Development of a Fast Neutron Computed Tomography System for Non-Invasive Testing
Development of a Fast Neutron Computed Tomography System for Non-Invasive Testing
批准号:
532146-2018
负责人:
Novog, David
金额:
$7.63万
依托单位:
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2020
资助国家:
加拿大
项目状态:
已结题
起止时间:
2020-01-01 至 2021-12-31
中文摘要
这项研究拨款旨在开发一种新型的计算机层析成像系统,该系统能够测量复杂工程结构内的三维相分布。相变现象极大地影响了许多工程系统的物理特性,但直接测量三维相场历来涉及介入式测量和/或可能不适用于在高压和高温下沸腾条件下运行的系统。这项工作的行业协作者是CANDU Owners Group,他们的目标是获得CANDU燃料串模拟器内相场的测量结果,在该相场中,发生沸腾,压力可超过10兆帕,以便为模型改进和多相计算流体力学验证生成数据。对现有商业测量的审查表明,这一领域需要在3D无损检测方面取得新的进展,将其应用于核工业以及可能发生相变现象的其他部门。
该项目将开发一种快中子计算机层析成像(FCNT)系统,能够成像复杂几何形状和涉及厚压力边界的三维相场分布。由于移动核子发生器技术的根本性改进,新技术的开发今天成为可能,在过去十年中,移动核子发生器的中子产量从1e7增加到1e10。它将基于加速器的中子发生器领域的新发展、新的硅光倍增(SiPM)技术与现有的CT方案相结合,以获得能够满足当前和未来研发需求的新移动系统。我们的目标是让该技术以1厘米或更高的分辨率和行业可接受的扫描时间(与一些历史系统所需的数小时或数天的时间相比)呈现分布。这项工作是加拿大第一项同类技术,将在加拿大的各个研发部门得到广泛应用。
英文摘要
This research grant aims to develop a novel computed tomography system which is capable of measuring 3-dimensional phasic distributions inside complex engineering structures. Phase-change phenomena greatly impact the physics in many engineering systems but direct measurement of the 3-dimensional phase field has historically involved intrusive measurements and/or may not be applied universally to systems that operate under boiling conditions at high pressure and temperatures. The industrial collaborator for this work is the CANDU Owners Group and their goal is to obtain measurements of the phase field inside a CANDU fuel string simulator where boiling occurs and pressures can exceed 10 MPa in order to generate data for model improvement and multi-phase computational fluid dynamics validation. A review of existing commercially available measurements has indicated that there is a need for new advancements in 3D non-destructive testing in this area with application to the nuclear industry as well as other sectors where phase change phenomena can occur.
This project will develop a fast-neutron computed tomography (FCNT) system capable of imaging 3-dimensional phase-field distributions in complex geometries and involving thick pressure boundaries. The new technology development is possible today due to radical improvements in mobile nuetron generator technologies which have increased in neutron output from 1e7 to 1e10 over the last ten years. It integrates new developments in the area of accelerator based neutron generators, new Silicon-Photo multiplier (SiPM) technologies with existing CT schemes to obtain a new mobile system capable of meeting current and future R&D demands. The goal is to have the technology render distributions with 1cm or better resolution and scan times which are acceptable to industry (on the order of 1 hour as opposed to multiple hours or days required with some historical system). The work represents the first-of-its-kind technology in Canada and will have wide ranging applications across various R&D sectors in Canada.
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