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An analytical calculation of the Jacobian matrix for 3D friction contact model applied to turbine blade shroud contact

机译:涡轮叶片罩接触的3D摩擦接触模型雅可比矩阵的解析计算

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An analytical expression is formulated to compute the Jacobian matrix for 3D friction contact modeling that efficiently evaluates the matrix while computing the friction contact forces in the time domain by means of the alternate frequency time domain approach. The developed expression is successfully used for the calculation of the friction damping on a turbine blade with shroud contact interface having an arbitrary 3D relative displacement. The analytical expression drastically reduces the computation time of the Jacobian matrix with respect to the classical finite difference method, with many points at the contact interface. Therefore, it also significantly reduces the overall computation time for the solution of the equations of motion, since the formulation of the Jacobian matrix is the most time consuming step in solving the large set of nonlinear algebraic equations when a finite difference approach is employed. The equations of motion are formulated in the frequency domain using the multiharmonic balance method to accurately capture the nonlinear contact forces and displacements. Moreover, the equations of motion of the full turbine blade model are reduced to a single sector model by exploiting the concept of cyclic symmetry boundary condition for a periodic structure. Implementation of the developed scheme in solving the equations of motion is proved to be effective and significant reduction in time is achieved without loss of accuracy. (C) 2016 Published by Elsevier Ltd.
机译:制定了一个解析表达式来计算用于3D摩擦接触建模的Jacobian矩阵,该矩阵有效地评估了该矩阵,同时借助时频交替方法在时域中计算了摩擦接触力。所开发的表达式已成功地用于计算具有带任意3D相对位移的护罩接触界面的涡轮机叶片上的摩擦阻尼。相对于经典的有限差分法,该解析表达式极大地减少了雅可比矩阵的计算时间,因为接触点处有许多点。因此,由于采用有限差分法求解大型非线性代数方程组时,雅可比矩阵的公式化是最耗时的步骤,因此,这也大大减少了运动方程组求解的整体计算时间。使用多谐波平衡法在频域中制定运动方程,以精确捕获非线性接触力和位移。此外,通过为周期结构利用循环对称边界条件的概念,将整个涡轮机叶片模型的运动方程简化为单扇区模型。实践证明,所开发的方案在解决运动方程方面是有效的,并且可以显着减少时间,而不会降低精度。 (C)2016由Elsevier Ltd.出版

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