Numerical Analysis on the Combined Flow Induced Vibration Response of Elastic Tube Bundle in Heat Exchanger[J]. 2015, 49(9): 24-29.
DOI:
Numerical Analysis on the Combined Flow Induced Vibration Response of Elastic Tube Bundle in Heat Exchanger[J]. 2015, 49(9): 24-29.DOI: 10.7652/xjtuxb201509005.
Numerical Analysis on the Combined Flow Induced Vibration Response of Elastic Tube Bundle in Heat Exchanger
The vibration characteristics of the elastic tube bundle in heat exchanger
under the combined induction of shell-side and tube-side cross flows at different inlet water velocities are studied using weak coupling method of fluid-structure interaction. And the influences of shell-side and tube-side cross flows on the vibration responses of the elastic tube bundle are also analyzed comparatively. Numerical results show that the flow-induced dominant and harmonic frequency vibration frequencies
at the two monitor points of the elastic tube bundle and under the same water velocity
are uniform in all directions; and the flow-induced vibration is mainly an in-plane vibration. There is an obvious second harmonic frequency in the shell-side water flow direction at the two monitor points when the water velocity is relatively low. Compared with the change of the shell-side water velocity
the variation of the tube-side inlet flow velocity has less effect on the vibration response. It shows that the vibration is mainly induced by the shell-side cross flow. Furthermore
the vibration balance position of the elastic tube bundle in shell-side water flow direction is also low when the velocity is low
due to the influences of the gravity of tube bundle and the impact force of fluid; and the vibration balance position gradually moves up with the increase of the shell-side water velocity.
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references
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