A Laboratory Study on the Design and Performance Evaluation of Pitot-Tube

Yasemin ESKİ, Babak VAHEDDOOST, Damla YILMAZ
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Abstract

Due to the increasing demand for water resources worldwide, this commodity and its spatial and temporal properties are of the interest of decision makers and scientists. In this respect, the accuracy in detecting the physical characteristics of the water movement such as velocity and its associated phenomena should be preauthorized in hydraulic studies. Although velocity, as the deriving factor of the water flow, can be determined with the help of theoretical or practical approaches, researchers continuously pushes the limits of science by improving the existing methods to the best. The pitot tube, which is not widely used in open channel hydraulic practices, is one of these methods. In this study, we have addressed a case from design to conducting a set of laboratory experiments. A 3D-printed pitot-tube is designed and used in a set of experiments carried out in an open channel, with different flow rates (three experiments). As a result, the relative error rates were interpreted by comparing the velocity rates obtained with the help of the water level difference in the differential manometer (Vm) and the velocity rates obtained from the flow continuity equation in the open channel (Vo). Results indicated a 50% bias in the experiments, while scatter analysis showed that the associated deviations matches a linear equation.
皮托管设计与性能评价的实验室研究
由于全球对水资源的需求不断增加,这种商品及其时空特性引起了决策者和科学家的兴趣。在这方面,检测水运动的物理特征,如速度及其相关现象的准确性应在水力研究中预先得到批准。流速作为水流的派生因素,虽然可以通过理论或实践方法来确定,但研究人员不断地将现有方法改进到最好,从而推动科学的极限。在明渠水利实践中应用并不广泛的皮托管就是其中一种方法。在这项研究中,我们讨论了一个案例,从设计到进行一组实验室实验。设计了一个3d打印的皮托管,并将其用于在开放通道中进行的一系列实验中,在不同的流速下(三个实验)。因此,通过比较差压计水位差(Vm)得到的流速和明渠流动连续性方程(Vo)得到的流速来解释相对错误率。结果表明实验偏差为50%,而散点分析表明相关偏差符合线性方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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