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NUMERICAL MODELING METHOD FOR METAL HYDRIDE TANK INTERPRETATION

机译:金属氢化物池解释的数值模拟方法

摘要

PURPOSE: A calculation method of a numerical model for metallic hydride tank interpretation is provided to calculate temperature change and reaction speed corresponding to reaction with hydrogen by only calculation of the numerical model for various forms of metallic hydride tank systems for hydrogen storage. CONSTITUTION: A metallic hydride tank system is filled with a metal hydride(MH) alloy and is maintained at predetermined temperature(S110). Temperature change corresponding to heat of reaction between the MH alloy and hydrogen, reaction speed, and hydrogen concentration in the MH alloy are measured by supplying, emitting, and changing hydrogen content of the MH alloy(S120). A numerical model for the temperature change, the reaction speed, and the hydrogen concentration in the MH alloy are calculated based on the measured data(S130). The MH alloy includes a Ti-Cr-V-Fe alloy. [Reference numerals] (AA) Start; (BB) End; (S110) Filling MH(metal hybrid) alloy; (S120) Measuring reaction heat, reaction rate, and remaining hydrogen amount in the MH alloy; (S130) Calculating a numerical model
机译:目的:提供一种用于金属氢化物罐解释的数值模型的计算方法,以仅通过计算各种形式的用于存储氢的金属氢化物罐系统的数值模型来计算与氢气反应对应的温度变化和反应速度。组成:金属氢化物罐系统填充有金属氢化物(MH)合金,并保持在预定温度下(S110)。通过供给,释放和改变MH合金的氢含量来测量与MH合金和氢之间的反应热,反应速度和MH合金中的氢浓度相对应的温度变化(S120)。基于测量数据计算MH合金中的温度变化,反应速度和氢浓度的数值模型(S130)。 MH合金包括Ti-Cr-V-Fe合金。 [参考数字](AA)开始; (BB)结束; (S110)填充MH(金属杂化)合金; (S120)测量MH合金中的反应热,反应速率和剩余氢量; (S130)计算数值模型

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