An Air-Bearing Floating-Element Force Balance for Friction Drag Measurement

Xiaohui Wei, Xin Zhang, Jiangang Chen, Yu Zhou
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Abstract

It is extremely difficult, if not impossible, for existing force balances to capture very small skin-friction drag (SFD) in a perturbed turbulent boundary layer (TBL), which is characterized by the unpredictable, nonuniform distribution of static surface pressure. A novel force balance is proposed, which combines the level principle, as deployed in Cheng et al.'s (2020, “A High-Resolution Floating-Element Force Balance for Friction Drag Measurement,” Meas. Sci. Technol., 32, p. 035301) force balance, with a single-degree-of-freedom air bearing mechanism. This mechanism acts to eliminate disturbances, such as nonuniform static pressure on the wall associated with high Reynolds number TBL or a TBL under control. As a result, the developed balance may be used to accurately measure SFD in the order of 10−3 N in a TBL with or without control. This balance has been successfully applied to measure the drag reduction (DR) of a TBL manipulated using one array of streamwise microjets, at friction Reynolds number Reτ = 3340 ∼ 5480.
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用于摩擦阻力测量的气浮元件测力天平
在扰动湍流边界层(TBL)中,现有的力平衡很难捕捉到非常小的皮肤摩擦阻力(SFD),甚至不可能捕捉到,因为扰动湍流边界层的特点是静态表面压力分布不可预测且不均匀。程等人(2020,"用于摩擦阻力测量的高分辨率浮动元件力平衡",《测量、科学与技术》,32 卷,第 2 期)提出了一种结合水平原理的新型力平衡。Sci.Technol.,32,p.035301)的测力天平与单自由度空气轴承机构相结合。该机构的作用是消除干扰,例如与高雷诺数 TBL 或受控 TBL 有关的壁上不均匀静压。因此,所开发的天平可用于精确测量有控制或无控制 TBL 中 10-3 N 量级的 SFD。在摩擦雷诺数 Reτ = 3340 ∼ 5480 的条件下,该天平已成功用于测量使用一个流向微射流阵列操纵的 TBL 的阻力减小(DR)。
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