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Content Provider | The American Society of Mechanical Engineers (ASME) Digital Collection |
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Author | Saiz, Gabriel Imregun, Mehmet Abdulnaser, I. Sayma |
Copyright Year | 2006 |
Abstract | A three-dimensional time-linearised unsteady Navier-Stokes solver is presented for the computation of multistage unsteady flow in turbomachinery. The objective is to address multistage aeroelastic effects for both flutter and forced response. Since the method is currently being developed, only forced response applications are studied in this paper. With this approach, travelling waves, known as spinning modes, are propagated across the multistage domain in order to take into account the interaction between the blade-rows. The method is first validated over two simple test cases for which analytical solutions were available. It is then tested on a turbine stage test case and multistage effects are evaluated from the contribution of one spinning mode included in the model. The results are compared with both time-linearised single-row and nonlinear multirow methods. Multi-row effects are shown not to be important in this case. However, the test case serves as a validation for the implementation of the methodology and further work will focus on the implementation of several spinning modes and the computations of forced response and flutter cases with several blade-rows. |
Sponsorship | International Gas Turbine Institute |
Starting Page | 1851 |
Ending Page | 1863 |
Page Count | 13 |
File Format | |
ISBN | 079184241X |
DOI | 10.1115/GT2006-90789 |
e-ISBN | 0791837742 |
Volume Number | Volume 6: Turbomachinery, Parts A and B |
Conference Proceedings | ASME Turbo Expo 2006: Power for Land, Sea, and Air |
Language | English |
Publisher Date | 2006-05-08 |
Publisher Place | Barcelona, Spain |
Access Restriction | Subscribed |
Subject Keyword | Spinning (textile) Spin (aerodynamics) Blades Computation Flutter (aerodynamics) Turbomachinery Traveling waves Unsteady flow Turbines |
Content Type | Text |
Resource Type | Article |
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