from    
to    
search  

 


清华大学材料科学与工程研究院《材料科学论坛》:Liquid-matter ferroelectrics: p...
清华大学材料科学与工程研究院《材料科学论坛》:Diversity of chemical structure...
天文系 Colloquium: A polarized view of the pulsar wind nebulae with IXPE
【图书馆系列讲座】让Scopus AI 助力科研
报告题目:
HYDROGEN ISOTOPE TRANSPORT IN THE GRAPHITE FUEL ELEMENTS OF FLUORIDE-SALT COOLED, HIGH-TEMPERATURE NUCLEAR REACTORS (FHR)
 报告人:
Raluca O. Scarlat
Assistant Professor
Department of Engineering Physics
University of Wisconsin Madison
报告时间:
2016-11-01 09:40
报告地点:
核研院能科楼A座211
主办单位:
核研院
  简介:
The Pebble-Bed Fluoride-Salt-Cooled High Temperature Reactor (PB-FHR) is an advanced nuclear reactor concept that combines high-temperature and low-pressure fluoride salt coolants with particle-encapsulated nuclear fuel. FHRs deliver heat in the 600 - 700°C range, and this temperature range makes it possible to couple nuclear heat to commercially available gas turbines for open air power conversion cycles, which enables combined-cycle efficiencies of 65% and provides the capability of natural gas co-firing for power peaking. One of the technical challenges that is most important in the commercialization if FHRs is the management of tritium.
Under neutron-irradiation, the metallic constituents of the salt generate tritium, for which the salt has very low solubility. At 600oC and above, tritium readily diffuses through metals, and the salt-to-air metal heat exchanger is a pathway for the release of tritium to the atmosphere. In order to manage tritium release, two complementary approaches are being studied: tritium permeation barriers on metallic tubes, and methods for the extraction of tritium from the salt coolant.
The fuel elements of FHR are made of a graphitic material in which the encapsulated fuel particles are embedded. It would be advantageous if the graphitic material of the FHR fuel elements could serve as an effective in-situ tritium sink. The Scarlat group studies the ability of this graphitic material to absorb hydrogen isotopes from the liquid fluoride salts. This presentation will provide an overview of tritium management in FHR, and will present the ongoing research at University of Wisconsin Madison on understanding the transport mechanisms of hydrogen isotopes from liquid fluoride salts into graphitic materials.
 
 

Raluca Scarlat is an assistant professor at UW Madison in the Department of Nuclear Engineering and Engineering Physics. She has a Ph.D. in nuclear engineering from UC Berkeley, and a B.S. in chemical and biomolecular engineering from Cornell University. Prior to her doctoral studies she has worked for GE and ExxonMobil. In 2011, she advised for Hitachi-GE, in Japan, on post-Fukushima changes to severe accident guidelines for the Japanese fleet of reactors. She has published articles in Nuclear Engineering and Design, Nuclear Instruments and Methods, Journal of Engineering for Gas Turbines and Power, and Progress in Nuclear Energy. Her research interests are in the area of heat and mass transport, thermal-hydraulics, nuclear reactor safety and design, and engineering ethics.

今日相关信息
环境学术沙龙第316期:Design and evalua...
Hydrazone-Based Functional Materials
宏观形势、资本市场和海外并购
 
同类别相关信息
第369期“工物学术论坛”:硼中子俘获...
第368期“工物学术论坛”:利用超强X射...
腾讯会议 第367期“工物学术论坛”:重...
腾讯会议 第366期“工物学术论坛”:临...
国有企业党的建设工作研讨会----暨习近...
学术活动