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Quantification Of Fluid Structure Interaction Effects During Water Hammer In Piping Systems


Quantification Of Fluid Structure Interaction Effects During Water Hammer In Piping Systems
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Quantification Of Fluid Structure Interaction Effects During Water Hammer In Piping Systems


Quantification Of Fluid Structure Interaction Effects During Water Hammer In Piping Systems
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Author : Stefan Riedelmeier
language : en
Publisher:
Release Date : 2017

Quantification Of Fluid Structure Interaction Effects During Water Hammer In Piping Systems written by Stefan Riedelmeier and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017 with categories.




Water Hammer And Fluid Structure Interaction Modelling


Water Hammer And Fluid Structure Interaction Modelling
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Author : Sameh Mansour
language : en
Publisher:
Release Date : 1998

Water Hammer And Fluid Structure Interaction Modelling written by Sameh Mansour and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1998 with categories.




Fluid Structure Interaction Phenomena In Pressure Vessel And Piping Systems


Fluid Structure Interaction Phenomena In Pressure Vessel And Piping Systems
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Author : American Society of Mechanical Engineers
language : en
Publisher:
Release Date : 1977

Fluid Structure Interaction Phenomena In Pressure Vessel And Piping Systems written by American Society of Mechanical Engineers and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1977 with categories.




Numeric Modelling Of Water Hammer Effects In Penstocks


Numeric Modelling Of Water Hammer Effects In Penstocks
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Author : Dominic Bernard
language : en
Publisher:
Release Date : 2013

Numeric Modelling Of Water Hammer Effects In Penstocks written by Dominic Bernard and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013 with University of Ottawa theses categories.


Water hammer represents a complex hydraulic phenomenon with significant consequences on the proper functioning and safety of operation for pipe and conduit systems. The complexity and intricate physics of water hammer translated into significant difficulties associated firstly, with finding a proper solution for understanding the mechanism of its occurrence and, secondly, relating to proposing technically and economically viable design methods and devices that would help reduce and mitigate water hammer effects. In this context, the present thesis deals with the numerical modeling of the transient behaviour of water pipe segments. Following an extensive literature review of the state-of-the-art on the water hammer mechanisms and past work on experimental, analytical and numerical analysis of this phenomenon, a three dimensional numerical model of the water hammer in a pipe which considers the fluid-structure interaction (FSI) is developed using a Finite Element Method --Finite Volume Method (FEM-FVM) technique. Structural and fluid computational results based on rapid and slow gate closure scenarios are compared with existing closed-form solutions of the water hammer. A parametric study is also performed on a simply supported pipe segment to determine the influence of various design parameter. A systematic sensitivity analysis was conducted and a ranking mechanism was established for the importance of each parameter on the fluid fields and structural response. A first comparative analysis is conducted on horizontally and vertically bent elevated pipe segments to quantify the influence of the bend angle on the results. A second comparative analysis is performed on a horizontally bent segment buried in soil to determine the influence of the pipe interaction with the soil on the response. It is observed that the thickness, span, initial velocity and bend angle had a significant impact on the pressure and structural response. The presence of soil was observed to have a significant benefit in decreasing the von-Mises stresses.



Applied Mechanics Reviews


Applied Mechanics Reviews
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Author :
language : en
Publisher:
Release Date : 1948

Applied Mechanics Reviews written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1948 with Mechanics, Applied categories.




Fluid Structure Interaction In Piping Systems


Fluid Structure Interaction In Piping Systems
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Author : Bjørnar Svingen
language : en
Publisher:
Release Date : 1996

Fluid Structure Interaction In Piping Systems written by Bjørnar Svingen and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1996 with categories.




Fluid Structure Interaction Phenomena In Pressure Vessel And Piping Systems Papers Presented At A Symposium Winter Annual Meeting Asme


Fluid Structure Interaction Phenomena In Pressure Vessel And Piping Systems Papers Presented At A Symposium Winter Annual Meeting Asme
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Author :
language : en
Publisher:
Release Date :

Fluid Structure Interaction Phenomena In Pressure Vessel And Piping Systems Papers Presented At A Symposium Winter Annual Meeting Asme written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on with categories.




Supplement To Fluid Mechanics Water Hammer Dynamic Stresses And Piping Design


Supplement To Fluid Mechanics Water Hammer Dynamic Stresses And Piping Design
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Author : Robert Allan Leishear
language : en
Publisher: American Society of Mechanical Engineers
Release Date : 2015

Supplement To Fluid Mechanics Water Hammer Dynamic Stresses And Piping Design written by Robert Allan Leishear and has been published by American Society of Mechanical Engineers this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015 with Technology & Engineering categories.


This 2014 Addendum includes recommended additions and corrections to the original text, which was published by ASME Press in 2013. Numerous reviews were performed on the original text for this book, and manuscripts for this book were used to teach the topics in the text to four separate classes of engineers at SRS and prior to publication. Comments from these four day classes were incorporated into the manuscripts between classes to improve the quality of presentation. Even so, improvements and some corrections to the text have been noted since ASME classes were taught after publication. This Addendum captures these additions and changes. Also included in this Addendum are appendices to summarize this book through "A Discussion of DLFs for Piping Design" and the "Design of Piping Systems for Dynamic Loads From Fluid Transients."



An Assessment Of The Moving Point Method For Numerical Calculation Of Fluid Structure Interaction In Water Hammer


An Assessment Of The Moving Point Method For Numerical Calculation Of Fluid Structure Interaction In Water Hammer
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Author : N. A. Edwards
language : en
Publisher:
Release Date : 1988

An Assessment Of The Moving Point Method For Numerical Calculation Of Fluid Structure Interaction In Water Hammer written by N. A. Edwards and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1988 with Applied mathematics categories.




About An Important Phenomenon Water Hammer


About An Important Phenomenon Water Hammer
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Author : Kamil Urbanowicz
language : en
Publisher: Mdpi AG
Release Date : 2024-01-05

About An Important Phenomenon Water Hammer written by Kamil Urbanowicz and has been published by Mdpi AG this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024-01-05 with Technology & Engineering categories.


Explore "About an Important Phenomenon-Water Hammer", a groundbreaking Special Issue featuring insights from leading experts. When pressurized pipe flow is disrupted, water hammer-a once overlooked phenomenon-creates waves of importance in engineering, driving a dangerous surge. Dedicated to modeling water hammer and experimental verification, this Special Issue delves into contemporary water hammer discourse, tackling key challenges in fluid dynamics. It intertwines with related phenomena including fluid friction, cavitation, viscoelastic deformations, and fluid-structure interaction. Whether unraveling complexities or developing safeguarding methods, submissions enrich our understanding, enabling us to traverse historical origins, mathematical foundations, and contemporary dimensions. "About an Important Phenomenon-Water Hammer" is more than a publication; it is a platform for sharing insights and innovations shaping the future of fluid dynamics and practical engineering.