Evaluating Heat Risk: Comparing On-Site WBGT Measurements Versus Smartphone Application Estimates

IF 3.8 2区 医学 Q2 ENVIRONMENTAL SCIENCES Geohealth Pub Date : 2025-03-25 DOI:10.1029/2025GH001347
A. J. Grundstein, S. W. Yeargin, E. R. Cooper, L. Cargile, J. Clark, R. M. Lopez, K. C. Miller, A. M. Montalvo, S. Scarneo-Miller, R. L. Stearns
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Abstract

Exertional heat illness poses a significant risk for workers, athletes, and military personnel participating in outdoor activities during hot weather. An important component of heat safety is to monitor environmental conditions through heat stress indices like the wet bulb globe temperature (WBGT) and adjust activity as conditions get progressively hotter. Traditionally, on-site (OS) WBGT measurement devices are used, but phone applications (PAs) offering WBGT estimates have emerged as a potential alternative. However, there is little information on how closely PA-derived WBGTs match OS measurements to guide decision-making. This study compared the PA-derived Zelus WBGT estimates with OS measurements from Kestrel 5400 devices and their impact on activity modification categorization. A 2-month observational study collected 1,056 paired (OS and PA) WBGT measurements from 26 high schools across 11 states in the United States and over diverse surfaces (artificial turf 53%, natural grass 44%, others 3%). WBGT values were categorized using regional activity modification thresholds to account for local acclimatization. Our findings indicated that while exhibiting high correlation (r = 0.89), PA WBGTs were on average about 1°C cooler, with differences of 2–3°C at higher WBGTs. Findings were similar for both grass and artificial turf surfaces. Further, significant discrepancies were observed in WBGT-based activity modification categories, with the PA more frequently indicating lower modification categories compared to OS devices, especially in hotter conditions. In light of these findings, the PA requires further validation prior to its adoption as a replacement for OS measurements.

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热风险评估:现场 WBGT 测量值与智能手机应用估算值的比较
劳累性中暑对在炎热天气参加户外活动的工人、运动员和军事人员构成重大风险。热安全的一个重要组成部分是通过湿球温度(WBGT)等热应力指数监测环境状况,并随着环境逐渐变热而调整活动。传统上,使用现场(OS) WBGT测量设备,但提供WBGT估计的电话应用程序(PAs)已成为潜在的替代方案。然而,关于pa衍生的wbgt与OS测量值的匹配程度如何以指导决策的信息很少。本研究比较了pa衍生的Zelus WBGT估计值与Kestrel 5400设备的OS测量值及其对活动改变分类的影响。一项为期2个月的观察性研究从美国11个州的26所高中收集了1056对(OS和PA) WBGT测量数据,这些数据来自不同的表面(人造草坪53%,天然草坪44%,其他3%)。利用区域活动修改阈值对WBGT值进行分类,以解释当地的适应性。我们的研究结果表明,尽管具有高相关性(r = 0.89),但PA wbgt平均温度较低约1°C,较高wbgt的差异为2-3°C。草皮和人造草坪表面的研究结果相似。此外,在基于wbgt的活动修改类别中观察到显著差异,与OS设备相比,PA更频繁地表示较低的修改类别,特别是在较热的条件下。鉴于这些发现,在采用PA作为OS测量的替代品之前,需要进一步验证。
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来源期刊
Geohealth
Geohealth Environmental Science-Pollution
CiteScore
6.80
自引率
6.20%
发文量
124
审稿时长
19 weeks
期刊介绍: GeoHealth will publish original research, reviews, policy discussions, and commentaries that cover the growing science on the interface among the Earth, atmospheric, oceans and environmental sciences, ecology, and the agricultural and health sciences. The journal will cover a wide variety of global and local issues including the impacts of climate change on human, agricultural, and ecosystem health, air and water pollution, environmental persistence of herbicides and pesticides, radiation and health, geomedicine, and the health effects of disasters. Many of these topics and others are of critical importance in the developing world and all require bringing together leading research across multiple disciplines.
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