首页> 外文期刊>ZAMP: Zeitschrift fur Angewandte Mathematik und Physik: = Journal of Applied Mathematics and Physics: = Journal de Mathematiques et de Physique Appliquees >Numerical study of forced and free convective boundary layer flow of a magnetic fluid over a flat plate under the action of a localized magnetic field
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Numerical study of forced and free convective boundary layer flow of a magnetic fluid over a flat plate under the action of a localized magnetic field

机译:局部磁场作用下平板上磁性流体强迫与自由对流边界层流动的数值研究

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摘要

The two-dimensional, steady, laminar, forced and free convective boundary layer flow of a magnetic fluid over a semi-infinite vertical plate, under the action of a localized magnetic field, is numerically studied. The magnetic fluid is considered to be water-based with temperature dependent viscosity and thermal conductivity. The study of the boundary layer is separated into two cases. In case I the boundary layer is studied near the leading edge, where it is dominated by the large viscous forces, whereas in case II the boundary layer is studied far from the leading edge of the plate where the effects of buoyancy forces increase. The numerical solution, for these two different cases, is obtained by an efficient numerical technique based on the common finite difference method. Numerical calculations are carried out for the value of Prandl number Pr = 49.832 (water-based magnetic fluid) and for different values of the dimensionless parameters entering into the problem and especially for the magnetic parameter Mn, the viscosity/temperature parameter Θ_r and the thermal/conductivity parameter S*. The analysis of the obtained results show that the flow field is influenced by the application of the magnetic field as well as by the variation of the viscosity and the thermal conductivity of the fluid with temperature. It is hoped that they could be interesting for engineering applications.
机译:数值研究了在局部磁场作用下,磁性流体在半无限垂直板上的二维,稳定,层流,强迫和自由对流边界层流。磁性流体被认为是水基的,具有随温度变化的粘度和热导率。边界层的研究分为两种情况。在第一种情况下,边界层是在前缘附近研究的,在该边界层中,粘滞力主要是大的,而在第二种情况下,边界层是在远离浮力作用增加的板的前缘的情况下研究的。对于这两种不同情况,通过基于有限差分法的有效数值技术获得了数值解。对普兰德尔数Pr = 49.832(水基磁性流体)的值以及进入问题的无量纲参数的不同值(尤其是对于磁性参数Mn,粘度/温度参数Θ_r和热量)进行数值计算/电导率参数S *。对获得的结果的分析表明,流场受磁场的施加以及流体的粘度和导热系数随温度的变化的影响。希望它们对于工程应用可能是有趣的。

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