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首页> 外文期刊>Journal of the Chinese Institute of Engineers >NUMERICAL AND EXPERIMENTAL STUDIES ON LAMINAR FORCED CONVECTIVE HEAT TRANSFER IN A CHANNEL WITH SURFACE-MOUNTED HEATED BLOCKS
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NUMERICAL AND EXPERIMENTAL STUDIES ON LAMINAR FORCED CONVECTIVE HEAT TRANSFER IN A CHANNEL WITH SURFACE-MOUNTED HEATED BLOCKS

机译:平面加热块通道内层流强迫对流换热的数值和实验研究

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摘要

The steady separated flow due to heated blocks mounted on one principal wall of a two-dimensional channel has been numerically and experimentally studied. Numerical solutions of the Navier-Stokes equations using the finite-difference and the power-law techniques have been obtained up to a Reynolds number of 2600. The effects of the Reynolds number and the block spacing on the fluid flow and heat transfer are investigated in detail. Results show that there exists two different types of flow between blocks, the D-type and the K-type flows. Furthermore, the Nusselt number monotonously increases or decreases along every face of the blocks. The calculated results of the reattachment length behind the second block and the local Nusselt number distribution compare well with the results obtained by the LDV and the naphthalene sublimation measurements, respectively. Heat transfer correlating equations are presented in terms of the Reynolds number and the block spacing.
机译:由于在二维通道的一个主壁上安装了加热块而产生的稳定分离流已经进行了数值和实验研究。在有限雷诺数为2600的情况下,使用有限差分法和幂律技术获得了Navier-Stokes方程的数值解。研究了雷诺数和块间距对流体流动和传热的影响。详情。结果表明,块之间存在两种不同类型的流,D型流和K型流。此外,努塞尔特数沿块的每个面单调增加或减少。第二个区块后面的重新连接长度和局部Nusselt数分布的计算结果分别与通过LDV和萘升华测量获得的结果相比较。传热相关方程以雷诺数和嵌段间距表示。

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