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3D multiphysics simulation and analysis of a low temperature liquid metal magnetohydrodynamic power generator prototype

机译:低温液态金属磁流体动力发电机原型的3D多物理场仿真与分析

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摘要

Magnetohydrodynamic (MHD) power generation is an interdisciplinary process, which was studied heavily in the late 1960's but interest soon subsided. However, the current socio-economic climate demands more diversity in renewable energy sources. MHD generators using liquid metal as the working fluid represent a viable option for this augmentation. Furthermore, the steady increase in accessible computational capabilities provides a powerful new tool for interdisciplinary modeling and multiphysics simulations. These factors suggest that this is an opportune time to reevaluate MHD power generation. This paper provides mathematical background as well as a detailed multiphysics model of a low temperature liquid metal MHD power generator built in COMSOL. Simulation details are provided in addition to a comparison to experimental results. The prototype studied in this paper is the first proof of concept of a permanent magnet excited liquid metal MHD generator using Gallium as its working fluid.
机译:磁流体动力(MHD)发电是一个跨学科的过程,在1960年代后期进行了深入研究,但很快就消退了兴趣。但是,当前的社会经济气候要求可再生能源具有更多的多样性。使用液态金属作为工作流体的MHD发电机代表了这种增强的可行选择。此外,可访问计算能力的不断提高为跨学科建模和多物理场仿真提供了强大的新工具。这些因素表明这是重新评估MHD发电的合适时机。本文提供了在COMSOL中构建的低温液态金属MHD发电机的数学背景以及详细的多物理场模型。除了与实验结果进行比较之外,还提供了仿真详细信息。本文研究的原型是使用镓作为工作流体的永磁励磁液态金属MHD发生器的概念的首次证明。

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