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Numerical Simulation and Backfilling Materials Research on Coal Spontaneous Combustion of Thick Seam Large-scale Top-caving Region in Resources Conformity Coal Mine

机译:资源整合煤矿厚缝大型顶洞区煤自燃煤炭自燃的数值模拟与回填材料研究

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This paper aimed at fire control in thick seam large-scale top-carving region. On the basis of coal and oxygen compounding theory, theoretical analysis, numerical simulation and experiment are combined, and a coal spontaneous combustion process model is built according to fluid mechanics and control theory. By studying and testing on top-carving coal spontaneous combustion process, conclusion is drawn that spontaneous combustion area is the largest in partly-closed region, followed by unclosed region. A totally closed baffle leads to the smallest spontaneous combustion area and the smallest possibility of fire. With local materials in a certain condition, new, cheap backfilling materials are developed. Thus provide theoretical basis for study on the forecasting and prevention of thick seam large-scale top-carving coal spontaneous combustion.
机译:本文旨在厚煤层大型雕刻区域的防火控制。基于煤和氧气复合理论,合并理论分析,数值模拟和实验,并根据流体力学和控制理论建立煤自燃过程模型。通过研究和测试顶部雕刻煤自发燃烧过程,得出结论,即自发燃烧区域是部分封闭区域中最大的,其次是未缩减的区域。一个完全闭合的挡板导致最小的自发燃烧区域和最小的火灾可能性。在某种情况下,利用当地材料,开发出新的,廉价的回填材料。因此,为研究厚缝大型顶级雕煤自发燃烧的预测和预防研究提供了理论依据。

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