首页> 外文会议>ASME small modular reactors symposium >TRACE CODE ANALYSES FOR THE IAEA ICSP ON 'INTEGRAL PWR DESIGN NATURAL CIRCULATION FLOW STABILITY AND THERMO-HYDRAULIC COUPLING OF CONTAINMENT AND PRIMARY SYSTEM DURING ACCIDENTS'
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TRACE CODE ANALYSES FOR THE IAEA ICSP ON 'INTEGRAL PWR DESIGN NATURAL CIRCULATION FLOW STABILITY AND THERMO-HYDRAULIC COUPLING OF CONTAINMENT AND PRIMARY SYSTEM DURING ACCIDENTS'

机译:IAEA ICSP对“整体PWR设计自然循环流动稳定性的微量代码分析,以及在事故期间遏制和初级系统的热液压耦合”

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Considering the world energy demand increase in order to fulfill an environmental and economic sustainability, the energy policy of each country has to diversify the sources of energy and use stable, safe energy production option able of producing electricity in a clean way contributing in cutting the CO_2 emission. In the framework of the sustainable development, today the use of advanced nuclear power plant, have an important role in the environmental and economic sustainability of country energy strategy. In the last 20 years, in fact, the international community, taking into account the operational experience of the nuclear reactors, starts the development of new advanced reactor designs considering also the use of natural circulation for the cooling of the core in normal and transient conditions. In this framework, Oregon State University (OSU) has constructed, under a U.S. Department of Energy grant, a system level test facility to examine natural circulation phenomena characterizing the Multi-Application Small Light Water Reactor (MASLWR) design, a small modular integral pressurized light water reactor relying on natural circulation during both steady state and transient operation. It includes an integrated helical coil steam generator as well. Starting from an experimental campaign in support of the MASLWR concept design verification, the planned work, will be not only to specifically investigate the concept design further but also advance the broad understanding of integral natural circulation reactor plants and accompanying passive safety features as well. An IAEA International Collaborative Standard Problem (ICSP) on "Integral PWR Design Natural Circulation Flow Stability and Thermo-hydraulic Coupling of Containment and Primary System During Accidents" is hosting at OSU and the experimental data will be developed at the OSU-MASLWR facility. The purpose of this IAEA ICSP is to provide experimental data on single/two-phase flow instability phenomena under natural circulation conditions and coupled containment/reactor vessel behavior in integral-type light water reactors. These data can be used to assess thermal hydraulic codes for reactor system design and analysis as well. The first planned test investigates a stepwise reduction in the primary mass inventory of the facility while operating at reduced power (decay power). The second planned test, investigates a loss of feed water transient with subsequent primary blowdown due to automatic depressurization system actuation and long term cooling phase. The target of this paper is to contribute to the thermal hydraulic analysis of the expected phenomena of these transients on the basis of the TRACE V5 Patch 01 calculated data developed during the double-blind phase of the ICSP.
机译:考虑到世界能源需求增加,以满足环境和经济可持续性,每个国家的能源政策必须使能源来源多样化,并使用稳定,安全的能源生产选择能够以干净的方式生产电力,促进切割CO_2排放。在可持续发展的框架中,今天使用先进的核电站,在国家能源战略的环境和经济可持续性方面具有重要作用。在过去的20年中,实际上,国际社会考虑到核反应堆的运营经验,开始开发新的先进反应堆设计,考虑到使用自然循环来冷却正常和瞬态条件下的核心。在这一框架内,俄勒冈州立大学(OSU)建于美国能源授权部,一个系统级测试设施,用于检查特征的自然循环现象,表征多应用小型轻型水反应器(MASLWR)设计,模块化积分压力小轻型水反应器依赖于稳态和瞬态操作期间的自然循环。它还包括集成螺旋线圈蒸汽发生器。从实验活动开始,支持MASLWR概念设计验证,计划的工作,进一步专门调查概念设计,而且还推动了对整体天然循环反应器植物的广泛理解以及随附的被动安全特征。 IAEA国际协同标准问题(ICSP)关于“整体PWR设计自然循环流动稳定性和储存期间的收容和主要系统的热液压耦合”在OSU托管,实验数据将在OSU-MASLWR设施开发。该IAEA ICSP的目的是提供关于在整体循环条件下单循环条件下的单相流动不稳性现象的实验数据,并在整体式轻型水反应器中偶联壳体/反应器容器行为。这些数据可用于评估电抗器系统设计和分析的热液压码。第一个计划测试在以降低的功率(衰减电源)运行时调查设施的主要质量库存中的逐步减少。第二次计划试验,通过自动减压系统致动和长期冷却阶段,随后的初级排污研究了饲料水瞬态的损失。本文的目标是基于在ICSP的双盲阶段开发的迹线V5补丁01计算的数据的基础上有助于这些瞬变的预期现象的热水力分析。

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