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Vibration control of body-mounted plastic mirror design

机译:车身塑料镜设计的振动控制

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The goal of this study was to predict the unsteady forces acting on the plastic side-view mirror of a prototype vehicle traveling at a certain speed using computational fluid dynamics (CFD) techniques. These unsteady forces are flow induced because of the vortex shedding behind the mirror. It was observed during field testing that the mirror was vibrating excessively at certain speeds because of the unsteady forces. The frequency of vortex shedding depends on the geometry of the mirror and the angle of impingement of the incoming air. The initial step was to compute the steady state flow solution around the mirror. The pressure distribution on the mirror was used to compute the steady state flow forces on the mirror. In this CFD model most of geometric detail around the mirror were included which made the model very large. Unsteady solution could not be obtained because the model was very large for the available computational resources. It is important to realize that due to the unsteadiness of the flow, a steady state flow solution does not provide information on the frequency of the forces acting on the mirror. In the second phase of this study, the model was simplified so that the unsteady flow solution could be computed, therefore the instability was observed using this model. The CFD results qualitatively show the vortex shedding and the frequency of forces on the mirror. The authors are currently evaluating techniques to determine the frequency of vortex shedding on a detailed model and correlated with the available experimental data.
机译:本研究的目标是预测使用计算流体动力学(CFD)技术以一定速度行动的原型车辆的塑料侧视镜的不稳定力。由于镜子后面的涡流脱落,这些不稳定的力是诱导的流动。在现场测试期间观察到,由于力量不稳定,镜子在某些速度上过度振动。涡流的频率取决于镜子的几何形状和进入空气的冲击角度。初始步骤是计算镜像周围的稳态流量溶液。镜子上的压力分布用于计算镜子上的稳态流动力。在这个CFD模型中,包括镜子周围的大部分几何细节,这使得模型非常大。无法获得不稳定的解决方案,因为该模型对于可用的计算资源非常大。重要的是要认识到由于流动的不稳定性,稳态流溶液不提供关于作用在镜子上的力的频率的信息。在本研究的第二阶段,简化了模型,使得可以计算不稳定的流量解决方案,因此使用该模型观察到不稳定性。 CFD结果定性地显示了涡旋脱落和镜子上的​​力频率。作者目前正在评估确定在详细模型上的涡流血换频率的技术,并与可用的实验数据相关。

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