
Swirling Flow Problems at Intakes
J. Knauss(Editor)
A A Balkema Publishers
1st Edition
Published on 1. January 1987
Book
Hardback
180 pages
978-90-6191-643-7 (ISBN)
Description
Fundamentals of vortex intake flow; Results theoretical & experimental work; Prediction of critical submergence; Modeling of vortices & swirling flows; Design; Intake structures; Pump sumps; Vortex-flow intakes.
This volume forms an essential reference work for anyone involved in intakes, either as a practising design engineer or research worker. Water Power & Dam Constr., July 1988.
The book is essential reading for postgraduate students & researchers alike and a very valuable aid to design engineers. Hydrol.Sc.Jrl., 33(3), 1988.
This volume forms an essential reference work for anyone involved in intakes, either as a practising design engineer or research worker. Water Power & Dam Constr., July 1988.
The book is essential reading for postgraduate students & researchers alike and a very valuable aid to design engineers. Hydrol.Sc.Jrl., 33(3), 1988.
Reviews / Votes
'This volume forms an essential reference work for anyone involved in intakes, either as a practicing design engineer or research worker.' Water Power & Dam Construction July 1988'The book is essential reading for postgraduate students and researchers alike and a very valuable aid to design engineers.' Hydrological Sciences Journal 33 (3) 1988
More details
Series
Language
English
Place of publication
Rotterdam
Netherlands
Target group
College/higher education
Professional and scholarly
Dimensions
Height: 250 mm
Width: 175 mm
Thickness: 14 mm
Weight
500 gr
ISBN-13
978-90-6191-643-7 (9789061916437)
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


Person
J. Knauss
Content
Fundamentals of vortex intake flow; Results theoretical & experimental work; Prediction of critical submergence; Modelling of vortices & swirling flows; Design; Intake structures; Pump sumps; Vortex-flow intakes.