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2022 | OriginalPaper | Chapter

Solar Cooling Systems

Author : Hans-Martin Henning

Published in: Solar Thermal Energy

Publisher: Springer US

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Excerpt

Air-conditioning
Temperature and humidity control in buildings of each typology.
Coefficient of performance (COP)
Factor which describes the ratio between useful and supplied energy.
Cooling
Removing of heat.
Cost of saved primary energy
Theoretical cost for 1 kWh of primary energy which is saved using an alternative system (e.g., driven by renewable energy sources) instead of a conventional one (only driven by fossil fuels or electricity from grid).
Demonstration project
Organized implementation of a novel approach which aims at assessing the merits of widespread use of the approach and at gaining practical experience.
Primary energy saving
Difference between the annual primary energy consumption of a conventional system which uses fossil fuels or electricity from grid and the annual primary energy consumption of a comparable system driven (partly) by renewable energy sources.
Sorption
Exothermic process which comprises adsorption (a liquid or gaseous substance is attached to the surface of a solid, porous material) and absorption (a liquid or gaseous substance is taken in by a liquid volume).

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Literature
1.
go back to reference Mouchot A (1987) La chaleur Solaire et ses Applications Industrielles (German translation Die Sonnenwarme und ihre industriellen Anwendungen). Olynthus Verlag, Oberbozberg Mouchot A (1987) La chaleur Solaire et ses Applications Industrielles (German translation Die Sonnenwarme und ihre industriellen Anwendungen). Olynthus Verlag, Oberbozberg
2.
go back to reference Löaf G (1993) Active solar systems. In: Bankston CA (ed) Solar heat technologies, vol 6. MIT Press, Cambridge, MA Löaf G (1993) Active solar systems. In: Bankston CA (ed) Solar heat technologies, vol 6. MIT Press, Cambridge, MA
3.
go back to reference Ross S (1948) On physical adsorption. II. A comparison of methods of estimating surface areas of crystalline solids by gas adsorption. J Am Chem Soc 70(11):3830–3837 Ross S (1948) On physical adsorption. II. A comparison of methods of estimating surface areas of crystalline solids by gas adsorption. J Am Chem Soc 70(11):3830–3837
4.
go back to reference Ziegler F (2002) State of the art in sorption heat pumping and cooling technologies. Int J Refrig 25:450–459 Ziegler F (2002) State of the art in sorption heat pumping and cooling technologies. Int J Refrig 25:450–459
6.
go back to reference Henning H-M (ed) (2007a) Solar assisted air conditioning in buildings – a handbook for planners, 2nd revised edn. Springer, Wien/New York Henning H-M (ed) (2007a) Solar assisted air conditioning in buildings – a handbook for planners, 2nd revised edn. Springer, Wien/New York
7.
go back to reference Ziegler F (1997) Sorptionswärmepumpen, Forschungsberichte des DKV Nr. 57. Habilitation, Deutscher Kalte- und Klimatechnischer Verein e.V. (DKV), Stuttgart Ziegler F (1997) Sorptionswärmepumpen, Forschungsberichte des DKV Nr. 57. Habilitation, Deutscher Kalte- und Klimatechnischer Verein e.V. (DKV), Stuttgart
9.
go back to reference von Cube H-L, Steimle F, Lotz H, Kunis J (1997) Lehrbuch der Kältetechnik, vol 2, 4th edn. C. F. Muller Verlag, Heidelberg von Cube H-L, Steimle F, Lotz H, Kunis J (1997) Lehrbuch der Kältetechnik, vol 2, 4th edn. C. F. Muller Verlag, Heidelberg
10.
go back to reference Morgenstern A, Bongs C, Wagner C, Henning H-M (2009) Experimental evaluation of a sorptive coated heat exchanger prototype for dehumidification. In: Proceedings of the 3rd international conference on solar air-conditioning, OTTI, Palermo, 30 Sept–02 Oct 2009 Morgenstern A, Bongs C, Wagner C, Henning H-M (2009) Experimental evaluation of a sorptive coated heat exchanger prototype for dehumidification. In: Proceedings of the 3rd international conference on solar air-conditioning, OTTI, Palermo, 30 Sept–02 Oct 2009
11.
