DOE OSTI · 3683889
Modeling Occupant Core Temperatures Across the Boston Building Stock to Advance Public Health
Abstract
In recent history, extreme heat has been the cause of most deaths from a natural disaster. Exposure to extreme heat can aggravate preexisting conditions, increase hospitalization, and even cause death. Thus, modeling the thermal resilience of households across the United States will allow for a quantitative assessment of the health and safety risks posed by extreme heat. For the first time, we simulate occupant comfort in representative households across Boston by combining the granular results of the ResStock(TM) model with a two-node heat strain model. This model calculates occupants' core body temperature in each simulated household over a year. We compare the simulated core temperatures to two public health metrics: hyperthermia and heat stroke. Our results show for households in Boston that do not have or use aid conditioning, thousands potentially experience many dangerous heat events each summer and these events can last for more than a day at a time. These heat events peak during the late afternoon and evening, just as residents are coming home, cooking meals, and trying to go to sleep. We have found that multi-family buildings, renters, and low-income homes in more airtight and insulated homes are the most at risk for these events. These results demonstrate the scale and urgency of exposure to extreme heat.
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Sandoval, Noah [National Laboratory of the Rockies, Golden, CO (United States)] (ORCID:0000000344570454), Clapper, Haley [National Laboratory of the Rockies, Golden, CO (United States)], Kar, Bandana [National Laboratory of the Rockies, Golden, CO (United States)] (ORCID:000000020510658X), Brossman, Jes [National Laboratory of the Rockies, Golden, CO (United States)] (ORCID:0009000376383378). 2026-08-31. Modeling Occupant Core Temperatures Across the Boston Building Stock to Advance Public Health. https://doi.org/10.66816/pr4046846
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