Temperature dependent viscosity and thermal conductivity effects on hydromagnetic flow over a slendering stretching sheet

S.P. Anjali Devi, M. Prakash
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引用次数: 79

Abstract

The primary focus of this work is to numerically investigate the influence of temperature dependent viscosity and thermal conductivity on hydromagnetic flow over slendering stretching sheet. In the process held at high temperature like glass blowing, the fluid properties like viscosity and thermal conductivity may gets influenced in such temperature which motivated us to analyze those kind of problem. Considering steady, two dimensional, nonlinear, laminar flow of an incompressible, viscous and electrically conducting fluid over a stretching sheet with variable thickness in the presence of variable magnetic field. Numerical computations are carried out for various values of the physical parameters and the effects over the velocity and temperature are analyzed. Numerical values of dimensionless skin friction coefficient and non-dimensional rate of heat transfer are also obtained and presented in tabulated form. It is noticed that, in additional to the magnetic field there are two more regulators which can manipulate to maintain the optimal heat for the glass blowing process to attain required shapes.

温度依赖性粘度和热导率对细长拉伸板上磁流的影响
本工作的主要重点是数值研究温度依赖性粘度和导热系数对细长拉伸板上磁流的影响。在吹制玻璃这样的高温过程中,流体的粘度、导热性等特性在高温下会受到影响,这也是我们分析这类问题的原因。考虑一种不可压缩的、粘性的、导电的流体,在变磁场作用下,在变厚度的拉伸薄片上的稳定的二维非线性层流。对不同的物理参数值进行了数值计算,并分析了对速度和温度的影响。得到了无量纲表面摩擦系数和无量纲换热率的数值,并以表格形式给出。值得注意的是,除了磁场之外,还有两个调节器可以操纵以保持玻璃吹制过程的最佳热量,以获得所需的形状。
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