Numerical study on dynamic behavior of entrapped air in a partially filled pipe

Author:

Guo Hengliang1,Guo Ye2,Huang Biao3,Liu Jiachun3

Affiliation:

1. School of Geoscience and Technology, Zhengzhou University, Zhengzhou, Henan 450001, China

2. School of Water Conservancy Engineering, Zhengzhou University, Zhengzhou, Henan 450001, China

3. College of Civil and Environmental Engineering, Ningbo University, Ningbo, Zhejiang 315211, China

Abstract

Abstract Rapid filling in horizontal partially filled pipes with entrapped air may result in extreme pressure transients. This study advanced the current understanding of dynamic behavior of entrapped air above tailwater (the initial water column with a free surface in a partially filled pipe) through rigid-column modeling and sensitivity analysis of system parameters. Water and air were considered as incompressible fluid and ideal gas, respectively, and the continuity and momentum equations for water and a thermodynamic equation for air were solved by using the fourth order Runge-Kutta method. The effects of system parameters were examined in detail, including tailwater depth, entrapped air volume, driving head, pipe friction, and relative length of entrapped air and pipe. The results indicate that the presence of tailwater can mitigate the peak pressure when with identical initial volumes of entrapped air, as it can be considered to reflect a certain amount of loss of the net driving head. However, the peak pressure can increase as much as about 45% for the cases with fixed pipe length, due to the reduction in the initial entrapped air volume. The rise time for the first peak pressure was closely related to pipe friction, whereas the oscillation period (defined as the time duration between the first and second peaks) was virtually irrelevant. The applicability of the rigid-column model was discussed, and a time scale relevant indicator was proposed. When the indicator is larger than 20, the relative difference between the peak pressure estimation and experimental measurements is generally below 5%.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Zhejiang Province

Natural Science Foundation of Ningbo

Fundamental Research Funds for the Provincial Universities of Zhejiang

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference16 articles.

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3. Dynamic compression of entrapped air pockets by elastic water columns;Cabrera,1996

4. Transient conditions in the transition from gravity to surcharged sewer flow;Canadian Journal of Civil Engineering,1982

5. Linearized solution for rapid filling of horizontal pipe with entrapped air;Journal of Engineering Mechanics,2020

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