首页> 外文期刊>Experiments in Fluids >Stereoscopic PIV on multiple color-coded light sheets and its application to axial flow in flapping robotic insect wings
【24h】

Stereoscopic PIV on multiple color-coded light sheets and its application to axial flow in flapping robotic insect wings

机译:多种颜色编码的光片上的立体PIV及其在拍打机器人昆虫翅膀中的轴向流中的应用

获取原文
获取原文并翻译 | 示例

摘要

Non-scanning volume flow measurement techniques such as 3D-PTV, holographic and tomographic particle image velocimetry (PIV) permit reconstructions of all three components (3C) of velocity and vorticity vectors in a fluid volume (3D). In this study, we present a novel 3D3C technique termed Multiple-Color-Plane Stereo Particle-Image-Velocimetry (color PIV), which allows instantaneous measurements of 3C velocity vectors in six parallel, colored light sheets. We generated the light sheets by passing white light of two strobes through dichroic color filters and imaged the slices by two 3CCD color cameras in Stereo-PIV configuration. The stereo-color images were processed by custom software routines that sorted each colored fluid particle into one of six gray-scale images according to its hue, saturation, and luminance. We used conventional Stereo PIV cross-correlation algorithms to compute a 3D planar vector field for each light sheet and subsequently interpolated a volume flow map from the six vector fields. As a first application, we quantified the wake and axial flow in the vortical structures of a robotic insect (fruit fly) model wing. In contrast to previous findings, the measured data indicate strong axial flow components on the upper wing surface, including axial flow in the leading-edge vortex core. Collectively, color PIV is robust against mechanical misalignments, avoids laser safety issues, and computes instantaneous 3D vector fields in a fraction of the time typical for other 3D systems. Color PIV might thus be of value for volume measurements of highly unsteady flows.
机译:非扫描体积流量测量技术(例如3D-PTV,全息和断层摄影粒子图像测速技术(PIV))允许在流体体积(3D)中重建速度和涡度矢量的所有三个分量(3C)。在这项研究中,我们提出了一种新颖的3D3C技术,称为多色平面立体粒子图像测速技术(彩色PIV),该技术可以在六个平行的彩色光片中即时测量3C速度矢量。我们通过使两个频闪灯的白光通过二向色滤色镜来生成光片,并通过两个Stereo-PIV配置的3CCD彩色相机对切片进行成像。通过自定义软件例程处理立体色图像,该例程将每个彩色流体粒子根据其色相,饱和度和亮度分类为六个灰度图像之一。我们使用常规的立体声PIV互相关算法为每个光片计算3D平面矢量场,然后从六个矢量场内插一个体积流图。作为第一个应用程序,我们量化了机器人昆虫(果蝇)模型机翼的旋涡结构中的尾流和轴流。与以前的发现相反,实测数据表明上机翼表面存在强大的轴向流分量,包括前沿涡旋核中的轴向流。总而言之,彩色PIV具有强大的机械抗对准能力,避免了激光安全性问题,并且可以在其他3D系统通常所需时间的一小部分内计算出瞬时3D矢量场。因此,颜色PIV对于高度不稳定流量的体积测量可能具有价值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号