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Available online: https://www.ipcc.ch/publication/climate-change-and-water-2/
Published by: IPCC ; 2008
Language(s): English; Other Languages: Arabic, Chinese, French, Korean, Russian, Spanish
Format: Digital (Free), Hard copy (ill., maps)Tags: Climate ; Climate change ; State of water resources ; Hydrology ; Melting Ice ; Sea level rising ; Intergovernmental Panel on Climate Change (IPCC) ; Region I - Africa ; Region II - Asia ; Australia ; New Zealand ; Region VI - Europe ; Latin America ; North America ; Antarctica ; Arctic ; Region V - South-West Pacific
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Introduction to Verification of Hydrologic Forecasts
This module offers a comprehensive description of a set of common verification measures for hydrologic forecasts, both deterministic and probabilistic. Through use of rich illustrations, animations, and interactions, this module explains how these verification measures can provide valuable information to users with varying needs. In addition to providing a measure of how well a forecast matches observations, verification measures can be used to help forecasters and users learn about the strengths and weaknesses of a forecast.
Available online: https://www.meted.ucar.edu/training_module.php?id=486
Published by: The University Corporation for Atmospheric Research ; 2008
This module offers a comprehensive description of a set of common verification measures for hydrologic forecasts, both deterministic and probabilistic. Through use of rich illustrations, animations, and interactions, this module explains how these verification measures can provide valuable information to users with varying needs. In addition to providing a measure of how well a forecast matches observations, verification measures can be used to help forecasters and users learn about the strengths and weaknesses of a forecast.
Disclaimer regarding 3rd party resources: WMO endeavours to ensure, but cannot and does not guarantee the accuracy, accessibility, integrity and timeliness of the information available on its website. WMO may make changes to the content of this website at any time without notice.
The responsibility for opinions expressed in articles, publications, studies and other contributions rests solely with their authors, and their posting on this website does not constitute an endorsement by WMO of the opinion expressed therein.
WMO shall not be liable for any damages incurred as a result of the use of its website. Please do not misuse our website.Language(s): English
Format: Digital (Standard Copyright)Tags: Hydrology ; Climatology ; Statistics ; Forecast verification ; Forecast uncertainty ; Lesson/ Tutorial
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Dams and Dam Failure - Module 1: Terminology and Open Channel Hydraulics
This is the first module of a two-part series offering an introduction to the science explaining catastrophic dam failure and flood-wave prediction methods associated with these events. Through use of rich illustrations, animations, and interactions, this module explains key terminology and concepts including dam types and purposes, failure statistics, the general dam failure process, open channel hydraulics, critical flow, Manning's equation, and conveyance. The information covered in this two module series will provide a scientific foundation for advanced course work needed to run dam break ...
Available online: https://www.meted.ucar.edu/training_module.php?id=469
Published by: The University Corporation for Atmospheric Research ; 2008
This is the first module of a two-part series offering an introduction to the science explaining catastrophic dam failure and flood-wave prediction methods associated with these events. Through use of rich illustrations, animations, and interactions, this module explains key terminology and concepts including dam types and purposes, failure statistics, the general dam failure process, open channel hydraulics, critical flow, Manning's equation, and conveyance. The information covered in this two module series will provide a scientific foundation for advanced course work needed to run dam break simulations and to conduct hydraulic modeling as a part of dynamic wave forecasting.
Disclaimer regarding 3rd party resources: WMO endeavours to ensure, but cannot and does not guarantee the accuracy, accessibility, integrity and timeliness of the information available on its website. WMO may make changes to the content of this website at any time without notice.
The responsibility for opinions expressed in articles, publications, studies and other contributions rests solely with their authors, and their posting on this website does not constitute an endorsement by WMO of the opinion expressed therein.
WMO shall not be liable for any damages incurred as a result of the use of its website. Please do not misuse our website.Language(s): English
Format: Digital (Standard Copyright)Tags: Hydrology ; Flood control ; Lesson/ Tutorial
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Dams and Dam Failure - Module 2: St. Venant Equations, Modeling, and Case Study
This second module in the two-part series expands on the science explaining catastrophic dam failure and flood-wave prediction methods associated with these events. Through the use of rich illustrations and interactions, this module introduces the St. Venant equations for dynamic wave flow, and flood wave characteristics. It also explains the general dam failure modeling process along with advantages and limitations of dam failure models including model stability, accuracy, and sensitivity issues. Finally, it also provides an overview of the Teton River dam failure, one of the most famous hydr ...
Available online: https://www.meted.ucar.edu/training_module.php?id=494
Published by: The University Corporation for Atmospheric Research ; 2008
This second module in the two-part series expands on the science explaining catastrophic dam failure and flood-wave prediction methods associated with these events. Through the use of rich illustrations and interactions, this module introduces the St. Venant equations for dynamic wave flow, and flood wave characteristics. It also explains the general dam failure modeling process along with advantages and limitations of dam failure models including model stability, accuracy, and sensitivity issues. Finally, it also provides an overview of the Teton River dam failure, one of the most famous hydrologic events in U.S. history. The two modules that comprise this series are designed to be taken consecutively and together provide a fundamental understanding of this complex hydrologic topic.
Disclaimer regarding 3rd party resources: WMO endeavours to ensure, but cannot and does not guarantee the accuracy, accessibility, integrity and timeliness of the information available on its website. WMO may make changes to the content of this website at any time without notice.
The responsibility for opinions expressed in articles, publications, studies and other contributions rests solely with their authors, and their posting on this website does not constitute an endorsement by WMO of the opinion expressed therein.
WMO shall not be liable for any damages incurred as a result of the use of its website. Please do not misuse our website.Language(s): English
Format: Digital (Standard Copyright)Tags: Hydrology ; Erosion ; Lesson/ Tutorial
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The Mekong Hydrological Cycle Observing System Mekong-HYCOS, A Hydrological Information System in the Mekong River Basin : Project Document, Final version
Mekong River Commission ; World Meteorological Organization (WMO) ; Agence Française de Développement (AFD) - WMO, 2008
The Mekong Hydrological Cycle Observing System Mekong-HYCOS, A Hydrological Information System in the Mekong River Basin: Project Document, Final version
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Available online: Full text
Mekong River Commission ; World Meteorological Organization (WMO) ; Agence Française de Développement (AFD)
Published by: WMO ; 2008Notes: Prepared by The Mekong River Commission Secretariat, MRC Mekong-HYCOS Project
Language(s): English
Format: Digital (Free)Tags: World Hydrological Cycle Observing System (WHYCOS) ; River ; Hydrological cycle ; China ; Cambodia ; Myanmar ; Lao People’s Democratic Republic ; Thailand ; Viet Nam ; Mekong-HYCOS
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Commission for Hydrology (CHy) - Thirteenth session : Abridged final report with resolutions and recommendations
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