Suppr超能文献

水冷钢管对防止煤堆自燃的作用及其热迁移行为研究

Research on the effect of water-cooling steel pipe on preventing spontaneous combustion of coal pile and its thermal migration behavior.

作者信息

Ai Chunming, Xue Shuang, Zhang Li, Zhou Qinyuan

机构信息

College of Safety Science and Engineering, Liaoning Technical University, Huludao, 125000, China.

Key Laboratory of Thermal Disaster and Prevention, Ministry of Education, Huludao, 125000, China.

出版信息

Sci Rep. 2024 Apr 17;14(1):8838. doi: 10.1038/s41598-024-58857-3.

Abstract

During the storage and transportation process after mining, coal piles are placed in open environments, making them prone to self-heating and spontaneous combustion due to the nature of coal and factors like natural wind flow. In recent years, there have been frequent spontaneous combustion incidents involving coal piles, posing significant safety risks. To effectively prevent and control spontaneous combustion disasters in open-air coal storage piles, we propose a method involving the arrangement of water-cooling steel pipes within the coal piles. This method applies theories of coal spontaneous combustion mechanisms, porous media heat transfer, and non-isothermal pipeline heat transfer. The multi-physics coupling model of COMSOL numerical simulation software is used to analyze the spontaneous ignition process and prevention effect of open pit coal pile. In the model, the thin material transfer of porous media is taken as the oxygen concentration field, the heat transfer of porous media is taken as the temperature field, and the free and porous media flow is taken as the air seepage velocity field. The simulation results of the spontaneous combustion process in the coal pile indicate that the high-temperature zone of spontaneous combustion is situated within the range of 0.5 ~ 1.5 m inside the wind-facing surface and extends 0.5 m above the ground level. These findings serve as a basis for determining the optimal placement of water-cooling steel pipes within the coal pile. The simulation results of a single water-cooling steel pipe demonstrate a positive correlation between the cooling effect on the coal pile and the water cool flow, and a negative correlation with the water cool temperature. Additionally, the cooling radius of the water-cooling steel pipe is determined by the circumference of the pipe and remains unaffected by the water cool flow. Finally, simulations were conducted to evaluate the cooling effect of multiple rows of steel pipes, and optimal arrangement parameters were determined: a center distance between steel pipes of 1 m and a water cool flow rate of 1500 L/min. As a result, the onset of the self-heating period in the coal pile was delayed by 11 days, and the spontaneous combustion period was extended by 56 days. The arrangement of water-cooling steel pipes in the coal pile has demonstrated significant efficacy in preventing and controlling spontaneous combustion.

摘要

在煤炭开采后的储存和运输过程中,煤堆置于露天环境,由于煤炭自身性质以及自然风流等因素,容易发生自热和自燃现象。近年来,煤堆自燃事故频发,带来了重大安全隐患。为有效防治露天储煤堆自燃灾害,我们提出一种在煤堆内部布置水冷钢管的方法。该方法应用了煤炭自燃机理、多孔介质传热以及非等温管道传热等理论。利用COMSOL数值模拟软件的多物理场耦合模型,对露天煤堆的自燃过程及防治效果进行分析。在模型中,将多孔介质的稀薄物质传递作为氧浓度场;将多孔介质的传热作为温度场;将自由和多孔介质流动作为空气渗流速度场。煤堆自燃过程的模拟结果表明,自燃高温区位于迎风面内0.5至1.5米范围内且高于地面0.5米。这些结果为确定煤堆内水冷钢管的最佳布置提供了依据。单根水冷钢管的模拟结果表明,其对煤堆的冷却效果与冷却水流呈正相关,与冷却水温呈负相关。此外,水冷钢管的冷却半径由管道周长决定,不受冷却水流影响。最后,对多排钢管的冷却效果进行模拟,确定了最佳布置参数:钢管中心距1米,冷却水流速1500升/分钟。结果,煤堆自热期起始时间推迟了11天,自燃期延长了56天。在煤堆中布置水冷钢管对防治自燃具有显著效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a40f/11538521/83d0a5444c44/41598_2024_58857_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验