Experimental Study on Characteristics of Gas Migration and Dispersion in One Dimensional Space

IF 0.8 4区 工程技术 Q4 CHEMISTRY, MULTIDISCIPLINARY
Ji Wu, Zongxiang Li, Shuoran Huang, Nan Jia
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引用次数: 0

Abstract

Mine counter wind is an important relief measure to control airflow when disaster occurs in mine. Once a fire occurs in the main inlet area of the mine, in order to prevent the expansion of the disaster, it is necessary to carry out mine counter wind.Windy well gas ventilation system during mine air reverse distribution of gas migration is more complex, rely on experimental method is difficult to clearly grasp the mineral sheers distribution of gas migration during the wind, combined with the practice, rarely used against the wind, the lack of mineral sheers anti wind during gas migration distribution in ventilation system, resulting in many cases, difficult to make a decision on against the wind, Therefore, it is necessary to use the computer simulation program to simulate and study the reverse wind in the high gas mine with multiple air shafts. And gas migration in mine is one of the most important parameters in simulation of dispersion dispersion coefficient of gas migration, is for the study of reverse wind during the migration of gas in mine network system diffusion process, the formation of high concentration of gas cloud caused by catastrophe rule research and plan technical analysis, gas migration characteristics of dispersion experiments.

Abstract Image

一维空间气体运移与分散特性的实验研究
矿井逆风是矿井灾害发生时控制气流的重要救济措施。矿井主进水区一旦发生火灾,为防止灾情扩大,有必要进行矿井逆风。有风井瓦斯通风系统中矿井期间空气反分布的瓦斯运移较为复杂,依靠实验方法很难清楚地掌握矿物薄板在逆风期间的瓦斯运移分布,结合实践,很少采用逆风,缺乏矿物薄板在通风系统中逆风期间的瓦斯运移分布,导致很多情况下,难以做出逆风的决策,因此,利用计算机仿真程序对多风井高瓦斯矿井的逆风进行模拟研究是十分必要的。而瓦斯在矿井中运移的色散是模拟瓦斯运移中最重要的参数之一,色散系数是为了研究逆风运移过程中瓦斯在矿井网络系统中的扩散过程,对高浓度气体云形成造成的突变规律进行研究和规划技术分析,进行瓦斯运移特性的色散实验。
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来源期刊
Solid Fuel Chemistry
Solid Fuel Chemistry CHEMISTRY, MULTIDISCIPLINARY-ENERGY & FUELS
CiteScore
1.10
自引率
28.60%
发文量
52
审稿时长
6-12 weeks
期刊介绍: The journal publishes theoretical and applied articles on the chemistry and physics of solid fuels and carbonaceous materials. It addresses the composition, structure, and properties of solid fuels. The aim of the published articles is to demonstrate how novel discoveries, developments, and theories may be used in improved analysis and design of new types of fuels, chemicals, and by-products. The journal is particularly concerned with technological aspects of various chemical conversion processes and includes papers related to geochemistry, petrology and systematization of fossil fuels, their beneficiation and preparation for processing, the processes themselves, and the ultimate recovery of the liquid or gaseous end products.
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