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Handbook of HydroInformatics: Volume III: Water Data Management Best Practices

Editat de Saeid Eslamian, Faezeh Eslamian
en Limba Engleză Paperback – 14 dec 2022
Handbook of HydroInformatics Volume III: Water Data Management Best Practices presents the latest and most updated data processing techniques that are fundamental to Water Science and Engineering disciplines.  These include a wide range of the new methods that are used in hydro-modeling such as Atmospheric Teleconnection Pattern, CONUS-Scale Hydrologic Modeling, Copula Function, Decision Support System, Downscaling Methods, Dynamic System Modeling, Economic Impacts and Models, Geostatistics and Geospatial Frameworks, Hydrologic Similarity Indices, Hydropower/Renewable Energy Models, Sediment Transport Dynamics Advanced Models, Social Data Mining, and Wavelet Transforms.
This volume is an example of true interdisciplinary work. The audience includes postgraduates and above interested in Water Science, Geotechnical Engineering, Soil Science, Civil Engineering, Chemical Engineering, Computer Engineering, Engineering, Applied Science, Earth and Geoscience, Atmospheric Science, Geography, Environment Science, Natural Resources, Mathematical Science, and Social Sciences. It is a fully comprehensive handbook which provides all the information needed  related to the best practices for managing water data. 


  • Contributions from global experts in the fields of data management research, climate change and resilience, insufficient data problem, etc.  
  • Thorough applied examples and case studies in each chapter, providing the reader with real world scenarios for comparison. 
  • Includes a wide range of new methods that are used in hydro-modeling, with step-by-step guides on how to use them.
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Specificații

ISBN-13: 9780128219621
ISBN-10: 0128219629
Pagini: 420
Ilustrații: 100 illustrations (20 in full color)
Dimensiuni: 216 x 276 mm
Greutate: 0.97 kg
Editura: ELSEVIER SCIENCE

Cuprins

69. Atmospheric Teleconnection Pattern
70. Bathymetry and Roughness Acquisition
71. CFD Models
72. Cluster and Discriminant Analysis
73. CONUS-Scale Hydrologic Modeling
74. Copula Function
75. Cyberinfrastructure for Water Science
76. Decision Support System
77. Downscaling Methods
78. Drone Technology in River/Lake/Estuarine
79. Dynamic System Modeling
80. Ecohydrology Nature Based Solutions Quantification of Processes
81. Ecohydraulic Modeling and Experimentation
82. Economic Impacts and Models
83. Emergency Management
84. Geostatistics and Geospatial Frameworks
85. Hydrological modeling in a "Big Data" era
86. Hydrologic Similarity Indices
87. Hydrologic Model Training and Validation
88. Hydropower/Renewable Energy Models
89. Hydrothermal Systems Generation
90. Multi-Variate Linear Moments
91. Online Education in Hydroinformatics
92. Radar Application
93. Real-time Sensor Management
94. Remote Sensing
95. Sediment Transport Dynamics Advanced Models
96. Smart Cities and Hydroinformatic Data
97. Social Data Mining in Hydrosystems
98. Spectrum Water Technology
99. Vegetal Drag Modelling
100. Water Data Standards
101. Water Performance Metrics
102. Wavelet Transforms