
Analysis and Control of Flows in Pressurized Hydraulic Networks
PhD, UNESCO-IHE Institute, Delft
Rakesh Kumar Gupta(Author)
CRC Press
Published on 2. February 2026
196 pages
978-1-040-89497-2 (ISBN)
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Water transmission and distribution systems are pressurized hydraulic networks, consisting of pipes and other appurtenant components such as reservoirs, pumps, valves and surge devices. Analysis, design and flow control problems in such systems can best be dealt with using network synthesis. This approach aims to directly determine design variables in order to achieve a specified behaviour of the system under steady state or transient flow conditions. There are enormous advantages to be achieved in applying such a model to a wide variety of problems in engineering practice. The innovative theoretical framework described in this thesis, incorporates necessary and sufficient conditions for solvability, as well as methods/algorithms for the efficient solution of network problems.
More details
Language
English
Place of publication
London
United Kingdom
Publishing group
Taylor & Francis Ltd
Target group
College/higher education
Professional and scholarly
Product notice
Reflowable
File size
5,99 MB
ISBN-13
978-1-040-89497-2 (9781040894972)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
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Other editions
Additional editions

Rakesh Kumar Gupta
Analysis and Control of Flows in Pressurized Hydraulic Networks
PhD, UNESCO-IHE Institute, Delft
Book
10/2017
1st Edition
CRC Press
€207.98
Shipment within 10-20 days

Rakesh Kumar Gupta
Analysis and Control of Flows in Pressurized Hydraulic Networks
PhD, UNESCO-IHE Institute, Delft
Book
11/2006
1st Edition
CRC Press
€104.17
Shipment within 15-20 days
Person
Content
1. Introduction 2. Background and Objectives of the Study 3. A Generalized Network Model 4. Network Solvability 5. Steady State Simulation: An Optimization Approach 6. Priniciples of Control of Pressure Surges 7. Optimal Control of Pressure Surges by Valve Operations 8. Transient System Component Design for Pressure Surges 9. Control of Transients using Elastic Model 10. Conclusions and Recommendations
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