Much of our knowledge about future changes in precipitation relies on global (GCMs) and/or regional climate models (RCMs) that have resolutions which are much coarser than typical spatial scales of precipitation, particularly extremes. The major problems with these projections are both climate model biases and the gap between gridbox and point scale. Wong et al. (2014) developed a model to jointly bias correct and downscale precipitation at daily scales. This approach, however, relied on pairwise correspondence between predictor and predictand for calibration, and, thus, on nudged simulations which are rarely available. Here we present an extension of this approach that separates the downscaling from the bias correction and in principle is ...
A precipitation downscaling method is presented using precipitation from a general circulation model...
A precipitation downscaling method is presented using precipitation from a general circulation model...
A precipitation downscaling method is presented using precipitation from a general circulation model...
Much of our knowledge about future changes in precipitation relies on global (GCMs) and/or regional ...
Much of our knowledge about future changes in precipitation relies on global (GCMs) and/or regional ...
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 (...
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 (...
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 ...
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 ...
A precipitation downscaling method is presented using precipitation from a general circulation model...
A precipitation downscaling method is presented using precipitation from a general circulation model...
A precipitation downscaling method is presented using precipitation from a general circulation model...
Much of our knowledge about future changes in precipitation relies on global (GCMs) and/or regional ...
Much of our knowledge about future changes in precipitation relies on global (GCMs) and/or regional ...
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 (...
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 (...
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 ...
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 ...
A precipitation downscaling method is presented using precipitation from a general circulation model...
A precipitation downscaling method is presented using precipitation from a general circulation model...
A precipitation downscaling method is presented using precipitation from a general circulation model...