首页> 外文期刊>Journal of Heat Transfer >Multiple Analytic Solutions of Heat and Mass Transfer of Magnetohydrodynamic Slip Flow for Two Types of Viscoelastic Fluids Over a Stretching Surface
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Multiple Analytic Solutions of Heat and Mass Transfer of Magnetohydrodynamic Slip Flow for Two Types of Viscoelastic Fluids Over a Stretching Surface

机译:拉伸表面上两种粘弹性流体的磁流体动力滑流传热和传质的多种解析解

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This paper focuses on the magnetohydrodynamic (MHD) slip flow of an electrically conducting, viscoelastic fluid past a stretching surface. The main concern is to analytically investigate the structure of the solutions and determine the thresholds beyond which multiple solutions exist or the physically pure exponential type solution ceases to exist. In the case of the presence of multiple solutions, closed-form formulae for the boundary layer equations of the flow are presented for two classes of viscoelastic fluid, namely, the second-grade and Walter's liquid B fluids. Heat transfer analyzes are also carried out for two general types of boundary heating processes, either by a prescribed quadratic power law surface temperature or by a prescribed quadratic power law surface heat flux. The flow field is affected by the presence of several physical parameters, whose influences on the unique I multiple solutions of velocity and temperature profiles, and Nusselt numbers are examined and discussed.
机译:本文着重于通过拉伸表面的导电粘弹性流体的磁流体动力学(MHD)滑流。主要关注的问题是分析解决方案的结构并确定阈值,超过此阈值将存在多个解决方案或物理上纯指数型解决方案不复存在。在存在多种解决方案的情况下,针对两类粘弹性流体,即第二级和沃尔特B流体,给出了流动边界层方程的闭式公式。还通过规定的二次幂定律表面温度或规定的二次幂定律表面热通量对两种通用的边界加热过程进行了传热分析。流场受几个物理参数的存在的影响,这些参数对速度和温度分布以及Nusselt数的唯一解的影响。

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