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Solid-Gas Coupling Model and Numerical Simulation of Coal Containing Gas Based on Comsol Multiphysic

机译:基于COMSOL多发性的含煤气体的固体气体耦合模型及数值模拟

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Solid-gas coupling effect of coal containing gas is studied in order to understand the gas percolation mechanism in coal and rock. On the premise of that porosity and permeability of coal and rock are in dynamic changes and Klinkenberg effect, then seepage mechanics and elastic-plastic mechanics are considered together to established solid-gas coupling model of coal containing gas. With the given fixed solution conditions and parameters, the simulation results of mathematical model is found by the Comsol Multiphysic finite element software. Simulation results are consistent with the stress-strain law, deformation and failure modes of specimen in the experiment. Seepage law obtained in numerical simulation has same trends with experimental data. The elastoplastic solid-gas coupling model of coal containing gas can effectively describe the mechanical percolation characteristics of coal containing gas.
机译:研究了含煤气体的固体气体耦合效果,以了解煤与岩石中的气体渗流机制。在煤炭和岩石的孔隙率和渗透性的前提下,在动态变化和Klinkenberg效应,然后认为渗流力和弹性塑料力学被认为是建立了含煤气体的固体气体耦合模型。通过给定的固定解决方案条件和参数,COMSOL多发性有限元件软件发现了数学模型的仿真结果。仿真结果与实验中标本的应力 - 应变法,变形和失效模式一致。在数值模拟中获得的渗流法具有与实验数据相同的趋势。含煤气体的弹性固体气体耦合模型可以有效地描述含煤气体的机械渗流特性。

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