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Production performance laws of vertical wells by volume fracturing in CBM reservoirs

机译:煤层气储层容积压裂垂直井生产性能规律

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Volume fracturing technology has been widely applied in the development of coalbed methane (CBM) reservoirs. As for the stimulated reservoir volume (SRV) created by volume fracturing, the seepage laws of fluids are described more accurately and rationally in the rectangular composite model than in the traditional radial composite model. However, the rectangular composite model considering SRV cannot be solved using the analytical or semi-analytical function method, and its solution from the linear flow model has larger errors. In view of this, SRV areas of CBM reservoirs were described by means of dual-medium model in this paper. The complex CBM migration mechanisms were investigated comprehensively, including adsorption, desorption, diffusion and seepage. A well testing model for rectangular composite fracturing wells in CBM reservoirs based on unsteady-state diffusion was built and solved using the boundary element method combined with Laplace transformation, Stehfest numerical inversion and computer programming technology. Thus, production performance laws of CBM reservoirs were clarified. The flow regimes of typical well testing curves were divided and the effects on change laws of production performance from the boundary size of gas reservoirs, permeability of volume fractured areas, adsorption gas content, reservoir permeability and SRV size were analyzed. Eventually, CBM reservoirs after the volume fracturing stimulation were described more accurately and rationally. This study provides a theoretical basis for a better understanding of the CBM migration laws and an approach to evaluating and developing CBM reservoirs efficiently and rationally.
机译:体积压裂技术已广泛应用于煤层气(CBM)储层的开发中。对于通过体积压裂产生的增产油藏体积(SRV),与传统的径向复合模型相比,矩形复合模型中流体的渗流规律得到了更准确,更合理的描述。但是,考虑到SRV的矩形复合模型不能使用解析或半解析函数方法求解,而其从线性流模型的求解具有较大的误差。有鉴于此,本文采用双介质模型描述了煤层气储层的SRV区。全面研究了复杂的煤层气运移机理,包括吸附,解吸,扩散和渗流。利用边界元方法结合拉普拉斯变换,Stehfest数值反演和计算机编程技术,建立并求解了基于非稳态扩散的煤层气矩形复合压裂井试井模型。因此,阐明了煤层气储层的生产性能规律。划分了典型试井曲线的流态,从气藏边界尺寸,裂隙体积渗透率,吸附气含量,储层渗透率和SRV尺寸等方面分析了对生产性能变化规律的影响。最终,对体积压裂增产后的煤层气储层进行了更加准确,合理的描述。该研究为更好地了解煤层气运移规律提供了理论基础,为有效,合理地评价和开发煤层气储层提供了一种方法。

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