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Efficiency oriented design guidelines for a magnetohydrodynamic generator system

机译:磁流体动力发电机系统的效率导向设计指南

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Magnetohydrodynamic power generation (MHDG) was a thriving field of research in the 1960s but low efficiency and difficulty to reach desired operating points (high temperature) discouraged the investment of further efforts in the matter. Nowadays technological advances such as superconducting electromagnets (with very low power consumption for higher overall efficiency), power electronics (to enable harvesting and processing of current intensive DC power for any application), and powerful multiphysics simulation software, call for a reassessment of this power generation method. The aim of this paper is to deliver a realistic analysis of the competitiveness of MHDG as well as the possibilities offered by design variables to improve its attributes. Finite element analysis offers an improved understanding of field and flow distribution as well as the power density generated within the fluid channel. Analytical energy efficiency determination is completed for two different fluids as well as a sensitivity study of influential design factors. Furthermore a power output/cost comparison between MHD-systems operating with combustion gasses and liquid copper is carried out to offer a complete assessment of MHDG.
机译:磁流体动力发电(MHDG)在1960年代是一个蓬勃发展的研究领域,但效率低,难以达到所需的工作点(高温),阻碍了对此事进行进一步努力的投资。当今的技术进步,例如超导电磁体(具有非常低的功耗,可以提高整体效率),电力电子设备(可以为任何应用收集和处理当前密集的直流电)以及功能强大的多物理场仿真软件,都要求对这种电源进行重新评估。生成方法。本文的目的是对MHDG的竞争力以及设计变量提供的改善其属性的可能性进行现实的分析。有限元分析提供了对场和流分布以及流体通道内产生的功率密度的更好理解。完成了对两种不同流体的分析能效确定以及对影响设计因素的敏感性研究。此外,在使用燃烧气体的MHD系统和液态铜之间进行了功率输出/成本比较,以提供对MHDG的完整评估。

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