Evaluation of sand subgrade seepage erosion caused by buried pipeline leakage

Author:

Chen Wenxin1,Chen Yekai2,Su Zhihang1,Zhao Liyuan1,Chen Xianghua3

Affiliation:

1. MD student, School of Civil Engineering and Transportation, South China University of Technology, Guangzhou, Guangdong, PR China

2. Professor of Civil Engineering and Transportation, School of Civil Engineering and Transportation, South China University of Technology, Guangzhou, Guangdong, PR China (corresponding author: )

3. Master degree, Road Engineer, Guangzhou traffic design and Research Institute Co., Ltd. Guangzhou, Guangdong, PR China

Abstract

Leakage from buried pipelines can lead to an increase in the water content of the subgrade soils and a rise in the water table, leading to soil loosening, erosion and ultimately the formation of hidden voids and roadway collapses. This study presents a discrete-element method and validates its accuracy by utilising cavity data from model experiments. It investigates the mechanism of seepage erosion resulting from pipe leakage and analyses the development of the soil arch effect. Furthermore, it discusses the influence of sand void ratio and particle size on sand seepage erosion. The results indicate that the erosion area is primarily affected by the void ratio and particle size. In comparison to soil particles ranging from 0.1 to 5 mm and from 2 to 5 mm, those with sizes between 0.1 mm and 2 mm generate areas of erosion and loosening that are approximately 40% larger. The proposed model offers a precise analysis of the developmental process and the extent of seepage erosion, thereby contributing to the prediction of potential road cavity areas based on dynamic changes in key factors such as subgrade soil type and groundwater level.

Publisher

Emerald

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