Need for better understanding and more accurate estimation of radiative fluxes in urban environments, specifically urban surface albedo and exitance, motivates development of new remote sensing and three‐dimensional (3D) radiative transfer (RT) modeling methods. The discrete anisotropic radiative transfer (DART) model, one of the most comprehensive physically based 3D models simulating Earth/atmosphere radiation interactions, was used in combination with satellite data (e.g., Landsat‐8 observations) to better parameterize the radiative budget components of cities, such as Basel in Switzerland. After presenting DART and its recent RT modeling functions, we present a methodological concept for estimating urban fluxes using any satellite image...
To better understand the life-essential cycles andprocesses of our planet and to further develop rem...
Satellite and airborne optical sensors are increasingly used by scientists, and policy makers, and m...
The microclimatic conditions of the urban environment influence significantly the thermal comfort of...
Need for better understanding and more accurate estimation of radiative fluxes in urban environments...
In the frame of the H2020 project, URBANFLUXES (http://urbanfluxes.eu/), new modeling is developed ...
In this paper we present a study on the use of remote sensing data combined to the 3D modeling of ra...
The derivation of the radiative budget of urban environments has gained a high interest in the recen...
DART EB is a model that is being developed for simulating the 3D (3 dimensional) energy budget of ur...
Modeling the radiative behavior and the energy budget of land surfaces is relevant for many scientif...
[Departement_IRSTEA]Territoires [TR1_IRSTEA]SYNERGIE [Axe_IRSTEA]TETIS-ATTOSInternational audienceSa...
The quantification of energy budget of big cities has gained a high interest in the recent decade co...
To better understand the life-essential cycles and processes of our planet and to further develop re...
To better understand the life-essential cycles andprocesses of our planet and to further develop rem...
Satellite and airborne optical sensors are increasingly used by scientists, and policy makers, and m...
The microclimatic conditions of the urban environment influence significantly the thermal comfort of...
Need for better understanding and more accurate estimation of radiative fluxes in urban environments...
In the frame of the H2020 project, URBANFLUXES (http://urbanfluxes.eu/), new modeling is developed ...
In this paper we present a study on the use of remote sensing data combined to the 3D modeling of ra...
The derivation of the radiative budget of urban environments has gained a high interest in the recen...
DART EB is a model that is being developed for simulating the 3D (3 dimensional) energy budget of ur...
Modeling the radiative behavior and the energy budget of land surfaces is relevant for many scientif...
[Departement_IRSTEA]Territoires [TR1_IRSTEA]SYNERGIE [Axe_IRSTEA]TETIS-ATTOSInternational audienceSa...
The quantification of energy budget of big cities has gained a high interest in the recent decade co...
To better understand the life-essential cycles and processes of our planet and to further develop re...
To better understand the life-essential cycles andprocesses of our planet and to further develop rem...
Satellite and airborne optical sensors are increasingly used by scientists, and policy makers, and m...
The microclimatic conditions of the urban environment influence significantly the thermal comfort of...