Exploring the Influence of Summer Temperature on Human Mobility During the COVID‐19 Pandemic in the San Francisco Bay Area

Author:

Ly Amina1ORCID,Davenport Frances V.123ORCID,Diffenbaugh Noah S.14ORCID

Affiliation:

1. Department of Earth System Science Stanford University Stanford CA USA

2. Department of Atmospheric Science Colorado State University Fort Collins CO USA

3. Department of Civil and Environmental Engineering Colorado State University Fort Collins CO USA

4. Doerr School of Sustainability Stanford University Stanford CA USA

Abstract

AbstractStudies on the relationship between temperature and local, small scale mobility are limited, and sensitive to the region and time period of interest. We contribute to the growing mobility literature through a detailed characterization of the observed temperature‐mobility relationship in the San Francisco Bay Area at fine spatial and temporal scale across two summers (2020–2021). We used anonymized cellphone data from SafeGraph's neighborhood patterns data set and gridded temperature data from gridMET, and analyzed the influence of incremental changes in temperature on mobility rate (i.e., visits per capita) using a panel regression with fixed effects. This strategy enabled us to control for spatial and temporal variability across the studied region. Our analysis suggested that all areas exhibited lower mobility rate in response to higher summer temperatures. We then explored how several additional variables altered these results. Extremely hot days resulted in faster mobility declines with increasing temperatures. Weekdays were often more resistant to temperature changes when compared to the weekend. In addition, the rate of decrease in mobility in response to high temperature was significantly greater among the wealthiest census block groups compared with the least wealthy. Further, the least mobile locations experienced significant differences in mobility response compared to the rest of the data set. Given the fundamental differences in the mobility response to temperature across most of our additive variables, our results are relevant for future mobility studies in the region.

Funder

Stanford University

Publisher

American Geophysical Union (AGU)

Subject

Health, Toxicology and Mutagenesis,Management, Monitoring, Policy and Law,Public Health, Environmental and Occupational Health,Pollution,Waste Management and Disposal,Water Science and Technology,Epidemiology,Global and Planetary Change

Reference59 articles.

1. Aaheim H. A. &Hauge K. E.(2005).Impacts of climate change on travel habits: A national assessment based on individual choices. Retrieved fromhttps://pub.cicero.oslo.no/cicero-xmlui/handle/11250/191992

2. Development of gridded surface meteorological data for ecological applications and modelling

3. American Housing Survey (AHS). (2018).American housing survey (AHS)[Dataset].US Department of Housing and Urban Development. Retrieved fromhttps://catalog.data.gov/dataset/american-housing-survey-ahs

4. Association between mobility patterns and COVID-19 transmission in the USA: a mathematical modelling study

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