Operation strategy of a solar-gas fired single/double effect absorption chiller for space cooling in Indonesia

被引:24
作者
Alhamid, M., I [1 ]
Coronas, Alberto [2 ]
Lubis, Arnas [1 ]
Ayou, Dereje S. [2 ]
Nasruddin [1 ]
Saito, Kiyoshi [3 ]
Yabase, Hajime [3 ]
机构
[1] Univ Indonesia, Fac Engn, Dept Mech Engn, Depok 16424, Indonesia
[2] Univ Rovira & Virgili, CREVER Grp Appl Thermal Engn, Avda Paisos Catalans 26, Tarragona 43007, Spain
[3] Waseda Univ, Fac Sci & Engn, Shinjuku Ku, Tokyo 1698555, Japan
关键词
Control strategy; Dynamic operation; Direct-fired double-effect; Single/double-effect water/LiBr chiller; Solar thermal cooling; Asian tropical climate; AIR-CONDITIONING SYSTEM; PERFORMANCE; DRIVEN; PROTOTYPE;
D O I
10.1016/j.applthermaleng.2020.115524
中图分类号
O414.1 [热力学];
学科分类号
摘要
A solar-gas fired absorption cooling system has been installed and tested in a real environment at the University of Indonesia, Depok, Indonesia. The cooling system provides chilled water to the building of the Mechanical Research Center of the university. This system has a unique single/double-effect water/Lithium Bromide absorption chiller with a nominal cooling capacity of 239 kW. In addition, the system consists of evacuated tube solar collectors (similar to 181 m(2) total aperture area) and fan coil units installed in the building. The absorption chiller is driven by (i) hot water (75 - 90 degrees C) produced by the solar collectors which supply heat to the single-effect generator and (ii) by a direct gas-fired burner at the double-effect high-temperature generator when it is needed. The driving heat supply from the gas-burner is 113.2 kW and 93.3 kW (at 90 degrees C) from the solar collector field. This study focuses on the control strategy of the solar-gas fired absorption chiller system based on operational data obtained from the field test carried out in an Asian tropical climate, particularly Indonesia. The proposed and implemented control strategy consists of the control of both external and internal operation variables. The external control strategy includes the control of three water flow loops (hot water, cooling water, and chilled water) that are controlled according to the cooling load of the building and weather conditions (i.e., solar irradiation and ambient temperature). The internal operation variable (total solution flow rate) and gas flow rate are adjusted according to the required cooling capacity. The field tests of thermal and electrical COP are around 0.9-1.1 and 4.5-5.5, respectively. The field test results demonstrate the feasibility of the implemented control strategy for the optimum and safe operation of the system in an Indonesian climate, with the possibility of adapting to other similar Asian tropical climates.
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收藏
页数:14
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共 41 条
[1]   Natural and synthetic refrigerants, global warming: A review [J].
Abas, Naeem ;
Kalair, Ali Raza ;
Khan, Nasrullah ;
Haider, Aun ;
Saleem, Zahid ;
Saleem, Muhammad Shoaib .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2018, 90 :557-569
[2]   Review on solar-driven ejector refrigeration technologies [J].
Abdulateef, J. M. ;
Sopian, K. ;
Alghoul, M. A. ;
Sulaiman, M. Y. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2009, 13 (6-7) :1338-1349
[3]   Design and experimental testing of the performance of an outdoor LiBr/H2O solar thermal absorption cooling system with a cold store [J].
Agyenim, Francis ;
Knight, Ian ;
Rhodes, Michael .
SOLAR ENERGY, 2010, 84 (05) :735-744
[4]   Comprehensive strategies for performance improvement of adsorption air conditioning systems: A review [J].
Alahmer, Ali ;
Ajib, Salman ;
Wang, Xiaolin .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2019, 99 :138-158
[5]   New absorption chiller and control strategy for the solar assisted cooling system at the German federal environment agency [J].
Albers, Jan .
INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2014, 39 :48-56
[6]   Review and recent improvements of solar sorption cooling systems [J].
Bataineh, Khaled ;
Taamneh, Yazan .
ENERGY AND BUILDINGS, 2016, 128 :22-37
[7]   Solar absorption cooling plant in Seville [J].
Bermejo, Pablo ;
Javier Pino, Francisco ;
Rosa, Felipe .
SOLAR ENERGY, 2010, 84 (08) :1503-1512
[8]   Experimental results of different control strategies in a solar air-conditioning system at part load [J].
Bujedo, Luis A. ;
Rodriguez, Juan ;
Martinez, Pedro J. .
SOLAR ENERGY, 2011, 85 (07) :1302-1315
[9]   Experimental energy performance assessment of a solar desiccant cooling system in Southern Europe climates [J].
Comino, F. ;
Castillo Gonzalez, J. ;
Navas-Martos, F. J. ;
Ruiz de Adana, M. .
APPLIED THERMAL ENGINEERING, 2020, 165
[10]   Feasibility of a small-scale hybrid dish/flat-plate solar collector system as a heat source for an absorption cooling unit [J].
Figaj, Rafal ;
Szubel, Mateusz ;
Przenzak, Estera ;
Filipowicz, Mariusz .
APPLIED THERMAL ENGINEERING, 2019, 163