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Development of ultrasonic glancing angle imaging methodology for detection of subassembly protrusion in fast breeder reactors

机译:超声掠射角成像方法的发展,用于快速增殖反应堆中组件突出的检测

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摘要

The paper presents an ultrasonic glancing angle imaging based methodology developed for detection of protrusion and mapping of subassembly (SA) heads in a pool type liquid metal cooled fast breeder reactor. In the developed methodology, mapping of SA heads is performed by a single sweep of a transducer inclined at an oblique angle close to the horizontal plane. A large number of SAs is covered simultaneously due to divergence of the ultrasonic beam. A significant increase in the acoustic amplitude corresponding to the protruded SA and reduction in the amplitudes corresponding to the SAs in the shadow region can be used for detection of SA protrusion. Further, decrease in the time of flight of signal corresponding to the protruded SA can be used for quantitative estimation of the extent of SA protrusion. The present study demonstrates in water condition that ultrasonic glancing angle imaging methodology can be used for mapping of SA heads and to detect their protrusion, if any, without the need of placing an ultrasonic transducer just above the targeted SA.
机译:本文提出了一种基于超声掠射角成像的方法,该方法被开发用于检测池型液态金属冷却快中子增殖反应堆中子组件(SA)头部的伸出和定位。在开发的方法中,通过以倾斜于接近水平面的倾斜角度倾斜的换能器进行一次扫描来完成SA磁头的映射。由于超声波束的发散,大量的SA同时被覆盖。对应于突出的SA的声振幅的显着增加和对应于阴影区域中的SA的振幅的减小可用于检测SA的突起。此外,对应于突出的SA的信号的传播时间的减少可以用于SA突出程度的定量估计。本研究表明,在水条件下,超声掠射角成像方法可用于绘制SA头部的图并检测其突出(如果有),而无需将超声换能器放置在目标SA的正上方。

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