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Modelling of hydrogen induced pressurization of internal cavities

机译:氢诱导内腔增压的模型

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Internal cavities can constitute a crack initiation site especially if filled with hydrogen at high pressure. A new refined equation of state based on recent NIST database has been introduced in order to model the equilibrium pressure. It is based on a thermodynamic definition of fugacity and uses the NIST data relating hydrogen density and pressure to define a new fugacity pressure quadratic dependence. The resulting Equation Of State (EOS) is compared to the standard Abel Noble EOS and it is shown that for a given fugacity, imposed by a Sievert's law, the corresponding pressure is significantly higher. This new refined EOS was introduced into a previously developed numerical model of hydrogen diffusion and desorption and applied to evaluate the kinetics of pressure build-up within a cavity and its equilibrium pressure. It has been shown that the kinetics of pressure buildup at room temperature, which reaches values close to equilibrium in some hundreds of hours, is compatible with the industrial quality control procedures. The calculated pressures are in the range 4500-8650 bars depending on hydrogen solubility, which differs between the matrix and the segregation bands, and tend to equilibrium values obtained from mass balance approach. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:内腔可以构成裂纹萌生点,尤其是在高压下充有氢气的情况下。为了模拟平衡压力,引入了基于最新NIST数据库的新的精确状态方程。它基于逸度的热力学定义,并使用与氢密度和压力相关的NIST数据来定义新的逸度压力二次相关性。将所得的状态方程(EOS)与标准的Abel Noble EOS进行比较,结果表明,对于给定的逸度,根据西弗特定律,相应的压力要高得多。将此新的精制EOS引入到先前开发的氢扩散和解吸数值模型中,并用于评估腔体内压力建立的动力学及其平衡压力。已经表明,在室温下建立压力的动力学在几百小时内达到接近平衡的值,与工业质量控制程序兼容。根据氢的溶解度,计算出的压力在4500-8650巴范围内,这在基质和偏析带之间有所不同,并且趋于达到通过质量平衡法获得的平衡值。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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