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粒子图像测速技术在FRP约束混凝土圆柱中的应用

Application of PIV Technique in FRP-Confined Circular Concrete Columns

  • 摘要: 为探究粒子图像测速(PIV)技术在纤维增强复合材料(FRP)约束混凝土圆柱试验研究中的适用性,验证其测量的可靠性与精确性,本研究旨在建立一种非接触式变形测量方法以替代传统接触式测量手段。采用PIV技术与传统电阻应变片两种测量手段,针对不同FRP约束混凝土圆柱在轴压作用下的应变变化进行对比测试分析,系统研究子区域尺寸、位置及虚拟应变片长度等因素对PIV测量结果的影响。试验结果表明:PIV技术可正确表征FRP约束混凝土柱应力-应变行为,与电阻应变片相比,两者的平均百分比误差为−2.89%;PIV分析结果与不同尺寸或不同位置的子区域关联性较低,PIV技术具有良好的稳定性;通过设置不同长度的虚拟应变片,PIV技术能较准确地获取试件的局部应变及平均应变。PIV技术具有足够的可靠度,适用于FRP约束混凝土圆柱的变形测量,为FRP约束混凝土结构的力学性能研究提供了一种精确、非接触式的测量方法。

     

    Abstract: To explore the application of particle image velocimetry (PIV) technique in the experimental investigation of fiber-reinforced polymer (FRP)-confined circular concrete columns, and to assess the reliability and accuracy of this technique, this study employs both PIV technique and conventional foil strain gauges to characterize the strain behavior of FRP-confined concrete specimens under axial compression. A series of factors influencing the PIV analysis results were systematically examined. The results demonstrate that PIV technique can accurately characterize the stress-strain behavior of FRP-confined concrete columns. Compared to foil strain gauges, the average percentage error between the two methods was −2.89%, indicating that PIV technique exhibits sufficient reliability. Additionally, variations in subset size and location have negligible impact on the PIV results. By implementing virtual strain gauges of different lengths, the PIV technique effectively captures both local and average strain responses of the specimens with considerable accuracy.

     

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