首页> 外文会议>International Conference on Microchannels and Minichannels(ICMM2004); 20040617-20040619; Rochester,NY; US >VISUALISATION OF LOW HEAT AND MASS FLUX BOILING IN A SMALL METAL PIPE USING NEUTRON RADIOGRAPHY
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VISUALISATION OF LOW HEAT AND MASS FLUX BOILING IN A SMALL METAL PIPE USING NEUTRON RADIOGRAPHY

机译:中子射线照相法对小金属管中低热和质量通量沸腾的可视化

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High speed visualization of boiling pentane in a circular steel tube (D_i = 1.2 mm, D_o =2 mm) has been performed at the Neutrograph instrument at the Institut Laue-Langevin in Grenoble, France. The heat and mass flux were both very low and appropriate for cooling of PEM fuel cells. The spatial resolution of the images is approximately 0.15 mm and the maximum frequency is 154 Hz. In the images, the liquid-vapor differentiation is clearly visible. Time resolved measurements of the outer pipe wall temperature, synchronized with the images, show that at low mass flow rates, the pipe wall is high above the saturation temperature and the pipe filled with vapor and liquid slugs. At higher flow rates, the wall is superheated when filled with liquid and at saturation temperature during boiling when exposed to a liquid-vapor mixture. An irregular switching between these two states was observed. The superheated wall is shown to be consistent with superheated liquid in the pipe prior to boiling. Unfortunately the strong γ-radiation produced by the neutrons has a substantial effect on the onset of boiling, which is why comparisons with non-irradiated systems might be difficult.
机译:法国格勒诺布尔Laue-Langevin研究所的Neutrograph仪器已对圆形钢管中沸腾的戊烷(D_i = 1.2 mm,D_o = 2 mm)进行了高速可视化。热通量和质量通量都非常低,适合于PEM燃料电池的冷却。图像的空间分辨率约为0.15毫米,最大频率为154 Hz。在图像中,可以清楚地看到液体-蒸汽的差异。与图像同步的时间分辨的外管壁温度测量结果表明,在低质量流量下,管壁高于饱和温度,并且管中充满了蒸气和液体团块。在较高的流速下,壁中充满液体时会过热,而在沸腾期间暴露于液体-蒸汽混合物时则会达到饱和温度。观察到这两个状态之间的不规则切换。过热壁显示与沸腾前管道中的过热液体一致。不幸的是,中子产生的强γ辐射对沸腾的开始有很大影响,这就是为什么与非辐射系统进行比较可能会很困难的原因。

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