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Investigation of the residence time distribution in a plate heat exchanger with series and parallel arrangements using a non-ideal tracer detection technique

机译:使用非理想示踪剂检测技术研究串联和并联布置的板式换热器中的停留时间分布

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The objective was to study the flow pattern in a plate heat exchanger (PHE) through residence time distribution (RTD) experiments. The tested PHE had flat plates and it was part of a laboratory scale pasteurization unit. Series flow and parallel flow configurations were tested with a variable number of passes and channels per pass. Owing to the small scale of the equipment and the short residence times, it was necessary to take into account the influence of the tracer detection unit on the RTD data. Four theoretical RTD models were adjusted: combined, series combined, generalized convection and axial dispersion. The combined model provided the best fit and it was useful to quantify the active and dead space volumes of the PHE and their dependence on its configuration. Results suggest that the axial dispersion model would present good results for a larger number of passes because of the turbulence associated with the changes of pass. This type of study can be useful to compare the hydraulic performance of different plates or to provide data for the evaluation of heat-induced changes that occur in the processing of heat-sensitive products.
机译:目的是通过停留时间分布(RTD)实验研究板式换热器(PHE)中的流型。所测试的PHE具有平板,并且是实验室规模的巴氏灭菌装置的一部分。测试了串联流和并联流配置,每个通道具有可变数量的通道和通道。由于设备规模小且停留时间短,因此必须考虑示踪剂检测单元对RTD数据的影响。调整了四种理论RTD模型:组合,串联组合,广义对流和轴向弥散。组合模型提供了最佳拟合,对于量化PHE的活动空间和死空间体积以及它们对配置的依赖性非常有用。结果表明,轴向弥散模型将为大量通过提供良好的结果,因为与通过变化相关的湍流。这种类型的研究可用于比较不同印版的水力性能或为评估热敏产品加工过程中发生的热致变化提供数据。

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