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MEASUREMENT OF THE VAPOR BLANKET THICKNESS BY IMAGE PROCESSING METHOD

机译:图像处理法测量蒸气毯厚度

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It is widely believed that the behavior of vapor bubble/blanket over heating surface plays a critical role in deterrnining the critical heat flux (CHF) in the subcooled flow boiling. Various CHF models are based on phenomenon observations of vapor bubble/blanket in the flow channel and use vapor bubble/blanket physical parameters to determine CHF values. In this study, subcooled flow boiling tests were conducted on the experiment facility 'Test of External Vessel Surface with Enhanced Cooling" (TESEC). A series of natural circulation subcooled flow boiling CHF experiments is performed in a 30 mm by 61 mm rectangular flow channel with a 200 mm long heated surface along the flow direction at various inclination angles of the test section. With the assistance of high speed video technology, the process of flow boiling in the experiments was recorded and analyzed. A novel image processing method based on a MATLAB code is used to analyze high speed images at 999 frames/second and is able to provide detailed statistical information of vapor behavior on the heating surface. By this process, the static and dynamic information of vapor blanket is obtained at the pre-CHF conditions at various inclination conditions of flow channels (30 to 90 degrees). In addition, the Fast Fourier Transform (FFT) algorithm is used to further analyze the dynamic behavior of the vapor blanket.
机译:普遍认为,在确定过冷流沸腾过程中的临界热通量(CHF)方面,加热表面上的气泡/毯子的行为起着至关重要的作用。各种CHF模型都是基于流动通道中汽泡/毛毯的现象观察,并使用汽泡/毛毯的物理参数来确定CHF值。在这项研究中,在实验设备“增强冷却的外部容器表面测试”(TESEC)上进行了过冷流沸腾试验,在30 mm x 61 mm矩形流道中进行了一系列自然循环过冷流沸腾CHF实验。在测试部分的各种倾斜角度下沿流动方向具有200 mm长的受热面,借助高速视频技术,记录并分析了实验中的沸腾过程,并提出了一种新的图像处理方法MATLAB代码用于分析999帧/秒的高速图像,并能够提供加热表面上蒸气行为的详细统计信息,通过此过程,可以在CHF前的条件下获得蒸气覆盖层的静态和动态信息。在各种倾斜度条件下(30至90度),此外,使用快速傅立叶变换(FFT)算法进一步分析了动态蒸气覆盖层的行为。

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