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首页> 外文期刊>Mathematical Problems in Engineering >Conjugate Heat Transfer of Mixed Convection for Viscoelastic Fluid Past a Stretching Sheet
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Conjugate Heat Transfer of Mixed Convection for Viscoelastic Fluid Past a Stretching Sheet

机译:粘弹性流体混合对流通过拉伸片的共轭传热

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摘要

A conjugate heat transfer problem of a second-grade viscoelastic fluid past a stretching sheet has been studied. Governing equations include heat conduction equation of a stretching sheet, continuity equation, momentum equation, and energy equation of a second-grade fluid, analyzed by a combination of a series expansion method, the similarity transformation, and a second-order accurate finite-difference method. These solutions are used to iterate with the heat conduction equation of the stretching sheet to obtain distributions of the local convective heat transfer coefficient and the stretching sheet temperature. Ranges of dimensionless parameters, the Prandtl number Pr, the elastic number E and the conduction-convection coefficient N_(cc) are from 0.001 to 10,0.0001 to 0.01, and 0.5 to 2.0, respectively. A parameter G, which is used to represent the dominance of the buoyant effect, is present in governing equations. Results indicated that elastic effect in the flow could increase the local heat transfer coefficient and enhance the heat transfer of a stretching sheet. In addition, same as the results from Newtonian fluid flow and conduction analysis of a stretching sheet, a better heat transfer is obtained with a larger N_(cc), G, and E.
机译:已经研究了第二级粘弹性流体通过拉伸片的共轭传热问题。控制方程包括拉伸片的导热方程,连续性方程,动量方程和二级流体的能量方程,并通过级数展开法,相似变换和二阶精确有限差分的组合进行分析。方法。这些解决方案用于迭代拉伸片的导热方程,以获得局部对流传热系数和拉伸片温度的分布。无量纲参数的范围,普朗特数Pr,弹性数E和传导对流系数N_(cc)分别为0.001至10,0.0001至0.01和0.5至2.0。控制方程中存在一个参数G,该参数G用来表示浮力作用的优势。结果表明,流动中的弹性效应可以增加局部传热系数并增强拉伸片的传热。此外,与牛顿流体流动和拉伸片材的传导分析的结果相同,N_(cc),G和E越大,传热效果越好。

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