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Adaptive numerical methods for an hydrodynamic problem arising in magnetic reading devices

机译:磁性读取设备中出现的水动力问题的自适应数值方法

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The mechanical behavior ofmagnetic reading devices is mainly governed by compressible Reynolds equations when the air bearing modeling approximation is considered. First, the convection dominated feature motivates the use of a characteristics scheme adapted to steady state problems. Secondly, a duality method to treat the particular nonlinear diffusion term is applied. A piecewise linear finite element for spatial discretization has been chosen. Moreover, in certain conditions and devices, strong air pressure gradients arise locally, either due to a strongly convection dominated regime or to the presence of slots in the storage device, for example. In the present work we improve the previous numerical methods proposed to cope with this new setting. Thus, mainly adaptive mesh refinement algorithms based on pressure gradient indicators and appropriate multigrid techniques to solve the linear systems arising at each iteration of the duality method are proposed. Finally, several examples illustrate the performance of the set of numerical techniques.
机译:当考虑空气轴承模型近似时,磁性阅读装置的机械性能主要由可压缩的雷诺方程控制。首先,以对流为主的特征促使人们采用适合稳态问题的特征方案。其次,采用对偶方法处理特定的非线性扩散项。选择了用于空间离散化的分段线性有限元。此外,在某些条件和设备中,例如由于强对流主导的状态或由于存储设备中的狭缝的存在而在局部产生强的气压梯度。在当前的工作中,我们改进了为应对这种新设置而提出的先前的数值方法。因此,主要提出了基于压力梯度指标的自适应网格细化算法和适当的多重网格技术来解决在对偶方法每次迭代中出现的线性系统。最后,几个示例说明了一组数字技术的性能。

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