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Solution of the rarefied gas lubrication equation using an additive correction based multigrid control volume method

机译:基于加法校正的多重网格控制体积法求解稀有气体润滑方程

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The ever shortening product cycle for magnetic recording disk drives demands a fast and accurate numerical prediction of the slider's flying characteristics during the design stage. A computationally efficient multigrid control volume method isdeveloped in this paper for the solution of the very high bearing number and shaped rail air bearing problems. The control volume schemes for discretizing the Reynolds lubrication equation are based on various convection-diffusion formulations, while thesolution of the resulting discretization equations is accelerated by an additive correction based multi grid method. A comparison study using the 50 percent tripad and Headway AAB sliders demonstrates a significant improvement in the solver's performanceas compared to the single-grid method.
机译:磁记录磁盘驱动器的产品周期不断缩短,要求在设计阶段对滑块的飞行特性进行快速而准确的数值预测。为了解决极高的轴承数量和异型轨道空气轴承问题,本文开发了一种计算效率高的多网格控制体积方法。用于离散化雷诺兹润滑方程的控制体积方案基于各种对流扩散公式,而所得离散化方程的求解则通过基于加法校正的多网格方法来加速。使用50%tripad和Headway AAB滑块的比较研究表明,与单网格方法相比,求解器的性能有了显着提高。

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