Effects Of Matrix Swelling On Coal Permeability For Enhance Coalbed Methane (Ecbm) And Co2 Sequestration Assessment Part Ii: Model Formulation And Field Application

E. Syahrial
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Abstract

In part II of this two-part paper series, a field permeability model for enhanced methane recovery and CO2 sequestration, incorporating the findings of the current laboratory tests presented in part I is presented. It has been reported that coal matrix swelling/shrinkage associated with CO2, adsorption/desorption are typically two to five times larger than that found for methane, yet there has been no direct measurements of this effect on permeability of coals to CO2. The feasibility of ECBM/CO2 sequestration technology depends very much on the magnitude of matrix swelling effect on permeability, especially in deep, low permeability coal seam reservoirs. The main objective of this research is to investigate and develop numerical models based on the the effects of coal matrix swelling induced by CO2 adsorption on the permeability of different coals which have been undergoing methane desorption under simulated reservoir conditions in the laboratory.
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基质膨胀对煤渗透性的影响——增强煤层气和Co2固存评价第二部分:模型的建立和现场应用
在这个由两部分组成的论文系列的第二部分中,介绍了一个用于提高甲烷采收率和二氧化碳固存的油田渗透率模型,该模型结合了第一部分中介绍的当前实验室测试的结果。据报道,煤基质膨胀/收缩与二氧化碳的吸附/解吸相关,通常是甲烷的2到5倍,但没有直接测量这种影响对煤对二氧化碳渗透率的影响。ECBM/CO2封存技术的可行性在很大程度上取决于基质膨胀对渗透率的影响程度,特别是在深部低渗透煤层储层中。本研究的主要目的是在实验室模拟储层条件下,基于CO2吸附引起的煤基质膨胀对不同煤的甲烷解吸渗透率的影响,研究并建立数值模型。
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