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Combining EPS geofoam with geocell to reduce buried pipe loads and trench surface rutting
Affiliation:1. School of Civil Engineering, Xijing University, Xi’an 710123, China;2. School of Civil Engineering, Wuhan University, Wuhan 430072, China;3. Key Laboratory of Rock Mechanics in Hydraulic Structural Engineering of the Ministry of Education, Wuhan University, Wuhan, 430072, China;4. Bureau of Public Works of Shenzhen Municipality, Shenzhen 518040, China;5. School of Civil Engineering and Architecture, Wuhan University of Technology, Wuhan 430070, China;1. Civil Eng. Dept., Gazi University, Ankara, Turkey;2. Civil Eng. Dept., Celalbayar University, Manisa, Turkey;1. Civil Engineering and Applied Mechanics, McGill University, Montreal, Quebec, H3A 0C3, Canada;2. Plasti-Fab Ltd., Canada;1. School of Engineering - University of Sao Paulo, Avenida Prof. Almeida Prado, 83, Sao Paulo, SP 05508-900, Brazil;2. Federal University of Sao Carlos, Civil Engineering Department, Rodovia Washington Luis, Km 235, Caixa Postal 676, Sao Carlos, Sao Paulo, 13.565-905, Brazil
Abstract:This paper reports full scale experiments, under simulated heavy traffic, of geocell and EPS (expanded polystyrene) geofoam block inclusions to mitigate the pressure on, and deformation of, shallow buried, high density polyethylene (HDPE) flexible pipes while limiting surface settlement of the backfilled trench. Geocell of two pocket sizes and EPS of different widths and thickness are used. Soil surface settlement, pipe deformation and transferred pressure onto the pipe are evaluated under repeated loading. The results show that using EPS may sometimes lead to larger surface settlements but can alleviate pressure onto the pipe and, consequentially, result in lower pipe deformations. This benefit is enhanced by the use of geocell reinforcement, which not only significantly opposes any EPS-induced increase in soil surface settlement, but further reduces the pressure on the pipe and its deformation to within allowable limits. For example, by using EPS geofoam with width 0.3 times, and thickness 1.5 times, pipe diameter simultaneously with geocell reinforcement with a pocket size 110 × 110 mm2 soil surface settlement, pipe deformation and transferred pressure around a shallow pipe were respectively, 0.60, 0.52 and 0.46 times those obtained in the fully unreinforced buried pipe system. This would represent a desirable and allowable arrangement.
Keywords:Buried pipe  EPS block  Geocell layer  Pipe diameter change  Pressure  Soil surface settlement
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