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首页> 外文期刊>Journal of Nanofluids >Soret and Dufour Effects on Unsteady Boundary Layer Flow and Heat Transfer in Copper-Water Nanofluid Over a Shrinking Sheet with Partial Slip and Stability Analysis
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Soret and Dufour Effects on Unsteady Boundary Layer Flow and Heat Transfer in Copper-Water Nanofluid Over a Shrinking Sheet with Partial Slip and Stability Analysis

机译:俗,杜福尔对不稳定边界的影响在Copper-Water层流动和传热Nanofluid缩小表部分滑动稳定分析

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摘要

The influences of partial slip, Soret and Dufour on unsteady boundary layer flow, heat and mass transfer over shrinking sheet in Copper-water nanofluid are investigated numerically using Tiwari and Das's model. The governing equations are transformed to ordinary differential equations using similarity transformation. The system of equations is solved by boundary value problem with fourth order accuracy (bvp4c) program in Matlan and the numerical results are presented graphically to show the behaviour of the flow. The findings show that the dual solutions exist for certain range of suction effect (s > 0.58) with the presence of partial slip effect. Besides, Soret effect increases the heat transfer and declines the mass transfer at the surface while Dufour effect showed the opposite trend. Since the dual solutions are obtained, the stability analysis is performed and it is found that the first solution is a stable and physically-realizable solution.
机译:部分滑移的影响,俗,杜福尔在非定常边界层流动,热量和质量转移在Copper-water缩小表使用前景调查数值女子和Das的模型。转化为常微分吗利用相似变换方程。方程组是解决边值问题四阶精度(bvp4c)程序Matlan和数值结果提出了以图形方式显示的行为流。解决方案存在一定范围的吸入效果(> 0.58)和部分的存在滑动效果。传热和传质在下降表面而杜福尔效果显示相反的趋势。获得,稳定性分析和执行它是发现,第一个解决方案是稳定的和物理可实现的解决方案。

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