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A constant-beam-width transducer for 3D acoustic Doppler profile measurements in open-channel flows

机译:用于在明渠流中进行3D声学多普勒剖面测量的恒定波束宽度传感器

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摘要

An ultrasonic constant-beam-width transducer system which is capable of generating an extended focal zone by electronically focusing the beam over the desired water-depth range is described. Beam directivity measurements show that the higher beam directivity and the reduction in side-lobe level lead to an increase of the signal-to-noise ratio by up to 15 dB compared with that of a plane disc transducer. It also allows one to attain a significant reduction of undesirable spectral broadening effects which in the case of plane disc transducers lower the final resolution and interfere with the correct interpretation of data. Using the focalized transducer, simultaneous 3D velocity component profile measurements over the whole water depth are carried out in uniform, open-channel flow and reveal the presence of coherent structures. In the transversal direction, a stationary secondary current composed of two stationary vortices is observed. Compared with a plane disc transducer system, the focalized system increases the resolution by up to 50%.
机译:描述了一种超声波恒定束宽度换能器系统,其能够通过将束电子聚焦在期望的水深范围上而产生扩展的聚焦区域。波束方向性测量表明,与平面盘换能器相比,更高的波束方向性和旁瓣电平的降低导致信噪比提高了15 dB。它还可以使人们不希望的光谱展宽效应大大降低,这在平面盘式换能器的情况下会降低最终分辨率并干扰数据的正确解释。使用聚焦换能器,可以在均匀的明渠水流中对整个水深同时进行3D速度分量剖面测量,并揭示相干结构的存在。在横向方向上,观察到由两个固定涡流组成的固定次级电流。与平面磁盘换能器系统相比,聚焦系统可将分辨率提高多达50%。

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