go back to reference Fan Y, Luo L, Souyri B (2007) Review of solar sorption refrigeration technologies: development and applications. Renew Sust Energ Rev 11:1758–1775 Fan Y, Luo L, Souyri B (2007) Review of solar sorption refrigeration technologies: development and applications. Renew Sust Energ Rev 11:1758–1775
12.
go back to reference Daniel Keller D, Ochsner E (2008) Absorptionskaitemaschinen als Alternative. friscaldo 5:28–30 Daniel Keller D, Ochsner E (2008) Absorptionskaitemaschinen als Alternative. friscaldo 5:28–30
13.
go back to reference Gaderer M (2000) Rauchgaskondensationsanlagen Stand der Technik, Schaltungsvarianten, Entwicklungen. ZAE Bayern, München Gaderer M (2000) Rauchgaskondensationsanlagen Stand der Technik, Schaltungsvarianten, Entwicklungen. ZAE Bayern, München
14.
go back to reference Haider M, Luedeking G (2005) Auslegung und Wirtschaftlichkeit von KWKK-Anlagen Teil 1. KI Luft Kältetechnik 7:267–271 Haider M, Luedeking G (2005) Auslegung und Wirtschaftlichkeit von KWKK-Anlagen Teil 1. KI Luft Kältetechnik 7:267–271
15.
go back to reference Medrano M, Bourouis M, Coronas A (2001) Double-lift absorption refrigeration cycles driven by low-temperature heat sources using organic fluid mixtures as working pairs. Appl Energy 68:173–185 Medrano M, Bourouis M, Coronas A (2001) Double-lift absorption refrigeration cycles driven by low-temperature heat sources using organic fluid mixtures as working pairs. Appl Energy 68:173–185
16.
go back to reference Henning H-M, Urbaneck T, Morgenstern A, Nunez T, Wiemke E, Thümmler E, Uhlig U (2009a) Kuhlen und Klimatisieren mit Warme. Solarpraxis AG, Berlin Henning H-M, Urbaneck T, Morgenstern A, Nunez T, Wiemke E, Thümmler E, Uhlig U (2009a) Kuhlen und Klimatisieren mit Warme. Solarpraxis AG, Berlin
17.
go back to reference Kren C (2008) Flue gas fired absorption chillers. Dissertation. Technische Universität München – TUM Physik Department, Lehrstuhl fur Physik E19 Kren C (2008) Flue gas fired absorption chillers. Dissertation. Technische Universität München – TUM Physik Department, Lehrstuhl fur Physik E19
18.
go back to reference Richter L (2008) Mehrstufige Absorptionskälteanlagen in Energieverbundanlagen. KI Luft Kältetechnik 3:131–135 Richter L (2008) Mehrstufige Absorptionskälteanlagen in Energieverbundanlagen. KI Luft Kältetechnik 3:131–135
19.
go back to reference Stadler M, Lipman T, Marnay C (2007) Current trends of decentralized CHP integration – the Californian investment subsidy system and its implication for the energy efficiency directive. Office of Electric Transmission and Distribution, Office of Electric Transmission and Distribution, U.S. Department of Energy under Contract No DE-AC02-05CH11231. http://eetd.lbl.gov/ Stadler M, Lipman T, Marnay C (2007) Current trends of decentralized CHP integration – the Californian investment subsidy system and its implication for the energy efficiency directive. Office of Electric Transmission and Distribution, Office of Electric Transmission and Distribution, U.S. Department of Energy under Contract No DE-AC02-05CH11231. http://​eetd.​lbl.​gov/​
22.
go back to reference Simader GR, Rakos C (2005) Klimatisierung, KOhlung und Klimaschutz: Technologien, Wirtschaftlichkeit und CO2-Reduktionspotentiale Materialband Stand der Technologie, Wirtschaftlichkeit, Potenziale, Emissionen und Fallstudien. Austrian Energy Agency, Vienna. http://www.energyagency.at Simader GR, Rakos C (2005) Klimatisierung, KOhlung und Klimaschutz: Technologien, Wirtschaftlichkeit und CO2-Reduktionspotentiale Materialband Stand der Technologie, Wirtschaftlichkeit, Potenziale, Emissionen und Fallstudien. Austrian Energy Agency, Vienna. http://​www.​energyagency.​at
23.
