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Numerical simulation and measurement analysis of the temperature field of artificial freezing shaft sinking in Cretaceous strata

机译:白垩纪中人工冻结轴温度场的数值模拟与测量分析

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Targeting the challenging analysis of the temperature field of the artificial freezing shaft sinking projects in Cretaceous strata, this study used the Hongqinghe air shaft freezing project as an example to perform a numerical simulation and measurement analysis of the temperature field of shaft sinking via the artificial freezing method in Cretaceous strata. First, the thermal physical parameters and mechanical properties of frozen Cretaceous rock were measured in the lab. Based on the engineering geological conditions and test parameters, the Hongqinghe air shaft freezing parameters were designed, and the preliminary scheme of the freezing project was obtained, in which a single ring of freezing holes was arranged in Cretaceous strata, the freezing wall had a design thickness of 3.7 m, and the average temperature was -12°C. Next, a numerical model for the temperature field of the freezing project was established to predict and analyze the effective thickness, average temperature, and shaft wall temperature of the frozen wall at different depths of shaft excavation. Finally, a comparison and analysis of field temperatures measured at the inspection holes and shaft walls showed that the numerical simulation results generally agreed with the field measurements. The field measurements showed that at the initial stage of freezing, the cooling rates of fine-, medium- and coarse-grained sandstones were 0.364 °C/d, 0.397 °C/d and 0.440 °C/d, respectively. Informatized construction enabled the air shaft freezing project in the Hongqinghe coal mine to be completed successfully.
机译:针对人工冻结轴下沉项目的挑战性分析白垩纪地层,本研究采用了红清河空气轴冻结工程作为实施例,通过人工冻结进行轴下沉温度场的数值模拟和测量分析白垩纪中的方法。首先,在实验室中测量冷冻白垩纪岩石的热物理参数和机械性能。基于工程地质条件和测试参数,设计了红清河空气轴冷冻参数,获得了冷冻项目的初步方案,其中单环的冷冻孔布置在白垩纪地层中,冷冻墙有一个设计厚度为3.7μm,平均温度为-12℃。接下来,建立了冻结项目的温度场的数值模型,以预测和分析钢壁的有效厚度,平均温度和轴挖掘深度深度的轴壁温度。最后,在检查孔和轴壁上测量的场温度的比较和分析表明,数值模拟结果普遍同意现场测量。现场测量结果表明,在冷冻的初始阶段,细细,中粒和粗砂岩的冷却速率分别为0.364℃/ d,0.397℃/ d和0.440℃/ d。信息化建筑使红清河煤矿的空气冻结项目成功完成。

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