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Measurement of a Temperature Field Generated by a Synthetic Jet Actuator using Digital Holographic Interferometry

机译:使用数字全息干涉测量器由合成射流执行器产生的温度场测量

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This paper shows the possibility of the measurement of a temperature field generated by heated fluid from a synthetic jet (SJ) actuator. Digital holographic interferometry (DHI) was the main measuring method used for the experiments. A single-projection DHI was used for the visualization of the temperature field as an average temperature along the optical axis. The DHI results are compared with data obtained from constant current anemometry (CCA) experiments for the validation of the method. Principle of 3D temperature distribution using a tomographic approach is also described in this paper. A single SJ actuator, multiple continual nozzle, and the SJ actuator with two output orifices are used as a testing device for the presented experiments. The experimental configuration can measure high-frequency synthetic jets with the use of a single slow-frame-rate camera. Due to the periodic character of the SJ flow, synchronization between the digital camera, and the external trigger driving the phenomenon is performed. This approach can also distinguish between periodic and random parts of the flow.
机译:本文示出了通过来自合成射流(SJ)致动器产生的加热流体产生的温度场的可能性。数字全息干涉测量(DHI)是用于实验的主要测量方法。单凸起DHI用于沿光轴的平均温度的温度场可视化。将DHI结果与从恒定电流低温(CCA)实验获得的数据进行比较,用于验证该方法。本文还描述了使用断层接近的3D温度分布原理。单个SJ致动器,多个连续喷嘴和具有两个输出孔的SJ致动器用作所呈现的实验的测试装置。实验配置可以使用单个慢速帧速率相机测量高频合成喷射。由于SJ流的周期性,进行了数码相机之间的同步和驱动现象的外部触发器。这种方法还可以区分流程的周期性和随机部分。

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