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Heat Index and Adjusted Temperature as Surrogates for Wet Bulb Globe Temperature to Screen for Occupational Heat Stress

机译:湿球温度的热指数和调节温度的替代物,以筛选职业热应力

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摘要

Ambient temperature and relative humidity are readily available and thus tempting metrics for heat stress assessment. Two methods of using air temperature and relative humidity to create an index are Heat Index and Adjusted Temperature. The purposes of this article are: (1) to examine how well Heat Index and Adjusted Temperature estimated the wet bulb globe temperature (WBGT) index, and (2) to suggest how Heat Index and Adjusted Temperature can be used to screen for heat stress level. Psychrometric relationships were used to estimate values of actual WBGT for conditions of air temperature, relative humidity, and radiant heat at an air speed of 0.5 m/s. A relationship between Heat Index [degrees F] and WBGT [degrees C] was described by WBGT = -0.0034 HI2 + 0.96 HI - 34. At lower Heat Index values, the equation estimated WBGTs that were +/- 2 degrees C-WBGT around the actual value, and to about +/- 0.5 degrees C-WBGT for Heat Index values > 100 degrees F. A relationship between Adjusted Temperature [degrees F] and WBGT [degrees C] was described by WBGT = 0.45 Tadj - 16. The actual WBGT was between 1 degrees C-WBGT below the estimated value and 1.4 degrees C-WBGT above. That is, there was a slight bias toward overestimating WBGT from Adjusted Temperature. Heat stress screening tables were constructed for metabolic rates of 180, 300, and 450 W. The screening decisions were divided into four categories: (1) < alert limit, (2) < exposure limit, (3) hourly time-weighted averages (TWAs) of work and recovery, and (4) a caution zone for an exposure > exposure limit at rest. The authors do not recommend using Heat Index or Adjusted Temperature instead of WBGT, but they may be used to screen for circumstances when a more detailed analysis using WBGT is appropriate. A particular weakness is accounting for radiant heat; and neither air speed nor clothing was considered.
机译:环境温度和相对湿度很容易获得,因此很容易被用来评估热应力。使用空气温度和相对湿度创建指数的两种方法是热指数和调节温度。本文的目的是:(1)检查热指数和调整后的温度如何估算湿球温度(WBGT)指数,以及(2)建议如何使用热指数和调整后的温度来筛选热应力。水平。在空气速度,0.5 m / s的空气温度,相对湿度和辐射热的条件下,使用湿度计量关系来估计实际WBGT的值。 WBGT = -0.0034 HI2 + 0.96 HI-34描述了热指数[度F]和WBGT [度C]之间的关系。在较低的热指数值下,该公式估算的WBGT约为+/- 2度C-WBGT实际值,并且对于热指数值> 100华氏度,为大约+/- 0.5度C-WBGT。WBGT = 0.45 Tadj-16描述了调整温度[°F]和WBGT [°C]之间的关系。实际WBGT在估计值以下1度C-WBGT与上面估计值1.4度C-WBGT之间。也就是说,从调整后的温度高估WBGT存在一些偏差。构建了针对180 W,300 W和450 W代谢率的热应激筛选表。筛选决策分为四类:(1)<警告极限,(2)<暴露极限,(3)每小时时间加权平均值( (TWA)工作和恢复,以及(4)暴露>暴露极限的警戒区。作者不建议使用热指数或调节温度代替WBGT,但可以使用它们筛选适合使用WBGT进行更详细分析的情况。一个特别的弱点是辐射热。而且没有考虑空速和衣服。

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