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Flowing material balance method with adsorbed phase volumes for unconventional gas reservoirs

机译:非常规气藏中具有吸附相体积的流态物质平衡方法

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摘要

This paper presents an improved flowing material balance method for unconventional gas reservoirs. The flowing material balance method is widely used to estimate geological reserves. However, in the case of the unconventional gas reservoirs, such as coalbed methane reservoirs and shale gas reservoirs, the conventional method is inapplicable due to the gas adsorption on the organic pore surface. In this study, a material balance equation considering adsorption phase volume is presented and a new total compressibility is defined. A pseudo-gas reservoir is simulated and the results were compared with the existing formulations. The results show that the proposed formulation can accurately get the geological reserves of adsorbed gas reservoirs. Furthermore, the results also show that the volume of the adsorbed phase has a significant influence on the analysis, and it can only be ignored when the Langmuir volume is negligible.
机译:本文提出了一种改进的非常规气藏流动物质平衡方法。流动物料平衡法被广泛用于估算地质储量。但是,在非常规气藏如煤层气气藏和页岩气气藏的情况下,由于气体在有机孔隙表面的吸附,因此常规方法不适用。在这项研究中,提出了考虑吸附相体积的材料平衡方程,并定义了新的总可压缩性。模拟假气藏,并将结果与​​现有公式进行比较。结果表明,所提出的配方可以准确地获得吸附气藏的地质储量。此外,结果还表明,吸附相的体积对分析有重大影响,只有当Langmuir体积可忽略不计时,才能忽略。

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