熔融金属流的 SPH 模拟,模拟熔岩流凝固现象

Dynamics Pub Date : 2024-04-19 DOI:10.3390/dynamics4020017
Shingo Tomita, Joe Yoshikawa, Makoto Sugimoto, Hisaya Komen, Masaya Shigeta
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引用次数: 0

摘要

通过使用平滑粒子流体力学(SPH)方法进行数值模拟,成功再现了熔岩流的特征动力学,如熔岩堤坝、趾状尖端和重叠结构的形成过程。由于这些特殊现象对熔岩流的流动方向有很大影响,因此阐明这些现象对于准确预测熔岩冲击区域是必不可少的。这项研究的第一步是用已知物理性质的熔融金属表示熔岩。计算结果表明,熔融金属在斜坡上向下流动的边缘形成了堤坝和趾状尖端,这在实际熔岩流中也会出现。还成功模拟了重叠结构形成的动力学过程;其中,熔融金属向下流动、凝固并改变了斜坡的表面形状,第二熔融金属流过改变了的表面形状。结论是本研究利用 SPH 方法开发的计算模型适用于模拟和阐明熔岩流现象。
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SPH Simulation of Molten Metal Flow Modeling Lava Flow Phenomena with Solidification
Characteristic dynamics in lava flows, such as the formation processes of lava levees, toe-like tips, and overlapped structures, were reproduced successfully through numerical simulation using the smoothed particle hydrodynamics (SPH) method. Since these specific phenomena have a great influence on the flow direction of lava flows, it is indispensable to elucidate them for accurate predictions of areas where lava strikes. At the first step of this study, lava was expressed using a molten metal with known physical properties. The computational results showed that levees and toe-like tips formed at the fringe of the molten metal flowing down on a slope, which appeared for actual lava flows as well. The dynamics of an overlapped structure formation were also simulated successfully; therein, molten metal flowed down, solidified, and changed the surface shape of the slope, and the second molten metal flowed over the changed surface shape. It was concluded that the computational model developed in this study using the SPH method is applicable for simulating and clarifying lava flow phenomena.
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