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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Development of 3-D Ultrasonic Anemometer With Nonorthogonal Geometry for the Determination of High-Intensity Winds
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Development of 3-D Ultrasonic Anemometer With Nonorthogonal Geometry for the Determination of High-Intensity Winds

机译:具有非正交几何形状的3-D超声波风速计的开发,用于确定高强度风

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摘要

The wind speed is an important quantity in various areas of knowledge. Among the existing types of anemometers, the ultrasonic is the one that requires less maintenance and may be used in most applications. This paper presents the development of an ultrasonic anemometer that measures wind speed in three dimensions. It discusses the important aspects of the mechanical structure of the equipment in order to minimize its influence in measurements. It also presents the electronic circuits used in the excitement and in the conditioning of signals of the transducers that make up the instrument. The equipment was calibrated in a wind tunnel, with a coefficient of determination , in relation to the reference method. In addition, results of field tests comparing two different mechanical structures are presented. Empirically, it is shown that a nonorthogonal arrangement for the anemometer favors the accuracy of the measurements. The results showed that the proposed equipment has an excellent accuracy for the measurement of up to 160 km/h.
机译:风速是各个知识领域中的重要量。在现有的风速计类型中,超声波是需要较少维护的一种,可以在大多数应用中使用。本文介绍了一种可在三个维度上测量风速的超声波风速仪的开发。它讨论了设备机械结构的重要方面,以最小化其对测量的影响。它还介绍了用于激发和调节组成该仪器的换能器信号的电子电路。相对于参考方法,该设备已在风洞中进行了校准,并具有确定系数。此外,还提供了比较两种不同机械结构的现场测试结果。经验表明,风速计的非正交布置有利于测量的准确性。结果表明,所建议的设备在高达160 km / h的测量速度下具有极好的精度。

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