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Analysis of jacking forces during pipe jacking in granular materials using particle methods

机译:颗粒方法在粒状材料中的顶升力分析

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摘要

Trenchless technology is often used in congested urban areas or river crossings to install underground pipelines to minimize disturbance to surface traffic or other activities. Pipe jacking is a typical technique applied to jack pipe segments between two working shafts. However, the design of the jacking force is usually implemented using empirical methods. It should be emphasized that the jacking force will change for each site, depending on the magnitude of overcut, lubricants, work stoppages, geology and misalignment. A particle method is proposed to estimate the jacking force along the pipe. The microparameters are calibrated for sandy soils in Shenyang, so that the macroscale material behavior can be reproduced using the particle model. Hence, the normal force around the pipe circumference can be derived in the particle model, after which the interface friction coefficient is applied to evaluate the friction resistance mobilized at the soil-pipe interface. A modified Protodyakonov’s arch model can be used to assess the magnitude of earth pressure acting on the shield face. In the end, the combination of friction resistance and face pressure provides the jacking force. The efficacy of the proposed particle method is demonstrated by comparing calculated jacking forces with those measured in the field for three types of jacking machines in sandy soils under the Hun River, Shenyang. Keywords: Pipe jacking, Jacking force, Particle methods, Distinct element
机译:挖沟技术通常用于拥挤的城市地区或河流交叉口,以安装地下管道,以最大限度地减少对地面交通或其他活动的干扰。管道顶部是应用于两个工作轴之间的千斤顶管段的典型技术。但是,通常使用经验方法实现起重力的设计。应该强调的是,由于过度,润滑剂,工作停机,地质和未对准的程度,所以支柱将改变每个网站。提出一种颗粒方法来估计沿管道的起重力。沉阳沙土校准了微型探针,从而可以使用粒子模型再现宏观材料行为。因此,可以在粒子模型中导出管圆周周围的法向力,之后施加界面摩擦系数以评估在土管界面处移动的摩擦阻力。改进的protodyakonov的拱形模型可用于评估作用在屏蔽面上的地球压力的大小。最后,摩擦阻力和面部压力的组合提供了起重机。通过将计算的超顶力与在沉阳下的砂土下的砂土中的三种外卡机器中测量的那些测量的那些,通过比较计算所提出的颗粒方法的效果。关键词:管道,顶升力,颗粒方法,不同元素

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