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Mixed Convection Analysis Of Laminar Pulsating Flow And Heat Transfer Over A Backward-facing Step

机译:层流脉动流动和传热传热的混合对流分析

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The present study analyzes mixed convection of laminar pulsatile flow and heat transfer past a backward-facing step in a channel. Discretization of the governing equations was achieved through a finite element scheme based on the Galerkin method of weighted residuals. Temporal variations of streamlines, isotherms, and dimensionless skin friction coefficient and Nusselt number were presented for various relevant dimensionless groups. Fluid flow and heat transfer characteristics were examined in the domain of the Reynolds number, Richardson number and the dimensionless oscillation frequency such that: 100 ≤ Re ≤ 1000,1.78 × 10~(-3) ≤ Ri ≤ 10, and 0.1 ≤ ω ≤ 5. The working fluid is assigned a Prandtl number of 0.71 throughout this investigation. Our results illustrates that Reynolds number, Richardson number, and dimensionless oscillation frequency have a profound effect on the structure of fluid flow, heat transfer fields, and skin friction coefficient.
机译:本研究分析了层流脉动流和传热的混合对流,该流经通道中向后的台阶传递。通过基于加权残差的Galerkin方法的有限元方案实现了控制方程的离散化。针对各种相关的无量纲组,显示了流线,等温线以及无量纲的皮肤摩擦系数和Nusselt数的时间变化。在雷诺数,理查森数和无因次振荡频率的范围内检查了流体的流动和传热特性,使得:100≤Re≤1000、1.78×10〜(-3)≤Ri≤10和0.1≤ω≤ 5.在整个调查过程中,工作液的Prandtl值为0.71。我们的结果表明,雷诺数,理查森数和无因次振荡频率对流体流动的结构,传热场和皮肤摩擦系数具有深远的影响。

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