银洞沟煤矿乙二醇间壁式换热井口防冻系统设计优化

    Design optimization of ethylene glycol interwall heat exchange wellhead antifreeze system in Yindonggou Coal Mine

    • 摘要: 提出了一种乙二醇间壁式换热技术提取排风余热加热进风井口的方法;基于热平衡理论对排风余热热量进行计算与系统方案设计,结合宁夏银洞沟煤矿项目实际案例,采用Threlkeld焓差法建立湿工况下单管换热分析模型,对运行工况进行优化分析。结果表明:乙二醇间壁式换热技术提取矿井回风余热热量,能够满足井口防冻所需热负荷;管内传热介质入口温度为-2 ℃,流速在1.49~2.76 m/s时,系统运行效果稳定;当室外温度低于-15 ℃时,井口温度仍能达到5 ℃以上。

       

      Abstract: A method of extracting exhaust waste heat and heating inlet wellhead by glycol wall heat exchange technology is proposed. Calculation and system design of exhaust air waste heat based on heat balance theory, combined with the actual case of Ningxia Yindonggou Coal Mine project, the Threlkeld enthalpy difference method was used to develop an analytical model for single tube heat transfer under wet conditions and to optimize the operating conditions. The results show that the glycol inter-wall heat transfer technology can extract the heat from the mine return air and meet the heat load required to prevent freezing at the wellhead. The system operates stably when the inlet temperature of the heat transfer medium in the tube is -2 ℃ and the flow rate is 1.49 m/s to 2.76 m/s. When the outdoor temperature is below -15 ℃, the wellhead temperature can still reach above 5 ℃.

       

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