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Combined surface tension and buoyancy-driven convection in a rectangular open cavity in the presence of a magnetic field

机译:在存在磁场的情况下,在矩形开放腔中组合表面张力和浮力驱动对流

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摘要

A numerical study is conducted to understand the effect of magnetic field on the flow driven by the combined mechanism of buoyancy and thermocapillarity in a rectangular open cavity filled with a low Prandtl number fluid (Pr = 0.054). The two side walls are maintained at uniform but different temperatures θh and θc (θh θc), while the horizontal top and bottom walls are adiabatic. A finite difference scheme consisting of the ADI (Alternating Direction Implicit) method, which incorporates upwind differencing for non-linear convective terms and the SLOR (Successive Line Over Relaxation) method are used to solve the coupled non-linear governing equations. Computations are carried out for a wide range of Grashof number Gr ranging from 2 à 104 to 2 à 106, Marangoni number Ma from 0 to 105 and Hartmann number Ha from 0 to 100. The detailed flow structure and the associated heat transfer characteristics inside the cavity are presented. At large Ma, two counter-rotating cells are formed at the upper half and lower half of the enclosure. As Ha increases, the temperature field resembles that of a conduction type and the streamlines are elongated in nature in the horizontal direction. The upper cell is crowded and stretched along the free surface. The average Nusselt number increases with Ma but decreases with Ha. © 1995.
机译:进行了数值研究,以了解磁场对由低普朗特数流体(Pr = 0.054)填充的矩形开放腔中的浮力和热毛细作用的组合机制驱动的流动的影响。两个侧壁都保持在均匀但温度不同的Δh和Δc(Δh>Δc),而水平的顶壁和底壁是绝热的。使用由ADI(交替方向隐式)方法组成的有限差分方案,该方法结合了用于非线性对流项的迎风差分和SLOR(连续松弛线)方法来求解耦合的非线性控制方程。计算范围广泛,从2×104到2×106的Grashof数Gr,从0到105的马兰戈尼数Ma以及从0到100的Hartmann数Ha。详细的流动结构和相关的传热特性腔体。在较大的Ma处,在外壳的上半部和下半部形成两个反向旋转的孔。随着Ha的增加,温度场类似于传导型的温度场,并且流线本质上在水平方向上拉长。上部单元拥挤并沿自由表面伸展。马氏平均努塞尔数增加,但哈氏平均数减少。 ©1995。

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