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Development of a methodology for non-contacting strain measurements in fluid environments using computer vision

机译:使用计算机视觉开发用于流体环境中非接触应变测量的方法

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Using first order, ray optics theory, a method has been developed and experimentally verified for measurement of surface strains on structures immersed in fluid environments. The methodology utilizes an imaging system that is contained within an air environment and separated from the fluid media by an optical quality, transparent window. Theoretical considerations demonstrate that non-contacting strain measurements in fluid systems are somewhat sensitive to the relative orientation of the transparent window, providing insight into the system setup required to make accurate strain measurements in fluid environments. Underwater experimental measurements using a laboratory-based system are in excellent agreement with theoretical predictions, demonstrating that the proposed methodology is both viable and capable of measuring strains accurately.
机译:使用一阶射线光学理论,已开发出一种方法,并通过实验验证了用于测量浸没在流体环境中的结构上的表面应变的方法。该方法利用成像系统,该成像系统包含在空气环境中,并通过光学透明的窗口与流体介质隔离。理论上的考虑表明,流体系统中的非接触式应变测量对透明窗口的相对方向有些敏感,从而可以深入了解在流体环境中进行精确应变测量所需的系统设置。使用基于实验室的系统进行的水下实验测量与理论预测非常吻合,表明所提出的方法既可行又能够准确地测量应变。

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