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首页> 外文期刊>Multidiscipline modeling in materials and structures >Boundary layer flow and melting heat transfer of Prandtl fluid over a stretching surface by considering Joule heating effect
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Boundary layer flow and melting heat transfer of Prandtl fluid over a stretching surface by considering Joule heating effect

机译:考虑焦耳热效应的Prandtl流体在拉伸表面上的边界层流动和熔融传热

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Purpose - The purpose of this paper is to study the impact of Joule heating on boundary layer flow and melting heat transfer of Prandtl fluid over a stretching sheet in the presence of fluid particles suspension. The transformed boundary layer equations are solved numerically by RKF-45 method. The influence of the non-dimensional parameters on velocity and temperature growths in the boundary layer region is analyzed in detail and the results are shown graphically. The results indicate that the larger estimation of a and β reduces for both velocity and temperature profile. Further, the rate of heat transfer decreases by increasing melting parameter. Design/methodology/approach - The converted set of boundary layer equations is solved numerically by RKF-45 method. Obtained numerical results for flow and heat transfer characteristics are deliberated for various physical parameters. Furthermore, the skin friction coefficient and Nusselt number are also presented. Findings - It is found that the heat transfer rates are advanced in the occurrence of non-linear radiation camper to linear radiation. Also, it is noticed that velocity profile increases by increasing Prandtl parameter but establishes opposite results for temperature profile. Originality/value - The authors intend to analyze the boundary layer flow and melting heat transfer of a Prandtl fluid over a stretching surface in the presence of fluid particles suspension. The governing systems of partial differential equations have been transformed to a set of coupled ordinary differential equations by applying appropriate similarity transformations. The reduced equations are solved numerically. The pertinent parameters are discussed through graphs and plotted graphs. The present results are compared with the existing limiting solutions, showing good agreement with each other.
机译:目的-本文的目的是研究在存在颗粒悬浮液的情况下,焦耳热对边界层流动和Prandtl流体在拉伸板上的熔融传热的影响。转换后的边界层方程通过RKF-45方法进行数值求解。详细分析了无量纲参数对边界层区域速度和温度增长的影响,并以图形方式显示了结果。结果表明,对于速度和温度曲线,α和β的较大估计值都会减小。此外,传热速率通过增加熔融参数而降低。设计/方法/方法-边界层方程组的转换集通过RKF-45方法进行数值求解。讨论了各种物理参数的流动和传热特性的数值结果。此外,还给出了皮肤摩擦系数和努塞尔数。发现-发现在非线性辐射露营者向线性辐射发生的过程中,传热速率得到了提高。同样,注意到速度分布通过增加Prandtl参数而增加,但建立相反的温度分布结果。原创性/价值-作者打算分析存在流体颗粒悬浮液时,Prandtl流体在拉伸表面上的边界层流动和熔融传热。通过应用适当的相似变换,偏微分方程的控制系统已转换为一组耦合的常微分方程。简化的方程通过数值求解。通过图表和绘图图表讨论相关参数。将当前结果与现有的极限解决方案进行比较,表明彼此之间具有很好的一致性。

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