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Different aspects of geometrical optimization for compact heat exchangers

机译:紧凑型换热器几何优化的不同方面

摘要

In this study a two dimensional, steady state and incompressible laminar flow for staggered tube arrays in crossflow is investigated numerically. The study is based on a patented (APU, UK May 2001) compact heat exchanger design using implanted vortex generators on the internal flow, and change of fluid momentum in a turbulent jet on the external flow side. A finite-volume method is used to discretize and solve the governing equations for the geometries expressed by a boundary-fitted coordinate system. Solutions for the Reynolds numbers from 20 to 200 are obtained for a tube bundle with 10 longitudinal rows in different tube arrangements of ES, ET, and RS each with nominal pitch-to-diameter ratios of 1.33, 1.60 and 2.00. Different performance parameters which are used commonly to compare different heat exchangers are investigated and the performance parameters which account for pressure losses as well as occupied area are defined. The variations of these parameters with inlet Reynolds number and different nominal pitch-to-diameter ratios for different tube arrangements are also indicated. The optimum tube layouts for the studied flow and geometry ranges are shown as well.
机译:在这项研究中,二维研究了错流中交错管阵列的二维稳态和不可压缩层流。该研究基于获得专利的紧凑型热交换器设计(英国APU,2001年5月),该设计在内部流动中使用植入式涡流发生器,在外部流动侧使用湍流射流改变流体动量。有限体积方法用于离散化和求解由边界拟合坐标系表示的几何形状的控制方程。对于在ES,ET和RS的不同管布置中具有10个纵向行的管束,可以获得20至200的雷诺数解,每个管束的标称螺距与直径之比为1.33、1.60和2.00。研究了通常用于比较不同热交换器的不同性能参数,并定义了考虑压力损失以及占用面积的性能参数。还指出了这些参数随进口雷诺数和不同管布置的不同标称螺距与直径之比的变化。还显示了所研究的流量和几何范围的最佳管布局。

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