核燃料微物体动态测量的结构和方法方面

T. N. Baybikova, E. P. Domoratskiy
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引用次数: 0

摘要

研究了球形微物体脉冲光学层析成像统计运算计算机系统。该系统为利用脉冲离散投影图像对微物体进行动态时空重建提供了新方法,并实现了微物体主要几何特性的动态测量。在此基础上,发展了原始的核燃料微物体几何尺寸和形状在线控制和分类方法。这些方法在每个微物体的三个相互正交的二维脉冲离散投影图像的轮廓总体尺寸的基础上,对每个微物体的尺寸(D)和形状(K)进行统计重建。在400 ~ 1500µm直径范围内,这些方法的处理速度接近100 MO/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Architectural and Methodical Aspects of Dynamic Measurements of Nuclear Fuel Microobjects
The computerized system of statistical operations research of pulsed optical tomography of spherical microobjects is under consideration. The system serves for creating new methods of dynamic space-time reconstruction of microobjects by their pulse discrete projection images and allows to perform dynamic measurements of main geometric miroobject properties. On this basis, original methods of on-line control and sorting by geometric dimensions and shape of nuclear fuel microobjects have been developed. These methods use the statistical reconstruction of the size (D) and shape (K) of each microobject on the base of their outline overall dimensions of three mutually orthogonal two-dimensional pulsed discrete projection images of each microobject. The processing speed of these methods are nearly 100 MO/s in the diameter range of 400–1500 µm.
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