Characterizing the terrestrial carbon, water, and energy cycles depends strongly on a capacity to accurately reproduce the spatial and temporal dynamics of land surface evaporation. For this, and many other reasons, monitoring terrestrial evaporation across multiple space and time scales has been an area of focused research for a number of decades. Much of this activity has been supported by developments in satellite remote sensing, which have been leveraged to deliver new process insights, model development and methodological improvements. In this Special Issue, published contributions explored a range of research topics directed towards the enhanced estimation of terrestrial evaporation. Here we summarize these cutting-edge efforts and pr...
Evapotranspiration is one of the largest fluxes in the terrestrial water cycle, and also impacts the...
Satellite and gridded meteorological data can be used to estimate evaporation (E) from land surfaces...
Partitioning of solar energy at the Earth surface has significant implications in climate dynamics, ...
Characterizing the terrestrial carbon, water, and energy cycles depends strongly on a capacity to ac...
Characterizing the terrestrial carbon, water, and energy cycles depends strongly on a capacity to ac...
Evaporation of water from the Earth's surface into the atmosphere is central to the terrestrial ener...
This paper reviews methods for estimating evaporation from landscapes, regions and larger geographic...
This paper reviews methods for estimating evaporation from landscapes, regions and larger geographic...
The overall goal of this research is to examine the feasibility of applying a newly developed diagno...
This paper outlines a new strategy to derive evaporation from satellite observations. The approach u...
Evaporation and vegetation are closely linked. Vegetation impacts the evaporation by enhancing the w...
Terrestrial ecosystems are essential for human life, as they provide several key services, such as f...
Global evaporation monitoring from Earth observation thermal infrared satellite missions is historic...
Terrestrial evapotranspiration (ET) describes the flux of water from the Earth’s surface to the atmo...
A process-based methodology is applied to estimate land-surface evaporation from multi-satellite inf...
Evapotranspiration is one of the largest fluxes in the terrestrial water cycle, and also impacts the...
Satellite and gridded meteorological data can be used to estimate evaporation (E) from land surfaces...
Partitioning of solar energy at the Earth surface has significant implications in climate dynamics, ...
Characterizing the terrestrial carbon, water, and energy cycles depends strongly on a capacity to ac...
Characterizing the terrestrial carbon, water, and energy cycles depends strongly on a capacity to ac...
Evaporation of water from the Earth's surface into the atmosphere is central to the terrestrial ener...
This paper reviews methods for estimating evaporation from landscapes, regions and larger geographic...
This paper reviews methods for estimating evaporation from landscapes, regions and larger geographic...
The overall goal of this research is to examine the feasibility of applying a newly developed diagno...
This paper outlines a new strategy to derive evaporation from satellite observations. The approach u...
Evaporation and vegetation are closely linked. Vegetation impacts the evaporation by enhancing the w...
Terrestrial ecosystems are essential for human life, as they provide several key services, such as f...
Global evaporation monitoring from Earth observation thermal infrared satellite missions is historic...
Terrestrial evapotranspiration (ET) describes the flux of water from the Earth’s surface to the atmo...
A process-based methodology is applied to estimate land-surface evaporation from multi-satellite inf...
Evapotranspiration is one of the largest fluxes in the terrestrial water cycle, and also impacts the...
Satellite and gridded meteorological data can be used to estimate evaporation (E) from land surfaces...
Partitioning of solar energy at the Earth surface has significant implications in climate dynamics, ...