Landscape phenology, vegetation condition, and relations with climate at Cedar Breaks National Monument, 2000–2019
Thoma D . 2025. Landscape phenology, vegetation condition, and relations with climate at Cedar Breaks National Monument, 2000–2019. Science Report. NPS/SR—2025/313. National Park Service. Fort Collins, Colorado. https://doi.org/10.36967/2313338
Climate plays a major role in determining vegetation composition in parks, and changes in climate will affect vegetation conditions and composition in the future. This study, which examined changes in climate, water availability, and vegetation from 2000 to 2019 in Cedar Breaks National Monument (NM) in Utah, USA, evaluates vegetation sensitivity to weather and climate to understand climate-vegetation relationships that can be used to predict what vegetation types may change. Specifically, it evaluates where change is likely in the park, when change may happen, and why change may occur. This information is needed to help avoid surprises and can be used to plan for inevitable change. Satellite images were analyzed with climate data to quantify vegetation sensitivity to climate and drought tolerance. Historic trends in vegetation production and phenology were evaluated, and analysis with climate data identified which aspects of climate were most important to annual production and phenology for different vegetation types. Additionally, trends in climate and climate drivers of vegetation phenology were also identified. Since 2000, growing season primary production has increased in most alliance groups in and near Cedar Breaks NM. The increase coincided with an increase in temperature over the same period which provided more heat for plant growth in most years when water was not limiting. However, over this period, there were warm and cool years and wet and dry periods that resulted in substantial variability in vegetation production. High precipitation years typically coincide with cooler temperatures which shortens the growing season due to persistent snow cover and colder temperatures for growth during the growing season. The information generated in this study can be applied to long-term management and planning which can help preserve the natural resources of the National Park System for the enjoyment, education, and inspiration of this and future generations.
- Type
- Published Report
- Authors
- Thoma, David
- Date of Issue
- 2025-06
- Publisher
- National Park Service
- DOI
- 10.36967/2313338
- Units
- CEBR , NCPN , NRSS
- Keywords
- aridification, drought tolerance, Moderate Resolution Imaging Spectroradiometer, MODIS, monitoring, NCPN Land Surface Monitoring, NDVI, Normalized Difference Vegetation Index, remote sensing, vegetation condition, vegetation phenology, vegetation production, water balance