工程肺启发的电化学流电池的流场几何学与立体石墨3D打印
Vanesa Muñoz-Perales1, Maxime van der Heijden2, Pablo A García-Salaberri1
1Department of Thermal and Fluids Engineering, Universidad Carlos III de Madrid, 28911 Leganés, Spain.
概括
使用3D打印制造的新型肺灵感流场提高了电化学流反应堆中的反应剂分布和性能,优于储能应用的传统设计.
科学领域:
- 电化学工程 电化学工程
- 材料科学是一种材料科学.
- 可持续的能源技术 可持续的能源技术
背景情况:
- 电化学流反应器是能量转换和储存的关键,特别是氧化还原流电池.
- 流场几何学极大地影响了反应堆的性能,包括功率要求和质量传输.
- 目前的设计对于氧化还原流电池液相电化学来说是不理想的.
研究的目的:
- 开发和评估用于电化学流动反应堆的新型肺灵感流场几何.
- 为了比较这些新设计的性能与传统的数字化流域.
- 探索增材制造在优化流动反应堆组件方面的潜力.
主要方法:
- 立体石墨3D打印创建复杂的,灵感来自肺部的流场几何形状.
- 一个两步制造过程,涉及3D打印和导电涂层.
- 流体动力学分析,电化学诊断和有限元素模拟.
- 在对称流量电池中的性能评估.
主要成果:
- 灵感来自肺部的几何结构促进了反应物的均分布,并改善了电解质的可访问性.
- 与传统设计相比,这些新型设计可以在较低的压力损失下实现更高的电流密度.
- 观察到,电力和电力之间的平衡更为有利.
结论:
- 增材制造可以创建工程流场,用于先进的电化学能量存储.
- 灵感来自肺部的流场为改善反应器性能提供了对传统设计的有希望的替代方案.
- 这种方法促进了成本效益高,高效的氧化还原流电池的开发.
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