Lift(数据挖掘)
边值问题
机械
打滑(空气动力学)
流体力学
验证质量
有限元法
加速度计
附加质量
材料科学
稀薄(生态学)
气举
物理
结构工程
声学
数学分析
振动
工程类
数学
计算机科学
地质学
热力学
古生物学
量子力学
物种丰富度
数据挖掘
作者
Peter Kwok,Marc S. Weinberg,Kenneth Breuer
标识
DOI:10.1109/jmems.2005.845425
摘要
Squeeze film damping and hydrodynamic lift for a micromechanical perforated proof mass are calculated and measured. This paper has resulted in closed-form expressions that can be used to design accelerometers, tuning-fork gyroscopes (TFGs), and other micromechanical devices. The fluid damping and lift are determined using finite-element analyses of the normalized and linearized governing equations where the boundary condition of the pressure relief holes is derived using pipe flow analysis. The rarefaction of gas is incorporated in the governing equations based on slip flow condition. As a further check, a one-dimensional (1-D) network model is developed to account for the boundary condition of the holes on a tilted proof mass. Both closed-form and numerical solutions are compared against experimental data over a range of pressures.
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