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CFD and digital particle tracking to assess flow characteristics in the labyrinth flow path of a drip irrigation emitter

机译:CFD和数字粒子跟踪可评估滴灌喷头迷宫式流动路径中的流动特性

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摘要

It is necessary to have a comprehensive understanding of the flow mechanisms within drip irrigation emitters to design emitters that have a high anti-clogging performance. The use of computational fluid dynamics (CFD) to research the flow characteristics is appropriate because the labyrinth flow path is narrow and its boundary is complex. In this paper, a CFD for numeric model was developed for numerical simulation of the velocity distribution and turbulence intensity distributions within labyrinth emitters. A two-dimensional digital particle-tracking velocimetry (2D-DPIV) visual display system of the full flow fields was also constructed using plain laser inducement fluorescence velocity measurement technology, custom-made fluorescent particles and a plane model of the emitters. The object lens of a microscope was fitted to a conventional charge coupled device (CCD) camera to overcome the contradiction problems between the image viewing area and resolution power within the flow path. The measured turbulence and velocity distribution characteristics within the labyrinth flow path were in good agreement with the calculated CFD results. This enabled the optimal emitter design patterns to be determined based on the hydraulic characteristics and clogging resistance in the labyrinth flow path.
机译:有必要对滴灌喷头内的流动机理有一个全面的了解,以设计具有高防堵塞性能的喷头。由于迷宫式流动路径狭窄且边界复杂,因此使用计算流体动力学(CFD)研究流动特性是适当的。在本文中,开发了用于数值模型的CFD,以对迷宫式发射器内的速度分布和湍流强度分布进行数值模拟。还使用普通激光诱导荧光速度测量技术,定制的荧光颗粒和发射体的平面模型构建了全流场的二维数字颗粒跟踪测速(2D-DPIV)可视显示系统。显微镜的物镜安装在常规的电荷耦合器件(CCD)相机上,以克服图像查看区域与流路内分辨率功率之间的矛盾问题。迷宫流路内测得的湍流和速度分布特性与计算的CFD结果非常吻合。这使得可以根据迷宫式流动路径中的水力特性和抗阻塞性确定最佳的发射器设计模式。

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