两个均匀边界层剪切流的非等温分析

IF 2.8 Q2 THERMODYNAMICS Heat Transfer Pub Date : 2024-03-18 DOI:10.1002/htj.23043
Sana Goher, Zaheer Abbas, Muhammad Yousuf Rafiq, Muhammad Sajid
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引用次数: 0

摘要

多相流的传热现象在一些生物和工业过程中起着至关重要的作用,如石油生产工业、催化反应器、一些热力系统中的能量损失、能量储存、造纸和热交换器系统。因此,本研究仔细研究了沿同一方向流动的两个强度不同的均匀边界层剪切流之间的传热特性。该问题涉及不同剪切强度边界层收敛的模拟。通过采用适当的无量纲变量,对非线性微分方程系统进行了仔细研究,并将其转换为无量纲常微分方程。利用 Matlab 求解器 "bvp4c "对所得到的高度非线性常微分方程组进行数值求解。所得到的数值解用于构建图表,以说明和阐明众多物理参数对流动模式的影响。对于这两种流体,努塞尔特数和剪切应力的结果也以图表形式显示了各种参数。获得的结果表明,通过提高剪切力参数,上层和下层流体的速度曲线都会上升。此外,增加粘度比参数值也会增加流线数量。本问题适用于带外倾的薄机翼上的后缘流。
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Nonisothermal analysis of two uniform boundary layer shear flows

The heat transfer phenomenon on the multiphase flows plays an imperative role in several biological and industrial processes, like the oil production industries, catalytic reactors, energy losses in several thermal systems, energy storage, paper manufacture, and heat exchanger systems. Therefore, this study scrutinized the heat transfer characteristic between two uniform boundary layer shear flows with different strengths flowing in the same direction. This problem involves the simulation of the convergence of boundary layers with varying shear strengths. The nonlinear differential system is scrutinized and converted into dimensionless ordinary differential equations by employing appropriate dimensionless variables. The resulting set of highly nonlinear ordinary differential equations is resolved numerically utilizing the Matlab solver “bvp4c.” The resulting numerical solutions are used to construct graphs that illustrate and elucidate the impact of numerous physical parameters on flow patterns. For both fluids, results for the Nusselt number and shear stress are also presented graphically for various parameters. The acquired results demonstrate that the velocity profile upsurges for both upper and lower fluids by enhancing the shear parameter. Furthermore, the number of streamlines is enhanced by augmenting the values of the viscosities ratio parameter. The present problem applies to the trailing edge flow over a thin airfoil with camber.

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来源期刊
Heat Transfer
Heat Transfer THERMODYNAMICS-
CiteScore
6.30
自引率
19.40%
发文量
342
期刊最新文献
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