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首页> 外文期刊>International Journal of Simulation Modelling >SYMMETRY BREAKING PHENOMENA OF PURELY VISCOUS SHEAR-THINNING FLUID FLOW IN A LOCALLY CONSTRICTED CHANNEL
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SYMMETRY BREAKING PHENOMENA OF PURELY VISCOUS SHEAR-THINNING FLUID FLOW IN A LOCALLY CONSTRICTED CHANNEL

机译:局部约束通道中纯粘性剪切变稀流的对称破裂现象

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The goal of a present study is to investigate the effects of generalized Newtonian fluids on the threshold of the transition from flow symmetry to its asymmetry for the flow through a locally constricted channel. We consider purely viscous shear-thinning fluid and compare it with the Newtonian fluid. Fluid flow is studied numerically by solving the two dimensional momentum equations along with the continuity equation and the Carreau-Yasuda rheological model. We report systematic results in a range of generalized Reynolds number 150 ≤ Re ≤ 250 with a focus on its critical value. Results indicate that the shear-thinning viscous behaviour decreases the onset of bifurcation phenomena and the critical value of Reynolds number. Last but not least, a systematic grid refinement analysis and numerical accuracy study is performed and present numerical results may be treated as the benchmark.
机译:本研究的目的是研究广义牛顿流体对流经局部收缩通道的流动对称性向非对称性转变的阈值的影响。我们考虑纯粘性的剪切稀化流体,并将其与牛顿流体进行比较。通过求解二维动量方程,连续性方程和Carreau-Yasuda流变模型,对流体流动进行了数值研究。我们报告了在广义雷诺数150≤Re≤250范围内的系统结果,重点是其临界值。结果表明,剪切稀化的粘性行为减少了分叉现象的发生和雷诺数的临界值。最后但并非最不重要的一点是,进行了系统的网格细化分析和数值精度研究,目前的数值结果可以作为基准。

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