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Web based 3D visual user interface to a flood forecasting system

机译:基于Web的3D可视用户界面到洪水预测系统

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AVS in collaboration with Linkoping University are developing a Visual User Interface and Web-enabled advanced 3D visualization to a flood forecasting system in an EC funded project named MUSIC. The project develops state-of-the-art precipitation estimation algorithms, assess their uncertainty and use an innovative combination of the output data of the three independent data sources radar, satellite and rain gauges. The basic role of any real-time quantitative precipitation and flood forecasting system lies in its capability, within the forecasting horizon, of assessing and reducing the uncertainty in forecasts of future events in order to allow improved warnings and operational decisions for the reduction of flood risk. In line with this requirement, the MUSIC project is to develop an innovative technique for improving the weather radar, weather satellite and rain gauge derived precipitation data, taken as independent measurement source. Another key objective is seeking to improve the communication and the dissemination of results to the authorities involved in real-time flood forecasting and management. The project tests the system on real world case studies on two test catchments the Reno and Arno rivers in Italy. AVS and LiU are developing the innovative 3D Visual User Interface that will enable the users to take a more active role in the process of visualising and investigating flood forecasting, allowing them to better understand the data and uncertainty behind the forecasting system. LiU also provides easy-to-use collaborative visualization tools enabling the meteorologists, hydrologists, operations managers and the civil defence manager to view and discuss the forecasting results in real time across the network before finally interacting with the media, the police, other officials and the public. The system will considerably improve the flash flood forecasting reliability and precision and will shorten the time required to detect events that lead to catastrophic flood events.
机译:与Linkoping大学合作的AVS正在开发可视用户界面和网络高级3D可视化,以在名为Music的EC资助项目中的洪水预测系统。该项目开发了最先进的降水估计算法,评估了它们的不确定性,并使用三个独立数据源雷达,卫星和雨量仪的输出数据的创新组合。任何实时定量降水和洪水预测系统的基本作用在预测地平线内,在预测和降低未来事件预测中的不确定性的情况下,以便允许改善警告和运作决策,以降低洪水风险。符合此要求,音乐项目是开发一种创新的技术,用于改善天气雷达,天气卫星和雨量仪推导的降水数据,作为独立的测量源。另一个主要目标正在寻求改善沟通和传播结果,并向参与实时洪水预测和管理的当局。该项目测试了关于两个测试集水区的现实世界案例研究系统,意大利里诺和arno河流。 AVS和Liu正在开发创新的3D视觉用户界面,使用户能够在可视化和调查洪水预测过程中采取更积极的作用,使他们能够更好地了解预测系统背后的数据和不确定性。刘还提供易于使用的协作可视化工具,使气象学家,水文,运营经理和民防经理能够在全网络中实时查看和讨论预测结果,然后终于与媒体,警察,其他官员和其他官员互动公众。该系统将大大提高闪光洪水预测可靠性和精度,并将缩短检测导致灾难性洪水事件的事件所需的时间。

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