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Influence of manifold heating and split flow on thermal-hydraulic characteristics: Application to heat exchangers having non-axisymmetric flow

机译:歧管加热和分流对热液压特性的影响:应用于具有非轴对称流动的热交换器

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The flow distribution from a manifold to tubes occurs in the tube side of a shell and tube heat exchanger. The tubes increase the contact surface area thus improving the thermal performance, with an accompanied pressure loss due to the split and smaller hydraulic diameter after the split. The surface conditions of uniform temperature and heat flux are examined. Additionally, the manifold is subjected to the same thermal conditions to examine the impact on thermal-hydraulic performance. Three layouts are being considered, including a single tube, 4 tube, and 37 tube system. It is found that for a combined manifold and tube heating, a non-axisymmetric flow exists in the smaller tubes. To accommodate such flow behavior, it is recommended to define the thermal axis at the minimum temperature for each cross-section, to calculate the peripheral Nusselt number distribution. This procedure is applied to different channel geometries subjected to non-axisymmetric inflow from the heated manifold. All the computed results presented in this paper are also validated against the results available in the literature. (C) 2017 Elsevier Ltd. All rights reserved.
机译:从歧管到管的流动分布发生在壳体和管热交换器的管侧。管子增加了接触表面区域,从而提高了热性能,由于分裂后由于分裂和较小的液压直径而具有伴随的压力损失。检查均匀温度和热通量的表面条件。另外,歧管经受相同的热条件,以检查对热液压性能的影响。正在考虑三个布局,包括单管,4管和37个管系统。结果发现,对于组合歧管和管加热,在较小的管中存在非轴对称流。为了适应这种流动行为,建议在每个横截面的最小温度下定义热轴,以计算外围营养号码分布。该过程应用于从加热歧管经受非轴对称流入的不同通道几何形状。本文提出的所有计算结果也用于文献中可用的结果。 (c)2017 Elsevier Ltd.保留所有权利。

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