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In the area of urban hydrology and hydraulics, Dr. Schmidt’s research seeks develop improved methods to simulate the complicated hydrologic and hydraulics processes in complex urban environments, to develop methods to quantify the effect of various Sustainable Urban Drainage System (SUDS) practices on the hydrology and hydraulic behavior of urban systems, and to develop and apply improved sensors for hydraulic measurements, particularly in complex environments such as urban and agricultural systems. Dr. Schmidt and his students have developed new numerical models to simulate the hydrologic and hydraulic response of urban drainage systems. In particular, his team has developed probabilistic urban models for catchments where the data describing the hydrologic properties of the catchment and the hydraulic parameters of the drainage system are too sparse to allow a deterministic model. He and his students have developed a system of models that allow different levels of sophistication depending on the objectives of a given study and applied these to a study of the drainage system for the 970 km2 watershed served by the Tunnel and Reservoir Plan in Chicago. This system allowed fast simulations coupled with a genetic-algorithm optimization to examine real-time control rules for stormwater gates and pumps, yet also could provide simulation of hydraulic transients in the tunnel system. This system continues to be expanded, with on-going research to incorporate sophisticated small-scale simulations of the hydrologic response of SUDS practices (green roofs, rain gardens, etc) into both probabilistic and deterministic catchment models and apply these to examine the impacts of SUDS at the catchment scale and under potentially changing climate scenarios.
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medRxiv (Cold Spring Harbor Laboratory)no. 10 (2023)
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