首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.4 pt.B: Fluid-Structure Interaction >WAVELET ANALYSIS OF FLOW-INDUCED FORCES ON TWO SIDE-BY-SIDE STATIONARY CYLINDERS: REYNOLDS NUMBER EFFECT
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WAVELET ANALYSIS OF FLOW-INDUCED FORCES ON TWO SIDE-BY-SIDE STATIONARY CYLINDERS: REYNOLDS NUMBER EFFECT

机译:并排固定的两个圆柱上的流动力小波分析:雷诺数效应

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In the present study, the effect of Reynolds number (Re) on flow interference between two side-by-side stationary cylinders and the associated flow-induced forces are investigated using a finite element method. The pitch ratio chosen is T/D - 1.7, and Re is varied within the range of laminar flow regime, i.e., 60 < Re < 200. The method of continuous wavelet transform is used to analyze flow-induced forces, especially their time-variant features. Flow patterns in the form of vorticity plot are presented to demonstrate the underlying physics. It is found that flow interference initially occurs in the inner vortices shed from the two cylinders, and extends to the outer vortices with increment of Re. The flow behind two cylinders undergoes three regimes: Regime Ⅰ - unbiased gap flow, Regime Ⅱ - stable biased gap flow, and Regime Ⅲ - unstable gap flow. Flow-induced forces show significant variations when the flow transits from one regime to another. In particular, during the transition from Regime Ⅱ to Ⅲ, the forces not only increase by amplitude, but also change their nature from deterministic to random, and show some nonstationary features. This is shown to be caused by the amalgamation of inner and outer vortices behind the two cylinders when the flow interference extends from inner vortices to outer vortices. Whenever possible, the present results are compared with experimental measurements and theoretical predictions. The numerical simulations are consistent with these other results.
机译:在本研究中,使用有限元方法研究了雷诺数(Re)对两个并排固定缸之间的流动干扰以及相关的流动感应力的影响。选择的节距比为T / D-1.7,Re在层流状态范围内变化,即60

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