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首页> 外文期刊>Experiments in Fluids >Experimental two-phase flow measurement using ultra fast limited-angle-type electron beam X-ray computed tomography
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Experimental two-phase flow measurement using ultra fast limited-angle-type electron beam X-ray computed tomography

机译:使用超快速限角型电子束X射线计算机断层摄影技术进行实验性两相流量测量

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摘要

An experimental evaluation of a novel limited-angle-type ultra fast electron beam X-ray computed tomography approach for the visualization and measurement of a gas–liquid two-phase flow is reported here. With this method, a simple linear electron beam scan is used to produce instantaneous radiographic views of a two-phase flow in a pipe segment of a flow loop. Electron beam scanning can be performed very rapidly, thus a frame rate of 5 kHz is achieved. Radiographic projections are recorded by a very fast detector arc made of zink–cadmium–telluride elements. This detector records the X-ray radiation passing through the object with a sampling rate of 1 MHz. The reconstruction of slice images from the recorded detector data is a limited-angle problem since in our scanning geometry the object’s Radon space is only incompletely sampled. It was investigated here, whether this technology is able to produce accurate gas fraction data from bubbly two-phase flow. Experiments were performed both on a Perspex phantom with known geometry and an experimental flow loop operated under vacuum conditions in an electron beam processing box.
机译:本文报道了一种新颖的有限角度型超快电子束X射线计算机断层扫描方法的实验评估,该方法用于可视化和测量气液两相流。使用这种方法,可以使用简单的线性电子束扫描来生成流动环管段中两相流的瞬时射线照相图。电子束扫描可以非常快速地执行,因此可以达到5 kHz的帧频。射线照相投影是由由锌-镉-碲化物元素制成的非常快的探测器电弧记录的。该探测器以1 MHz的采样率记录通过物体的X射线辐射。从记录的探测器数据中重建切片图像是一个有限角度的问题,因为在我们的扫描几何形状中,对象的Radon空间只是不完全采样。在此研究了该技术是否能够从气泡状两相流中产生准确的气体分数数据。在具有已知几何形状的有机玻璃模型上进行实验,并在电子束处理箱中在真空条件下操作的实验流动环上进行实验。

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