首页> 外文会议>International Institute of Refrigeration (Institut International du Froid;IIR conference on phase-change materials and slurries for refrigeration and air conditioning >COMPARISON OF HEAT TRANSFER AND PRESSURE DROP CORRELATIONS FOR EVAPORATION OF ZEOTROPIC MIXTURES IN PLATE HEAT EXCHANGERS
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COMPARISON OF HEAT TRANSFER AND PRESSURE DROP CORRELATIONS FOR EVAPORATION OF ZEOTROPIC MIXTURES IN PLATE HEAT EXCHANGERS

机译:板式换热器中共沸混合物蒸发的传热和压降相关性比较

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Zeotropic mixtures offer a possibility of optimizing heat pump cycle design by matching the working fluidtemperature glide to the heat source and sink temperature profiles. Suitable heat transfer and pressure dropprediction methods are of paramount importance to evaluate the performance of plate heat exchangers (PHE)using such fluids. It is therefore relevant to evaluate the uncertainty in PHE performance estimation whenzeotropic mixtures are used as working fluids. In this work, different correlations for the (Silver, 1947) and(Bell and Ghaly, 1973) method were compared to evaluate the evaporation heat transfer coefficient of mixturesof CO_2 and hydrocarbons at different mass compositions and subject to heat source temperature glides of 10K, 15 K and 20 K. Moreover, the impact of using different pressure drop models and correlations was includedin the sensitivity study on the evaporator performance. Maximum deviations of 6 % and 10 % were obtainedon the total heat transfer rate, depending on the prediction method chosen for the heat transfer coefficient andpressure drop, respectively. Larger discrepancies were found in the estimation of the mean UA value and totalfrictional pressure drops. Working fluids subject to the largest glide of 20 K resulted to be more sensitive tothe choice of the prediction method. No recommended set of correlation was found, but similarities anddifferences between the different mixtures were identified and discussed.
机译:共沸混合物通过匹配工作流体提供了优化热泵循环设计的可能性 温度会滑至热源和散热器的温度曲线。合适的传热和压降 预测方法对于评估板式换热器(PHE)的性能至关重要 使用这种液体。因此,在以下情况下评估PHE性能评估中的不确定性很重要 共沸混合物用作工作流体。在这项工作中,(Silver,1947)和 (Bell and Ghaly,1973)方法进行了比较,以评估混合物的蒸发传热系数 质量组成不同且受热源温度滑移影响为10的CO_2和碳氢化合物的变化 K,15 K和20K。此外,还包括使用不同压降模型和相关性的影响 在对蒸发器性能的敏感性研究中。获得的最大偏差为6%和10% 总传热率,取决于为传热系数选择的预测方法,以及 压降分别。在平均UA值和总UA的估计中发现更大的差异 摩擦压降。最大滑移量为20 K的工作液对油液更敏感 预测方法的选择。找不到推荐的相关集,但相似之处和相似之处 确定并讨论了不同混合物之间的差异。

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