Study on the Effectiveness of the Integral Emergency Response System for Coal Mine Water Hazard Accidents Based on Combination Weighting

Author:

Hao Yu12,Yang Huanhuan3,Zhang Lijun12,Sun Chaolun124

Affiliation:

1. Emergency Management School, Henan Polytechnic University, Jiaozuo 454000, China

2. Safety and Emergency Management Research Center, Henan Polytechnic University, Jiaozuo 454000, China

3. Emergency Management Training Center, Party School of the CPC Central Committee (Chinese Academy of Governance), Beijing 100091, China

4. State Key Laboratory Cultivation Base for Gas Geology and Gas Control, Henan Polytechnic University, Jiaozuo 454000, China

Abstract

Improving the emergency response effectiveness of coal mines in response to water hazard accidents not only plays a vital part in minimizing the resultant losses, but also functions as an important index for evaluating the emergency response capability of coal mines. Therefore, it is of great necessity to test the emergency response capability of coal mines. In this study, an effectiveness measurement index system for the emergency response system that comprises two primary indexes (i.e., response capability and service capability) and six secondary indexes (i.e., accident information transmission, emergency command and control, emergency rescue and mitigation, emergency management, personnel team, and prevention and preparation) was constructed. Additionally, a technique for order preference by similarity to ideal solution (TOPSIS) model for evaluating the effectiveness of the integral emergency response system for coal mine water hazard accidents, based on combination weighting, was put forward. Both the empirical evaluation and model validation of the emergency response system for water hazard accidents were carried out by taking five coal mines attached to Henan Coking Coal Group as research objects. The findings suggest that the effectiveness of the emergency response system for water hazard accidents in the Guhanshan Coal Mine and the Zhongmachun Coal Mine is rated as “average”, while those in the Jiulishan Coal Mine, Zhaogu No. 1 Coal Mine, and Zhaogu No. 2 Coal Mine are graded as “good”. This result is consistent with the actual situation, which verifies the capacity of the proposed TOPSIS model to evaluate the emergency response system scientifically and efficiently for coal mine water hazard accidents. This study not only offers new ideas for how to enhance the comprehensive emergency response capability of coal mines with respect to water hazard accidents, but also provides support for making decisions concerning the upgrading of the emergency response capacity of coal mines.

Funder

National Natural Science Foundation of China

Strategic Research and Consulting Project of the Chinese Academy of Sciences

Philosophy and Social Science Innovation Team of Colleges in Henan Province

Humanities and Social Sciences Foundation of Henan Polytechnic University

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference44 articles.

1. National Development and Reform Commission (2016, December 30). Coal Industry Development “13th Five-Year Plan”, Available online: http://www.nea.gov.cn/2016-12/30/c_135944439.htm.

2. Ge, L.T., Ye, G.J., and Gang, H.L. (2001). Hydrogeology of Coal Fields in China, Coal Industry Press.

3. Wang, H., and Liu, B. (2007). Control Technology of Mine Water Damage, Coal Industry Press.

4. Characteristics, causes, and prevention measures of coal mine water hazard accidents in China;Zeng;Coal Sci. Technol.,2023

5. Rock fracture spacings, openings, and porosities;David;J. Soil Mech. Found. Div.,1968

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