17, 1985, now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4312476 |
Pohlman |
Jan 1982 |
|
4561259 |
Van der Sluys |
Dec 1985 |
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Continuations (4)
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Number |
Date |
Country |
Parent |
242128 |
Sep 1988 |
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Parent |
130659 |
Dec 1987 |
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Parent |
9668 |
Feb 1987 |
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Parent |
776881 |
Sep 1985 |
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