Research on the Prevention and Control Technology of Low Oxygen in The Upper Corner of Fully Mechanized Coal Mining Face in Daliuta Coal Mine

Authors

  • Xipei Yang

DOI:

https://doi.org/10.54097/e44t3b61

Keywords:

Fully mechanized coal mining face, Low oxygen, Return air upper corner, Prevention and control technology.

Abstract

 In response to the problem of low oxygen in the upper corner of the return air of the 52506 fully mechanized mining face in Daliuta Coal Mine, the impact of atmospheric pressure and temperature changes on the low oxygen in the upper corner of the 52506 fully mechanized coal mining face is analyzed, and the source and cause of the low oxygen gas in the upper corner of the 52506 fully mechanized coal mining face are analyzed from multiple perspectives. A comprehensive treatment method is adopted, including installing windshields and air guide boards at the head and tail ends, joint sealing and leak-repairing at the ground and underground levels, sealing the adjacent goaf communication alleys, pressure ventilation, negative pressure suction, monitoring and control management, etc. This method solves the problem of low oxygen in the upper corner of the 52506 fully mechanized coal mining face.

Downloads

Download data is not yet available.

References

Zhang Lihui. Prevention and control technology of low oxygen in fully mechanized coal mining face with super large area goaf in shallow seam prone to spontaneous combustion [J]. China Coal, 2014, 40(S1): 73-77.

Chi Guoming, Zhang Lihui, Li Bin. Prevention and control technology of low oxygen in the corner of fully mechanized coal mining face with large mining height in shallow buried and close distance coal seam group [J]. Safety in Coal Mines, 2018, 49(S1): 22-26.

Jian Yuerong. Research on prevention and control of low oxygen in the return air corner of coal mining face in close distance coal seam group [J]. Coal Engineering, 2018, 50(S1): 94-96.

Qin Jiangtao, Yang Chun, Pang Cheng, et al. Application experiment of A-B glue sealing technology in coal mine cross-layer extraction boreholes [J]. Mining Safety and Environmental Protection, 2013, 40(6): 77-78.

Zhang Jie, Zhang Jianchen, Liu Qingzhou, et al. Study on the development of roof crack and air leakage law in shallow buried fully mechanized coal mining face [J]. Coal Engineering, 2021, 53(3): 118-123.

Tian Yao, Yang Chenghao, Sun Quanji, et al. Study on air leakage law of U-type ventilation coal mine face [J]. Coal Engineering, 2020, 52(12): 132-136.

Zhao Lufei. Research on the causes and prevention methods of low oxygen in the working face of Bulianta Coal Mine [D]. Xuzhou: China University of Mining and Technology, 2020.

Guo Jinyi. Research on the application of pressure equalization technology in the treatment of low oxygen problem in the return air corner of fully mechanized coal mining face [J]. Coal Engineering, 2017, 49(S2): 146-148.

Sun Bingcheng, Du Changang, Ding Wenlong, et al. Research and application of pressure equalization ventilation technology in fully mechanized coal mining face with steeply inclined thick coal seam [J]. Coal Engineering, 2021, 53(6): 77-81.

Pan Rongkun, Liu Wei, Li Huaizhen, et al. The causes and comprehensive prevention technology of oxygen deficiency in the upper corner of shallow buried and close distance coal seam group [J]. Coal Science and Technology, 2021, 49(2): 102-108.

Wang Guilin, Zhao Jinbo, Hou Kaida, et al. Research on the causes and treatment of low oxygen in the working face of No. 22104 in Shangwan Coal Mine [J]. Coal Engineering, 2022, 54(6): 70-74.

Downloads

Published

23-02-2024

Issue

Section

Articles

How to Cite

Yang, X. (2024). Research on the Prevention and Control Technology of Low Oxygen in The Upper Corner of Fully Mechanized Coal Mining Face in Daliuta Coal Mine. Academic Journal of Science and Technology, 9(2), 9-12. https://doi.org/10.54097/e44t3b61