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首页> 外文期刊>International Journal of Refrigeration >Numerical and experimental evaluation of ice storages with ice on capillary mat heat exchangers for solar-ice systems
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Numerical and experimental evaluation of ice storages with ice on capillary mat heat exchangers for solar-ice systems

机译:用于太阳能 - 冰系统毛细管垫型冰床冰床的数值和实验评价

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摘要

Four capillary mat heat exchangers set-ups have been experimentally evaluated using two volume flow rates and several testing sequences, i.e. sensible and cooling, icing and melting. An ice storage model with capillary mat heat exchangers able to consider the solidification of ice for asymmetric tube configurations has been developed and validated with the experiments. The model showed good results with root mean square (RMS) energy differences around 2% for sensible heating and cooling and was able to predict the solidification of ice well for both symmetric and non-symmetric configurations with energy RMS differences of 6%. Differences in sensible heating and cooling, and in the solidification process, were in general in the same order of magnitude for varying volume flow rate and tube spacing in the two dimensions. Differences of the melting process were found to be more dependent on the tube spacing and volume flow rates. (c) 2018 Elsevier Ltd and IIR. All rights reserved.
机译:已经使用两个体积流速和几种测试序列进行了四种毛细管型热交换器设置,即显现性和冷却,糖化和熔化。 通过实验开发并验证了一种具有毛细管型热交换器的毛细管垫型热交换器,并验证了不对称管配置的凝固。 该模型显示出良好的均线(RMS)能量差异约为2%,用于显着加热和冷却,并且能够预测对称和非对称配置的冰阱的凝固,能量RMS差异为6%。 差异在显着和冷却和凝固过程中,通常以相同的数量级,用于不同的体积流量和两维管间距。 发现熔化过程的差异更加依赖于管间距和体积流速。 (c)2018年Elsevier Ltd和IIR。 版权所有。

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