Thermohydraulic Performance of a Series of In-Line Noncircular Ducts in a Parallel Plate Channel

Siddharth D. Mhaske, Soby P. Sunny, S. L. Borse, Yash Parikh
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Abstract

Heat transfer and fluid flow characteristics for two-dimensional laminar flow at low Reynolds number for five in-line ducts of various nonconventional cross-sections in a parallel plate channel are studied in this paper. The governing equations were solved using finite-volume method. Commercial CFD software, ANSYS Fluent 14.5, was used to solve this problem. A total of three different nonconventional, noncircular cross-section ducts and their characteristics are compared with those of circular cross-section ducts. Shape-2 ducts offered minimum flow resistance and maximum heat transfer rate most of the time. Shape-3 ducts at Re   100 can be considered to give out the optimum results.
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平行板槽内串联非圆形管道的热水力性能
研究了平行平板通道内5个不同截面的直列管道低雷诺数二维层流的传热和流体流动特性。采用有限体积法求解控制方程。利用商用CFD软件ANSYS Fluent 14.5解决了这一问题。对三种不同的非常规、非圆形截面风管及其特性与圆形截面风管进行了比较。形状2管道提供最小的流动阻力和最大的传热率,大多数时间。在Re 100时,可以考虑采用形状为3的风管,以获得最佳效果。
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