Effects of Abrupt Cross-Section Area Change on theMultiparameter Propagation Characteristics of Premixed Methane–Air Explosion in Pipes

Author:

Qiu Jinwei12,Jiang Bingyou12,Tang Mingyun12,Zhou Liang12,Yang Yingdi12

Affiliation:

1. School of Safety Science and Engineering, Anhui University of Science and Technology, Huainan 232001, China

2. State Key Laboratory of Mining Response and Disaster Prevention and Control in Deep Coal Mines, Anhui University of Science and Technology, Huainan 232001, China

Abstract

This paper explores the effects of an abrupt cross-section area change of gas pipes on the propagation law of explosion. For this, an explosion pipe experimental system was established, and a numerical research was conducted. By experimental and numerical simulation, the evolution of the overpressure, temperature, vorticity, and kinetic energy of shock waves of gas explosion in abrupt pipelines was investigated. This allowed us to obtain expressions for the attenuation coefficient, increase coefficient, and reflection coefficient of gas explosion overpressure. The study indicates that an abrupt increase of the pipeline cross-section area leads to a decrease of shock wave overpressure and vice versa. For a given change of cross-section area, the attenuation coefficient gradually increases as the initial peak overpressure rises, whereas the increase coefficient and reflection coefficient both present a decreasing trend. An abrupt change in the pipe structure can inhibit the propagation of gas explosion flames. The explosive gas is affected by the turbulence effect after passing through the middle large-diameter pipe, and the vorticity curve exhibits a clear peak. In addition, the large eddy motion caused by strong confinement increases the kinetic energy of the gas in pipes. The above research outcomes contribute to further enriching the basic theory of gas explosion for the study of gas explosion propagation in mining laneway.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference35 articles.

1. Numerical simulation of airflow distribution in mine tunnels;Ding;Int. J. Min. Sci. Technol.,2017

2. Computational fluid dynamics simulation on the longwall gob breathing;Lolon;Int. J. Min. Sci. Technol.,2017

3. Prediction of air flow, methane, and coal dust dispersion in a room and pillar mining face;Yueze;Int. J. Min. Sci. Technol.,2017

4. Looking ahead to significant improvements in mining safety and health through innovative research and effective diffusion into the industry;Jeffery;Int. J. Min. Sci. Technol.,2015

5. Study on propagation rules about gas explosion shock wave in the laneway with abrupt change of section area;Jia;China Saf. Sci. J.,2007

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