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A coupled damage-hydro-mechanical model for gas drainage in low-permeability coalbeds

机译:低渗煤层瓦斯抽放的损伤-水力-力学耦合模型

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摘要

In the process of coal and gas mining, the excavation and drainage drilling will induce the redistribution of stress around the working face, thus damage coalbeds. In this paper, a coupled damage-hydro mechanical model is proposed based on the elastic damage at the unloading failure stage of coalbeds. Firstly, a constitutive model for dual-porosity coal with isotropic damage is established within the framework of strain equivalence. Its damage variable is directly related to the effective strain which depends on the initial in-situ stress, pore pressure, and gas sorption induced deformation. Secondly, a dynamic model for the permeability evolution is developed with the concept of scalar damage variable. The permeability model is applied to a three dimensional elastic damage finite element program. Finally, the excavation process and gas drainage are numerically simulated. The evolutions of gas pressure, coal permeability, and gas transport for single borehole are investigated. The numerical results show that the coupled damage-hydro-mechanical model can well match and predict the field test data and the empirical data. It is useful to evaluate the drilling and gas drainage application. Drilling can remarkably relieve the stress around the borehole, induce great damage to coalbeds and thus promotes coal permeability. The numerical simulation is helpful to evaluating gas drainage and taking effective measures to prevent the occurrences of gas outbursts in coalbeds. (C) 2016 Elsevier B.V. All rights reserved.
机译:在煤炭和天然气开采过程中,开挖和排水钻孔会引起工作面周围应力的重新分布,从而损坏煤层。本文基于煤层卸荷破坏阶段的弹性损伤,提出了一种耦合损伤-水力耦合力学模型。首先,在应变当量的框架下建立了具有各向同性损伤的双孔隙煤本构模型。其损伤变量与有效应变直接相关,该有效应变取决于初始原位应力,孔隙压力和气体吸附引起的变形。其次,利用标量损伤变量的概念建立了渗透率演化的动力学模型。将渗透率模型应用于三维弹性损伤有限元程序。最后,对开挖过程和瓦斯抽放进行了数值模拟。研究了单个钻孔的瓦斯压力,煤渗透率和输气情况。数值结果表明,耦合损伤-水力-力学模型可以很好地匹配和预测现场测试数据和经验数据。评估钻井和瓦斯抽采应用非常有用。钻探可以显着缓解井眼周围的应力,对煤层造成巨大破坏,从而提高煤的渗透性。数值模拟有助于评价瓦斯抽采,并采取有效措施防止煤层瓦斯突出的发生。 (C)2016 Elsevier B.V.保留所有权利。

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