郭江峰, 姚多喜. 基于ANSYS数值模拟的丁集矿地温研究[J]. 煤矿安全, 2014, 45(9): 193-196.
    引用本文: 郭江峰, 姚多喜. 基于ANSYS数值模拟的丁集矿地温研究[J]. 煤矿安全, 2014, 45(9): 193-196.
    GUO Jiangfeng, YAO Duoxi. Ground Temperature Research Based on ANSYS Numerical Simulation in Dingji Mine[J]. Safety in Coal Mines, 2014, 45(9): 193-196.
    Citation: GUO Jiangfeng, YAO Duoxi. Ground Temperature Research Based on ANSYS Numerical Simulation in Dingji Mine[J]. Safety in Coal Mines, 2014, 45(9): 193-196.

    基于ANSYS数值模拟的丁集矿地温研究

    Ground Temperature Research Based on ANSYS Numerical Simulation in Dingji Mine

    • 摘要: 地温异常是影响矿井建设及煤矿安全生产的重要因素,钻孔测温是获取地温资料的常用和主要手段。由于测温钻孔的工程量大,在某一区域通常难以达到足够的覆盖密度。以丁集矿地温研究为例,探讨了用ANSYS软件数值模拟进行地温模拟研究的问题。该方法充分考虑了所研究区域的地层热导率等热物特性及地质构造,通过对比实测的钻孔数据,实测数据与模拟结果的趋势和规律相一致。用ANSYS数值模拟地温可以为后续矿井地温异常区范围圈定、热害防治措施制定和矿井生产能力提高提供分析依据。

       

      Abstract: Geothermal anomaly is an important factor which influences coal mine development and safety production. Borehole temperature measurement is the common and main method to obtain geothermal data. Due to the large quantity of measuring drilling engineering, it is difficult to achieve adequate coverage density. Taking geothermal study of Dingji mine as an example, simulation of geothermal anomaly by using ANSYS software is discussed. The method takes fully into account the regional stratum thermo-physical properties such as thermal conductivity and geological structure. The simulation results are in agreement with the data from the on-the-spot survey by comparing the actual drilling data. ANSYS simulation of geotherm can be used for outlining the scope of coal mine geothermal anomaly area, formulating measures of mine heat-harm control and improving capacity of mine production.

       

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