首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Similarity solution of boundary layer stagnation-point flow towards a heated porous stretching sheet saturated with a nanofluid with heat absorption/generation and suction/blowing: A lie group analysis
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Similarity solution of boundary layer stagnation-point flow towards a heated porous stretching sheet saturated with a nanofluid with heat absorption/generation and suction/blowing: A lie group analysis

机译:边界层停滞点流向加热的多孔拉伸片材的饱和溶液的相似解:具有吸热/吸热和鼓风的纳米流体:说谎组分析

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摘要

In this paper, heat and mass transfer analysis for boundary layer stagnation-point flow over a stretching sheet in a porous medium saturated by a nanofluid with internal heat generation/absorption and suction/blowing is investigated. The governing partial differential equation and auxiliary conditions are converted to ordinary differential equations with the corresponding auxiliary conditions via Lie group analysis. The boundary layer temperature, concentration and nanoparticle volume fraction profiles are then determined numerically. The influences of various relevant parameters, namely, thermophoresis parameter Nt, Brownian motion parameter Nb, Lewis number Le, suction/injection parameter S, permeability parameter k1, source/sink parameter X and Prandtl parameter Pr on temperature and concentration as well as wall heat flux and wall mass flux are discussed. Comparison with published results is presented.
机译:本文研究了在纳米流体饱和的多孔介质中边界层停滞点流过拉伸片材的传热和传质分析,该内部介质具有内部生热/吸收和吸力/吹气。通过李群分析,将控制的偏微分方程和辅助条件转换为具有相应辅助条件的常微分方程。然后通过数值确定边界层温度,浓度和纳米颗粒体积分数分布。各种相关参数,即热泳参数Nt,布朗运动参数Nb,刘易斯数Le,吸入/注入参数S,渗透率参数k1,源/汇参数X和Prandtl参数Pr对温度和浓度以及壁热的影响讨论了通量和壁质量通量。介绍了与已发表结果的比较。

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