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Surface Pressure Reconstruction from Phase Averaged Deflectometry Measurements Using the Virtual Fields Method

机译:使用虚拟字段方法从相平均偏转测量测量的表面压力重建

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摘要

In this study, pressure distributions were reconstructed from phase-locked surface deformation measurements on a thin plate. Slope changes on the plate surface were induced by an external flow interacting with the specimen and measured with a highly sensitive deflectometry setup. The Virtual Fields Method (VFM) was used to obtain pressure reconstructions from the processed surface slopes and the plate material constitutive mechanical parameters. The applicability of the approach in combination with phase-locked measurements is demonstrated using a synthetic jet setup generating a periodic flow in air. Phase-averaging slope data allows mitigating random noise effects and resolving low-range differential pressure amplitudes despite the turbulent flow. The size of the spatial structures of the investigated low amplitude flow events identified in full-field with the present method are O(1) mm, which is beyond the capabilities of other available surface pressure measurement techniques. Challenges and limitations in achieving the metrological performance for resolving the observed surface slopes of O(0.1)mm km(-1) are described and improvements for future applications are discussed.
机译:在该研究中,从薄板上的锁相表面变形测量重建压力分布。通过与样品相互作用的外流诱导板表面上的斜率变化,并用高度敏感的偏转测量设置。虚拟字段方法(VFM)用于从处理的表面斜面和板材本构机械参数获得压力重建。使用在空气中产生周期性流动的合成喷射设置,对该方法结合锁相测量的方法的适用性。相位平均斜率数据允许缓解随机噪声效果,并尽管湍流流动,解决低范围差压幅度。在具有本方法的全场识别的研究低振幅流动事件的空间结构的尺寸是O(1)mm,其超出了其他可用表面压力测量技术的能力。描述了用于解析O(0.1)毫米(-1)的观察表面斜率的测量性能的挑战和限制,并讨论了未来应用的改进。

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