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On the optimization of hydrogen storage in metal hydride beds

机译:关于金属氢化物床中储氢的优化

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摘要

This work presents a novel systematic approach for the optimal design and control of metal hydride beds used for hydrogen storage. A detailed 2-D mathematical model is developed and validated against experimental and theoretical literature results. Based on recent advances in dynamic optimization, the objective is then to find the optimal process design (e.g. cooling systems design) and operating strategy (e.g. cooling fluid profile over time, hydrogen charging profile, etc.) so as to minimize the storing time, while satisfying, a number of operating constraints. Such constraints account for pressure drop limitations, cooling fluid availability and maximum tank temperature. Optimization results indicate that almost 60% improvement of the storage time can be achieved, over the case where the system is not optimized, for a minimum storage capacity of 99% of the total bed capacity. Trade-offs between various objectives, alternative design options and optimal cooling control policies are systematically revealed illustrating the potential offered by modern optimization techniques.
机译:这项工作提出了一种新颖的系统方法,用于优化设计和控制用于储氢的金属氢化物床。开发了详细的二维数学模型,并针对实验和理论文献结果进行了验证。基于动态优化的最新进展,目标是找到最佳的工艺设计(例如,冷却系统设计)和操作策略(例如,冷却液随时间变化的曲线,氢气填充曲线等),以最大程度地减少存储时间,同时满足许多操作限制。这些限制因素说明了压降限制,冷却液可用性和最高油箱温度。优化结果表明,在未优化系统的情况下,最小存储容量为总床容量的99%,可以将存储时间提高近60%。系统地揭示了各种目标,替代设计方案和最佳冷却控制策略之间的权衡,说明了现代优化技术所提供的潜力。

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