National-scale remotely sensed lake surface temperature in the contiguous United States
Temperature is a master variable in aquatic ecosystems. Despite its importance for ecosystem function, our capacity to measure temperature is often limited to focal systems with intensive in situ measurements or larger systems with readily accessible data from disparate data streams. These limitations are consequential for holistically understanding aquatic ecosystem status and change, especially considering that most lakes globally do not have consistent in situ data. To empower researchers with macroscale surface temperature observations, we present the first remotely sensed lake temperature dataset that includes measurements from Landsat 8 made every ~ 16 d for 137,394 lakes of at least 4 ha in surface area throughout the contiguous United States from 2013 through 2025. By aggregating data in a cloud computing framework, the dataset is amenable for continual update, thereby allowing end users to track local-to-continental scale changes in lake water temperature over time.
Citation Information
| Publication Year | 2026 |
|---|---|
| Title | National-scale remotely sensed lake surface temperature in the contiguous United States |
| DOI | 10.1002/lol2.70183 |
| Authors | Michael Frederick Meyer, Timothy J. Stagnitta, Wilson Barg Salls, Brendan F Wakefield, Tyler King |
| Publication Type | Article |
| Publication Subtype | Journal Article |
| Series Title | Limnology & Oceanography - Letters |
| Index ID | 70280466 |
| Record Source | USGS Publications Warehouse |
| USGS Organization | Oregon Water Science Center |