首页> 外文会议>International Conference on Nuclear Engineering >A FRAMEWORK AND MODEL FOR ASSSESSING THE DESIGN POINT PERFORMANCE, OFF-DESIGN POINT PERFORMANCE, CONTROL, ECONOMICS AND RISKS OF BRAYTON HELIUM GAS TURBINE CYCLES FOR GENERATION IV NUCLEAR POWER PLANTS
【24h】

A FRAMEWORK AND MODEL FOR ASSSESSING THE DESIGN POINT PERFORMANCE, OFF-DESIGN POINT PERFORMANCE, CONTROL, ECONOMICS AND RISKS OF BRAYTON HELIUM GAS TURBINE CYCLES FOR GENERATION IV NUCLEAR POWER PLANTS

机译:框架和模型,用于切断设计点性能,非设计点性能,控制,经济学和Brayton氦气涡轮机循环的框架性能,缺陷性能,控制,经济和风险

获取原文

摘要

A framework - NuTERA (Nuclear Techno-Economic and Risk Assessment) has been developed to set out the requirements for evaluating Generation IV (Gen IV) Nuclear Power Plants (NPPs) at the design conceptual stage. The purpose of the framework is to provide guidelines for future tools that are required to support the decision-making process on the choice of Gen IV concepts and cycle configurations. In this paper, the underpinning of the framework has been demonstrated to enable the creation of an analyses tool, which evaluates the design of an NPP that utilises helium closed Brayton gas turbine cycles. The tool at the broad spectrum focuses on the component and cycle design, Design Point (DP) and Off-Design Point (ODP) performance, part power and load following operations. Specifically, the design model has been created to provide functionalities that look at the in-depth sensitivities of the design factors and operation that affect the efficiency of an NPP such as temperature and pressure ratios, inlet cycle temperatures, component efficiencies, pressure losses. The ODP performance capabilities include newly derived component maps for the reactor, intercooler and recuperator for long term Off-Design (OD) operation. With regard to short term OD, which is typically driven by changes in ambient conditions, the ability to analyse the cycle load following capabilities are possible. An economic model has also been created, which calculates the component costs and the baseline economic evaluation. An incorporated risk model quantifies the performance, operational, financial and design impact risks. However, the tool is able to optimise the NPP cycle configuration based on the best economics using the Levelised Unit Electricity Cost (LUEC) as a measure. The tool has been used to demonstrate a typical decision-making process on 2 Gen IV helium closed gas turbine cycles, which apply to the Gas-cooled Fast Reactors (GFRs) and Very-High Temperature Reactors (VHTRs). The cycles are the Simple Cycle Recuperator (SCR) and Intercooled Cycle Recuperator (ICR). The tool was able to derive the most efficient cycle configurations for the ICR (53% cycle efficiency) and SCR (50% cycle efficiency). Based on these efficiency figures, the baseline LUEC ($/MWh) for the year 2020 is $62.13 for the ICR and $61.84 for the SCR. However, the inclusion of the cost of contingencies due to risks and the subsequent economic optimisation resulted in a cost of $69.70 and $69.80 for the ICR and SCR respectively.
机译:已经制定了框架 - 坚果(核技术 - 经济和风险评估),以列出在设计概念阶段评估第四代(第四族)核电厂(NPP)的要求。该框架的目的是提供支持决策过程所需的未来工具指导概念和周期配置所需的工具。在本文中,已经证明了框架的基础,以便能够创建分析工具,该工具评估利用氦闭式布雷顿燃气轮机循环的NPP的设计。广泛频谱的工具侧重于组件和循环设计,设计点(DP)和非设计点(ODP)性能,零件电源和负载。具体而言,已经创建了设计模型,以提供看看影响NPP效率,例如温度和压力比,入口循环温度,组分效率,压力损失的设计因子和操作的深度灵敏度的功能。 ODP性能功能包括用于长期OFF-Design(OD)操作的反应器,中间冷却器和恢复器的新导出的组件映射。关于短期OD,其通常由环境条件的变化驱动,可以通过分析能力之后的循环负载的能力。还制定了经济模式,这计算了组成成本和基线经济评估。一个合并的风险模式量化了性能,操作,财务和设计影响风险。然而,该工具能够基于使用调用单元电力成本(LUEC)作为措施的最佳经济学优化NPP循环配置。该工具已被用于演示2型IV氦封闭式燃气涡轮循环的典型决策过程,其适用于气体冷却的快电反应器(GFRS)和非常高温反应器(VHTRS)。循环是简单的循环恢复器(SCR)和插入循环恢复器(ICR)。该工具能够为ICR(53%循环效率)和SCR(50%循环效率)导出最有效的周期配置。基于这些效率数据,2020年的基线Luec($ / MWH)为ICR为62.13美元,SCR为61.84美元。但是,纳入因风险和随后的经济优化而导致的突发事件的成本分别为ICR和SCR的59.70美元和69.80美元。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号