论文标题
使用固体/流体界面折射的PIV测量
PIV measurements using refraction at a solid/fluid interface
论文作者
论文摘要
提出了在流体流/窗口界面处的激光光片折射来进行荧光PIV测量,特别是对于光学访问限制了用平面准直的光片照亮流量的可能性的情况。通过射线跟踪来量化照明强度,对当前测量方法的激光片传播进行了研究。为了描述此开发的PIV版本(R-PIV)的局限性,我们提出了一个互相关模型(CCM),用于分析图像对,这是$ $ $ -PIV或P-PIV技术中使用的图像对的扩展。该互相关模型认为R-PIV光学约束是1)在物体平面位置的光板折射的深度和纵向不均匀性,或者2)从播种粒子中的荧光深度整合。在已知的分析解决方案的学术管道流量的情况下,将进一步比较这种折射PIV(R-PIV)和P-PIV技术。最终,我们知道理论流速度,流量照明和播种流参数,以分析确定实际流速速度场时的某些误差水平,最终应用了我们扩展的互相关模型函数。
Laser light sheet refraction at the fluid flow/window interface is proposed to proceed fluorescent PIV measurements, in particular for cases for which optical access limits the possibilities of illuminating a flow with a planar collimated light sheet. The study of the laser sheet propagation for the present measurement method is led with ray tracing to quantify the illumination intensity. To describe the limitations of this developed PIV version (the R-PIV), we proposed a cross-correlation model (CCM) for analysing image pairs and that is an extension of the ones used in the cases of $μ$-PIV or P-PIV techniques. This cross-correlation model accounts for the R-PIV optical constraints as 1) in-depth and longitudinal inhomogeneities of the light sheet refraction at the location of the object plane or 2) integration in depth of the fluorescence from seeding particles. This refracted PIV (R-PIV) and the P-PIV techniques are further compared in the case of an academic pipe flow whose analytic solution is known. Our extended cross-correlation model function is finally applied, knowing the theoretical flow velocity, the flow illumination and the seeding flow parameters, to analyse some error levels in determining the real flow velocity field.