Mathematical Model of Air Pocket Evolution during Water Filling a Long-Slope Pipeline and Its Application to Air Removal Prediction

Author:

Chen Yuanyuan1ORCID,Cui Yanyu1ORCID,Chen Wenhui2,Deng Tao3ORCID,Gong Jing4

Affiliation:

1. Civil Aviation University of China, Tianjin 300300, China

2. China Petroleum Engineering & Construction Corp., Beijing Branch, Beijing 100085, China

3. China National Petroleum Corporation Guangzhou Petroleum Training Center, Guangzhou 510510, China

4. China University of Petroleum (Beijing), Beijing 102249, China

Abstract

During water filling a long-slope pipeline, air pocket is very likely to be entrapped at peak point. In order to track air movement and predict air removal conditions, a mathematical model of air pocket evolution, including its formation, compression, and entrainment, is proposed in this paper. The simulation results were compared with the engineering field data and the two are basically consistent. Furthermore, the two most important factors which play a great role in the removal of air pocket, i.e., the terrain category and the inlet flow rate, are analyzed in detail. It is concluded that the removal conditions reach three outcomes: air pocket compressed and partly removed, compressed and completely removed, and compressed without any removal. In this paper, the terrain which leads to the last outcome is called the “Dangerous Terrain.” And for the “Dangerous Terrain,” it is of great importance that the inlet flow rate should be strictly confined within a certain level. While for the other two categories of terrains, an increased flow rate is in any respect beneficial to the removal of air pocket.

Funder

Fundamental Research Funds for the Central Universities

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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