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首页> 外文期刊>Journal of nuclear engineering and radiation science >Various Design Aspects of the Canadian Supercritical Water-Cooled Reactor Core
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Various Design Aspects of the Canadian Supercritical Water-Cooled Reactor Core

机译:加拿大超临界水冷反应器芯的各种设计方面

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The Canadian Supercritical Water-Cooled Reactor (SCWR) is a 1200 MW(e) channel-type nuclear reactor. The reactor core includes 336 vertical pressurized fuel channels immersed in a low-pressure heavy water moderator and calandria vessel containment. The supercritical water (SCW) coolant flows into the fuel channels through a common inlet plenum and exits through a common outlet header. One of the main features of the Canadian SCWR concept is the high-pressure (25 MPa) and high-temperature (350°C at the inlet, 625°C at the outlet) operating conditions that result in an estimated thermal efficiency of 48%. This is significantly higher than the thermal efficiency of the present light water reactors, which is about 33%. This paper presents a description of the Canadian SCWR core design concept; various numerical analyses performed to understand the temperature, flow, and stress distributions of various core components; and how the analyses results provided input for improved concept development.
机译:加拿大超临界水冷反应器(SCWR)是1200mW(e)型核反应器。反应器芯包括336垂直加压燃料通道,浸入低压重水调节器和Calandria血管壳中。超临界水(SCW)冷却剂通过公共入口增压室流入燃料通道,并通过公共出口集管排出。加拿大SCWR概念的主要特点之一是高压(25MPa)和高温(入口处的350°C,出口处为625°C)操作条件,其估计的热效率为48% 。这显着高于本光水反应器的热效率,约为33%。本文介绍了加拿大SCWR核心设计理念的描述;进行各种数值分析以了解各种芯部件的温度,流量和应力分布;以及分析结果如何提供改进的概念开发的输入。

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