Alahmad Barrak, Isachsen Iona, Alwadi Yazan, Taha Haider, Bernheim Anthony, Cooke Erin, Wesley Elizabeth, Kats Gregory, Spengler John D
Environmental Health Department, Harvard T.H. Chan School of Public Health, Boston, MA 02115, USA.
Smart Surfaces Coalition (SSC), Washington, DC 20009, USA.
PNAS Nexus. 2025 Jan 3;4(1):pgae593. doi: 10.1093/pnasnexus/pgae593. eCollection 2025 Jan.
Heat exposure in outdoor work environments poses risks to worker health and productivity. Engineering solutions like cool surfaces that increase surface albedo and reduce temperatures may help mitigate these impacts. We conducted detailed micrometeorological modeling to analyze surface characteristics and heat exposure for outdoor workers at San Francisco International Airport (SFO) under current conditions and three hypothetical albedo-increase scenarios. Wet bulb globe temperature (WBGT) was used to estimate potential productivity loss based on established relationships between heat stress and loss in physical work capacity. For the month of August 2020, we quantified possible gained hours of productivity per worker per month under each hypothetical albedo-increase scenario. Across the entire area of SFO, the average campus albedo was 0.20 (range: 0.08-0.85). Adopting low, moderate, and high albedo modifications for SFO would reduce peak midday WBGT by 0.89, 1.25, and 1.59 °C, respectively. The largest temperature reductions occurred during the morning shift (7 AM-3 PM). In one shift, we found a potential of 5.20, 7.16, and 8.95 h gained per worker over the entire month in the low, moderate, and high albedo modification scenarios, respectively.
户外工作环境中的热暴露会对工人的健康和生产力构成风险。诸如增加表面反照率并降低温度的凉爽表面等工程解决方案,可能有助于减轻这些影响。我们进行了详细的微气象建模,以分析旧金山国际机场(SFO)当前条件下以及三种假设的反照率增加情景下户外工作者的表面特征和热暴露情况。基于热应激与体力工作能力损失之间已确立的关系,采用湿球黑球温度(WBGT)来估计潜在的生产力损失。对于2020年8月,我们量化了每种假设的反照率增加情景下每个工人每月可能增加的生产力小时数。在SFO的整个区域,校园平均反照率为0.20(范围:0.08 - 0.85)。对SFO采用低、中、高反照率修正分别会使中午最高WBGT降低0.89、1.25和1.59°C。最大的温度降幅出现在早班期间(上午7点至下午3点)。在一个班次中,我们发现在低、中、高反照率修正情景下,整个月每个工人分别有5.20、7.16和8.95小时的潜在工作时间增加。