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Nusselt number correlation for compact heat exchangers in transition regimes

机译:转型制度紧凑型换热器的篮板数相关

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A compact heat exchanger is characterized by high heat transfer rates in small volumes. Basically it can be considered as a solid metal block where hot and cold fluid streams flow through mini or micro channels. The fluids usually flow in laminar regime, but the equipment can also operate in transition and in turbulent regimes. However, no model for the transition flow regimes, applied to compact heat exchangers, is available in the literature, as the few papers in this subject are usually focused in the classical correlations. The present work performed a theoretical and experimental thermal analysis of the laminar and transition flows in a diffusion bonded cross flow compact heat exchanger and proposed a new Nusselt number correlation for the transition regime. The theoretical model and the main correlations for laminar, turbulent and transition regime are presented. To validate the model, a stainless steel cut plate heat exchanger, with 450 square channels of 3 mm edge, was manufactured. The test facility was designed to operate with hot water and air at ambient temperature. The tests were performed with different mass flow rates, operating with Reynolds numbers between 360 and 2500. The theoretical and experimental results compared well, with theoretical data located within the range of the experimental uncertainty. However, for high Reynolds numbers, greater than 1650, the difference between the results tended to increase. Due to limitations of existing correlations, a Nusselt number correlation for air flow in the transition region and the liquid under constant temperature conditions, based on the asymptotic correlation method, is proposed for compact heat exchangers. The new model provides a smooth transition from the developing laminar flow to the turbulent. To validate the equation, a new test set was performed, and the proposed correlation presented a good accuracy in the transition regime.
机译:紧凑型热交换器的特征在于小容量的高传热速率。基本上它可以被认为是固体金属块,其中热和冷流体流过迷你或微通道。流体通常在层流状态下流动,但设备也可以在过渡和湍流方案中运行。然而,没有应用于紧凑型热交换器的过渡流动制度的模型,在文献中可用,因为该受试者的少数纸通常集中在经典相关中。本工作对扩散粘合的交叉流动紧凑型热交换器中的层流和过渡流进行了理论和实验热分析,并提出了一种用于过渡方案的新的尤塞格数相关性。提出了层流,湍流和过渡制度的理论模型和主要相关性。为了验证模型,制造了一个不锈钢切割板式热交换器,具有450平方通道的3毫米边缘。测试设施旨在在环境温度下用热水和空气运行。该测试以不同的质量流速进行,在360和2500之间的雷诺数操作。理论和实验结果较好,具有位于实验性不确定性范围内的理论数据。然而,对于高于1650的高雷诺数,结果之间的差异趋于增加。由于现有相关性的限制,基于渐近相关方法提出了一种基于渐近相关方法的过渡区域和恒温条件下的过渡区域和液体中的空气流量的露起数相关。新模型提供了从显影层流向湍流的平滑过渡。为了验证等式,执行了一种新的测试集,所提出的相关性在过渡方案中呈现了良好的准确性。

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