Liquid Handling of the JUNO Experiment

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Li, Jiajun, Heng, Yuekun, Ling, Jiajie, Wu, Zhi, Tang, Xiao, Guo, Cong, Liu, Jinchang, Luo, Xiaolan, Cai, Xiao, Yang, Chengfeng, Ma, Xiaoyan, Qian, Xiaohui, Huang, Tao, Wu, Bi, Yang, Pengfei, Zhang, Shiqi, Yue, Baobiao, Li, Shuaijie, Yang, Lei, Ye, Mei, Liu, Shenghui
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866917150424301568
author Li, Jiajun
Heng, Yuekun
Ling, Jiajie
Wu, Zhi
Tang, Xiao
Guo, Cong
Liu, Jinchang
Luo, Xiaolan
Cai, Xiao
Yang, Chengfeng
Ma, Xiaoyan
Qian, Xiaohui
Huang, Tao
Wu, Bi
Yang, Pengfei
Zhang, Shiqi
Yue, Baobiao
Li, Shuaijie
Yang, Lei
Ye, Mei
Liu, Shenghui
author_facet Li, Jiajun
Heng, Yuekun
Ling, Jiajie
Wu, Zhi
Tang, Xiao
Guo, Cong
Liu, Jinchang
Luo, Xiaolan
Cai, Xiao
Yang, Chengfeng
Ma, Xiaoyan
Qian, Xiaohui
Huang, Tao
Wu, Bi
Yang, Pengfei
Zhang, Shiqi
Yue, Baobiao
Li, Shuaijie
Yang, Lei
Ye, Mei
Liu, Shenghui
contents The Filling, Overflow, and Circulation (FOC) system is a critical subsystem of the Jiangmen Underground Neutrino Observatory (JUNO), responsible for the safe handling of the Liquid Scintillator (LS) and water throughout the detector's commissioning and operational lifetime. This paper details the design and operation of the FOC system, which accomplished the filling of the world's largest LS detector--taking 45 days for water (6.4*10^4 m^3) and 200 days for LS (2.3*10^4 m^3). Throughout water filling, the liquid level difference between the Central Detector and Water Pool was rigorously maintained within safety limits. During LS filling, level control achieved +/-2 cm precision with flow regulation within +/-0.5% of setpoints. An automated control system based on Programmable Logic Controllers and the Experimental Physics and Industrial Control System framework ensured reliable operation. The system preserved LS radiopurity, maintaining 222Rn below 1 mBq/m^3 during filling and achieving 238U/232Th concentrations below 10^-16 g/g. The successful commissioning and operation of the FOC system have established it as an indispensable foundation for the stable long-term operation of the JUNO detector.
format Preprint
id arxiv_https___arxiv_org_abs_2512_14033
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Liquid Handling of the JUNO Experiment
Li, Jiajun
Heng, Yuekun
Ling, Jiajie
Wu, Zhi
Tang, Xiao
Guo, Cong
Liu, Jinchang
Luo, Xiaolan
Cai, Xiao
Yang, Chengfeng
Ma, Xiaoyan
Qian, Xiaohui
Huang, Tao
Wu, Bi
Yang, Pengfei
Zhang, Shiqi
Yue, Baobiao
Li, Shuaijie
Yang, Lei
Ye, Mei
Liu, Shenghui
Instrumentation and Detectors
High Energy Physics - Experiment
The Filling, Overflow, and Circulation (FOC) system is a critical subsystem of the Jiangmen Underground Neutrino Observatory (JUNO), responsible for the safe handling of the Liquid Scintillator (LS) and water throughout the detector's commissioning and operational lifetime. This paper details the design and operation of the FOC system, which accomplished the filling of the world's largest LS detector--taking 45 days for water (6.4*10^4 m^3) and 200 days for LS (2.3*10^4 m^3). Throughout water filling, the liquid level difference between the Central Detector and Water Pool was rigorously maintained within safety limits. During LS filling, level control achieved +/-2 cm precision with flow regulation within +/-0.5% of setpoints. An automated control system based on Programmable Logic Controllers and the Experimental Physics and Industrial Control System framework ensured reliable operation. The system preserved LS radiopurity, maintaining 222Rn below 1 mBq/m^3 during filling and achieving 238U/232Th concentrations below 10^-16 g/g. The successful commissioning and operation of the FOC system have established it as an indispensable foundation for the stable long-term operation of the JUNO detector.
title Liquid Handling of the JUNO Experiment
topic Instrumentation and Detectors
High Energy Physics - Experiment
url https://arxiv.org/abs/2512.14033