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Hydrosystems Engineering Uncertainty Analysis

Hydrosystems Engineering Uncertainty Analysis
Author: Yeou-Koung Tung
Publisher: McGraw Hill Professional
Total Pages: 306
Release: 2005-04-14
Genre: Technology & Engineering
ISBN: 0071467084

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Failure of hydrosystems, such as dams, levees, storm sewers, or pollution control systems, pose threats to the public safety and health as well as potentially inflict enormous damages on properties and environments. Many failures of hydrosystems are mainly attributed by the existence of various uncertainties, including inherent natural randomness and the lack of complete understanding of involved geophysical processes. It is therefore essential to systematically quantify the degree of uncertainty for the problem in hand so that reliability assessment and risk-based design of hydrosystems can be made. The conventional approach of frequency analysis of heavy rainfalls or large floods consider only portion of the uncertainties involved in hydrosystem engineering problems. Over the past two decades or so, there has been a steady growth on the development and application of uncertainty analysis techniques in hydrosystems engineering and other disciplines. The aim of this book is to bring together these uncertainty analysis techniques in one book and to demonstrate their applications and limitations for a wide variety of hydrosystem engineering problems.


Introduction to Risk and Uncertainty in Hydrosystem Engineering

Introduction to Risk and Uncertainty in Hydrosystem Engineering
Author: Ehsan Goodarzi
Publisher: Springer Science & Business Media
Total Pages: 166
Release: 2013-01-12
Genre: Science
ISBN: 9400758510

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Water engineers require knowledge of stochastic, frequency concepts, uncertainty analysis, risk assessment, and the processes that predict unexpected events. This book presents the basics of stochastic, risk and uncertainty analysis, and random sampling techniques in conjunction with straightforward examples which are solved step by step. In addition, appropriate Excel functions are included as an alternative to solve the examples, and two real case studies is presented in the last chapters of book.


Hydrosystems Engineering Uncertainty Analysis

Hydrosystems Engineering Uncertainty Analysis
Author: Yeou-Koung Tung
Publisher: McGraw Hill Professional
Total Pages: 312
Release: 2005-03-24
Genre: Technology & Engineering
ISBN:

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Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product. Failure of hydrosystems, such as dams, levees, storm sewers, or pollution control systems, pose threats to the public safety and health as well as potentially inflict enormous damages on properties and environments. Many failures of hydrosystems are mainly attributed by the existence of various uncertainties, including inherent natural randomness and the lack of complete understanding of involved geophysical processes. It is therefore essential to systematically quantify the degree of uncertainty for the problem in hand so that reliability assessment and risk-based design of hydrosystems can be made. The conventional approach of frequency analysis of heavy rainfalls or large floods consider only portion of the uncertainties involved in hydrosystem engineering problems. Over the past two decades or so, there has been a steady growth on the development and application of uncertainty analysis techniques in hydrosystems engineering and other disciplines. The aim of this book is to bring together these uncertainty analysis techniques in one book and to demonstrate their applications and limitations for a wide variety of hydrosystem engineering problems.


Hydrosystems Engineering and Management

Hydrosystems Engineering and Management
Author: Larry W. Mays
Publisher: Water Resources Publication
Total Pages: 550
Release: 2002
Genre: Business & Economics
ISBN: 9781887201322

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This book is intended to be a textbook for students of water resources engineering and management. It is an introduction to methods used in hydrosystems for upper level undergraduate and graduate students. The material can be presented to students with no background in operations research and with only an undergraduate background in hydrology and hydraulics. A major focus is to bring together the use of economics, operations research, probability and statistics with the use of hydrology, hydraulics, and water resources for the analysis, design, operation, and management of various types of water projects. This book is an excellent reference for engineers, water resource planners, water resource systems analysts, and water managers. This book is concerned with the mathematical modeling of problems in water project design, analysis, operation, and management. The quantitative methods include: (a) the simulation of various hydrologic and hydraulic processes; (b) the use of operations research, probability and statistics, and economics. Rarely have these methods been integrated in a systematic framework in a single book like Hydrosystems Engineering and Management. An extensive number of example problems are presented for ease in understanding the material. In addition, a large number of end-of-chapter problems are provided for use in homework assignments.


Hydrosystems Engineering Reliability Assessment and Risk Analysis

Hydrosystems Engineering Reliability Assessment and Risk Analysis
Author: Yeou-Koung Tung
Publisher: McGraw Hill Professional
Total Pages: 513
Release: 2005-10-10
Genre: Technology & Engineering
ISBN: 0071589007

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This is the first book to integrate reliability analysis and risk assessment with the planning, design, and management of hydrosystems (dams, levees, storm sewers, etc.). Requiring only a basic knowledge of probability and statistics, readers will be able to determine how hydrosystem structures will perform under various circumstances.


Water Resources Engineering Risk Assessment

Water Resources Engineering Risk Assessment
Author: Jacques Ganoulis
Publisher: Springer Science & Business Media
Total Pages: 541
Release: 2013-06-29
Genre: Science
ISBN: 3642769713

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Although many theoretical developments have been achieved in recent years, the progress both in understanding and application of risk and reliability analysis in water resources and environmental engineering remains slow. One of the reasons seems to be the lack of training of engineers with phenomena of statistical nature, including optimum cost and benefit decisions under uncertainty. This book presents, in a unified and comprehensive framework, the various aspects of risk and reliability in bothwater quantity and quality problems. The topics covered include uncertainty analysis of water quantity and quality data, stochastic simulation of hydrosystems, decision theory under uncertaintyand case studies. Methods for risk analysis of extremes in hydrology, groundwater clean-up, river and coastal pollution as well as total risk management are presented.


Hydrosystems Engineering Reliability Assessment and Risk Analysis

Hydrosystems Engineering Reliability Assessment and Risk Analysis
Author: Yeou-Koung Tung
Publisher: McGraw Hill Professional
Total Pages: 520
Release: 2006
Genre: Technology & Engineering
ISBN:

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This is the first book to integrate reliability analysis and risk assessment with the planning, design, and management of hydrosystems (dams, levees, storm sewers, etc.). Requiring only a basic knowledge of probability and statistics, readers will be able to determine how hydrosystem structures will perform under various circumstances.


Handbook of Engineering Hydrology (Three-Volume Set)

Handbook of Engineering Hydrology (Three-Volume Set)
Author: Saeid Eslamian
Publisher: CRC Press
Total Pages: 1920
Release: 2018-10-03
Genre: Science
ISBN: 1466552360

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While most books examine only the classical aspects of hydrology, this three-volume set covers multiple aspects of hydrology, and includes contributions from experts from more than 30 countries. It examines new approaches, addresses growing concerns about hydrological and ecological connectivity, and considers the worldwide impact of climate change