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Optimum output temperature setting and an improved bed structure of metal hydride hydrogen storage reactor for thermal energy storage

机译:用于储热的金属氢化物储氢反应器的最佳输出温度设定和改进的床结构

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摘要

As the well-known solid hydrogen storage materials, metal hydrides (MHs) have been developed systematically for decades. During recent years, due to the development of thermal energy storage (TES) market, they have also received much attention gradually as the excellent TES materials because of the high energy density, low cost, and good reversibility. In this study, the stabilized discharging performance of an MH reactor for TES was investigated by numerical simulation. A mathematical model combining multi physics and proportional-integral controller was established. Based on finite-time thermodynamics, gravimetric exergy-output rate (GEOR) considering the control requirement, finite-material, and finite-time constraints was defined. For a given reactor, the output temperature setting could be optimized based on GEOR. Besides, the effects of the reactor parameters on the optimum output temperature setting were systematically studied. The heat transfer analysis indicated the occurrence of the axial non-uniform reaction in the bed due to the inherent increase in the temperature of heat transfer fluid, resulting in the decrease of both GEOR and material availability. Accordingly, a new tapered bed structure (L/D-o = 600/50 mm) was proposed to effectively improve the discharging efficiency from 76 to 90% and GEOR from 65 to 120 W kg(-1), which provides a helpful guidance for the advanced designing and construction of MH reactor for the practical TES applications. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:作为众所周知的固态储氢材料,金属氢化物(MHs)已被系统地开发了数十年。近年来,由于热能存储(TES)市场的发展,由于其能量密度高,成本低和可逆性好,它们作为优异的TES材料也逐渐受到人们的关注。在这项研究中,通过数值模拟研究了用于TES的MH反应器的稳定放电性能。建立了将多物理场和比例积分控制器相结合的数学模型。基于有限时间热力学,定义了考虑控制要求,有限材料和有限时间约束的重量能值输出率(GEOR)。对于给定的反应堆,可以基于GEOR优化输出温度设置。此外,系统地研究了反应器参数对最佳输出温度设定的影响。传热分析表明,由于传热流体温度的固有升高,在床层中发生了轴向不均匀反应,导致GEOR和材料利用率均下降。因此,提出了一种新的锥形床结构(L / Do = 600/50 mm),以有效地将放电效率从76%提升到90%,GEOR从65 W提升到120 W kg(-1),这将为用于实际TES应用的MH反应器的高级设计和建造。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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