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Numerical simulation of pipe-soil interaction during pulling back phase in horizontal directional drilling installations

机译:水平定向钻井装置回撤阶段管土相互作用的数值模拟

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The displacement of pipe-soil contact points in the radial direction and the wedging effect of surrounding soil on the pipe perimeter during pipe pulling-back may have a substantial effect on predicting pulling forces for horizontal directional drilling installations. However, the influence of pipe-soil interaction on pulling force predictions is not considered in existing methods to predict the required pulling force. This paper provides a model representing the interaction between pipe and borehole. The mechanical characteristics of the pipe-soil interaction were numerically investigated with program ANSYS. Two parameters, the wedging coefficient and pipe displacement, were defined and associated parametric studies were performed to analyze the influences of relative factors based on a Yangtze River crossing project. The wedging coefficient is shown to increase with external load and ovality of the borehole, and decrease with increasing over-cut ratio, Poisson's ratio and elastic modulus of soil. It can improve the prediction accuracy to consider the wedging effect since the difference among predicted results caused by wedging effect can differ up to 7.7% in example analysis.
机译:管子-土壤接触点在径向方向上的位移以及在管子向后拉动过程中周围土壤对管道周缘的楔入作用可能对预测水平定向钻井设备的拉力产生重大影响。但是,在现有方法中,未考虑管土相互作用对拉力预测的影响,以预测所需的拉力。本文提供了代表管道与井眼之间相互作用的模型。用ANSYS程序对管-土相互作用的力学特性进行了数值研究。定义了楔入系数和管道位移这两个参数,并基于长江过境工程进行了相关的参数研究,以分析相关因素的影响。结果表明,楔形系数随井眼的外部载荷和椭圆度的增加而增加,而随超切比,泊松比和土壤弹性模量的增加而减小。在示例分析中,由于楔入效应导致的预测结果之间的差异可能相差高达7.7%,因此可以考虑楔入效应来提高预测精度。

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