TY - JOUR
T1 - Method of detecting bubbles in a pipeline by vibration excitation
AU - Cao, Xianghui
AU - Yang, Fuzhen
AU - Wang, Xing
AU - Zhu, Yongsheng
N1 - Publisher Copyright:
© 2025 Xianghui Cao, et al.
PY - 2025
Y1 - 2025
N2 - The transportation of liquids through pipelines has extensive applications in the industrial sector. However, due to factors such as localized negative pressure or discontinuities in fluid flow, the formation of bubbles within the pipeline is a common occurrence. Developing an effective method for detecting these internal bubbles is of significant practical importance. Pipelines containing bubbles can be conceptualized as multiphase flow systems, where the frequency domain characteristics of the system vary with changes in bubble volume. Based on this principle, this paper proposes a method for identifying bubbles within pipelines by analyzing the frequency domain features of mechanical vibration waves. To validate the efficacy of this method, a testing apparatus was constructed to use pressure sensors to detect the pressure signals at the inlet and outlet of a pipeline. By analyzing the amplitude ratio and phase difference of the two signals, the presence of bubbles within the pipeline can be determined. The results demonstrate that this method is effective in detecting bubbles within the pipeline.
AB - The transportation of liquids through pipelines has extensive applications in the industrial sector. However, due to factors such as localized negative pressure or discontinuities in fluid flow, the formation of bubbles within the pipeline is a common occurrence. Developing an effective method for detecting these internal bubbles is of significant practical importance. Pipelines containing bubbles can be conceptualized as multiphase flow systems, where the frequency domain characteristics of the system vary with changes in bubble volume. Based on this principle, this paper proposes a method for identifying bubbles within pipelines by analyzing the frequency domain features of mechanical vibration waves. To validate the efficacy of this method, a testing apparatus was constructed to use pressure sensors to detect the pressure signals at the inlet and outlet of a pipeline. By analyzing the amplitude ratio and phase difference of the two signals, the presence of bubbles within the pipeline can be determined. The results demonstrate that this method is effective in detecting bubbles within the pipeline.
KW - fluid bubble detection
KW - frequency domain characteristics
KW - gas-liquid two-phase flow systems
KW - mechanical vibrations
UR - https://www.scopus.com/pages/publications/105022613681
U2 - 10.21595/vp.2025.24744
DO - 10.21595/vp.2025.24744
M3 - 会议文章
AN - SCOPUS:105022613681
SN - 2345-0533
VL - 59
SP - 82
EP - 87
JO - Vibroengineering Procedia
JF - Vibroengineering Procedia
T2 - 73rd International Conference on Vibroengineering
Y2 - 25 September 2025 through 28 September 2025
ER -