Experimentally Validated Nonlinear Delayed Differential Approach to Model Borehole Propagation for Directional Drilling

Jiamin Xu, Alexander Keller, Nazli Demirer, He Zhang, Kaixiao Tian, Ketan Bhaidasna, Robert Darbe, Dongmei Chen
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Abstract

Abstract This paper presents the development and validation of a nonlinear delay differential equation (DDE) model for borehole propagation in the inclination plane. Most importantly, built upon a quasi-linear model, the nonlinear approach incorporates information pertaining to the floating stabilizers and bit tilt saturation by formulating a linear complementarity problem. As a result, the outputs of the nonlinear model were in a better agreement with the field data when compared with the quasi-linear model. The maximum modeling error of the nonlinear DDE is less than 1 degrees over a drilled depth of 600 feet.
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实验验证了非线性延迟微分法模拟定向钻井井眼传播
摘要本文建立并验证了井眼在斜面上传播的非线性延迟微分方程(DDE)模型。最重要的是,非线性方法建立在准线性模型的基础上,通过制定线性互补问题,将有关浮动稳定器和钻头倾斜饱和度的信息纳入其中。结果表明,与拟线性模型相比,非线性模型的输出结果与现场数据更加吻合。在600英尺的钻井深度上,非线性DDE的最大建模误差小于1度。
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