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Protection Control Scheme and Evaluation of Effects on Pipeline Crossing beneath Landslide Area

机译:滑坡区以下管道穿越的保护控制方案及效果评价

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摘要

Long-distance natural gas transmission pipelines are planned to pass through the mountain area of midwest China, portions of which are threatened by severe landslide hazards. Therefore, the protection plan and control scheme for pipelines traversing and/or exiting landslide areas are of increasing interest and importance. A typical landslide in western China was used as an example to implement the strategy and evaluate the safety for a typical underground pipeline crossing the landslide area. The investigation and resulting control measures are based on the engineering geological study, and the numerical (finite-difference) interactive model of the pipeline and landslide, including the effect of soil arching. The effect of key design factors, including the spacing of antisliding piles, is determined by three-dimensional finite-difference numerical modeling. This technique also calculates the stability coefficient by use of the strength reduction method and calculation of stress and displacement fields. The results show that the recommended deployment of the antisliding piles can dramatically improve stability by reducing the effect of the landslide, thereby maintaining the displacement and stress of the pipeline within acceptable limits.
机译:长途天然气输送管道计划穿过中国中西部山区,其中部分地区受到严重滑坡灾害的威胁。因此,对穿越和/或离开滑坡区域的管道的保护计划和控制方案越来越重要。以中国西部的典型滑坡为例,说明实施该策略并评估穿越该滑坡地区的典型地下管线的安全性。调查和产生的控制措施基于工程地质研究,以及管道和滑坡的数值(有限差分)交互模型,包括土拱效应。关键设计因素的影响,包括抗滑桩的间距,是通过三维有限差分数值模型确定的。该技术还通过使用强度折减法以及计算应力和位移场来计算稳定性系数。结果表明,建议的防滑桩部署可以通过减少滑坡的影响来显着提高稳定性,从而将管道的位移和应力保持在可接受的范围内。

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