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Numerical Simulation of Bubble Migration in Liquid Titanium Melts under Hypergravity Field

机译:超高型场液体钛熔体泡沫迁移的数值模拟

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Bubble migrations in liquid titanium melt under hypergravity field is modeled using commercial computational fluid dynamics software FLUENT 6.3 (Fluent inc., USA). The two-phase fluid model, incorporated with the Multiple Reference Frames (MRF) method is used to predict the movement of the bubble in the melt. Simulated results are compared with experimental data from the water model measurement and reasonable agreements are obtained. Furthermore, the computed results show that the bubble migration under hypergravity field includes the movement forward to the casting rotating shaft and the movement opposite to the direction of the rotating mould. In addition, the initial bubble size and the surface tension between the melt and the gas bubble have an important effect on the distortion of the bubble.
机译:使用商业计算流体动力学软件流畅的6.3(Fluent Inc.,USA)模拟液体钛熔体中的液体钛熔体中的泡沫迁移。与多个参考框架(MRF)方法结合的两相流体模型用于预测熔体中的气泡的运动。将模拟结果与来自水模型测量的实验数据进行比较,并且获得合理的协议。此外,计算结果表明,超高图场下的气泡迁移包括向铸造旋转轴的向前移动和与旋转模具的方向相对的运动。另外,初始气泡尺寸和熔体和气泡之间的表面张力对气泡的变形具有重要影响。

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