首页> 外文期刊>Journal of natural gas science and engineering >Vertical heterogeneity of permeability and gas content of ultra-high-thickness coalbed methane reservoirs in the southern margin of the Junggar Basin and its influence on gas production
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Vertical heterogeneity of permeability and gas content of ultra-high-thickness coalbed methane reservoirs in the southern margin of the Junggar Basin and its influence on gas production

机译:Junggar流域南部边缘的超高厚厚的煤层储层渗透性和气体含量的垂直异质性及其对天然气生产的影响

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Ultra-high-thickness (>15 m) is one of the unique features of coalbed methane (CBM) reservoirs in Junggar basin, Xinjiang, China. However, there are few studies on the vertical permeability and gas content heterogeneity of ultra-high-thickness reservoirs. We use the Fukang west block on the southern margin of the Junggar Basin as a characteristic-example. Logging data describe the vertical distributions of the permeability and gas content of ultra-high-thickness CBM reservoirs. Flow modeling is used to explore the influence of those vertical heterogeneity on gas production. The results show that there is clear heterogeneity of these two parameters across the reservoir - from top to base - with different functional variabilities at shallow, intermediate and deep burial depths. At shallow depth (800-1100 m) the heterogeneity is controlled mainly by the increasing geo-stress and coalification. Permeability gradually decrease from the reservoir top to the base due to depth-increasing stress while gas content gradually increases due to permeability and depth-increasing degree of coalification. At intermediate depths (1100-1500 m) these two parameters show no particular trend. At the deep depths (1500-2000m) the reverse trend is observed as permeability increase from the reservoir top to the base while gas content gradually decreases. This heterogeneity is of great significance in the evaluation of the reserve, the recoverable resource and in the optimization of gas production. Neglecting the vertical heterogeneity of gas content across the seam results in a mis-estimation of similar to 4.4% of the recoverable resource with a 40% chance of exceeding this mis-estimation if only a single sample within the seam is used. The vertical heterogeneity exerts a significant influence on gas production, and the influence will be greater when the reservoirs with larger gas content. Production optimization favors perforation of separated rather than adjacent stages.
机译:超高厚度(> 15米)是中国新疆乔格达盆地煤层甲烷(CBM)水库的独特特征之一。然而,关于超高厚度储存器的垂直渗透性和气体含量异质性的研究。我们在Junggar盆地的南边缘使用Fukang West Block作为一个特征示例。测井数据描述超高厚度CBM储存器的渗透率和气体含量的垂直分布。流动建模用于探讨这些垂直异质性对气体生产的影响。结果表明,储存器上的这两个参数的明显异质性 - 从上到上到基础 - 在浅,中间和深埋深度下具有不同的功能变换。在浅深度(800-1100米),非均质性主要通过增加的地质应力和聚集来控制。由于深度增加应力,渗透性从储存器顶部逐渐减小到基座上,而气体含量逐渐增加由于渗透性和深度的聚集程度逐渐增加。在中间深度(1100-1500米),这两个参数显示出没有特别的趋势。在深度深度(1500-2000m)处,逆向趋势被观察到从储存器顶部的渗透率增加到基地,而气体含量逐渐减小。这种异质性在评估储备,可收回资源和天然气生产优化中具有重要意义。忽略横跨接缝的气体含量的垂直异质性导致类似于可收回资源的4.4%的MIS估计,如果使用接缝内的单个样品,则超过该误差的可能性超过40%。垂直异质性对气体生产产生重大影响,当储层具有较大的气体含量时,影响将更大。生产优化有利于分离而不是相邻阶段的穿孔。

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