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首页> 外文期刊>Tribology International >A numerical model for design and optimization of surface textures for tilting pad thrust bearings
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A numerical model for design and optimization of surface textures for tilting pad thrust bearings

机译:用于倾斜焊盘推力轴承表面纹理设计与优化的数值模型

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摘要

A numerical model based on the Reynolds equation to study textured tilting pad thrust bearings considering mass conserving cavitation and thermal effects is presented. A non-uniform and adaptive finite volume method is utilized and two methods are compared and selected regarding their efficiency in handling discontinuities; specifically placing additional nodes closely around discontinuities and directly incorporating discontinuities in the discrete system. Multithreading is applied to improve the computational performance and three root-finding methods to evaluate the bearing equilibrium are compared; namely Newton-Raphson method, Broyden's method with Sherman-Morrison formula and a continuation approach with fourth-order Runge-Kutta method. Results from the equivalent untextured bearing are utilized to accelerate the computation of the textured bearing and results are validated by comparison with CFD data.
机译:基于雷诺方程建立了一个考虑质量守恒空化和热效应的可倾瓦推力轴承数值模型。采用非均匀自适应有限体积法,比较并选择两种方法处理不连续性的效率;特别是在不连续性附近放置额外的节点,并在离散系统中直接合并不连续性。为了提高计算性能,采用了多线程技术,并对三种求根方法进行了比较;即Newton-Raphson方法、采用Sherman-Morrison公式的Broyden方法和采用四阶Runge-Kutta方法的延拓方法。利用等效无结构支座的计算结果加速了变形支座的计算,并与CFD数据进行了比较,验证了计算结果。

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