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首页> 外文期刊>International journal of non-linear mechanics >Forced convection in tightly coiled ducts: Bifurcation in a high Dean number region
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Forced convection in tightly coiled ducts: Bifurcation in a high Dean number region

机译:紧密盘绕管道中的强制对流:高Dean数区域中的分叉

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The present numerical study is on the fully developed bifurcation structure of forced convection in a tightly coiled duct of square crosssection and curvature ratio of 0.5 in a high Dean number region. Ten solution branches, two symmetric and eight asymmetric, are found. Among them, one symmetric branch and seven asymmetric branches have not been reported in the literature. On these new branches, the flow has a structural 2-, 4-, 5-, 6-, 7- or 8-cell. The mean friction factor and Nusselt number are different on various solution branches. In tightly coiled ducts, the secondary flow enhances the heat transfer more significantly than the friction increase.
机译:目前的数值研究是关于在高Dean数区域中,在正方形横截面和曲率比为0.5的紧密盘绕管道中完全发展的强制对流分叉结构。找到十个解分支,两个对称分支和八个非对称分支。其中,一个对称分支和七个不对称分支尚未在文献中报道。在这些新分支上,流程具有2、4、5、6、7或8单元结构。不同解决方案分支上的平均摩擦因数和Nusselt数不同。在紧密盘绕的管道中,二次流比摩擦增加更明显地增强了热传递。

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