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Logarithmic Mean Pressure Difference—A New Concept in the Analysis of the Flow Distribution in Parallel Channels of Plate Heat Exchangers

机译:对数平均压差-板式换热器平行通道内流量分布分析的新概念

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This paper deals with a new concept of logarithmic mean pressure difference (LMPD) to find an accurate mean or true friction coefficient for variable flow in parallel flow channels of the plate heat exchangers while considering the first and the last channel pressure drops. This is analogous to the log mean temperature difference (LMTD) used for the computation of heat transfer in heat exchangers. A method has been suggested to improve the computation of mean or a newly defined "true friction factor" and the mean velocity for considerable flow variations in the channels. A comparative study has been made between the conventional average friction factor and the true mean friction factor for large parallel channels. The results have also been compared between the mean channel pressure drop and LMPD for different sizes of the channels. The analysis shows that the mean channel pressure drop of parallel channels can be predicted accurately by using the so-called true mean friction factor rather than the average friction factor. Using the LMPD method, one can find the last channel pressure drop by knowing the first channel pressure drop of the plate package. Hence, the nature of flow distribution in parallel channels can be predicted easily.
机译:本文讨论了对数平均压差(LMPD)的新概念,以在考虑第一个和最后一个通道压降的情况下,为板式换热器的平行流道中的可变流量找到准确的平均或真实摩擦系数。这类似于用于计算热交换器中传热的对数平均温度差(LMTD)。已经提出了一种方法来改进通道中相当大的流量变化的平均值或新定义的“真实摩擦因数”和平均速度的计算。在大型平行通道的常规平均摩擦系数和真实平均摩擦系数之间进行了比较研究。还比较了不同尺寸通道的平均通道压降和LMPD之间的结果。分析表明,通过使用所谓的真实平均摩擦因数而不是平均摩擦因数,可以准确地预测平行通道的平均通道压降。使用LMPD方法,可以通过知道板包装的第一个通道压降来找到最后一个通道压降。因此,可以容易地预测平行通道中的流动分布的性质。

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