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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Three-dimensional numerical simulation on the spreading characteristics of a liquid metal droplet in a horizontal magnetic field
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Three-dimensional numerical simulation on the spreading characteristics of a liquid metal droplet in a horizontal magnetic field

机译:水平磁场中液态金属液滴扩散特性的三维数值模拟

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摘要

The spreading characteristics of a liquid metal droplet impacting onto a flat solid surface under the influence of a horizontal magnetic field are investigated numerically. The simulated parameters are selected based on our previous experiment but over a wider range of magnetic field (0-5 T). The time evolution of the droplet shape is shown in detail and exhibits an elliptical spreading pattern, namely the droplet is stretched in the direction perpendicular to the magnet lines, which agrees well with the experimental results. To clarify the mechanism underlying the elliptical spreading pattern as well as the asymmetrical rim bulges appeared at the later stage of spreading, the current line distribution and the resultant Lorentz force at two representative times are analyzed quantitatively. The effect of the magnetic field intensity and the initial impact velocity on the anisotropic spreading of droplets is demonstrated by the maximum spreading radius and the time required to reach this maximum extent in two orthogonal directions. Finally, an energy conversion analysis of the overall spreading process is presented and the dissipation of the initial kinetic energy of droplets by Joule heat explains the inhibition effect of the horizontal magnetic field on the average spreading radius.
机译:在数值上研究了在水平磁场的影响下冲击扁平固体表面上的液态金属液滴的扩散特性。基于我们之前的实验选择模拟参数,而是通过更广泛的磁场(0-5t)来选择。详细示出了液滴形状的时间进化并表现出椭圆形扩散图案,即液滴在垂直于磁线的方向上拉伸,这与实验结果很好。为了阐明椭圆形扩散模式下面的机制以及在展开的后期出现的不对称轮辋凸起,定量分析了两个代表性时间的当前线分布和所得的洛伦兹力。通过最大扩展半径和在两个正交方向上达到这种最大程度所需的时间来证明磁场强度和初始冲击速度对液滴的各向异性扩展的影响。最后,提出了整个扩散过程的能量转换分析,焦耳热量的液滴初始动能的耗散解释了水平磁场对平均扩散半径的抑制作用。

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