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A film-based wall shear stress sensor for wall-bounded turbulent flows

机译:基于薄膜的壁面湍流应力传感器

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In wall-bounded turbulent flows, determination of wall shear stress is an important task. The main objective of the present work is to develop a sensor which is capable of measuring surface shear stress over an extended region applicable to wall-bounded turbulent flows. This sensor, as a direct method for measuring wall shear stress, consists of mounting a thin flexible film on the solid surface. The sensor is made of a homogeneous, isotropic, and incompressible material. The geometry and mechanical properties of the film are measured, and particles with the nominal size of 11 μm in diameter are embedded on the film’s surface to act as markers. An optical technique is used to measure the film deformation caused by the flow. The film has typically deflection of less than 2% of the material thickness under maximum loading. The sensor sensitivity can be adjusted by changing the thickness of the layer or the shear modulus of the film’s material. The paper reports the sensor fabrication, static and dynamic calibration procedure, and its application to a fully developed turbulent channel flow at Reynolds numbers in the range of 90,000–130,000 based on the bulk velocity and channel full height. The results are compared to alternative wall shear stress measurement methods.
机译:在有边界的湍流中,确定壁切应力是一项重要的任务。本工作的主要目的是开发一种传感器,该传感器能够在适用于壁流湍流的扩展区域上测量表面剪切应力。作为测量壁切应力的直接方法,该传感器包括在固态表面上安装薄的柔性膜。传感器由均质,各向同性和不可压缩的材料制成。测量膜的几何形状和机械性能,将标称直径为11μm的颗粒嵌入膜表面以用作标记。光学技术用于测量由流动引起的薄膜变形。在最大载荷下,薄膜的挠度通常小于材料厚度的2%。可以通过更改层的厚度或膜材料的剪切模量来调整传感器的灵敏度。本文报告了传感器的制造,静态和动态校准程序,并将其应用到基于整体速度和通道全高的,在雷诺数范围为90,000-130,000的完全发展的湍流通道中。将结果与替代壁剪应力测量方法进行比较。

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