The IT/network infrastructure will be locally provided and supported. The radars themselves will continue to be owned by university and industry partners involved in the project, and made available to the project on an annual-operations-costs-recovery basis, primarily for research, marketing, and demonstrating the benefits of boundary layer sensing for urban severe weather warning and response. ![]() ![]() Together with the NCTCOG, CASA is developing a community-based model for supporting the installation and ongoing costs of operating, maintaining, managing and expanding the radar network. Low level wind sensing, forecast, decision making and impacts.Hydrometeor identification, forecast, decision making and impacts.Urban flooding and hydrology sensing, forecast, decision making and impacts.Project Overview Video NSF Educational Videoīroad research areas to be addressed are: These products include real-time detections of severe wind events, hail, and tornados accurate rainfall estimates and forecasts ranging from 10 minutes to 3 hours. To develop models for federal/municipal/private partnerships that fund new observation technologies and on-going interdisciplinary weather system research.ĬASA and its collaborators will offer a suite of high-resolution products to DFW stakeholders, the National Weather Service, for research and to demonstrate that value of the data to stakeholder groups. To demonstrate the value of collaborative, adaptive X-band radar networks to existing and future sensors, products, performance metrics, and decision-making and assess optimal combinations of observing systems. To create impacts-based, urban-scale warnings and forecasts for a range of public and private decision-makers that result in measureable benefit for public safety and the economy. To develop high-resolution, two and three-dimensional mapping of current and future atmospheric conditions, focusing on the lower atmosphere, to detect and forecast severe wind, tornado, hail, ice, and flash flood hazards. These radars provide weather hazard information at spatial and temporal scales that are relevant to urban decision-making and human response. This project is centered on the deployment of a network of 8 dual-pol, X-band radars to demonstrate improved hazardous weather forecasts, warnings and response in a densely populated urban environment. CASA and the North Central Texas Council of Governments (NCTCOG) have embarked on a five-year, $10 million project to create the Dallas Fort Worth (DFW) Urban Demonstration Network.
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