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Oxygen Distribution and Air Leakage Law in Gob of Working Face of U+L Ventilation System

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  • Xiaowei Zhai
  • Bo Wang
  • Shangrong Jiang
  • Weixia Zhang

Abstract

In order to prevent and control coal spontaneous combustion effectively in the gob of U+L working face, the 30105 working face of Hanglaiwan mine was taken as the research object. The relationship models between oxygen concentration and burial depth of the two tunnels in the gob of U+L working face were established. The distribution of oxygen in the gob of the working face of U+L ventilation system was studied by field observation combined with numerical simulation. The results show that the air leakage in the gob is serious. There are a number of fluctuation areas where the oxygen concentration first decreases and then increases in the air intake side of the gob. The oxygen concentration peaked at 100m, 175m, and 245m, respectively, from the intake side of the gob. In the same position of the gob depth, the air leakage intensity on the intake side is generally higher than that on the return side, and the oxygen concentration on the intake side of the gob is slower than the return side. Oxygen concentration maintains at 5.09% when the depth of gob reaches 400m. Measures to prevent coal spontaneous combustion should be strengthened in the air intake side.

Suggested Citation

  • Xiaowei Zhai & Bo Wang & Shangrong Jiang & Weixia Zhang, 2019. "Oxygen Distribution and Air Leakage Law in Gob of Working Face of U+L Ventilation System," Mathematical Problems in Engineering, Hindawi, vol. 2019, pages 1-10, February.
  • Handle: RePEc:hin:jnlmpe:8356701
    DOI: 10.1155/2019/8356701
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