Temperature Is Likely an Important Omission in Interpreting Vegetation Optical Depth

Author:

Zhao Meng1ORCID,Humphrey Vincent23ORCID,Feldman Andrew F.45ORCID,Konings Alexandra G.6ORCID

Affiliation:

1. Department of Earth and Spatial Sciences University of Idaho Moscow ID USA

2. Institute for Atmospheric and Climate Science Zurich Switzerland

3. Federal Office of Meteorology and Climatology MeteoSwiss Zurich‐Airport Switzerland

4. Biospheric Sciences Laboratory NASA Goddard Space Flight Center Greenbelt MD USA

5. Earth System Science Interdisciplinary Center University of Maryland College Park MD USA

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

Abstract

AbstractVegetation optical depth (VOD) satellite microwave retrievals provide significant insights into vegetation water content and responses to hydroclimatic changes. While VOD variations are commonly linked to dry biomass and live fuel moisture content (LFMC), the impact of canopy temperature (Tc) remains overlooked in large‐scale studies. Here, we investigated the impact of Tc on L‐band (1.4 GHz) and X‐band (10.7 GHz) VOD at diurnal and seasonal timescales. Synthetic benchmark VOD was created using realistic fields of Tc, LFMC, and biomass in an electromagnetic model. Perturbation experiments revealed that Tc strongly affects diurnal VOD variations at both L‐band and X‐band. Seasonally, while biomass emerges as the largest contributor to VOD variations in 70% (at X‐band) and 90% (at L‐band) of our study region, Tc and LFMC still play substantial roles. The findings stress the importance of refining retrieval algorithms to distinguish Tc, LFMC, and biomass effects for future VOD applications in ecohydrology.

Publisher

American Geophysical Union (AGU)

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