Computational analysis of fluid conveying pipe vibrations
Is this your thesis?
This record came from a bulk archive import. If it’s yours, link it to your profile.
Abstract (EN)
Vibration behaviour of pipes conveying fluid has been analyzed with the aid of computational analysis program. Analytical and experimental results have been compared with results of two way fluid structure interaction method. In the first step, results of computational analysis model have been checked with the existing experimental results from the literature. Error rates of computational analysis model are examined and necessary verifications are compared with the obtained analytical solutions for the natural frequency variations depend on the changing flow speed of boundary conditions and pipe model used in the literature. At the same time, other computational analysis applications in the literature have been mentioned. Incompatibilities of linear analysis method like modal analysis are discussed for these type solutions.
Author
Metin Salı
Institution
How to Cite
Metin Salı (Master Thesis). Computational analysis of fluid conveying pipe vibrations, 2017, Manisa Celal Bayar University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Manisa Celal Bayar University
- Investigation of the relationship of internet addiction level of high school students with parents' attitudes: The case of Manisa(2019)
- Analysing the social integration process of yezidi refugee youngs in the context of multiculturalist social work(2016)
- The security matter of Turkey?s Islands? sea (Eagean sea)(2007)
- Middle income trap problem in terms of sustainable growth resources in Turkiye(2023)
- Examining the leadership styles of fitness center managers according to their organizational response to the crisis: The Covid-19 outbreak case(2023)
- Evaluation of logistics-environmental interactive performances of EU countries and Turkey through environmental efficiency DEA methods in the scope of green logistics(2023)
