Flood simulation and documentation are fundamentals in the realm of flood management, offering indispensable tools for predicting, understanding, and effectively responding to potential flood events. By harnessing the capabilities of advanced technologies like Geographic Information Systems (GIS) and Building Information Modeling (BIM), flood simulation could allow us to envision and understand various flood scenarios due to heavy precipitation, which can result in informed decision-making and proactive measures. Integrating precise terrain data, hydrological information, and building models, paved/ non-paved surfaces, soil characteristics, storm water drainage, these simulations may offer comprehensive insights into flood extents, vulnerable areas, and potential infra- structure impacts. Concurrently, flood documentation also contributes a major role in recording historical flood events, their consequences on buildings and infrastructure and the efficacy of response strategies. This documentation lays the foundation for post-flood assessments, and continual improvements in flood management practices, bolstering community resilience and mitigating the devastating effects of flooding. This thesis aims to employ BIM and GIS modelling to calculate and simulate these flood scenarios accurately to equip Munich's authorities with valuable insights to develop robust flood management strategies and safeguard vital assets and public building at the LMU hospital campus.
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Flood simulation and documentation are fundamentals in the realm of flood management, offering indispensable tools for predicting, understanding, and effectively responding to potential flood events. By harnessing the capabilities of advanced technologies like Geographic Information Systems (GIS) and Building Information Modeling (BIM), flood simulation could allow us to envision and understand various flood scenarios due to heavy precipitation, which can result in informed decision-making and p...
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