Abstract
Fluid-structure interaction in a bent pipeline is investigated by modal methods. Measured frequency response functions between flow rate excitation and pressure response indicate a coupling effect near the third pipeline resonance. Using modal coordinates for the hydraulic and the mechanical subsystems, a two-degrees-of-freedom study of resonance coupling is carried out. An experimental modal analysis of the coupled hydraulic-mechanical system confirms the predicted resonance splitting; it illustrates the coupling mechanism and shows the relevant mechanical part. An analytical fluid-structure interaction model succeeds in reproducing the measured coupling effect. This model is also used for modification prediction; it demonstrates that an appropriate assembly of mass and damping on the pipeline can help to reduce hydraulic resonance amplitudes.
| Originalsprache | Englisch |
|---|---|
| Titel | Proceedings of Bath/ASME Symposium on Fluid Power and Motion Control (FPMC 2016), Bath, UK, September 7-9, 2016 |
| Seitenumfang | 8 |
| Band | FPMC2016-1705 |
| Publikationsstatus | Veröffentlicht - 2016 |
Wissenschaftszweige
- 203 Maschinenbau
- 203015 Mechatronik
JKU-Schwerpunkte
- Mechatronics and Information Processing
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