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Modeling of a Refrigerator in Disaster Vehicle, Using Solar Energy and Engine Exhaust Gases Heat

机译:利用太阳能和发动机废气热量对灾害车辆冰箱的建模

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In critical situations such as floods and earthquakes, the relief forces require a refrigeration for Pharmaceuticals and vaccines, which could operate without an electrical energy and the alternative energies, such as solar energy, engine exhaust gases heat, and wind energy. In this paper, a refrigeration cycle has been modeled as an adsorption refrigeration cycle with an activated carbon/methanol as adsorbent/adsorbate pair and two sources of energy-solar energy and engine exhaust gases heat. The solar cycle had a collector with area of 1 m and the exhaust gas cycle included a heat exchanger with 100 ℃ temperature difference between inlet and outlet gases. The temperature profile in adsorbent bed, evaporator, and condenser was obtained from modeling. Moreover, the pressure profile, overall heat transfer coefficient of collector and adsorbent bed, concentration, and the solar radiation were reported. Results represented the coefficient of performance (COP) of 0.55, 0.2, and 0.56 for complete system, solar adsorption refrigeration, and exhaust heat adsorption refrigeration, respectively. In addition, exhaust heat adsorption refrigeration has a value of 2.48 of specific cooling power (SCP). These results bring out a good performance of the proposed model in the climate of Iran.
机译:在洪水和地震等紧急情况下,救援部队需要对药品和疫苗进行冷藏,这种冷藏可以在没有电能和太阳能,发动机废气热能和风能等替代能源的情况下进行。在本文中,制冷循环被建模为吸附制冷循环,其中活性炭/甲醇作为吸附剂/被吸附物对,以及两个能量-太阳能和发动机废气热源。太阳循环有一个面积为1 m的集热器,废气循环包括一个热交换器,其入口和出口气体之间的温差为100℃。通过建模获得吸附床,蒸发器和冷凝器中的温度曲线。此外,还报告了压力曲线,集热器和吸附剂床的总传热系数,浓度和太阳辐射。对于整个系统,太阳吸附制冷和排热吸附制冷,结果分别表示性能系数(COP)为0.55、0.2和0.56。另外,废热吸收制冷的比冷却功率(SCP)值为2.48。这些结果证明了该模型在伊朗气候下的良好性能。

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