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contributor authorGuo-ping Jiang
contributor authorSi-qian Fang
contributor authorFu-quan Chen
contributor authorHao-biao Chen
date accessioned2023-11-28T00:10:55Z
date available2023-11-28T00:10:55Z
date issued8/23/2023 12:00:00 AM
date issued2023-08-23
identifier otherJPSEA2.PSENG-1462.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4294091
description abstractTo further accurately analyze the mechanical response of buried pipelines and pavement structures subjected to ground subsidence, this study established a dual-beam model consisting of an upper Euler–Bernoulli beam and a lower Euler–Bernoulli beam to simulate pavement structures and pipelines. The embankment fill layer and foundation soil were idealized as in the Winkler foundation model, which was divided into three zones. Coupling differential equations for the behavior of this dual-beam–foundation system were established according to the force equilibrium among the pavement structure, buried pipeline, embankment fill, and foundation soil with voids. The stress distribution and deformation of buried pipelines and pavement structures were solved according to the boundary and geometric conditions. The proposed mechanical model was evaluated on test data and corresponding finite element codes, concretely verifying the model’s effectiveness, and a parametric study was proposed to investigate the behavior of this system, such as the bending stiffness of pipelines, traffic load, the strength of fill layers, and foundation soil.
publisherASCE
titleDual-Beam Mathematical Model for Mechanical Response of Buried Pipeline and Pavement Structures Subjected to Ground Subsidence
typeJournal Article
journal volume14
journal issue4
journal titleJournal of Pipeline Systems Engineering and Practice
identifier doi10.1061/JPSEA2.PSENG-1462
journal fristpage04023037-1
journal lastpage04023037-10
page10
treeJournal of Pipeline Systems Engineering and Practice:;2023:;Volume ( 014 ):;issue: 004
contenttypeFulltext


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