go back to reference Anyanwu EE (2004) Review of solid adsorption solar refrigeration II: an overview of the principles and theory. Energy Convers Manag 45:1279–1295 Anyanwu EE (2004) Review of solid adsorption solar refrigeration II: an overview of the principles and theory. Energy Convers Manag 45:1279–1295
24.
go back to reference Gassel A (2002) Die Adsorptionskältemaschine-Betriebser-fahrungen, thermodynam. Model und TRNSYS-simulation. KI Luft Kältetechnik 10:479–483 Gassel A (2002) Die Adsorptionskältemaschine-Betriebser-fahrungen, thermodynam. Model und TRNSYS-simulation. KI Luft Kältetechnik 10:479–483
25.
go back to reference Yattara A, Zhu Y, Mosa AM (2003) Comparison between solar single-effect and single-effect double-lift absorption machines (Part I). Appl Thermal Eng 23(15):1981–1992 Yattara A, Zhu Y, Mosa AM (2003) Comparison between solar single-effect and single-effect double-lift absorption machines (Part I). Appl Thermal Eng 23(15):1981–1992
26.
go back to reference Henning H-M, Pagano T, Mola S, Wiemken E (2005) Micro trigeneration system for indoor air conditioning in the Mediterranean climate. Appl Thermal Eng 27:2188–2194 Henning H-M, Pagano T, Mola S, Wiemken E (2005) Micro trigeneration system for indoor air conditioning in the Mediterranean climate. Appl Thermal Eng 27:2188–2194
28.
go back to reference Florides GA, Tassou SA, Kalogirou SA, Wrobel LC (2002) Review of solar and low energy cooling technologies for buildings. Renew Sust Energ Rev 6:557–572 Florides GA, Tassou SA, Kalogirou SA, Wrobel LC (2002) Review of solar and low energy cooling technologies for buildings. Renew Sust Energ Rev 6:557–572
30.
go back to reference Henning H-M (2007b) Solar assisted air conditioning of buildings – an overview. Appl Thermal Eng 27:1734–1749 Henning H-M (2007b) Solar assisted air conditioning of buildings – an overview. Appl Thermal Eng 27:1734–1749
31.
go back to reference Motta M, Henning H-M (2004) An advanced solar assisted sorption cycle for building air conditioning: the ECOS potential and performance assessment. In: Proceedings of the EuroSun 2004, 5th ISES Europe solar congress, Freiburg, 1–4 June 2004 Motta M, Henning H-M (2004) An advanced solar assisted sorption cycle for building air conditioning: the ECOS potential and performance assessment. In: Proceedings of the EuroSun 2004, 5th ISES Europe solar congress, Freiburg, 1–4 June 2004
32.
go back to reference Lowenstein A (2008) Review of liquid desiccant technology for HVAC applications. HVAC&R Res 14(6):819–840. American Society of Heating, Refrigerating and Air-Conditioning Engineers. http://www.ashrae.org Lowenstein A (2008) Review of liquid desiccant technology for HVAC applications. HVAC&R Res 14(6):819–840. American Society of Heating, Refrigerating and Air-Conditioning Engineers. http://​www.​ashrae.​org
33.
go back to reference Lowenstein A, Slayzak S, Kozubal E (2006) A zero carryover liquid-desiccant air conditioner for solar applications. In: Proceedings of the ISEC 2006, Denver, Paper No. ISEC2006-99079 Lowenstein A, Slayzak S, Kozubal E (2006) A zero carryover liquid-desiccant air conditioner for solar applications. In: Proceedings of the ISEC 2006, Denver, Paper No. ISEC2006-99079
34.
go back to reference Löwenstein A, Slayzak S, Ryan J, Pesaran A (1998) Advanced commercial liquid-desiccant technology development study, NREL/TP-550-24688. National Technical Information Service (NTIS), U.S. Department of Commerce Löwenstein A, Slayzak S, Ryan J, Pesaran A (1998) Advanced commercial liquid-desiccant technology development study, NREL/TP-550-24688. National Technical Information Service (NTIS), U.S. Department of Commerce
35.
go back to reference Keßling W, Lävemann E, Kapfhammer C (1998a) Energy storage for desiccant cooling systems component development. Sol Energy 64(4–6):209–221 Keßling W, Lävemann E, Kapfhammer C (1998a) Energy storage for desiccant cooling systems component development. Sol Energy 64(4–6):209–221
36.
