Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Field Test and Numerical Simulation of Jacking Force of Reinforced Concrete Pipe Jacking in Long Distance Composite Formation

View through CrossRef
Jacking force is one of the important parameters of pipe jacking construction. In order to analyze the mechanical properties of large-diameter reinforced concrete pipe jacking construction in composite strata, based on the reinforced concrete pipe jacking project of the Jiaoliu River pressureless cave of Inner Mongolia water diversion project from ChaorHe to Liaoning, the jacking force, face resistance, circumferential pressure and strain were monitored. According to the field measured data, the friction coefficient of the pipe jacking through different strata was calculated. Then, the three-dimensional finite element model of pipe jacking construction is established by ABAQUS numerical simulation software. The calculated friction coefficient is substituted into the numerical model. The simulated jacking force is calculated by the numerical simulation results. The measured jacking force, the simulated jacking force and the predicted jacking force based on the prediction model of jacking force proposed by Staheli are compared. The results show that compared with the predicted jacking force, the simulated jacking force is consistent with the measured jacking force, which indicates that the parameters obtained based on the field measured data are substituted into the numerical model. The accuracy of the calculated numerical simulation results is very high. The method of predicting the jacking force in this study can also provide a reference for similar projects in the future.
Title: Field Test and Numerical Simulation of Jacking Force of Reinforced Concrete Pipe Jacking in Long Distance Composite Formation
Description:
Jacking force is one of the important parameters of pipe jacking construction.
In order to analyze the mechanical properties of large-diameter reinforced concrete pipe jacking construction in composite strata, based on the reinforced concrete pipe jacking project of the Jiaoliu River pressureless cave of Inner Mongolia water diversion project from ChaorHe to Liaoning, the jacking force, face resistance, circumferential pressure and strain were monitored.
According to the field measured data, the friction coefficient of the pipe jacking through different strata was calculated.
Then, the three-dimensional finite element model of pipe jacking construction is established by ABAQUS numerical simulation software.
The calculated friction coefficient is substituted into the numerical model.
The simulated jacking force is calculated by the numerical simulation results.
The measured jacking force, the simulated jacking force and the predicted jacking force based on the prediction model of jacking force proposed by Staheli are compared.
The results show that compared with the predicted jacking force, the simulated jacking force is consistent with the measured jacking force, which indicates that the parameters obtained based on the field measured data are substituted into the numerical model.
The accuracy of the calculated numerical simulation results is very high.
The method of predicting the jacking force in this study can also provide a reference for similar projects in the future.

Related Results

Preparation and Performance Evaluation of Erosion Resistant Lining of Bimetallic Composite Pipe
Preparation and Performance Evaluation of Erosion Resistant Lining of Bimetallic Composite Pipe
Abstract Erosion widely exists in oil and gas production and transmission pipelines, which seriously affects the service life of pipelines. Ordinary carbon steel pip...
Optimized Design of Pipe-in-Pipe Systems
Optimized Design of Pipe-in-Pipe Systems
Abstract Deepwater subsea developments must address the flow assurance issues and increasingly these are forming a more critical part of the design. Pipe-in-pipe ...
The Jacking System and Simulator for Mating the Hutton TLP
The Jacking System and Simulator for Mating the Hutton TLP
ABSTRACT The Hutton TLP Deck/ Hull mating and weldout operation required the use of a sophisticated and unique hydraulic jacking system. The system was designed t...
He found use for reinforced concrete where, it would seem, this material has no place
He found use for reinforced concrete where, it would seem, this material has no place
Introduction. The article is devoted to an employee of the Research Institute of Reinforced Concrete, Doctor of Technical Sciences, Professor I.G. Ludkovsky, a specialist in the fi...
Pipe-in-Pipe Swaged Field Joint for Reel Lay
Pipe-in-Pipe Swaged Field Joint for Reel Lay
Abstract Subsea 7 and ITP InTerPipe (ITP) have developed a highly efficient Pipe in Pipe technology to be installed by the Reel-Lay method. This solution is based...
Effect of Undercrossing Shield Tunnels Excavation on Existing Rectangular Pipe-Jacking Tunnels
Effect of Undercrossing Shield Tunnels Excavation on Existing Rectangular Pipe-Jacking Tunnels
Shield tunneling underneath existing rectangular pipe jacking can often lead to uneven settling. To solve the problem of excessive deformation of the existing underground pedestria...

Back to Top