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首页> 外文期刊>International Journal of Thermal Sciences >On the effect of process temperature on the performance of activated carbon bed hydrogen storage tank
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On the effect of process temperature on the performance of activated carbon bed hydrogen storage tank

机译:工艺温度对活性炭床储氢罐性能的影响

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A numerical model is used to investigate hydrogen charging in packed bed storage tank as function of the charging process temperature. The model is based on the solution of the 2D transport equations for mass, momentum and energy in porous media. The equation system is characterized by the existence of adsorption source terms in both mass and energy equations along with very low Mach number flow condition. It was solved using a pressure splitting technique. Results showed that heating effects due to mechanical energy dissipation and to the exothermal character of the adsorption reaction are enhanced at low temperature. They result in a significant tank capacity reduction. This reduction reaches 25% of the total storage capacity as predicted assuming isothermal charging process. Unlike what has been suggested in several previous studies the major part of the tank capacity decrease is mainly due to the decrease of the gas density. Using recently developed activated carbon monolith with a conductivity exceeding 10 W m~(-1) K~(-1) can help in limiting the heating effect and reducing this capacity limitation. It makes possible the development of packed bed storage tanks that fulfill the DOE recommendations.
机译:使用数值模型来研究填充床储罐中氢气的填充量与填充过程温度的关系。该模型基于多孔介质中质量,动量和能量的2D传输方程的解。该方程系统的特征是质量方程和能量方程中都存在吸附源项,并且马赫数很低,流动条件也很差。它是使用压力分离技术解决的。结果表明,在低温下,由于机械能耗散和吸附反应的放热特性而产生的热效应得到增强。它们导致坦克容量显着降低。如假设等温充电过程所预测的,该减少量达到总存储容量的25%。与先前的几项研究不同,储罐容量的减少主要是由于气体密度的降低。使用最近开发的电导率超过10 W m〜(-1)K〜(-1)的活性炭整料可以帮助限制加热效果并减少这种容量限制。这使得开发满足DOE建议的填充床储罐成为可能。

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