Risk-Based Decisionmaking in Water Resources IX

Risk-Based Decisionmaking in Water Resources IX PDF

Author: Yacov Y. Haimes

Publisher:

Published: 2001

Total Pages: 0

ISBN-13: 9780784405772

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Proceedings of the Ninth United Engineering Foundation Conference, held in Santa Barbara, California, October 15-20, 2000. Sponsored by United Engineering Foundation. Cosponsored by Universities Council on Water Resources; Task Committee on Risk Analysis and Management of the Committee on Water Resources Planning of the Water Resources Planning and Management Division of ASCE; National Science Foundation; U.S. Army Corps of Engineers; Institute for Water Resources. This collection contains 18 papers on the rapidly growing field of risk-based decisionmaking in water resources. Topics include: new theoretical and methodological frontiers and the economic dimensions of risk analysis, legislative initiatives and risk assessment, maintenance and rehabilitation, reliability of physical infrastructure, flood frequency and climate nonstationarity, and risk of extreme events.

Risk-Based Decisionmaking in Water Resources IX

Risk-Based Decisionmaking in Water Resources IX PDF

Author: Yakov Y. Haimes

Publisher:

Published: 2001

Total Pages: 224

ISBN-13:

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This volume, Risk-Based Decisionmaking in Water Resources IX, is a collection of papers presented at the Ninth United Engineering Foundation Conference held in Santa Barbara, California on October 15-20, 2000. Participants from government, industry, and universities share their knowledge and experience in the rapidly growing field of risk-based decisionmaking in water resources. Topics include new theoretical and methodological frontiers and the economic dimensions of risk analysis, legislative initiatives and risk assessment, maintenance and rehabilitation, reliability of physical infrastructure, flood frequency and climate non-stationarity, and risk of extreme events.

Risk-based Decision Making in Water Resources VII

Risk-based Decision Making in Water Resources VII PDF

Author: Yacov Y. Haimes

Publisher:

Published: 1996

Total Pages: 498

ISBN-13:

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Twenty-nine essays from the conference examine such topics as regulatory reform, environmental world views and water resources, policy and engineering decision making under global change, modeling and solving water resources engineering design problems, reliability of a box culvert structure under a levee during project floods, project planning in developing countries, the influence of trust on risk-based decision making, urban stormwater quality management, risk reduction of lead and mercury, and measures of water distribution system reliability. Annotation copyright by Book News, Inc., Portland, OR

Risk Analysis and Management of Natural and Man-made Hazards

Risk Analysis and Management of Natural and Man-made Hazards PDF

Author: Yacov Y. Haimes

Publisher:

Published: 1989

Total Pages: 372

ISBN-13: 9780872626881

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Contains the papers presented at the third Engineering Foundation Conference on Risk-Based Decision-making titled Risk Analysis and Management of Natural and Man-Made Hazards, held in California on November 8-13, 1987. The papers focus on the use and application of risk analysis to the management of natural and man-made hazards.

Risk-based Decision Making in Water Resources VIII

Risk-based Decision Making in Water Resources VIII PDF

Author: Yacov Y. Haimes

Publisher:

Published: 1998

Total Pages: 256

ISBN-13:

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Comprises edited papers from the proceedings of the Eighth Engineering Foundation Conference held in Santa Barbara, California, on October 12-17, 1997. This work discusses legislative initiatives and risk assessment, climate change, El Ninako, maintenance and rehabilitation, reliability of physical infrastructure, and the risk of extreme events.

Confronting Climate Uncertainty in Water Resources Planning and Project Design

Confronting Climate Uncertainty in Water Resources Planning and Project Design PDF

Author: Patrick A. Ray

Publisher: World Bank Publications

Published: 2015-08-20

Total Pages: 149

ISBN-13: 1464804788

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Confronting Climate Uncertainty in Water Resources Planning and Project Design describes an approach to facing two fundamental and unavoidable issues brought about by climate change uncertainty in water resources planning and project design. The first is a risk assessment problem. The second relates to risk management. This book provides background on the risks relevant in water systems planning, the different approaches to scenario definition in water system planning, and an introduction to the decision-scaling methodology upon which the decision tree is based. The decision tree is described as a scientifically defensible, repeatable, direct and clear method for demonstrating the robustness of a project to climate change. While applicable to all water resources projects, it allocates effort to projects in a way that is consistent with their potential sensitivity to climate risk. The process was designed to be hierarchical, with different stages or phases of analysis triggered based on the findings of the previous phase. An application example is provided followed by a descriptions of some of the tools available for decision making under uncertainty and methods available for climate risk management. The tool was designed for the World Bank but can be applicable in other scenarios where similar challenges arise.

Risk-based Decision Making in Water Resources

Risk-based Decision Making in Water Resources PDF

Author: Yacov Y. Haimes

Publisher:

Published: 1990

Total Pages: 346

ISBN-13:

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Proceedings of the Fourth Engineering Conference, held in Santa Barbara, California, October 15-20, 1989. This collection contains 20 papers that address the application of risk analysis to a wealth of water resources problems. Current risk-assessment issues confronting water resources planners are evaluated along with areas of uncertainty. Requirements and procedures currently promoted by engineers in federal and state water resources agencies are identified. Decision analysis methods and/or models that can explicitly incorporate risk preferences are reviewed. In addition, various risk methodologies are discussed as they apply to dam safety, flood control, environmental impacts, and other social, economic, and technological aspects of water resources planning and management.

Risk/Benefit Analysis in Water Resources Planning and Management

Risk/Benefit Analysis in Water Resources Planning and Management PDF

Author: Yacov Haimes

Publisher: Springer Science & Business Media

Published: 2013-06-29

Total Pages: 292

ISBN-13: 1489921680

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Ronald M. North President Universities Council on Water Resources People sense intuitively that the world in which we live is not free of risk. Every decision, every action, even the refusal to either act or decide involves some element of risk. Perhaps, because we accept relatively low levels of risk in our daily activi ties, we tend to minimize the existence of risk and thereby fail to include risk assessment in those decisions and actions which could be improved through a risk assessment process. However, our casual approach to risk assessment seems to stem largely from the diffi culties inherent in measuring risk rather than from any lack of cognizance of the existence of risk. This conclusion is evidenced by the many statements in official documents relating to planning and evaluation which suggest that risk assessments should be con ducted but do not provide the mechanism for such assessments nor do they encourage their consideration in the decision making process. This conference on Risk/Benefit Analysis in Water Resources Planning and Management is notable because it attempts to identify and evaluate the mechanisms available for risk assessment which might be useful in water resources planning and management efforts. These proceedings bring together the thoughts of professional per sons who have struggled with the problems of risk assessment and who have contributed to the refinement of both theoretical and pragmatic solutions for the improvement of risk assessment processes.