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Numerical and theoretical study on the jacking force prediction of slurry pipe jacking traversing frozen ground

机译:泥浆升降磨削冻土的浆料管顶升力预测的数值与理论研究

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摘要

Jacking force is a controlling factor in design and construction of pipe jacking. To date, there is few researches focused on prediction of jacking force in frozen ground. Therefore, this paper investigates the main geotechnical issues, including the jacking force and pipe-soil interaction of pipe jacking in frozen ground. Firstly, a series of numerical simulations and comparative analyses with theoretical solutions were conducted to discuss the surface friction force. Then, a new calculation model of jacking force under different pipe-soil interactions and characteristics of the frozen ground was proposed by considering the impact of temperature and the static friction rather than sliding friction. Finally, compared with the measured data obtained from pipe jacking operation in frozen ground in Japan, the jacking force predicted by using the proposed calculation model agreed well with the measured data. The new calculation model can simulate the jacking force in frozen ground more precisely than the conventional ones. The conclusions of this paper would provide reference for prediction of pipe jacking force in frozen soil area.
机译:顶层力量是管道竖起设计与施工的控制因素。迄今为止,少数研究侧重于冻土中的顶层武力预测。因此,本文研究了主要的岩土问题问题,包括冻土中的管道升降的顶层力和管土相互作用。首先,进行了一系列具有理论溶液的数值模拟和对比分析以讨论表面摩擦力。然后,通过考虑温度和静电摩擦的影响而不是滑动摩擦,提出了在不同管土相互作用和冷冻地的特征下的起动力的新计算模型。最后,与日本冻结地区的管道升降操作中获得的测量数据相比,通过使用所提出的计算模型预测的起动力与测量数据相同。新的计算模型可以更精确地模拟冻结地的起重力而不是传统的。本文的结论将为冷冻土壤区域预测管道疲劳的预测提供参考。

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