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Sensor for direct measurement of the boundary shear stress in fluid flow

机译:直接测量流体流动中的边界剪切应力的传感器

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The formation of scour patterns at bridge piers is driven by the forces at the boundary of the water flow. In most experimental scour studies, indirect processes have been applied to estimate the shear and normal stress using measured velocity profiles. The estimations are based on theoretical models and associated assumptions. However, the turbulence flow fields and boundary layer in the pier-scour region are very complex. In addition, available turbulence models cannot account accurately for the bed roughness effect. Direct measurement of the boundary shear and normal stress and their fluctuations are attractive alternatives. However, this approach is a challenging one especially for high spatial resolution and high fidelity measurements. The authors designed and fabricated a prototype miniature shear stress sensor including an EDM machined floating plate and a high-resolution optical encoder. Tests were performed both in air as well as operation in water with controlled flow. The sensor sensitivity, stability and signal-to-noise level were measured and evaluated. The detailed test results and a discussion of future work will be presented in this paper. Sensor, shear stress, fluid flow
机译:桥墩处冲刷形式的形成是由水流边界处的力驱动的。在大多数实验冲刷研究中,已采用间接过程来使用测得的速度剖面估算剪切力和法向应力。估计基于理论模型和相关假设。但是,在码头冲刷区的湍流场和边界层非常复杂。另外,可用的湍流模型不能准确地解释床的粗糙度影响。直接测量边界剪切力和法向应力及其波动是有吸引力的选择。但是,这种方法尤其对于高空间分辨率和高保真度测量而言是一种挑战。作者设计并制造了一个原型微型剪切应力传感器,该传感器包括一个由EDM加工的浮板和一个高分辨率光学编码器。测试是在空气中以及在水流受控的情况下进行的。测量并评估了传感器的灵敏度,稳定性和信噪比水平。详细的测试结果和对未来工作的讨论将在本文中介绍。传感器,剪切应力,流体流量

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