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Vortex induced vibration of three rigidly coupled cylinders in equilateral triangle arrangement at small spacing ratio

机译:涡流诱导三个刚性耦合汽缸的振动,平等三角形布置,间距比例小

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Vortex-Induced Vibration (VIV) of three rigidly coupled cylinders arranged in an equilateral-triangular pattern is numerically investigated. The spacing ratio is set as L/D=1.5. Simulations are carried out for flow incidence angles with a=0°, α=30°, α=60° and the reduced velocity is set from 3 to 16 with a step increment of 1. The corresponding Reynolds number is about 3000-16000. Two-dimensional Reynolds-Averaged NavierStokes equations in conjunction with the SST k-w turbulence model are used to simulate the turbulent flow. The vibration equations are solved by Newmark-beta algorithm by C Programming language. Numerical results show that the flow incidence angles and the reduced velocity strongly influence the response of the three cylinders including vibration amplitudes, lock-in range, frequency response and vortex shedding mode.
机译:在数值上研究了以等边三角形图案布置的三个刚性耦合圆柱的涡旋诱导的振动(VIV)。间距比设定为L / D = 1.5。为具有= 0°的流入射角进行模拟,α= 30°,α= 60°,并且减小的速度从3到16设定为1.相应的雷诺数为约3000-16000。与SST K-W湍流模型一起使用二维雷诺平均导航方程来模拟湍流。通过C编程语言由Newmark-Beta算法解决了振动方程。数值结果表明,流入射角和降低的速度强烈影响三个汽缸的响应,包括振动幅度,锁定范围,频率响应和涡流脱落模式。

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