Design of a novel gamma camera with large field of view for 16N diagnosis in the primary loop of nuclear reactor

Author:

Zhang Tao1ORCID,Tang Lingzhi1,Yan Yihong1ORCID,Bai Xuejie12,Wang Dongming13ORCID,Sun Weiqiang1ORCID,Jing Futing4,Lv Huanwen4ORCID,Hu Guang1ORCID,Yan Mingfei1ORCID,Hu Huasi1ORCID

Affiliation:

1. Xi’an Jiaotong University, School of Energy and Power Engineering Department of Nuclear Science and Technology 1 , Xi’an 710049, China

2. China Academy of Engineering Physic Institute of Fluid Physics 2 , Mianyang 621900, China

3. China Academy of Engineering Physics, Institute of Nuclear Physics and Chemistry 3 , Mianyang 621900, China

4. Science and Technology on Reactor System Design Technology Laboratory, Nuclear Power Institute of China 4 , Chengdu 610213, China

Abstract

The assessment of the concentration and distribution of l6N, derived from 16O in the cooling water exposed to neutron irradiation, is essential for ensuring radiation safety during nuclear reactor operation. The imaging method allows for the visualization of the intensity distribution of these l6N by capturing gamma-rays emitted during their decay process. However, the existing gamma camera is exclusively compatible with gamma-rays below 2 MeV. In this paper, a novel gamma camera featuring a thick double-conical penumbra aperture, a pixelated Lu1.8Y0.2SiO5:Ce scintillator array, and a position-sensitive photomultiplier tube is proposed to address this limitation. This innovative design offers a large field of view (FOV) and is suitable for high energy extended gamma source imaging. The optimization of key parameters of the camera was conducted, and a FOV of 60° and an angular resolution of up to 4.57° were achieved. Imaging simulations, including a simplified model of the primary loop of the pressurized-water reactor by GEANT4 code and image reconstruction using the expectation maximum algorithm, demonstrated that the proposed gamma camera could obtain a satisfactory spatial resolution for diagnosing the distribution of 16N in the primary loop of a nuclear reactor.

Funder

NSAF Joint Fund

Science Technology on Reactor System Design Technology Laboratory, Nuclear Power Institute of China

National Natural Science Foundation of China

Publisher

AIP Publishing

Reference28 articles.

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2. Determination of /sup 16/N gamma radiation fields at BWR nuclear power stations

3. Standard Review Plan for the Review of Safety Analysis Reports for Nuclear Power Plants,1984

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