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首页> 外文期刊>Advances in civil engineering >Influences of Water Vapor on Roof Fall Accidents in Selected Underground Coal Mines in Malawi
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Influences of Water Vapor on Roof Fall Accidents in Selected Underground Coal Mines in Malawi

机译:水蒸气对马拉维选定地下煤矿屋顶事故的影响

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摘要

To develop affordable countermeasures against the roof falls, the accident records of Mchenga Mine were investigated as the first step. Based on the accident records, it was found that roof falls occurred most in April and May. Humidity measurements were taken both in the underground mine and at surface, and humidity peak appeared in April. The accident occurrence and the underground humidity had a positive correlation in which no roof falls could be expected under a humidity of less than a certain value. Effect of humidity on the indirect tensile strength of the rock samples collected from the mine was investigated, and it showed that the indirect tensile strength decreased with humidity. The diffusion coefficient was measured for the rock samples collected from Mchenga Mine as well as from Kaziwiziwi Mine, and the migration of water vapor into rock mass in the roof was calculated for Mchenga case. It was clarified that the weakening of tensile strength was transmitted upward at several centimeters per day from the immediate roof. This could explain the slight difference of the accident peak in April and May from the humidity peak in April. Introducing fresh and dry outside air, if possible, will not only improve the working environment but also contribute to a decrease in roof falls.
机译:为屋顶跌落制定实惠的对策,宫山地雷的事故记录被调查为第一步。基于事故记录,发现屋顶瀑布最多在四月和五月发生。湿度测量在地下矿井和表面上进行,4月份出现湿度峰值。事故发生和地下湿度具有正相关的正相关,其中在湿度下不能屋顶落下的距离小于一定值。研究了湿度对从矿井收集的岩石样品的间接拉伸强度的影响,并显示间接拉伸强度随湿度降低。针对从Mchenga矿器以及来自Kaziwiziwi矿的岩石样本测量扩散系数,并计算水蒸气在屋顶中迁移到屋顶上的岩体。澄清说,拉伸强度的弱化从直接屋顶从几厘米处向上传播。这可以解释4月份事故峰的轻微差异,五月可能来自湿度峰值。如果可能的话,介绍新鲜和干燥的外部空气,不仅会改善工作环境,而且还有助于屋顶下降。

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