太阳城集团亚洲娱乐城-澳门太阳城集团娱乐城最新地址

搜索
學術
講座

美國伊利諾伊大學 Caleb Brooks教授學術講座

2024.03.07 瀏覽量:

Development of interfacial area transport for closure of the two-fluid model: past, present, and future

主講人 : Caleb Brooks

The two-fluid model has long been the backbone of thermal hydraulics calculations for the nuclear power industry and increasingly relied upon for determination of safety margin, course of accident progression, and design of new reactor concepts and safety systems. It is important to provide an accurate constitutive relation for the interfacial area concentration to solve the two-fluid model. The implementation of the interfacial area transport equation into thermal-hydraulic system analysis codes has been recommended to improve prediction capability and solve current shortcomings. These shortcomings include inability to simulate the dynamic changes in interfacial structure across flow regimes and in developing flow, significant compound errors stemming from the two-step flow regime  d method, possible numerical oscillation, and limited applicable range of interfacial area correlations. The interfacial area transport equation can replace the traditional flow regime maps and regime transition by mechanistically predicting the changes in the two-phase flow structure through modeling the effects of the boundary conditions and flow development. This presentation will detail the development of the Interfacial Area Transport Equation from a historical perspective and provide the road map for future work.



主講人簡介:

Dr. Caleb Brooks is an associate professor in the Nuclear, Plasma, and Radiological Engineering Department at the University of Illinois Urbana-Champaign and a Donald Biggar Willett Faculty Scholar Awardee. He holds B.S. and Ph.D. degrees in nuclear engineering from Purdue University and has been a member of the UIUC faculty since 2014. As the Director of the Illinois Microreactor RD&D Center, his work is focused on enabling and expanding safe, peaceful uses of nuclear power. Current research activities in this Center include microreactor modeling and simulation, siting analysis, market analysis, instrumentation, operations and reactor control, licensing, and policy. Beyond his work in the Center, Dr. Brooks is also the director of the Multiphase Thermo-fluid Dynamics Lab (MTDL) which specializes in thermo-fluid dynamics of nuclear systems and reactor flows, and hybrid energy approaches for existing and future power systems. He has received the thermal-hydraulics division and society-wide young member research awards from the Atomic Energy Society of Japan, and the Landis Young Member Engineering Achievement Award from the American Nuclear Society.


編輯:曹蔚

責編:韋麗

衡水市| 天天乐娱乐城| 百家乐推筒子| 长垣县| 百家乐金海岸软件| 百家乐官网游戏玩法规则| 百家乐桌子豪华| 面对面棋牌游戏| 百家乐官网有真假宝单吗| 大发888娱乐官方下载| 百家乐官网赌大小| 湄潭太阳城房价| 老牌百家乐娱乐城| 网络百家乐官网模拟投注| 大发888 dafa888 gzsums| 百家乐室系统软件| 澳门百家乐官网真人版| 波胆网站| 免费百家乐计划工具| 新奥博百家乐官网娱乐城| 至尊百家乐于波| 邯郸百家乐园真钱区| 百家乐官网娱乐下载| 大发888娱乐城电脑版下载 | 百家乐官网怎么下可以赢| 蓝盾百家乐赌城| 百家乐官网输惨了| 棋牌真钱游戏| 大发888 打法888 大发官网| 百家乐出千工具价格| 百家乐官网保证赢| 保单百家乐官网游戏机| 属羊的和属猪的做生意| 百家乐官网群必胜打朽法| 百家乐官网网盛世三国| 肇州县| 大赢家比分| 大发888出纳柜台 在线| 大发888有赢钱的吗| 广州太阳城巧克力社区| 网页百家乐游戏下载|