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Effect of heat exchanger materials on the performance of adsorption chiller

机译:换热器材料对吸附冷却器性能的影响

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The effect of adsorber heat exchanger (adHEX) material on the system performance of a silica gel-water, fin-tube type adsorption chiller was investigated for three typical materials, aluminum (Al), copper (Cu) and stainless steel (SS), following both the first and second laws of thermodynamics. High thermal conductivity was expected to shorten switching time and prolong adsorption/desorption period, and consequently result in a larger amount of water vapor, and lower thermal mass. In other words, since the product of density and heat capacity increases the heat supplied to the system, higher thermal performance was expected for Cu. However, preliminary calculations failed to confirm the expectation. This study examined the causes by artificially changing the Al thermo-physical properties to those of the Cu and SS. Above a threshold thermal conductivity, the main cause was found to be the material's density, and below the threshold, thermal conductivity was most important. The Al adHEX showed 0.518 of COP, 221 W/kg of SCP and 0.115 of eta(e), which were 6.85 % and 6.53 % higher in COP and exergy efficiency than the Cu adHEX.
机译:吸附剂热交换器(ADHEX)材料对三种典型材料,铝(Al),铜(Cu)和不锈钢(SS)进行了三种典型材料的系统性能的影响。遵循热力学的第一和第二定律。预期高导热率为缩短切换时间并延长吸附/解吸时期,因此导致较大量的水蒸气和较低的热质量。换句话说,由于密度和热容量的乘积增加了所提供给系统的热量,因此预期铜的热性能较高。但是,初步计算未能确认期望。该研究通过人工改变Al热物理性质与Cu和Ss的那些进行检查。以上阈值导热率,发现主要原因是材料的密度,且低于阈值,导热率最为重要。 Al Adhex显示出0.518的COP,221W / kg SCP和0.115的ETA(e),其COP和Deertgy效率高6.85%和6.53%,而不是Cu Adhex。

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