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Prediction Model of Pipeline Push Resistance in Tunnels

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The installation of pipes in tunnel construction using the external welding method requires the assistance of a pipe pusher and roller support to push the welded pipe into the tunnel. Accurate determination of pipeline push resistance and the selection of an appropriate pipe pusher model are crucial factors for successful construction. Currently, there is no effective method available for predicting push resistance, which may result in inaccurate estimation and inadequate thrust provided by the selected pipe pusher. Therefore, this study aims to establish a reliable formula for calculating push resistance through theoretical analysis and numerical simulation. Additionally, we investigate the rolling resistance coefficient between the pipe and roller wheel to develop a corresponding prediction formula. Finally, a test platform is set up to validate our proposed formula for estimating push resistance. The results demonstrate that there is approximately a 5% error between the calculated values and the test values, confirming that this method effectively predicts pipeline push resistance.
Title: Prediction Model of Pipeline Push Resistance in Tunnels
Description:
The installation of pipes in tunnel construction using the external welding method requires the assistance of a pipe pusher and roller support to push the welded pipe into the tunnel.
Accurate determination of pipeline push resistance and the selection of an appropriate pipe pusher model are crucial factors for successful construction.
Currently, there is no effective method available for predicting push resistance, which may result in inaccurate estimation and inadequate thrust provided by the selected pipe pusher.
Therefore, this study aims to establish a reliable formula for calculating push resistance through theoretical analysis and numerical simulation.
Additionally, we investigate the rolling resistance coefficient between the pipe and roller wheel to develop a corresponding prediction formula.
Finally, a test platform is set up to validate our proposed formula for estimating push resistance.
The results demonstrate that there is approximately a 5% error between the calculated values and the test values, confirming that this method effectively predicts pipeline push resistance.

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