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MHD surrogate model for convection in electromagnetically levitated molten metal droplets processed using the ISS-EML facility

机译:使用ISS-EML设施处理电磁悬浮熔融金属液滴中的对流替代模型

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摘要

Electromagnetic levitation experiments in space are an essential tool for thermophysical property measurement and solidification studies. In light of the need for material properties as inputs to industrial process modeling, investigators need new tools for efficient experiment planning. MHD surrogate modeling is a parametric method for prediction of flow conditions during processing using the ISS-EML facility. Flow conditions in model Au, Zr, and Ti39.5Zr39.5Ni21 samples are predicted using the surrogate model. For Au, flow is shown be turbulent in nearly all experimental conditions, making property measurement difficult. For Zr, the flow is turbulent with the heater on and laminar with the heater off, allowing for property measurement during free-cooling experiments only. For TiZrNi, the flow is laminar under all experimental conditions, indicating that TiZrNi is an excellent candidate for EML experiments. This surrogate modeling approach can be easily applied to other materials of interest, enabling investigators to choose materials that will perform well in levitation and to tailor experiment parameters to achieve desirable flow conditions.
机译:空间中的电磁悬浮实验是热物理性能测量和凝固研究的必要工具。鉴于对工业过程建模的输入需要材料特性,研究人员需要新的工具进行高效的实验计划。 MHD代理建模是用于使用ISS-EML设施在处理过程中预测流动条件的参数方法。使用代理模型预测模型Au,zr和ti39.5zr39.5ni21样品的流动条件。对于AU,在几乎所有实验条件下,流动显示出湍流,使性能测量变得困难。对于Zr,流量与加热器和加热器的加热器弄乱,允许在自由冷却实验期间进行性质测量。对于Tizrni,流动是在所有实验条件下的层状物,表明Tizrni是EML实验的优秀候选者。这种代理建模方法可以很容易地应用于其他感兴趣的材料,使调查人员能够选择将在悬浮中进行良好的材料并定制实验参数以实现所需的流动条件。

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