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Advances in Hydroinformatics

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Table of Contents

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    Book Overview
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    Chapter 1 2D and 3D Modelling in German Inland Waterways
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    Chapter 2 Storm Events of Nice Bay: A Numerical Modeling of the Interactions Between Wave, Current, and Solid Transport
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    Chapter 3 One-Dimensional Model for Sediment Transport: An Application to the Design of Silt Basins
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    Chapter 4 Evaluation of Flow Speed in Urbanized Areas and Flood Hazard Mapping in Flood Risk Prevention Schemes
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    Chapter 5 Deterministic Hydrological Model for Flood Risk Assessment of Mexico City
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    Chapter 6 Community-Based Flood Vulnerability Index for Urban Flooding: Understanding Social Vulnerabilities and Risks
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    Chapter 7 Evaluation of Adaptation Strategies for Urban Flooding in Central Taipei City in Taiwan
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    Chapter 8 Improvement to the Treatment of the Wave Setup Along Open Boundaries in the Swan Wave Model
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    Chapter 9 Construction of the Numerical Wave Databases Anemoc-2 on the Mediterranean Sea and the Atlantic Ocean Through Hindcast Simulations Over the Period 1979–2010
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    Chapter 10 Evolution of Surge Levels Inside Harbour Basins: The Case of Le Havre Harbour
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    Chapter 11 Characteristics of Sumatra Squalls and Modelling of the Squall-Generated Waves
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    Chapter 12 Validation and Test Cases for a Free Surface SPH Model
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    Chapter 13 Uncertainty Analysis of Hydrodynamic Modeling of Flooding in the Lower Niger River Under Sea Level Rise Conditions
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    Chapter 14 Fudaa-Crue and Crue10: Overview of New Concepts and Tools for Hydraulic Modelling
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    Chapter 15 AV2D: A Data-Driven Hydrological Forecasting Approach Based on Aggregate Variables
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    Chapter 16 Numerical Scheme for a Viscous Shallow Water System Including New Friction Laws of Second Order: Validation and Application
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    Chapter 17 A Modular Approach Dedicated to Dam-Break and Dam-Breaching Modelling
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    Chapter 18 2D Modelling of the Rhone River Between Arles and the Sea in the Frame of the Flood Prevention Plan
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    Chapter 19 The Beijing Case Study of Risk-Based Resilience Planning for Urban Local Flooding Management
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    Chapter 20 A Statistical Approach to Downscaling of Daily Rainfall Process at an Ungauged Site
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    Chapter 21 Global Sensitivity Analysis with 2D Hydraulic Codes: Application on Uncertainties Related to High-Resolution Topographic Data
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    Chapter 22 Modeling of a Navigation Canal with Unknown Inputs: The Cuinchy-Fontinettes Case Study
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    Chapter 23 Real-Time Reservoir Operation for Flood Management Considering Ensemble Streamflow Prediction and Its Uncertainty
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    Chapter 24 Building of a Simulator to Study Low-Head Hydropower Plants Performance
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    Chapter 25 3D Computational Modeling of the Galaube Dam Spillway
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    Chapter 26 3-D Numerical Simulation of a Real Dam Reservoir: Thermal Stratified Flow
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    Chapter 27 Comparison and Validation of Two Parallelization Approaches of FullSWOF_2D Software on a Real Case
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    Chapter 28 Numerical Simulation of Hydrodynamics and Residence Time in Alpine Lake with Three-Dimensional Model
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    Chapter 29 1D, 2D, and 3D Modeling of a PAC-UPC Laboratory Canal Bend
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    Chapter 30 Limitation of High Water Levels in Bays and Estuaries During Storm Flood Events
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    Chapter 31 A Stochastic Model for Particle Deposition in Turbulent Flows and Clogging Effects
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    Chapter 32 Presentation of the Multi-Phase CFD Solver NEPTUNE_CFD
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    Chapter 33 Multifield Approach and Interface Locating Method for Two-Phase Flows in Nuclear Power Plant
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    Chapter 34 Large Eddy Simulation of Cavitating Throttle Flow
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    Chapter 35 Rans Computations of a Cavitating Tip Vortex
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    Chapter 36 Numerical Modeling of Aerated Cavitation Using Compressible Homogeneous Equilibrium Model
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    Chapter 37 Experimental and Numerical Modelling of Free-Surface Turbulent Flows in Full Air-Core Water Vortices
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    Chapter 38 Advances in Hydroinformatics
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    Chapter 39 3D Numerical Simulations of Particle–Water Interaction Using a Virtual Approach
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    Chapter 40 A Stochastic Model for Particle Deposition in Turbulent Flows and Clogging Effects
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    Chapter 41 Towards Numerical Simulation of Snow Showers in Jet Engine Fuel Systems
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Advances in Hydroinformatics
Published by
Springer Singapore, August 2015
DOI 10.1007/978-981-287-615-7
978-9-81-287614-0, 978-9-81-287615-7

Hsu, Ming-Hsi, Chen, Chih-Hung, Liu, Wen-Cheng, Chang, Tsang-Jung, Chen, Albert S., Hammond, Michael J., Djordjević, Slobodan, Butler, David


Philippe Gourbesville, Jean Cunge, Guy Caignaert

Twitter Demographics

The data shown below were collected from the profiles of 40 tweeters who shared this research output. Click here to find out more about how the information was compiled.

Mendeley readers

The data shown below were compiled from readership statistics for 11 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 11 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 3 27%
Student > Ph. D. Student 3 27%
Professor 1 9%
Student > Bachelor 1 9%
Student > Doctoral Student 1 9%
Other 1 9%
Unknown 1 9%
Readers by discipline Count As %
Engineering 5 45%
Energy 2 18%
Earth and Planetary Sciences 1 9%
Biochemistry, Genetics and Molecular Biology 1 9%
Environmental Science 1 9%
Other 0 0%
Unknown 1 9%