A Study on Evaluation of Thermal Environment using Heat Stress Indices for Deep Coal Mine in Korea

Seon-Oh Park, Jang-hoon Roh, Jin Kim
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引用次数: 3

Abstract

In this study, the thermal environment in a large scale coal mine located in Taebaek, Gangwondo was assessed by a field survey. In order to estimate the thermal environment, various heat stress indices such as WBGT, HSI, ESI, KATA index and effective temperature were investigated. Correlation analysis was also conducted. It was found that the thermal environment in most workplace was high. In particular, the correlation coefficient between HSI reflected in physiological fatigue characteristic and the maximum sweat evaporation heat was -0.834. This shows that the correlation coefficient have the most influence on HSI index. The factor which has the most influence on the maximum sweat evaporation heat is velocity of air. The thermal environment of high-depth coal mines is likely to be improved by installing a structure that enables the maximum prevention of extended digging, air doors, or the leakage of the inflow of air in the first shaft.
韩国深部煤矿热环境热应力指标评价研究
本研究对位于江原道太白的大型煤矿的热环境进行了实地调查。研究了WBGT、HSI、ESI、KATA指数和有效温度等热应力指标对热环境的影响。并进行相关分析。研究发现,大多数工作场所的热环境较高。其中,生理疲劳特征反映的HSI与最大汗液蒸发热的相关系数为-0.834。由此可见,相关系数对恒生指数的影响最大。对最大汗液蒸发热影响最大的因素是空气流速。高深煤矿的热环境有可能通过安装一种结构来改善,这种结构可以最大限度地防止长挖、空气门或第一竖井流入的空气泄漏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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