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Thermal performance investigation of an integrated collector-storage solar air heater on the basis of lap joint-type flat micro-heat pipe arrays: Simultaneous charging and discharging mode

机译:基于LAP接头型扁平微型热管阵列的集成集电极储存太阳能加热器的热性能研究:同时充电和放电模式

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In this part of the investigation, the thermal performance of an integrated collector storage solar air heater (ICSSAH) on the basis of a lap joint-type flat micro-heat pipe array during simultaneous charging and discharging mode is experimentally studied. Paraffin is used as a phase change material, and air acts as a heat transfer fluid in a built-out structure of ICSSAH. The thermal performance of ICSSAH is assessed under an outdoor experiment to explore the effect of seasonality, volume flow rate, and daily accumulative solar radiation. Thermal energy analysis is described and calculated in detail according to the experimental measurements. Results showed that the daily mean thermal efficiency in summer is significantly higher than the transition season. The smaller the volume flow rate is, the lower the thermal efficiency will be. However, the effect of solar radiation on thermal efficiency is small during the test conditions. The highest daily thermal efficiency at the volume flow rate of 141 m(3)/h is approximately 78.1% in the present study when the solar irradiance ranges from 0 W/m(2) to 874 W/m(2) and the ambient temperature varies from 27.8 degrees C to 35.4 degrees C. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在该部分的研究中,通过实验研究了在同时充电和放电模式期间基于LAP接头型平面微热管阵列的集成集电极存储太阳能空气加热器(ICSSAH)的热性能。石蜡用作相变材料,空气用作ICSAH的内置结构中的传热流体。 ICSSAH的热性能在室外实验下进行评估,以探索季节性,体积流量和日常累积太阳辐射的影响。根据实验测量,详细描述和计算热能分析。结果表明,夏季的每日平均热效率明显高于过渡季节。体积流量越小,热效率越低。然而,在测试条件下,太阳辐射对热效率的影响很小。当太阳辐照度为0W / m(2)至874W / m(2)和环境时,在本研究中,在本研究中的最高每日热效率约为78.1%。温度从27.8摄氏度变化到35.4摄氏度C.(c)2019 Elsevier Ltd.保留所有权利。

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