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Analysis and application of mine air heat-sink capacity in deep mine heat hazard control

机译:深矿热危害控制中矿井空气散热能力的分析与应用

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Considering factors such as temperature and humidity, this paper proposed a concept of "Heat-Sink Capacity" (HSC) to judge the quantity of heat needed to absorb air under certain conditions.When the absolute Heat-Sink Capacity of air is at a negative value or the relative Heat-Sink Capacity exceeds 100 %, the working thermal environment can be regarded as beyond the regulations of The Coal Mine Safety Regulations (China).Under these conditions, steps to lower the temperature are vital.Using No.2 Coal Mine in Jining of Shandong province in China as an example, we measured the HSC of air in winter and summer and outlined the parameters for variation laws.The variation trends of air Heat-Sink Capacity in the underground mine were found dissimilar to common thermodynamic parameters seen in temperature and humidity.In the intake roads and the faces, the heat-sink ability of air gradually decreased due to heat and moisture absorption.It was lowest when reaching the air outlet of the working face and even became a minus value, changing clearly and directly.As a new concept, the Heat-Sink Capacity of mine air can describe the characters of air thermodynamic parameters and the thermal environment in underground working areas quantificationally and provide further guidelines for cooling load in essential mine cooling.
机译:考虑到温度和湿度等因素,本文提出了“散热容量”(HSC)的概念,以判断在某些条件下吸收空气所需的热量。当空气的绝对散热容量处于负面时价值或相对散热器容量超过100%,工作热环境可被视为超出煤矿安全法规(中国)的规定。在这些条件下,降低温度的步骤至关重要。第2煤炭矿井在山东省济宁以冬季和夏季测量了空气的HSC,并概述了变异法的参数。地下矿区空气散热能力的变化趋势与普通热力学参数不同在温度和湿度下看出。在进气道路和面部,由于热量和吸湿性,空气的散热能力逐渐减小。当到达工作的空气出口时,最低是最低的面部甚至变成了减去值,清晰,直接变化。一个新的概念,矿井空气的散热器容量可以描述空气热力学参数和地下工作区域的热环境的特征,并提供了进一步的冷却载荷指导在基本矿井冷却中。

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