张辛亥, 张首石, 窦凯, 王凯, 赵思琛. 复合惰气浆液二氧化碳相变特征研究[J]. 煤矿安全, 2022, 53(6): 57-62,68.
    引用本文: 张辛亥, 张首石, 窦凯, 王凯, 赵思琛. 复合惰气浆液二氧化碳相变特征研究[J]. 煤矿安全, 2022, 53(6): 57-62,68.
    ZHANG Xinhai, ZHANG Shoushi, DOU Kai, WANG Kai, ZHAO Sichen. Study on phase transformation characteristics of carbon dioxide in composite inert gas slurry[J]. Safety in Coal Mines, 2022, 53(6): 57-62,68.
    Citation: ZHANG Xinhai, ZHANG Shoushi, DOU Kai, WANG Kai, ZHAO Sichen. Study on phase transformation characteristics of carbon dioxide in composite inert gas slurry[J]. Safety in Coal Mines, 2022, 53(6): 57-62,68.

    复合惰气浆液二氧化碳相变特征研究

    Study on phase transformation characteristics of carbon dioxide in composite inert gas slurry

    • 摘要: 为改善我国矿井火灾现状,优化单一惰性气体灭火技术的不足,搭建了干冰制备系统与可视化CO2相变特征测试实验台,在不同管型下制备了液氮与干冰颗粒的液-固两相混合物,并结合数值模拟探索了三相混合物体系的形成机理及CO2的相变特征。干冰制备实验结果表明:当CO2管路夹角增大时,凝华温度从168 K降低至157 K;干冰凝华量增加,颗粒在重力作用下沉积于可视化管路底部形成凝华覆盖层,凝华层厚度向管路上部扩散。通过模拟发现:随LN2与CO2支管夹角当30°增大至90°,流体流速从14.5 m/s相应增大至15.8 m/s,温度下降速率加快,管路底部干冰生成体积分数增大,与实验结果吻合。

       

      Abstract: To improve the current situation of mine fire in China, and to optimize the deficiency of fire extinguishing technology of the single component inert gas, a dry ice preparation system and a visual test bench for CO2 phase transformation characteristics were set up. Based on different tube types experiments, the three-phase mixture were prepared, which were composed of liquid nitrogen and dry ice particles, the formation mechanism of three-phase was discussed and the phase transformation characteristics of CO2 was analyzed by numerical simulation. The result shows that as the included angle of CO2 pipeline increases, the desublimation temperature decreases from 168 K to 157 K, dry ice desublimation increases. Dry ice particles can be accumulated on the visual inner wall by gravity to form a coating, and its thickness showed a trend of extending to the upper part of the pipeline. The simulation result shows that as the angle between LN2 and CO2 branch pipe increases from 30° to 90°, the fluid flow rate increased from 14.5 m/s to 15.8 m/s, the temperature decrease-rating increased, and the volume fraction of dry ice at the bottom of the pipe increased, which was consistent with the experiment results.

       

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