Flood Forecasting and Hydraulic Structures

Select Proceedings of HYDRO 2023

N. V. Umamahesh (Hrsg.), Z. Ahmad (Hrsg.), Manish Pandey (Hrsg.), Manousos Valyrakis (Hrsg.)

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ca. 299,59

Springer Nature Singapore img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Bau- und Umwelttechnik

Beschreibung

This book presents the select proceedings of the 28th International Conference on Hydraulics, Water Resources, River and Coastal Engineering (HYDRO 2023) focusing on broad spectrum of emerging opportunities and challenges in the field of flood forecasting and hydraulic structures. It covers a range of topics, including early warning system, urban flood modelling and management, dam hazard classification, river training and protection works, and structural and non-structural measures for flood mitigation, assessment, and development of flood vulnerability. The book also presents latest developments in topics such as hazard and risk maps rehabilitation of old dams, streamflow turbines, canal operation and related structure, and operation and management of dams, including their instrumentation. Presenting recent advances in the form of illustrations, tables, and text, it offers readers insights for their own research. In addition, the book addresses fundamental concepts and studies in the field of flood forecasting and hydraulic structures, making it a valuable resource for both beginners and researchers wanting to further their understanding of hydraulics, water resources, and coastal engineering.

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Schlagwörter

Soft Computing Techniques, Hydro-Informatics, Optimization of Water Resources Systems, Rainfall and Streamflow Prediction, Groundwater Contamination, Environmental Impact Assessment, Watershed Management, Fluvial Geomorphology, Dam Hazard Classification, Urban Flood Modelling, Reservoir Sedimentation, Costal Structures and Oceanography, Environmental Flows, Costal Disasters, Flood Forecasting, Alluvial River Problems, Wave-Structure Interaction, Geographic Information Systems, Remote Sensing, Sediment Dynamics