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首页> 外文期刊>Journal of Energy Engineering >Flow-Field Geometry Effect on H_2-lron Redox Flow Battery
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Flow-Field Geometry Effect on H_2-lron Redox Flow Battery

机译:H_2-LRON氧化还原电池的流场几何效果

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摘要

The redox flow battery is getting intense attention these days as one of the most promising systems to store energy generated from weather-dependent renewable energy sources such as solar and wind energies. In this research, the geometry-related performance of the hydrogen-iron redox flow battery is analyzed with five different flow-field geometries (parallel, serpentine, crisscross, interdigitated, and porous) to determine the best geometry leading to the maximum cell power and fuel efficiency. Diffusion-dominant flow-by mode, convection-dominant flow-through mode, and the hybrid combining both modes are investigated in detail to understand the characteristic transport modes of reactive species and underlying flow physics. In particular, the effects of the flow geometries are analyzed with respect to system-based as well as cell-based performance. It is found that the best net power gain is achieved from the porous flow field, which has excellent fuel utilization and cell power with a low electrolyte supply rate. (c) 2020 American Society of Civil Engineers.
机译:这些天氧化还原电池作为最有前途的系统之一,储存从太阳能和风能等天气可再生能源所产生的能源的系统之一。在该研究中,用五种不同的流场几何形状(平行,蛇形,裂纹,交叉和多孔)分析了氢铁氧化还原流量电池的几何相关性能,以确定导致最大电池功率的最佳几何形状燃油效率。分散主导的流动模式,对流主导流过模式,以及组合两种模式的混合动力车以详细研究,以了解反应物种和底层流理物理的特征传输模式。特别地,相对于基于系统的和基于细胞的性能,分析了流动几何的效果。结果发现,从多孔流场实现了最佳的净功率增益,其具有低电解质供应速率的优异燃料利用和电池功率。 (c)2020年美国土木工程师协会。

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