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A method for volumetric visualization of temperature distribution: three-dimensional meshed infrared thermography

机译:温度分布体积可视化方法:三维网状红外热成像

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摘要

In this study, a method called three-dimensional meshed infrared thermography (3D MIT) was developed to visualize the volumetric temperature of air using an infrared camera. The main operating principle of the proposed method is to image the spheres using an infrared camera and processing the images with computer software to obtain the volumetric temperature distribution. For the correct implementation of the method, an equation is proposed to determine the distance between the thermal target and the measurement target placed in the flow to be examined. The proposed method was compared with conventional measurement screen methods, namely those using a plane target and a high-porosity target, via particle image velocimetry (PIV) in terms of flow effects. The temperature measurement capability of the proposed method is presented in comparison with the results of thermocouple and conventional measurement screen-based measurements recorded using a jet flow. In addition, the volumetric temperature isosurfaces obtained via the 3D MIT method of a jet flow were compared with the volumetric velocity isosurfaces obtained via the PIV method in terms of the flow structure.
机译:在该研究中,开发了一种称为三维网状红外热成像(3D MIT)的方法以使用红外相机可视化空气的容量温度。所提出的方法的主要工作原理是使用红外摄像机进行图像,并用计算机软件处理图像以获得体积温度分布。为了正确实现该方法,提出了一种等式来确定热目标与放置在待检查流中的测量目标之间的距离。将该方法与常规测量筛选方法进行比较,即使用平面靶和高孔隙靶,在流动效果方面通过粒子图像速度(PIV)。与使用喷射流记录的热电偶和传统的测量丝网的测量结果相比,提出了该方法的温度测量能力。另外,通过通过PIV方法在流动结构方面获得通过射流的3D MIT方法获得的体积温度异孢子件。

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