![]() However, embedding a new mechanistic algorithm or providing user guidance for coupling with other models will be necessary to realistically simulate diffuse pollutant sources, their fate and transport, and the effectiveness of GI/LID implementation scenarios. It is concluded that the level of detail underlying the conceptual model of SWMM versus its overall computational parsimony is well balanced-making it an adequate model for large and medium-scale hydrologic applications. A gap analysis assesses the model’s ability to perform water-quality simulations considering green infrastructure (GI)/low impact development (LID) designs and effectiveness. The results provide utility to others looking for a quick reference to gauge the integrity of their own unique SWMM application. ![]() The major developmental history and applications of the model are also presented. This review focuses on collecting information on model performance with respect to calibration and validation in the peer-reviewed literature. Hundreds of peer-reviewed articles and conference proceedings have been written describing applications of SWMM. The storm water management model (SWMM) is a widely used tool for urban drainage design and planning.
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