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混合能谱超临界水堆的设计与关键技术(英文版)(精)/先进核电技术与核安全系列

混合能谱超临界水堆的设计与关键技术(英文版)(精)/先进核电技术与核安全系列

  • 字数: 333
  • 出版社: 上海交大
  • 作者: 程旭//杨燕华//刘晓晶|总主编:杨福家
  • 商品条码: 9787313141958
  • 版次: 1
  • 开本: 16开
  • 页数: 305
  • 出版年份: 2016
  • 印次: 1
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内容简介
程旭、杨燕华、刘晓晶著的《混合能谱超临界水 堆的设计与关键技术(英文版)(精)》将以混合能谱超 临界水堆SCWR-M的设计与关键技术为议题,重点阐述 超临界水堆研发现状、堆芯设计技术、电厂系统设计 技术、安全系统设计与安全分析程序开发、现有热工 水力的挑战、超临界水堆材料性能研究等内容。其中 ,混合能谱超临界水堆的概念、设计、安全分析、工 具开发、热工水力均是作者本人及其团队的研究成果 和创见。
目录
1 Introduction 1.1 Status and Perspective of Nuclear Energy in China 1.2 Nuclear Power Technology in China 1.3 GEN-Ⅳ and SCWR 1.4 Status of SCWR R&D 1.5 Proposal of SCWR M 2 SCWR- M Core Design and Analysis 2.1 Features of SCWR- M Core 2.1.1 Main criteria considered in SCWR core design 2.1.2 Features of SCWR- M core 2.2 Structures of Fuel Assemblies 2.3 Design Analysis Approaches 2.3.1 Neutronic approach 2.3.2 Thermal hydraulic code 2.3.3 Coupled approach 2.4 Design Analysis of Mixed Core (Results) 2.4.1 Core results (homogeneous fuel assembly) 2.4.2 Pin wise power distribution 2.4.3 Core and sub-channel analysis of the fresh core 2.4.4 Improvement of the SCWR- M core 2.5 Summary 3 Safety System Design and Analysis 3.1 Safety Requirements 3.2 Configuration of Safety Systems 3.3 Numerical Tools for Safety Analysis 3.3.1 ATHLET SC code development 3.3.2 ATHLET- SC code verification and validation .. 3.3.3 Summary of the code development 3.4 Results of Safety Analysis :... 3.4.1 Initial condition and assumptions 3.4.2 LOFA analysis of SCWR- M 3.4.3 Key parameters analysis during LOFA 3.4.4 LOCA analysis of SCWR- M 3.5 Remarks for Future R&D Needs 4 SCWR Thermal-Hydraulics 4.1 Introduction 4.2 Heat Transfer 4.2.1 General features 4.2.2 Numerical analysis 4.2.3 Experimental studies 4.2.4 Prediction methods 4.3 Experimental Techniques Using Surrogate Fluids 4.4 Flow Stability 4.4.1 Static instability 4.4 2 Dynamic instability 5 New Grade Materials for SCWR 5.1 The Candidate Structural Materials for SCWR 5.2 Design and Fabrication of New Grade Cladding Materials 5.2.1 Processing of ODS steels 5.2.2 Microstructural observation 5.2.3 Mechanical property 5.3 SCW Corrosion Performance 5.3.1 Material and methods 5.3.2 Corrosion rate 5.3.3 Surface oxide analysis 5.3.4 Corrosion mechanism 5.3.5 SCC susceptibility Summary Reference SUBJECT INDEX

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