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Design and implementation of an Environmental Temperature Control Enclosure for an External Wind Tunnel Balance

机译:外部风洞天平的环境温度控制外壳的设计与实现

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Given the critical role of wind tunnel aerodynamic load measurement, the measuring balance is a so precise and sensitive instrument that even minors disturbance from the environment can introduce significant error. Therefore, the environment temperature must be accurately measured and controlled. This paper addresses the design of a prototype enclosure as a controlled environment for the external wind tunnel balance. The enclosure is designed with a top section equipped with light bulbs and two blowers and the bottom section with a temperature sensing panel. The two sections are separated by a wire mesh. This design uses the current air-conditioning system to maintain the environment temperature of the external wind tunnel balance. Arduino Uno has been used as the main controller of the temperature control system using PID gains to adjust the intensity of the light bulbs depending on the set-point. The controller has been designed for the enclosure to validate the design experiments. The design of the experiment results can give a clear indication of which factors and parameters have to be considered more than the other.
机译:考虑到风洞空气动力学负荷测量的关键作用,测量天平是一种如此精确和灵敏的仪器,即使是很小的环境干扰也会带来很大的误差。因此,必须精确地测量和控制环境温度。本文将原型机壳的设计作为外部风洞平衡的受控环境。机箱的顶部设计有灯泡和两个鼓风机,底部设计有温度感应面板。这两个部分由金属丝网隔开。该设计使用当前的空调系统来维持外部风洞的环境温度平衡。 Arduino Uno已被用作温度控制系统的主控制器,并使用PID增益来根据设置点调整灯泡的强度。该控制器已针对外壳进行了设计,以验证设计实验。实验结果的设计可以清楚地表明哪些因素和参数必须比其他因素和参数更多地考虑。

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