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首页> 外文期刊>Engineering Geology >Assessment of non-linear rock strength parameters for the estimation of pipe jacking forces. Part 1. Direct shear testing and backanalysis
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Assessment of non-linear rock strength parameters for the estimation of pipe jacking forces. Part 1. Direct shear testing and backanalysis

机译:估计管超力的非线性岩石强度参数评估。 第1.直接剪切测试和背部分析

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A method of backanalysis was used for the assessment of pipe-jacking forces from three pipe-jacking drives in laminated shale and interbedded lithological units of metagraywacke, siltstone, greywacke and phyllite found in the highly weathered and fractured lithologies of the Tuang Formation (Malaysia). Direct shear tests were conducted on reconstituted tunneling rock spoils sampled from three pipe-jacking sites. The direct shear test results were initially assessed using the Mohr-Coulomb failure criterion, which demonstrated severe shortcomings in capturing the nonlinear shear strength behavior of the reconstituted tunneling rock spoils. Subsequently, a simple power law function was proposed together with the generalized tangential method to obtain useful equivalent tangential cohesion, c'(t,p) and friction angle, phi'(t,p) for the assessment of pipe-jacking forces in fractured lithologies. The outcomes from this study show that the tangential Mohr-Coulomb strength parameters can be used to backanalyze the frictional coefficient, mu(avg) and the vertical stress at the tunnel crown, sigma(EV). These backanalyzed values were successfully related back to the measured jacking forces and jacking speeds for pipe-jacking drives in various geological conditions and lubrication efforts. The use of the backanalyzed parameters c'(t,p), phi'(t,p), mu(avg) and sigma(EV) in the assessment of pipe-jacking forces from highly weathered rocks comprising of laminated and interbedded lithological units could lead to the prediction of jacking forces using numerical models. A companion paper to this study has also been produced to evaluate the reliability and suitability of these backanalyzed parameters for assessing pipe-jacking forces using the finite element method.
机译:一种背体分析方法用于评估来自三个管道转动的管道势从层压页岩和互粘土的岩石,硅铁晶,灰色斑和植物中的互粘附的岩性单位,在uang形成(马来西亚)的高度风化和裂缝岩性中发现。在重构的隧道岩石中进行直接剪切试验,从三个管道顶部的位点采样。最初使用MoHR-Coulomb失败标准评估直接剪切测试结果,这表明了捕获重构隧道岩石破坏的非线​​性剪切强度行为的严重缺点。随后,与广义切向方法一起提出了一种简单的功率法,以获得有用的等效切向粘合,C'(T,P)和摩擦角,用于评估裂缝中的管道势岩性。本研究的结果表明,切向MOHR-CULOMB强度参数可用于将摩擦系数,μ(AVG)和隧道冠,Σ(EV)的垂直应力用于反击。这些后体内值的值与测量的起重机和顶部速度成功返回到各种地质条件和润滑努力中的管道转动。在评估来自高度风化的岩石的管道势的评估中,使用受到体内alyzed参数C'(T,P),PHI'(T,P),MU(AVG)和Sigma(EV)可能导致使用数值模型预测超顶力。还生产了本研究的伴侣纸,以评估这些背体参数的可靠性和适合性,用于使用有限元方法评估管链力的评估。

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