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Comprehensive Analysis of Factors Affecting Coalbed Methane Productivity: A Case Study of Southern Qinshui Basin

机译:综合分析影响煤层甲烷生产力的因素 - 以秦水盆地南部为例

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Coalbed methane (CBM) productivity is influenced by various factors. Based on field production data and test data of southern Qinshui Basin, factors including geological factors, engineering factors and drainage factors that affect CBM productivity are analyzed. Analytic hierarchy process (AHP) is introduced to calculate the contribution of each parameter to CBM productivity. A three-level model for evaluating CBM productivity based on AHP is established. The results show that average daily gas production of single well in southern Qinshui Basin increases with gas content, coal seam thickness, permeability, porosity, gas saturation, critical desorption pressure. Filling minerals in pores and fractures of coal can decrease gas content, porosity and permeability of coal reservoir. When burial depth is deeper than 500m or reservoir pressure is greater than 2MPa and burial depth is shallower than 1000m or reservoir pressure is less than 10a, CBM productivity is relatively high. According to the calculation, the weight of geological factors, engineering factors and drainage factors are 50%, 25% and 25%, respectively. Reservoir physical properties, geological conditions, fracturing technology and drainage process have the most impact, the weight of which are 33.33%, 16.67%, 11.79%, and 15.00%, respectively.
机译:煤层甲烷(CBM)生产率受各种因素的影响。基于沁水盆地南部的现场生产数据和测试数据,分析了影响CBM生产力的地质因素,工程因素和排水因素,包括影响CBM生产力的因素。引入分析层次处理(AHP)以计算每个参数对CBM生产率的贡献。建立了基于AHP的基于AHP的CBM生产力的三级模型。结果表明,沁水盆地南部单井的平均天然气生产随汽油含量,煤层厚度,渗透性,孔隙率,气体饱和度,临界解吸压力。填充煤矿和煤骨折的矿物质可降低煤层的气体含量,孔隙率和渗透性。当埋藏深度大于500米或储层压力大于2MPa并且埋深浅比1000米或储层压力小于10A,CBM生产率相对较高。根据计算,地质因素,工程因素和排水因子的重量分别为50%,25%和25%。储层物理性质,地质条件,压裂技术和排水过程的影响最大,重量分别为33.33%,16.67%,11.79%和15.00%。

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