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Analysis of Heat Stress and the Indoor Climate Control Requirements for Movable Refuge Chambers

机译:活动式避难所热应力及室内气候控制要求分析

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摘要

Movable refuge chambers are a new kind of rescue device for underground mining, which is believed to have a potential positive impact on reducing the rate of fatalities. It is likely to be hot and humid inside a movable refuge chamber due to the metabolism of trapped miners, heat generated by equipment and heat transferred from outside. To investigate the heat stress experienced by miners trapped in a movable refuge chamber, the predicted heat strain (PHS) model was used to simulate the heat transfer process between the person and the thermal environment. The variations of heat stress with the temperature and humidity inside the refuge chamber were analyzed. The effects of air temperature outside the refuge chamber and the overall heat transfer coefficient of the refuge chamber shell on the heat stress inside the refuge chamber was also investigated. The relationship between the limit of exposure duration and the air temperature and humidity was numerically analyzed to determine the upper limits of temperature and humidity inside a refuge chamber. Air temperature of 32 °C and relative humidity of 70% are recommended as the design standard for internal thermal environment control of movable refuge chambers.
机译:活动式避难所是一种用于地下采矿的新型救援设备,据信对减少死亡人数具有潜在的积极影响。由于被困的矿工的新陈代谢,设备产生的热量以及从外部传递的热量,移动式避难所内部可能很热和潮湿。为了研究困在活动避难所中的矿工遭受的热应力,使用预测的热应变(PHS)模型来模拟人与热环境之间的传热过程。分析了热应力随避难所室内温度和湿度的变化。还研究了避难室内的空气温度和避难室内的总传热系数对避难室内的热应力的影响。对暴露持续时间的极限与空气温度和湿度之间的关系进行了数值分析,以确定庇护室内的温度和湿度的上限。建议将空气温度为32°C,相对湿度为70%,作为可移动避难室内的内部热环境控制的设计标准。

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