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projects:quest:quest [2010/12/21 11:36] sonjaprojects:quest:quest [2021/01/22 22:17] (current) – external edit 127.0.0.1
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 ===== Summary ===== ===== Summary =====
-{{ :quest_images_pqp_logo.gif?100|:quest_images_pqp_logo.gif}} +QUEST stands for //Quantitative Evaluation of Regional Precipitation Forecasts Using Multi-Dimensional Remote Sensing Observations// and is a joint project within the priority program SPP 1167 granted by the German Research Community ([[http://www.dfg.de|DFG]]).
-QUEST stands for //Quantitative Evaluation of Regional Precipitation Forecasts Using Multi-Dimentional Remote Sensing Observations// and is a joint project within the priority program [[http://www.meteo.uni-bonn.de/projekte/SPPMeteo/|SPP 1167]] granted by the German Research Community ([[http://www.dfg.de|DFG]]).+
  
 Quantitative precipitation forecasts will be evaluated by considering the spatial-temporal structure of water in all its three phases using new remote sensing observations. By studying the whole process chain from the water vapour distribution through cloud processes to the amount of precipitation reaching the ground, weaknesses in the treatment of cloud processes in weather forecasting models will be identified. Improvements in predictions should be achieved by improving the assumptions about cloud and precipitation microphysics (e.g. conversion rates, drop size distributions, particle phase and shape) as well as the sub-grid variability. Quantitative precipitation forecasts will be evaluated by considering the spatial-temporal structure of water in all its three phases using new remote sensing observations. By studying the whole process chain from the water vapour distribution through cloud processes to the amount of precipitation reaching the ground, weaknesses in the treatment of cloud processes in weather forecasting models will be identified. Improvements in predictions should be achieved by improving the assumptions about cloud and precipitation microphysics (e.g. conversion rates, drop size distributions, particle phase and shape) as well as the sub-grid variability.
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   - Develop a set of forward modelling tools to simulate as completely and as accurately as possible the multi-dimensional observations from model output.   - Develop a set of forward modelling tools to simulate as completely and as accurately as possible the multi-dimensional observations from model output.
   - Use data from field experiments (e.g. [[http://cops.uni-hohenheim.de/index.html|COPS]]) to investigate the process chain from water vapour to precipitation at the ground.   - Use data from field experiments (e.g. [[http://cops.uni-hohenheim.de/index.html|COPS]]) to investigate the process chain from water vapour to precipitation at the ground.
-  - Perform a long-term (one year: [[http://gop.meteo.uni-koeln.de/|GOP 2007)]] evaluation of COSMO-Model forecasts using the observation-to-model and model-to-observation approaches.+  - Perform a long-term (one year: [[http://atmos.meteo.uni-koeln.de/gop/|GOP 2007)]] evaluation of COSMO-Model forecasts using the observation-to-model and model-to-observation approaches.
  
-===== Contents =====+===== Further infos =====
   * [[:projects:quest:team|The Team]]   * [[:projects:quest:team|The Team]]
   * [[:projects:quest:news_events|News and Events]]   * [[:projects:quest:news_events|News and Events]]
-  * [[:projects|quest|pubs|Publications]]+  * [[:projects:quest:meetings|Project Meetings]] 
 +  * [[:projects:quest:pubs|Publications]]
   * [[:projects:quest:documents|Documents]]   * [[:projects:quest:documents|Documents]]
-  * [[:projects:quest:meetings|Meetings]] 
-  * [[:projects:quest:discussion|Discussion forum]] 
projects/quest/quest.1292927770.txt.gz · Last modified: 2016/04/07 19:54 (external edit)