go back to reference Keßling W, Lävemann E, Peltzer M (1998b) Energy storage in open cycle liquid desiccant cooling systems. Int J Refrig 21(2):150–156 Keßling W, Lävemann E, Peltzer M (1998b) Energy storage in open cycle liquid desiccant cooling systems. Int J Refrig 21(2):150–156
37.
go back to reference Alizadeh S, Saman W (2002) An experimental study of a forced-flow solar collector/regenerator using liquid desiccants. Sol Energy 73(5):345–362 Alizadeh S, Saman W (2002) An experimental study of a forced-flow solar collector/regenerator using liquid desiccants. Sol Energy 73(5):345–362
38.
go back to reference Krause M, Saman W, Heinzen R, Jordan U, Halawa E, Vajen K (2007a) Absorber and regenerator models for liquid desiccant air conditioning systems: validation and comparison using experimental data. In: Proceedings of the international solar energy conference ISES2007, Beijing Krause M, Saman W, Heinzen R, Jordan U, Halawa E, Vajen K (2007a) Absorber and regenerator models for liquid desiccant air conditioning systems: validation and comparison using experimental data. In: Proceedings of the international solar energy conference ISES2007, Beijing
39.
go back to reference Krause M, Saman W, Heinzen R, Jordan U, Halawa E, Vajen K (2007b) Validation and comparison of absorber and regenerator models for liquid desiccant air conditioning systems. In: Proceedings of the 2nd international conference solar air conditioning, Tarragona (ES), 18–19 Oct 2007 Krause M, Saman W, Heinzen R, Jordan U, Halawa E, Vajen K (2007b) Validation and comparison of absorber and regenerator models for liquid desiccant air conditioning systems. In: Proceedings of the 2nd international conference solar air conditioning, Tarragona (ES), 18–19 Oct 2007
40.
go back to reference Krause M, Saman W, Vajen K (2005) Open cycle liquid desiccant air conditioning systems – theoretical and experimental investigations. In: Proceedings of the 43rd ANZSES conference solar, Dunedin, 28–30 Nov 2005 Krause M, Saman W, Vajen K (2005) Open cycle liquid desiccant air conditioning systems – theoretical and experimental investigations. In: Proceedings of the 43rd ANZSES conference solar, Dunedin, 28–30 Nov 2005
41.
go back to reference Krause M, Saman W, Vajen K (2006) Optimisation of a regenerator for open cycle liquid desiccant air conditioning systems. In: Proceedings of the EuroSun 2006, Glasgow, 27–29 June 2006 Krause M, Saman W, Vajen K (2006) Optimisation of a regenerator for open cycle liquid desiccant air conditioning systems. In: Proceedings of the EuroSun 2006, Glasgow, 27–29 June 2006
42.
go back to reference Mesquita LCS, Harrison SJ, Thomey D (2006) Modeling of heat and mass transfer in parallel plate liquid-desiccant dehumidifiers. Sol Energy 80(11):1475–1482 Mesquita LCS, Harrison SJ, Thomey D (2006) Modeling of heat and mass transfer in parallel plate liquid-desiccant dehumidifiers. Sol Energy 80(11):1475–1482
43.
go back to reference Henning H-M, Urbaneck T et al (2009b) Kühlen und klimatisieren mit Wärme. Bine Informationsdienst. FIZ Karlsruhe, Solarpraxis Henning H-M, Urbaneck T et al (2009b) Kühlen und klimatisieren mit Wärme. Bine Informationsdienst. FIZ Karlsruhe, Solarpraxis
44.
go back to reference Kreider JF, Curtiss PS, Rabl A (2005) Heating and cooling of buildings design for efficiency, 2nd edn. McGraw-Hill, Singapore Kreider JF, Curtiss PS, Rabl A (2005) Heating and cooling of buildings design for efficiency, 2nd edn. McGraw-Hill, Singapore
45.
go back to reference Eicker U, Pietruschka D (2009) Optimization and economics of solar cooling systems advances in building energy research ABER. Earth 3(1):45–82 Eicker U, Pietruschka D (2009) Optimization and economics of solar cooling systems advances in building energy research ABER. Earth 3(1):45–82
49.
go back to reference Bejan A, Tsatsaronis G, Moran M (1996) Thermal design & optimization. Wiley, New YorkMATH Bejan A, Tsatsaronis G, Moran M (1996) Thermal design & optimization. Wiley, New YorkMATH
50.
