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A new coal reservoir permeability model considering the influence of pulverized coal blockage and its application

机译:考虑煤粉堵塞影响及其应用的新煤储层渗透模型

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In order to accurately predict the production performance of coalbed methane (CBM) wells and to formulate a reasonable production system, this paper established a coal reservoir permeability model considering the influence of pulverized coal blockage. Then, on the basis of this model, the flow velocity sensitivity (FVS) experimental data of 15 groups of coal samples taken from the Baode Block, Qinshui Basin, Liulin Block, Hancheng Block, and the Huanglong Coalfield were fitted to determine the permeability models for different coal samples. On this basis, this newly established permeability model was incorporated into a previously developed CBM well performance analysis software, and production history matching was carried out on two CBM wells. Finally, the effects of the parameters of pulverized coal blockage on the permeability of coal reservoirs and the production performance of CBM wells were studied by taking the fitting parameters of CBM Well W1 as the reference. And the following research results are obtained. First, this new model considering the influence of pulverized coal blockage can quantitatively describe the variation of coal reservoir permeability with fluid velocity. In addition, this model can be incorporated into a CBM numerical simulation software or a CBM well performance analysis software to apply it in a wide range. Second, the coal reservoir permeability is less affected by pulverized coal blockage in the Baode Block, but this effect shall not be ignored in the Qinshui Basin and the Huanglong Coalfield. Third, the greater the theoretical maximum permeability damage degree (Dmax) and the permeability damage degree index (n) are, the lower the relative flow velocity (v0.5) corresponding to the critical flow velocity of pulverized coal blockage is and the more obvious the effect of pulverized coal blockage on coal reservoir permeability is. Fourth, in order to reduce the adverse effect of pulverized coal blockage on coal reservoir permeability, it is suggested to reduce the production pressure difference appropriately in the process of production, especially in the initial stage of gas production, so as to avoid severe damage to coal reservoir permeability.
机译:为了准确预测煤层煤层(CBM)井的生产性能并配制合理的生产系统,本文建立了考虑粉煤堵塞影响的煤储层渗透性模型。然后,在该模型的基础上,流速灵敏度(FVS)从Baode块,Qinshui盆地,列素块,汉城块和黄龙煤田采取的15组煤样的实验数据,以确定渗透性模型对于不同的煤样。在此基础上,该新建立的渗透性模型被纳入先前开发的CBM井绩效分析软件,并在两个CBM井上进行了生产历史匹配。最后,通过将CBM井W1的拟合参数作为参考,研究了粉煤堵塞对煤储层渗透性的影响以及CBM孔的生产性能。并获得以下研究结果。首先,考虑粉煤堵塞的影响的新模型可以定量地描述煤储层渗透率与流体速度的变化。此外,该模型可以合并到CBM数值模拟软件或CBM井绩效分析软件中,以在宽范围内应用。其次,煤储层渗透性受到粉煤砌块粉煤堵塞的影响较小,但秦水盆地和黄龙煤田不得忽视这种效果。第三,理论最大渗透率损伤程度(DMAX)和渗透率损伤度指数(n)越大,对应于粉煤堵塞的临界流速的相对流速(V0.5)越低,越明显粉煤堵塞对煤储层渗透性的影响是。第四,为了降低粉煤堵塞对煤储层渗透性的不利影响,建议在生产过程中适当地降低生产压力差,特别是在天然气生产的初始阶段,以避免严重损害煤储层渗透率。

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