Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit additional random small-scale variability compared to area averages. Therefore, differences between daily precipitation statistics simulated by climate models and gauge observations are generally not only caused by model biases, but also by the corresponding scale gap. Classical bias correction methods, in general, cannot bridge this gap; they do not account for small-scale random variability and may produce artifacts. Here, stochastic model output statistics is proposed as a bias correction framework to explicitly account for random small-scale variability. Daily precipitation simulated by a regional climate model (RCM) is employed to predic...
International audienceMuch of our knowledge about future changes in precipitation relies on global (...
International audienceMuch of our knowledge about future changes in precipitation relies on global (...
International audienceMuch of our knowledge about future changes in precipitation relies on global (...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
Much of our knowledge about future changes in precipitation relies on global (GCM) and/or regional c...
Much of our knowledge about future changes in precipitation relies on global (GCMs) and/or regional ...
International audienceMuch of our knowledge about future changes in precipitation relies on global (...
International audienceMuch of our knowledge about future changes in precipitation relies on global (...
International audienceMuch of our knowledge about future changes in precipitation relies on global (...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
International audienceAbstract Precipitation is highly variable in space and time; hence, rain gauge...
Precipitation is highly variable in space and time; hence, rain gauge time series generally exhibit ...
Much of our knowledge about future changes in precipitation relies on global (GCM) and/or regional c...
Much of our knowledge about future changes in precipitation relies on global (GCMs) and/or regional ...
International audienceMuch of our knowledge about future changes in precipitation relies on global (...
International audienceMuch of our knowledge about future changes in precipitation relies on global (...
International audienceMuch of our knowledge about future changes in precipitation relies on global (...