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Engineering Reliability and Risk in Water Resources [E-Book] / edited by Lucien Duckstein, Erich J. Plate.

Hydraulic, hydrologic and water resources engineers have been concerned for a long time about failure phenomena. One of the major concerns is the definition of a failure event E, of its probability of occurrence PtE), and of the complementary notion of reliability. However, as the stochastic aspects...

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Personal Name(s): Duckstein, Lucien, editor
Plate, Erich J., editor
Imprint: Dordrecht : Springer Netherlands, 1987
Physical Description: X, 588 p. online resource.
Note: englisch
ISBN: 9789400935778
DOI: 10.1007/978-94-009-3577-8
Series Title: NATO ASI Series, Series E: Applied Sciences ; 124
Subject (LOC):
Civil engineering.
Engineering.
Environmental management.
Hydrogeology.
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008 121227s1987 ne | s |||| 0|eng d
020 |a 9789400935778 
024 7 |a 10.1007/978-94-009-3577-8  |2 doi 
035 |a (Sirsi) a666934 
041 |a eng 
082 0 4 |a 624  |2 23 
245 1 0 |a Engineering Reliability and Risk in Water Resources  |h [E-Book] /  |c edited by Lucien Duckstein, Erich J. Plate. 
246 3 |a Proceedings of the NATO Advanced Study Institute, Tucson, Arizona, USA, May 19-June 2, 1985 
264 1 |a Dordrecht :  |b Springer Netherlands,  |c 1987  |e (Springer LINK) 
300 |a X, 588 p.  |b online resource. 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
347 |a text file  |b PDF  |2 rda 
490 |a NATO ASI Series, Series E: Applied Sciences ;  |v 124 
500 |a englisch 
505 0 |a I. Introduction -- Water Engineering Reliability and Risk: A System Framework -- II. Reliability and Risk in Structures -- II.1 Design Concepts Based on Risk and Reliability of Structures for Uncorrelated Inputs -- Reliability in Hydraulic Design -- Engineering Risk in Regional Drought Studies -- Incidents and Failures of Hydraulic Structures Subject to Independent Floods -- Reliability of Hydraulic Structures Possessing Random Loading and Resistance -- Probabilistic Design of Water-Retaining Structures -- II.2 Risk Based Assessment of Dam Safety -- Use of Risk-Based Analysis in Making Decisions on Dam Safety -- A Comparison of Methods for Risk Assessment of Dams -- Risk Analysis Considerations for Dam Safety -- Consequences of the Failure of a Water Storage System -- III. Reliability and Risk in Water Supply Systems -- III.1 Water Supply Systems: Uncorrelated Inputs -- Reliability of Water Supply Systems -- Application of Models for Reliability Assessment in Reservoir Operation -- III.2 Water Supply Systems: Correlated Inputs -- The Return Period of a Reservoir System Failure -- Reliability in Multipurpose Reservoir Operation: Case Studies with Correlated Inflows -- Engineering Risk in Flood Studies Using Multivariate Partial Duration Series -- Conjunctive Use of Surface and Groundwater in a Problem of Environmental Protection: A Case in Salento Peninsula in Southern Italy -- IV. Reliability and Risk as Factors in Decision Making -- IV. 1 Elements of Uncertainty Analysis for Decision-Making -- The Impact of Catchment Modeling on Hydrologic Reliability -- Empirical and Causal Models in Hydrologic Reliability Analysis -- Elements of Bayesian Analysis of Uncertainty in Hydrological Reliability and Risk Models -- IV. 2 Applications and Advances -- Reliability Estimation of Underground Water Control Systems Under Natural and Sample Uncertainty -- Target-Related Reliability in Surface Water System Operation -- Bayesian Analysis: Further Advances and Applications -- IV. 3 Multicriterion and Conflict Analysis -- Risk Aspects in the Determination of Optimal Cropping Patterns Hiessl -- Reliability Aspects of Multicriterion Watershed Management -- A Min-Max Operating Rule for the Management of a Multipurpose Reservoir -- Formal Incorporation of Risk into Conflict Analysis. 
520 |a Hydraulic, hydrologic and water resources engineers have been concerned for a long time about failure phenomena. One of the major concerns is the definition of a failure event E, of its probability of occurrence PtE), and of the complementary notion of reliability. However, as the stochastic aspects of hydraulics and water resources engineering were developed, words such as "failure," "reliability," and "risk" took on different meanings for different specialists. For example, "risk" is defined in a Bayesian framework as the expected loss resulting from a precisely defined failure event, while according to the practice of stochastic hydraulics it is the probability of occurrence of a failure event. The need to standardize the various concepts and operational definitions generated numerous exciting discussions between the co-editors of this book during 1983-84 when L. Duckstein, under sponsorship of the Alexander von Humboldt Foundation (FRG), was working with E. Plate at the Institute of Hydrology and Water Resources of the University of Karlsruhe. After consulting with the Scientific Affairs Division of NATO, an organizing committee was formed. This comittee -­ J. Bernier (France), M. Benedini (Italy), S. Sorooshian (U. S. A. ), and co-directors L. Duckstein (U. S. A. ) and E. J. Plate (F. R. G. ) -- brought into being this NATO Advanced Study Institute (ASI). Precisely stated, the purpose of this ASI was to present a tutorial overview of existing work in the broad area of reliability while also pointing out topics for further development. 
650 0 |a Civil engineering. 
650 0 |a Engineering. 
650 0 |a Environmental management. 
650 0 |a Hydrogeology. 
700 1 |a Duckstein, Lucien,  |e editor 
700 1 |a Plate, Erich J.,  |e editor 
856 4 0 |u http://dx.doi.org/10.1007/978-94-009-3577-8  |z Volltext 
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932 |a Chemistry and Materials Science (Springer-11644) 
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