Flood Prevention And Damage Reduction

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Risk Analysis and Uncertainty in Flood Damage Reduction Studies

Author : National Research Council,Commission on Geosciences, Environment, and Resources,Water Science and Technology Board,Committee on Risk-Based Analysis for Flood Damage Reduction
Publisher : National Academies Press
Page : 216 pages
File Size : 40,9 Mb
Release : 2000-10-20
Category : Science
ISBN : 9780309132893

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Risk Analysis and Uncertainty in Flood Damage Reduction Studies by National Research Council,Commission on Geosciences, Environment, and Resources,Water Science and Technology Board,Committee on Risk-Based Analysis for Flood Damage Reduction Pdf

Reducing flood damage is a complex task that requires multidisciplinary understanding of the earth sciences and civil engineering. In addressing this task the U.S. Army Corps of Engineers employs its expertise in hydrology, hydraulics, and geotechnical and structural engineering. Dams, levees, and other river-training works must be sized to local conditions; geotechnical theories and applications help ensure that structures will safely withstand potential hydraulic and seismic forces; and economic considerations must be balanced to ensure that reductions in flood damages are proportionate with project costs and associated impacts on social, economic, and environmental values. A new National Research Council report, Risk Analysis and Uncertainty in Flood Damage Reduction Studies, reviews the Corps of Engineers' risk-based techniques in its flood damage reduction studies and makes recommendations for improving these techniques. Areas in which the Corps has made good progress are noted, and several steps that could improve the Corps' risk-based techniques in engineering and economics applications for flood damage reduction are identified. The report also includes recommendations for improving the federal levee certification program, for broadening the scope of flood damage reduction planning, and for improving communication of risk-based concepts.

A Preliminary Assessment of the Effectiveness of Flood Damage Reduction Measures in Canada

Author : Canada. Environment Canada,Emergency Preparedness Canada
Publisher : Unknown
Page : 162 pages
File Size : 43,8 Mb
Release : 1999
Category : Flood control
ISBN : MINN:31951P00742988S

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A Preliminary Assessment of the Effectiveness of Flood Damage Reduction Measures in Canada by Canada. Environment Canada,Emergency Preparedness Canada Pdf

"This report reviews the nature, causes and pertinent issues in flooding along the Red River. There is also a brief history of flood events. Key structural and non-structural measures in the Red River Basin are examined, including a review of how these measures have evolved and the most pertinent issues related to those measures today, particularly in the wake of the 1997 flood."--Abstract.

Flood Proofing

Author : John Richard Sheaffer
Publisher : Unknown
Page : 224 pages
File Size : 45,8 Mb
Release : 1960
Category : Technology & Engineering
ISBN : UCAL:B4320920

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Flood Proofing by John Richard Sheaffer Pdf

Flood Prevention and Damage Reduction

Author : Nebraska Soil and Water Conservation Commission
Publisher : Unknown
Page : 32 pages
File Size : 45,8 Mb
Release : 1968
Category : Flood control
ISBN : STANFORD:36105044265754

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Flood Prevention and Damage Reduction by Nebraska Soil and Water Conservation Commission Pdf

Guidelines for Flood Damage Reduction

Author : United States. Army. Corps of Engineers. Sacramento District
Publisher : Unknown
Page : 28 pages
File Size : 54,5 Mb
Release : 1976
Category : Flood control
ISBN : UCR:31210025036896

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Guidelines for Flood Damage Reduction by United States. Army. Corps of Engineers. Sacramento District Pdf

Flood Damage Prevention

Author : Tennessee Valley Authority. Library
Publisher : Unknown
Page : 52 pages
File Size : 41,9 Mb
Release : 1969
Category : Flood control
ISBN : SRLF:A0012677589

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Flood Damage Prevention by Tennessee Valley Authority. Library Pdf

Flood Damage Prevention

Author : John W. Weathers
Publisher : Unknown
Page : 68 pages
File Size : 49,9 Mb
Release : 1976
Category : Flood damage prevention
ISBN : ERDC:35925000412178

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Flood Damage Prevention by John W. Weathers Pdf

Flood Damage Prevention

Author : Anonim
Publisher : Unknown
Page : 54 pages
File Size : 48,9 Mb
Release : 1967
Category : Flood control
ISBN : UIUC:30112064815167

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Flood Damage Prevention by Anonim Pdf

Engineering and Design

Author : United States. Army. Corps of Engineers
Publisher : Unknown
Page : 82 pages
File Size : 40,8 Mb
Release : 1996
Category : Flood control
ISBN : PSU:000043168514

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Engineering and Design by United States. Army. Corps of Engineers Pdf

Flood Damage Reduction Manual

Author : Anonim
Publisher : Unknown
Page : 64 pages
File Size : 54,5 Mb
Release : 1984
Category : Flood damage prevention
ISBN : UIUC:30112101044714

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Flood Damage Reduction Manual by Anonim Pdf

Economic Guide for Watershed Protection and Flood Prevention

Author : United States. Soil Conservation Service
Publisher : Unknown
Page : 198 pages
File Size : 53,7 Mb
Release : 1964
Category : Electronic
ISBN : STANFORD:36105210282914

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Economic Guide for Watershed Protection and Flood Prevention by United States. Soil Conservation Service Pdf

Engineering and Design - Risk-Based Analysis for Flood Damage Reduction Studies

Author : U. S. Army Corps of Engineers,Army Department of the
Publisher : Lulu.com
Page : 64 pages
File Size : 55,8 Mb
Release : 2015-11-01
Category : Technology & Engineering
ISBN : 1329661648

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Engineering and Design - Risk-Based Analysis for Flood Damage Reduction Studies by U. S. Army Corps of Engineers,Army Department of the Pdf

Risk involves exposure to a chance of injury or loss. The fact that risk inherently involves chance leads directly to a need to describe and to deal with uncertainty. Corps policy has long been (1) to acknowledge risk and the uncertainty in predicting floods and flood impacts, and (2) to plan accordingly. Historically, that planning relied on analysis of the expected long-term performance of flood-damage-reduction measures, on application of safety factors and freeboard, on designing for worst-case scenarios, and on other indirect solutions to compensate for uncertainty. These indirect approaches were necessary because of the lack of technical knowledge of the complex interaction of uncertainties in predicting hydrologic, hydraulic, and economic functions and because of the complexities of the mathematics required to do otherwise.