go back to reference American Society of Heating, Refrigerating, and Air-Conditioning Engineers (2005) ASHRAE handbook – fundamentals, chapter 36. American Society of Heating, Refrigerating, and Air-Conditioning Engineers, Atlanta American Society of Heating, Refrigerating, and Air-Conditioning Engineers (2005) ASHRAE handbook – fundamentals, chapter 36. American Society of Heating, Refrigerating, and Air-Conditioning Engineers, Atlanta
51.
go back to reference Troll C, Wissmann VH, Creutzburg N, Paffen KH (1982) Alexander Weltatlas Neue Gesamtausgabe. Ernst Klett Verlage GmbH und Co, Stuttgart Troll C, Wissmann VH, Creutzburg N, Paffen KH (1982) Alexander Weltatlas Neue Gesamtausgabe. Ernst Klett Verlage GmbH und Co, Stuttgart
52.
go back to reference Henning H-M (2005) Solar thermal energy for air-conditioning of buildings – advanced technologies adapted to local climatic conditions. In: Proceedings of the 1st IBME conference, Bahrain, 5–7 Dec 2005 Henning H-M (2005) Solar thermal energy for air-conditioning of buildings – advanced technologies adapted to local climatic conditions. In: Proceedings of the 1st IBME conference, Bahrain, 5–7 Dec 2005
go back to reference Abdulateef JM, Sopian K, Alghoul MA, Sulaiman MY (2009) Review on solar-driven ejector refrigeration technologies. Renew Sust Energ Rev 13:1338–1349 Abdulateef JM, Sopian K, Alghoul MA, Sulaiman MY (2009) Review on solar-driven ejector refrigeration technologies. Renew Sust Energ Rev 13:1338–1349
go back to reference Adnot J (1999) Energy efficiency of room air-conditioners (EERAC). Study for the Directorate-General for Energy (DGXVII) of the Commission of the EC. Final report Adnot J (1999) Energy efficiency of room air-conditioners (EERAC). Study for the Directorate-General for Energy (DGXVII) of the Commission of the EC. Final report
go back to reference Alefeld G, Rademacher R (1994) Heat conversion systems. CRC Press, London Alefeld G, Rademacher R (1994) Heat conversion systems. CRC Press, London
go back to reference Alizadeh S, Saman WY (2002) Modeling and performance of a forced flow solar collector/regenerator using liquid desiccant. Sol Energy 72(2):143–154 Alizadeh S, Saman WY (2002) Modeling and performance of a forced flow solar collector/regenerator using liquid desiccant. Sol Energy 72(2):143–154
go back to reference ASHRAE (2000) Handbook 2000 HVAC systems and equipment, SIth edn. American Society of Heating, Refrigeration and AirConditioning, Atlanta ASHRAE (2000) Handbook 2000 HVAC systems and equipment, SIth edn. American Society of Heating, Refrigeration and AirConditioning, Atlanta
go back to reference ASHRAE (2002) Absorption cooling, heating and refrigeration equipment, Chapter 41. In: Handbook 2002 refrigeration, SI edn. American Society of Heating, Refrigeration, and AirConditioning, Atlanta ASHRAE (2002) Absorption cooling, heating and refrigeration equipment, Chapter 41. In: Handbook 2002 refrigeration, SI edn. American Society of Heating, Refrigeration, and AirConditioning, Atlanta
go back to reference Bermejo P, Pino FJ, Rosa F (2010) Solar absorption cooling plant in Seville. Sol Energy 84:1503–1512 Bermejo P, Pino FJ, Rosa F (2010) Solar absorption cooling plant in Seville. Sol Energy 84:1503–1512
go back to reference Chang W-S, Wang C-C, Shieh C-C (2009) Design and performance of a solar-powered heating and cooling system using silica gel/water adsorption chiller. Appl Thermal Eng 29:2100–2105 Chang W-S, Wang C-C, Shieh C-C (2009) Design and performance of a solar-powered heating and cooling system using silica gel/water adsorption chiller. Appl Thermal Eng 29:2100–2105
go back to reference Choudhury B, Chatterjee K, Sarkar JP (2010) Review paper on solar-powered air-conditioning through adsorption route. Renew Sust Energ Rev 14:2189–2195 Choudhury B, Chatterjee K, Sarkar JP (2010) Review paper on solar-powered air-conditioning through adsorption route. Renew Sust Energ Rev 14:2189–2195
