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Unsteady MHD flow of heat and mass transfer of nanofluids over stretching sheet with a non-uniform heat/source/sink considering viscous dissipation and chemical reaction

机译:考虑到粘性耗散和化学反应,热/流体的不稳定MHD流动和纳米流体在传热片上的传质不均匀的热/源/汇不均匀

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摘要

In this paper, unsteady MHD flow of heat and mass transfer of Cu-water and TiO_2-water nanofluids over stretching sheet with a non-uniform heat/source/sink considering viscous dissipation and chemical reaction is investigated. The governing partial differential equations with the corresponding boundary conditions are transformed to a system of non-linear ordinary differential equations and solved using Keller box method. The velocity, temperature and concentration profiles are obtained and the influences of various relevant parameters, namely the magnetic parameter M, Prandtl number Pr, Eckert number Ec, Schmidt number Le , chemical reaction parameter K,unsteadiness parameter 5 and the Soret number Sr on velocity, temperature and concentration profiles are discussed. The skin-friction coefficient-f"(0), heat transfer coefficient -θ'(0) and mass transfer coefficient -φ'(0) are presented in tables. A comparison with published results is also presented and found in good agreement.
机译:本文研究了考虑热耗散和化学反应不均匀的热/源/汇不均匀拉伸片材上Cu-水和TiO_2-水纳米流体传热的非稳态MHD热和传质。将具有相应边界条件的支配偏微分方程转换为非线性常微分方程组,并使用Keller box方法求解。得到了速度,温度和浓度分布图,以及各种相关参数,即磁参数M,普朗特数Pr,埃克特数Ec,施密特数Le,化学反应参数K,不稳定参数5和Soret数Sr对速度的影响讨论了温度和浓度曲线。表中列出了皮肤摩擦系数-f″(0),传热系数-θ′(0)和传质系数-φ′(0)。还给出了与已公开结果的比较结果,发现它们吻合得很好。

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