Slurry Discharge Pipeline Damage and Wear Due to Transporting Rock Particles during Slurry Shield Tunneling: A Case Study Based on In Situ Observed Results

Author:

Li Xinggao12,Fang Yingran12,Guo Yidong12,Li Xingchun3

Affiliation:

1. Key Laboratory of Urban Underground Engineering of the Education Ministry, Beijing Jiaotong University, Beijing 100044, China

2. School of Civil Engineering, Beijing Jiaotong University, Beijing 100044, China

3. Faculty of Intelligent Manufacturing, Wuyi University, Jiangmen 529020, China

Abstract

Rock particles in excavated materials can damage and wear down slurry discharge pipelines when slurry shield tunneling occurs in a pebble layer and rock ground. This pipeline damage and wear, if not properly dealt with, can lead to a broken-down tunneling machine. Based on a slurry shield tunneling project in China, damage and wear were thoroughly examined. The observed pipeline wear and leaks, transported rock particles, mechanical properties, and flow rate of the carrier slurry were presented. The measured results showed that the wear rates of a straight pipe, a pipe along a curved tunnel, a 60° inclined pipe, and a 90° elbow pipe in pebble ground were approximately 0.71 mm/100 rings, 1 mm/100 rings, 2.14 mm/100 rings, and 4 mm/100 rings, respectively. When the machine drove into rock ground, the wear rates increased by one to two times, which could be attributed to the sharper particle shapes. Countermeasures to address these issues, such as adjusting the pipeline layout, welding reinforcement plates in advance, and preparing additional pipes, were highlighted. The wear rates of different types of pipes, the effectiveness of new pipeline fixing methods, and the probability of pipeline leaks in different strata were discussed in detail.

Funder

National Natural Science Foundation of China.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference24 articles.

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2. Summer, R.M. (1987). A Review of Pipeline Slurry Erosion Measurements and Research Recommendations, ASTM International.

3. Mechanisms of wear in powder technology: A review;Hutchings;Powder Technol.,1993

4. Prediction of uneven wear in a slurry pipeline on the basis of measurements in a pot tester;Gupta;Wear,1995

5. Study of the parametric dependence of erosion wear for the parallel flow of solid–liquid mixtures;Gandhi;Tribol. Int.,1999

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