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Numerical Simulation of a Laboratory-scale Experiment for the Hydrate Dissociation Process in Porous Media by Acid Injection

机译:酸注射液中多孔介质水合物解离过程的实验室规模实验的数值模拟

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摘要

In this study, to enhance gas recovery from a methane hydrate reservoir, experimental and numerical studies that considered the acid injection process as a secondary gas recovery process after the depressurization operation were conducted. First, we experimentally analyzed the dissociation behavior of propane hydrate (PGH) in porous media by using acid injection and confirmed that the dissociation condition of PGH was shifted to the sides of low temperature and high pressure. This enabled the dissociation to proceed easily as the concentration of the injected acid increased. Then, on the basis of experimental observation, we conducted history matching for the temperature change and gas production behavior during PGH dissociation by acid injection, by varying the initial hydrate saturation, the reaction rate constant for acid consumption, and the intrinsic dissociation rate constant as the calculation parameters. Through history matching, we confirmed the validity of the developed numerical model targeting the dissociation of hydrates in porous media by acid injection.
机译:在该研究中,为了增强来自甲烷水合物储存器的气体回收,实验和数值研究,认为在进行减压操作之后认为酸注射过程作为二级气体回收过程。首先,我们通过使用酸注射实验分析了丙烷水合物(PGH)在多孔介质中的解离行为,并证实PGH的解离条件转移到低温和高压的侧面。这使得解离以随着注射酸的浓度增加而容易进行。然后,在实验观察的基础上,通过改变初始水合物饱和度,对酸消耗的反应速率常数,对PGH解离时,我们对温度变化和气体生产行为进行了历史匹配。计算参数。通过历史匹配,我们确认了通过酸注射靶向多孔介质中水合物解离的发达的数值模型的有效性。

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