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Down-Hole Directional Drilling Dynamics Modeling Based on a Hybrid Modeling Method With Model Order Reduction

机译:基于混合建模方法的模型顺序减少井下定向钻探动力学建模

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This paper presents a dynamics model for the down-hole directional drilling system based on a hybrid modeling method with model order reduction. Due to the long dimension of the drill string, a drilling model purely based on numerical methods such as the finite element method (FEM) may require a large number of meshes, which induces high computational intensity. By using a hybrid method combining FEM and the transfer matrix method (TMM), the order of the model can be significantly reduced. To further reduce the modeling order, a proper orthogonal decomposition (POD)-Galerkin projection-based approach is applied, and a set of linear normal modes (LNMs) are identified to create a reduced-order projection subspace. To this end, simulation results are presented to prove that the method can effectively capture the dominant modes of the drilling dynamics, and a computationally efficient and high fidelity reduced-order hybrid model can be reached for real-time state estimation and control design.
机译:本文介绍了基于具有模型顺序减少的混合建模方法的井下钻孔系统动力学模型。由于钻柱的长尺寸,纯粹基于诸如有限元方法(FEM)的数值方法的钻孔模型可能需要大量的网格,这引起了高计算强度。通过使用混合方法FEM和传输矩阵法(TMM),可以显着降低模型的顺序。为了进一步减少建模顺序,应用了适当的正交分解(POD)基于术射线的方法,并且识别一组线性常规模式(LNMS)以创建阶数投影子空间。为此,提出了仿真结果以证明该方法可以有效地捕获钻井动态的主要模式,并且可以达到计算上高效和高保真的减少阶混合阶混合模型以进行实时状态估计和控制设计。

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