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Numerical simulation for pressure fluctuations caused by the growth of a single boiling bubble

Authors :
Zhang, Botao
Gong, Shengjie
Wu, Yikai
Xiong, Zhenqin
Ma, Weimin
Zhang, Botao
Gong, Shengjie
Wu, Yikai
Xiong, Zhenqin
Ma, Weimin
Publication Year :
2024

Abstract

The pressure fluctuations caused by the rapid volume changes during the initial growth stage for a single bubble are crucial excitations of boiling induced vibration. Therefore, it is necessary to accurately model the dynamic behavior of bubbles during this stage to obtain reasonable excitation forces, which can be used to estimate the vibration response of structures. The present study develops a dynamics model, which is verified and validated to be applicable to the growth of spherical bubbles in infinite superheated liquid and hemispherical bubbles growing on a vertical heated surface. The effects of mass transfer are considered for the vapor-liquid interface motion, and the temperature variations at the liquid side are determined by the finite difference method. The numerical data match well with the theoretical and experimental results, and the characteristics of the excitation forces caused by a single boiling bubble are obtained and analyzed. In addition, the influences of superheat, accommodation coefficient for phase change, and the temperature gradient at the liquid side on excitation forces caused by bubble growth are studied. The results show that the temperature distributions near the heated surface strongly affect the frequency domain characteristics of the excitation forces.<br />QC 20240725

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1457578724
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1016.j.applthermaleng.2024.123902