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首页> 外文期刊>Journal of applied mathematics >Simulation of Thermomagnetic Convection in a Cavity Using the Lattice Boltzmann Model
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Simulation of Thermomagnetic Convection in a Cavity Using the Lattice Boltzmann Model

机译:用格子Boltzmann模型模拟腔内的热磁对流

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摘要

Thermomagnetic convection in a differentially heated square cavity with an infinitely long third dimension is numerically simulated using the single relaxation time lattice Boltzmann method (LBM). This problem is of considerable interest when dealing with cooling of microelectronic devices, in situations where natural convection does not meet the cooling requirements, and forced convection is not viable due to the difficulties associated with pumping a ferrofluid. Therefore, circulation is achieved by imposing a magnetic field, which is created and controlled by placing a dipole at the bottom of the enclosure. The magnitude of the magnetic force is controlled by changing the electrical current through the dipole. In this study, the effects of combined natural convection and magnetic convection, which is commonly known as "thermomagnetic convection," are analysed in terms of the flow modes and heat transfer characteristics of a magnetic fluid.
机译:使用单张弛豫时间晶格玻尔兹曼方法(LBM),对三维无限长的差热方腔中的热磁对流进行了数值模拟。在自然对流不满足冷却要求并且由于与泵送铁磁流体相关的困难而导致强制对流不可行的情况下,在处理微电子器件的冷却时,这个问题引起了极大的兴趣。因此,通过施加磁场来实现循环,该磁场是通过在外壳底部放置一个偶极子来产生和控制的。通过改变通过偶极子的电流来控制磁力的大小。在这项研究中,结合磁性流体的流动模式和传热特性,分析了自然对流和磁对流相结合的影响,通常称为“热磁对流”。

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