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Design of thermal wind sensor with constant power control and wind vector measurement method

机译:具有恒功率控制和风矢量测量方法的热风传感器设计

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摘要

This paper presents a conceptual wind vector detector for measuring the velocity and direction of wind in enclosed or semi-enclosed large spaces. Firstly, a thermal wind sensor with constant power control was manufactured and then used as a wind velocity sensing unit. Secondly, a sensor bracket equipped with three thermal wind sensors was designed, the fluid dynamic response regularity of the measured wind field to the sensor bracket was analyzed using ANSYS Fluent CFD software, and then its structural parameters were optimized to improve measurement accuracy. The sensor bracket was fabricated via 3D printing. Finally, a unique wind vector measurement method was developed for the wind vector detector. Experimental results showed that the measured velocity range of the thermal wind sensor satisfied the requirements of being within 0–15 m/s with an accuracy of ±0.3 m/s, and the wind direction angle range of the wind vector detector was within 0–360° with an accuracy of ±5°. By changing the applied power control value of the thermal wind sensor and structural parameters of the sensor bracket, the measurement range and accuracy of the wind vector detector can be adjusted to suit different applications.
机译:本文介绍了一种概念风向量检测器,用于测量封闭或半封闭的大空间中的风速和方向。首先,制造具有恒定功率控制的热风传感器,然后用作风速感测单元。其次,设计了配备有三个热风传感器的传感器支架,使用ANSYS流畅的CFD软件分析了测量的风场的流体动态响应规律,并通过ANSYS流畅的CFD软件分析了传感器支架,然后优化其结构参数以提高测量精度。传感器支架通过3D打印制造。最后,为风矢量检测器开发了独特的风向形测量方法。实验结果表明,热风传感器的测量速度范围满足于0-15米/秒内的要求,精度为±0.3米/秒,风向矢量检测器的风向角度范围在0- 360°,精度为±5°。通过改变传感器支架的热风传感器的施加功率控制值和传感器支架的结构参数,可以调节风向量检测器的测量范围和精度以适应不同的应用。

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