...
首页> 外文期刊>E3S Web of Conferences >Preparation of CO 2/N 2 cryogenic slurry and its pipeline flow characteristics
【24h】

Preparation of CO 2/N 2 cryogenic slurry and its pipeline flow characteristics

机译:CO 2 / n 2 低温浆料的制备及其管道流动特性

获取原文
   

获取外文期刊封面封底 >>

       

摘要

It was proposed to use CO_(2)/N_(2)to effectively prevent and control Class A solid spontaneous fires such as coal. The preparation process of CO_(2)/N_(2)cryogenic slurry pipeline and its pipeline flow characteristics were studied. The temperature field, pressure field and phase change characteristic changed during the transportation of the CO_(2)/N_(2)mixture in the pipeline are analyzed by numerical simulation. The results showed that: the fluid in the pipeline exchanged heat and started to contact at a position of 0.1m in the pipeline. The temperature first rapidly dropped to the lowest temperature of 103K, and then the fluids in the range of 0.1m to 0.3m were fully mixed, and the temperature rised to 164K. The temperature was consistent with the equilibrium state in the pipe, and the temperature was gentle and stable; the pressure in the pipe was on the whole downward trend, and each position along the main pipe produced a positive pressure difference relative to the end of the pipe. The closer to the mixing place, the greater the corresponding pressure difference; During the mixing process, LN_(2)was acted as a cold source to sublime CO_(2)to form dry ice particles. And through the cryogenic fluid mixing experiment, the temperature distribution in the pipeline, range of the dry ice particle generation position, and the dry ice particle generation phenomenon was measured. The results showed that the mixing was completed within 0.8 m of the pipeline, and the temperature in the tube rised to 168K and remain stable. The data were basically consistent. And dry ice particles generated at the temperature of 194.5K, and a diffuse gas cloud formed at the outlet with the momentum of the jet.
机译:建议使用CO_(2)/ N_(2)来有效预防和控制群体诸如煤的固体自发性火灾。研究了CO_(2)/ N_(2)低温浆料管道及其管道流动特性的制备方法。通过数值模拟分析在管道中运输在管道中的CO_(2)/ N_(2)混合物期间改变的温度场,压力场和相变特征。结果表明:管道中的流体交换热量并开始在管道中以0.1M的位置接触。温度首先快速落入103k的最低温度,然后将0.1m至0.3m的流体完全混合,并将温度升至164k。温度与管道中的平衡状态一致,温度温和稳定;管道中的压力在整个下趋势上,沿主管的每个位置相对于管道的末端产生正压差。更靠近混合的地方,相应的压力差越大;在混合过程中,将LN_(2)作为冷源至升华CO_(2)以形成干冰颗粒。通过低温流体混合实验,测量管道中的温度分布,干冰颗粒产生位置和干冰颗粒产生现象。结果表明,混合在0.8米的管道内完成,管道中的温度达到168K并保持稳定。数据基本上是一致的。在194.5k的温度下产生的干冰颗粒,以及在出口处形成的漫射气体云,其动量在射流的出口处。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号