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Analysis of heat rejection from an actual large-scale air-conditioned office building by field measurements and numerical simulations

机译:通过现场测量和数值模拟分析实际的大型空调办公大楼的散热

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The actual value of the heat rejection through the cooling towers from the air-conditioning system of the typical large-scale office building is measured in the tropical summer climate of Shenzhen. The daily average measured value of the total heat rejection per unit building area is 82.75 W/m(2) during weekdays. During the weekend, this value is only 20.24W/m(2), i.e., about 1/4 of that found for the weekdays, which is attributable to the less activity of building. The proportion of the sensible heat rejection is only 1.15%, and even attains a negative value when the inlet water temperature is lower than the inlet air temperature of the cooling towers. To evaluate quantitatively the effect of the heat rejection from the air-conditioning system on the urban thermal climate, the heat-rejection efficiency ratio (HRER) is presented in this study, for which the average measured value during weekdays is 1.35. In addition, a heat-rejection numerical model is developed, and the heat-rejection simulation results generally agree well with the field test data. The results indicate that the hot and humid climatic conditions impair the heat and the mass transfer efficiency of the cooling towers, and ultimately reduce the heat rejection from the building air-conditioning system. (C) 2015 Elsevier B.V. All rights reserved.
机译:典型的大型办公大楼的空调系统通过冷却塔排热的实际值是在深圳热带夏季气候下测得的。在工作日中,每单位建筑物区域总散热量的日平均测量值为82.75 W / m(2)。在周末期间,该值仅为20.24W / m(2),即约在工作日发现的值的1/4,这归因于建筑物的活动较少。显热排放的比例仅为1.15%,甚至当进水温度低于冷却塔的进风温度时甚至达到负值。为了定量评估空调系统排热对城市热气候的影响,本研究提出了排热效率比(HRER),其平日的平均测量值为1.35。另外,建立了排热数值模型,排热模拟结果与现场试验数据基本吻合。结果表明,炎热和潮湿的气候条件会损害冷却塔的热量和传质效率,并最终减少建筑物空调系统的散热。 (C)2015 Elsevier B.V.保留所有权利。

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