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Geomechanical Estimation of the Influence of Horizontal Coalbed Methane Well Design on Coal Seam Permeability

机译:水平煤层气井设计对煤层渗透率影响的岩土力学估算

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The paper presents a method of choosing the design of horizontal coalbed methane well by estimation of a coal seam permeability on the results of one-dimensional and two-dimensional geomechanical modeling. The differences in the preparation of one-dimensional geomechanical models of coalbed methane fields from models for conventional oil and gas fields are noted. The results of preparation of one-dimensional geomechanical model based on data from one of the vertical exploration coalded methane wells and two-dimensional geomechanical modeling of coal seam for three common designs are presented. The obtained results allow us to conclude that geomechanical modeling is a suitable tool for estimation of coal seam permeability changes and choosing the most effective well design for the considered mining and geological conditions. In particular, in the coal seam under study, a multilateral well can cause the greatest increasing of permeability.
机译:通过一维和二维地质力学建模结果,通过估算煤层渗透率,提出了一种选择水平煤层气井设计的方法。指出了在制备一维煤层气田地质力学模型与常规油气田模型方面的差异。给出了基于一口垂直勘探的煤层气井的数据和三种常用设计的煤层的二维地质力学模型的一维地质力学模型的编制结果。所获得的结果使我们得出结论,地质力学模型是估算煤层渗透率变化并为考虑的采矿和地质条件选择最有效的井设计的合适工具。特别是,在所研究的煤层中,多边井可导致渗透率的最大增加。

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