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Real Air-Conditioning Performance of Ejector Refrigerator Based Air-Conditioner Powered by Low Temperature Heat Source

机译:基于喷射器冰箱的空调性能的空调,由低温热源供电

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摘要

In this present work, the air-conditioning test performance of an ejector refrigerator-based air-conditioner (ERAC) was proposed. The ERAC was operated as the water chiller to produce the cooling load up to 4.5 kW. The chilled water temperature was later supplied to the fan-coil unit for producing the thermal comfort condition. The cooling water used to cool the condenser was achieved from the cooling tower which was operated under the hot and humid ambient. This is to demonstrate the feasibility of using the ERAC in real working conditions. The cooling load supplied to the air-conditioned space was applied by the air heater. The ERAC could efficiently be operated to produce the thermal comfort condition which was driven by the hot water temperature (Thot) of 90–98 °C. The system performance could vary with the heat source temperatures, cooling load, primary nozzle, and air-conditioned space temperature. The optimal performance was determined when varying the Thot, and, hence, the optimal Thot was indicated. The optimal Thot varied significantly with variations in the working condition. The test results demonstrated high potential to further using the ejector refrigeration system in the actual air conditioning application.
机译:在本工作中,提出了喷射器冰箱的空调(ERAC)的空调测试性能。 ERAC作为水冷却器操作,以产生高达4.5千瓦的冷却负载。稍后将冷却的水温供应到风扇线圈单元,以产生热舒适度。用于冷却冷凝器的冷却水从冷却塔中实现,该冷却塔在热和潮湿的环境下操作。这是为了证明在实际工作条件下使用ERAC的可行性。供应到空调空间的冷却载荷由空气加热器施加。 ERAC可以有效地操作以产生由90-98℃的热水温度(TNOT)驱动的热舒适性。系统性能可能随热熔温度,冷却负载,初级喷嘴和空调空间温度而变化。在改变T点时确定最佳性能,因此指示最佳点。最佳T点随着工作条件的变化而变化。测试结果表明了在实际空调应用中使用喷射器制冷系统的高潜力。

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