Design of comprehensive test system for detecting overlying strata mining-induced fractures on surface with radon gas

Zhang Wei , Zhang Dongsheng , Fan Gangwei
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引用次数: 2

Abstract

Based on radon gas properties and its existing projects applications, we firstly attempted to apply geophysical and chemical properties of radon gas in the field of mining engineering, and imported radioactive measurement method to detect the development process of the overlying strata mining-induced fractures and their contained water quality in underground coal mining, which not only innovates a more simple-fast-reliable detection method, but also further expands the applications of radon gas detection technology in mining field. A 3D simulation design of comprehensive testing system for detecting strata mining-induced fractures on surface with radon gas (CTSR) was carried out by using a large-scale 3D solid model design software Pro/Engineer (Pro/E), which overcame three main disadvantages of “static design thought, 2D planar design and heavy workload for remodification design” on exiting design for mining engineering test systems. Meanwhile, based on the simulation design results of Pro/E software, the stability of the jack-screw pressure bar for the key component in CTSR was checked with a material mechanics theory, which provided a reliable basis for materials selection during the latter machining process.

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氡瓦斯采动地表裂隙综合检测系统设计
基于氡气性质及其已有工程应用,首次尝试将氡气的地球物理和化学性质应用于采矿工程领域,并引入放射性测量方法对煤矿地下开采上覆岩层采动裂隙发育过程及其含水水质进行检测,不仅创新了一种更简单、快速可靠的检测方法;同时也进一步拓展了氡气检测技术在矿山领域的应用。利用大型三维实体模型设计软件Pro/Engineer (Pro/E)对地表岩层采动裂隙(CTSR)综合测试系统进行了三维仿真设计,克服了采矿工程测试系统现有设计存在的“静态设计思路、二维平面设计和改造设计工作量大”三大缺点。同时,基于Pro/E软件的仿真设计结果,运用材料力学理论对CTSR关键部件千斤顶压杆的稳定性进行了校核,为后续加工过程中的材料选择提供了可靠依据。
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