利用Fluent软件对建筑物防范地下甲烷流动的潜在措施进行建模

P. Staša, V. Kebo, P. Fuchsikova, L. Kubáč
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引用次数: 7

摘要

本文研究了地下煤矿开采煤层残余甲烷释放的漂移问题。甲烷是一种有害气体,由于它的密度,它容易聚集在矿井或有甲烷的房间的天花板下。当与空气混合时,它在5 - 15%的范围内是爆炸性的,这就是给定气体具有高度危险性的原因,尽管在正常情况下,它对人没有危险。本论文的目的是利用数值气体辉光建模来研究一种潜在的建筑保护设计,该设计适用于位于采矿活动终止地区的建筑物,这些建筑物因此暴露于甲烷进入的风险中,并根据情况可能造成可估计的财产损失甚至人命损失。我们的方法的排他性包括努力可视化和展示气体在我们进行测试的模型情况下在多孔环境中的行为。除非使用通常被称为CFD(计算流体动力学)软件的数值流动技术,否则地下的情况实际上可能永远无法确定,特别是由于使用了Fluent软件,我们可以从理论上建模并随后实现周围条件如何变化并影响从地下到地表的流动并改变那里的直接条件。在建立工作区几何模型时使用Gambit软件工具;采用ANSYS公司的CFD Fluent软件对气体流动进行建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling potential action for building protection against flow of methane from the underground using the Fluent software
The paper deals with the issue of the drift of residual methane release from the extracted seams of the underground coal mines. Methane is a hazardous gas, which, thanks to its density, tends to gather under the ceilings of mine shafts or rooms where it is present. When mixed with air, it is explosive within the 5 - 15 % range and that is the reason for the highly hazardous nature of the given gas despite the fact that under normal conditions, it is not dangerous for people. The objective of the present paper is to examine, using numerical gas glow modelling a potential building protection design for buildings located in areas with terminated mining activity and thus exposed to the risk of methane ingress and, as the case may be, causing in estimable losses of property or even human lives. The exclusiveness of our approach involves the effort at visualising and showing how the gas will behave in a porous environment in the model situations we put to the test. Unless numerical flow technology, generally referred to as CFD (Computational Fluid Dynamics) software, is used, the situation in the underground may practically never be identified and it is specifically thanks to the use of the Fluent software that we can theoretically model and subsequently realise how the surrounding conditions may change and affect flow from the underground to the surface and change the immediate conditions there. The Gambit software tool was used when creating the geometrical model of the working area; the CFD Fluent software by ANSYS, Inc. was used to model gas flow.
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