
Applied Hydraulic Transients
For Hydropower Plants and Pumping Stations
CRC Press
Published on 2. February 2026
348 pages
978-1-040-89567-2 (ISBN)
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Description
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This book treats the problem of transient hydraulic computation, for hydroelectric plants and pumping stations, with an emphasis on numerical methods. The topics covered include: the waterhammer in hydraulic systems under pressure; experimental results concerning the waterhammer; protection of pumping stations with reference to the waterhammer; hydraulic resonance in hydroelectric power plant and pumping stations; mass oscillation in hydraulic surge systems; hydraulic stability of systems endowed with surge tanks; experimental results in the study of mass oscillations; hydroelectric power plants and pumping stations designed in complex hydraulic schemes; and computation of unsteady motions in the intermediate domain between rapid and slow motions. This book is not a standard monograph based on previously published material, but is primarily grounded on the theoretical and applied results obtained by authors during more than 20 years of practice. It considers the problems of hydraulic computation as encountered in the design of a significant number of hydroelectric power plants and pumping stations in Romania.
More details
Language
English
Place of publication
London
United Kingdom
Publishing group
Taylor & Francis Ltd
Product notice
Reflowable
File size
56,91 MB
ISBN-13
978-1-040-89567-2 (9781040895672)
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.
Schweitzer Classification
Other editions
Additional editions

Mihail Popescu | Dumitru Arsenie | Paul Vlase
Applied Hydraulic Transients
For Hydropower Plants and Pumping Stations
Book
01/2003
1st Edition
A A Balkema Publishers
€215.77
Shipment within 15-20 days
Persons
Mihail Popescu, Dumitru Arsenie, Paul Vlase
Content
The waterhammer phenomenon in hydraulic systems under pressure; experimental results concerning the waterhammer; protection of pumping stations against waterhammer; hydraulic resonance in hydroelectric power plant and pumping stations; mass oscillation in hydraulic surge systems; hydraulic stability of systems endowed with surge tanks; experimental results in the study of mass oscillations; hydroelectric power plants and pumping stations designed in complex hydraulic schemes; computation of unsteady motions in the intermediate domain between rapid and slow motions.
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