Cécile Caillaud
Datos Biográficos
| ID | 6818059 |
|---|---|
| NOMBRE | Cécile Caillaud |
| NOMBRES | Cécile |
| APELLIDO | Caillaud |
| FIRMA | CAILLAUD C |
| AFILIACIONES | Centre National de la Recherche Scientifique |
| ORCID | 0000-0003-2317-4129 |
| VERIFICADO | Sí |
| TOTAL DE OBRAS | 4 |
| TOTAL DE CITAS | 1 |
| TOTAL COMO AUTOR | 4 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 2021 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2026 |
| ÍNDICE H | 1 |
Influence of historical urban expansion on the regional climate
Physical properties of urban covers alter surface-atmosphere exchanges, with feedback on local climate. The inline coupling of urban parametrisations in Convection-Permitting Regional Climate Models (CP-RCMs) is essential to consider these complex interactions, particularly when considering climate and land-use changes. Existing literature addresses consequences of future urbanisation on climate. But there is still no systematic overview of the e…
How does the development of cities influence regional climate? A case study on the Paris region with the Convection-Permitting Regional Climate Model CNRM-Arome
Cities constitute a crucial issue in the current and future environmental challenges, and they are highly exposed to extreme events, particularly high heat for the Paris region. This calls for a fine and explicit representation of cities in climate models to identify spatial disparities of the impacts of climate change. The Convection-Permitting Regional Climate Model CNRM-AROME (2.5 km) coupled to the TEB urban canopy model is suitable to conduc…
Convection in future winter storms over Northern Europe
Precipitation within extratropical cyclones is very likely to increase towards the end of the century in a business-as-usual scenario. We investigate hourly precipitation changes in end-of-century winter storms with the first km-scale model ensemble covering northwest Europe and the Baltic region. This is an ensemble that explicitly represents convection (convection permitting models (CPMs)). Models agree that future winter storms will bring 10%–…
Convection ‐permitting modeling with regional climate models
Approximately 10 years ago, convection‐permitting regional climate models (CPRCMs) emerged as a promising computationally affordable tool to produce fine resolution (1–4 km) decadal‐long climate simulations with explicitly resolved deep convection. This explicit representation is expected to reduce climate projection uncertainty related to deep convection parameterizations found in most climate models. A recent surge in CPRCM decadal simulations …
Convection ‐permitting modeling with regional climate models
Approximately 10 years ago, convection‐permitting regional climate models (CPRCMs) emerged as a promising computationally affordable tool to produce fine resolution (1–4 km) decadal‐long climate simulations with explicitly resolved deep convection. This explicit representation is expected to reduce climate projection uncertainty related to deep convection parameterizations found in most climate models. A recent surge in CPRCM decadal simulations …
Convection ‐permitting modeling with regional climate models
Approximately 10 years ago, convection‐permitting regional climate models (CPRCMs) emerged as a promising computationally affordable tool to produce fine resolution (1–4 km) decadal‐long climate simulations with explicitly resolved deep convection. This explicit representation is expected to reduce climate projection uncertainty related to deep convection parameterizations found in most climate models. A recent surge in CPRCM decadal simulations …
Convection in future winter storms over Northern Europe
Precipitation within extratropical cyclones is very likely to increase towards the end of the century in a business-as-usual scenario. We investigate hourly precipitation changes in end-of-century winter storms with the first km-scale model ensemble covering northwest Europe and the Baltic region. This is an ensemble that explicitly represents convection (convection permitting models (CPMs)). Models agree that future winter storms will bring 10%–…
How does the development of cities influence regional climate? A case study on the Paris region with the Convection-Permitting Regional Climate Model CNRM-Arome
Cities constitute a crucial issue in the current and future environmental challenges, and they are highly exposed to extreme events, particularly high heat for the Paris region. This calls for a fine and explicit representation of cities in climate models to identify spatial disparities of the impacts of climate change. The Convection-Permitting Regional Climate Model CNRM-AROME (2.5 km) coupled to the TEB urban canopy model is suitable to conduc…
Influence of historical urban expansion on the regional climate
Physical properties of urban covers alter surface-atmosphere exchanges, with feedback on local climate. The inline coupling of urban parametrisations in Convection-Permitting Regional Climate Models (CP-RCMs) is essential to consider these complex interactions, particularly when considering climate and land-use changes. Existing literature addresses consequences of future urbanisation on climate. But there is still no systematic overview of the e…
Climate change (4 obras) · Climate model (4 obras) · Climate variability and models (3 obras) · Climatology (3 obras) · Environmental Science (3 obras) · Geography (3 obras) · Geology (3 obras) · Meteorology (3 obras) · Convection (2 obras) · Land Use and Ecosystem Services (2 obras)