go back to reference Collier RKJ (1997) Desiccant dehumidification and cooling systems assessment and analysis. Pacific Northwest National Laboratory, Richland/Washington, DC Collier RKJ (1997) Desiccant dehumidification and cooling systems assessment and analysis. Pacific Northwest National Laboratory, Richland/Washington, DC
go back to reference Dannies JH (1951) Die Absorptionskaltemaschine. BrOcke Verlag Kurt Schmersow, Hannover Dannies JH (1951) Die Absorptionskaltemaschine. BrOcke Verlag Kurt Schmersow, Hannover
go back to reference Duffie JA, Beckman WA (1991) Solar engineering of thermal processes, 2nd edn. Wiley, New York Duffie JA, Beckman WA (1991) Solar engineering of thermal processes, 2nd edn. Wiley, New York
go back to reference Eicker U, Pietruschka D (2009) Design and performance of solar powered absorption cooling systems in office buildings. Energ Buildings 41:81–91 Eicker U, Pietruschka D (2009) Design and performance of solar powered absorption cooling systems in office buildings. Energ Buildings 41:81–91
go back to reference European standard: floor heating – systems and components (/EN-1264-1,2,3 1997 and EN-1264-4 2001/) European standard: floor heating – systems and components (/EN-1264-1,2,3 1997 and EN-1264-4 2001/)
go back to reference Franzke U (2001) Personal communication, Institut fur Luft- und Kältetechnik (ILK), Dresden Franzke U (2001) Personal communication, Institut fur Luft- und Kältetechnik (ILK), Dresden
go back to reference Lane GA (1986) Phase change materials. In: Solar heat storage: latent heat material, vol II. CRC-Press, Boca Raton Lane GA (1986) Phase change materials. In: Solar heat storage: latent heat material, vol II. CRC-Press, Boca Raton
go back to reference Marc O, Lucas F, Sinama F, Monceyron E (2010) Experimental investigation of a solar cooling absorption system operating without any backup system under tropical climate. Energ Buildings 42:774–782 Marc O, Lucas F, Sinama F, Monceyron E (2010) Experimental investigation of a solar cooling absorption system operating without any backup system under tropical climate. Energ Buildings 42:774–782
go back to reference Niebergall W (1981) Handbuch der Kältetechnik Band 7: Sorptions-kältemaschinen. Springer, Berlin Niebergall W (1981) Handbuch der Kältetechnik Band 7: Sorptions-kältemaschinen. Springer, Berlin
go back to reference Pesaran AA, Penney TR, Czanderna AW (1992) Desiccant cooling: state-of-the-art assessment. NREL, Golden Pesaran AA, Penney TR, Czanderna AW (1992) Desiccant cooling: state-of-the-art assessment. NREL, Golden
go back to reference Santamouris M, Asimakopoulos D (1996) Passive cooling of buildings. James & James, London Santamouris M, Asimakopoulos D (1996) Passive cooling of buildings. James & James, London
go back to reference Sayigh AAM, McVeigh JC (1992) Solar air conditioning and refrigeration. Pergamon Press, Oxford Sayigh AAM, McVeigh JC (1992) Solar air conditioning and refrigeration. Pergamon Press, Oxford
go back to reference Schicktanz M, Nunez T (2009) Modelling of an adsorption chiller for dynamic system simulation. Int J Refrig 32:588–595 Schicktanz M, Nunez T (2009) Modelling of an adsorption chiller for dynamic system simulation. Int J Refrig 32:588–595
go back to reference Wang RZ, Ge TS, Chen CJ, Ma Q, Xiong ZQ (2009) Solar sorption cooling systems for residential applications: options and guidelines. Int J Refrig 32:638–660 Wang RZ, Ge TS, Chen CJ, Ma Q, Xiong ZQ (2009) Solar sorption cooling systems for residential applications: options and guidelines. Int J Refrig 32:638–660
Metadata
Title
Solar Cooling Systems
Author
Hans-Martin Henning
Copyright Year
2022
Publisher
Springer US
DOI
https://doi.org/10.1007/978-1-0716-1422-8_690