Articles | Volume 30, issue 18
https://doi.org/10.5194/hess-30-6075-2026
https://doi.org/10.5194/hess-30-6075-2026
Research article
 | 
29 Sep 2026
Research article |  | 29 Sep 2026

Incorporating spatial heterogeneity into evapotranspiration estimates for bioretention basins

Joshua S. Caplan, Martin Bouda, Allyson B. Salisbury, Michael Alonzo, Jonathan E. Nyquist, Laura Toran, and Sasha W. Eisenman

Data sets

Data for ''Incorporating spatial heterogeneity into evapotranspiration estimates for bioretention basins'' J. Caplan https://doi.org/10.4211/hs.ba487d9c6e4b473f88d8298499ee1c6d

Model code and software

Data for ''Incorporating spatial heterogeneity into evapotranspiration estimates for bioretention basins'' J. Caplan https://doi.org/10.4211/hs.ba487d9c6e4b473f88d8298499ee1c6d

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Short summary
We sought to test and improve the modeling tools used to quantify evapotranspiration (ET) in urban bioretention basins, where plant size and shade vary widely. Using direct measurements and spatially detailed data from a basin in Philadelphia, we found that common models often produce ET estimates that differ substantially from empirical estimates. Simple corrections to standard models greatly improve agreement, helping cities better predict green stormwater infrastructure performance.
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