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Overview of the Westinghouse Small Modular Reactor Building Layout

机译:西屋小型模块化反应堆建筑布局概述

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The Westinghouse Small Modular Reactor (SMR) is an 800 MWt (>225 MWe) integral pressurized water reactor (iPWR), in which all of the components typically associated with the nuclear steam supply system (NSSS) of a nuclear power plant are incorporated within a single reactor pressure vessel. This paper is the third in a series of four papers, which describe the design and functionality of the Westinghouse SMR. It focuses in particular upon the plant building layout and modular design of the Westinghouse SMR. In the development of small modular reactors, the building layout is an area where the safety of the plant can be improved by applying new design approaches. This paper will present an overview of the Westinghouse SMR building layout and indicate how the design features improve the safety and robustness of the plant. The Westinghouse SMR is designed with no shared systems between individual reactor units. The main buildings inside the security fence are the nuclear island, the radwaste building, the annex building, and the turbine building. All safety related equipment is located in the nuclear island, which is a seismic class 1 building. To further enhance the safety and robustness of the design, the reactor, containment, and most of the safety related equipment are located below grade on the nuclear island. This reduces the possibility of severe damage from external threats or natural disasters. Two safety related ultimate heat sink (UHS) water tanks that are used for decay heat removal are located above grade, but are redundant and physically separated as far as possible for improved safety. The reactor and containment vessel are located below grade in the center of the nuclear island. The radwaste and other radioactive systems are located on the bottom floors to limit the radiation exposure to personnel. The Westinghouse SMR safety trains are completely separated into four unconnected quadrants of the building, with access between quadrants only allowed above grade. This is an improvement to conventional reactor design since it prevents failures of multiple trains during floods or fires and other external events. The main control room is located below grade, with a remote shutdown room in a different quadrant. All defense in depth systems are placed on the nuclear island, primarily above grade, while the safety systems are located on lower floors. The economics of the Westinghouse SMR challenges the established approach of large Light Water Reactors (LWR) that utilized the economies of scale to reach economic competiveness. To serve the market expectation of smaller capital investment and cost competitive energy, a modular design approach is implemented within the Westinghouse SMR. The Westinghouse SMR building layout integrates the three basic design constraints of modularization; transportation, handling and module-joining technology.
机译:西屋小型模块化反应堆(SMR)是一个800 MWt(> 225 MWe)整体压水堆(iPWR),其中通常与核电厂的核蒸汽供应系统(NSSS)相关的所有组件都包含在其中一个反应堆压力容器。本文是四篇系列文章中的第三篇,它们描述了Westinghouse SMR的设计和功能。它特别侧重于西屋SMR的厂房布局和模块化设计。在小型模块化反应堆的开发中,建筑布局是可以通过采用新的设计方法来提高工厂安全性的区域。本文将概述西屋SMR建筑物的布局,并指出设计特征如何提高工厂的安全性和坚固性。西屋SMR的设计没有在各个反应堆单元之间共享系统。安全围栏内的主要建筑物是核岛,垃圾废物建筑物,附属建筑物和涡轮机建筑物。所有与安全相关的设备均位于核岛上,该岛为1级地震建筑物。为了进一步提高设计的安全性和鲁棒性,反应堆,安全壳和大多数与安全相关的设备位于核岛的坡度以下。这减少了外部威胁或自然灾害造成严重破坏的可能性。两个用于衰减热量消除的安全相关的极限散热器(UHS)水箱位于地面上方,但它们是冗余的,并且在物理上尽可能地分开,以提高安全性。反应堆和安全壳位于核岛中心以下的坡度上。放射性废物和其他放射性系统位于底层,以限制人员受到的辐射。西屋SMR安全列车完全分为建筑物的四个不相连的象限,只有象限以上的象限之间才能进入。这是对常规反应堆设计的改进,因为它可以防止多列火车在洪水或火灾以及其他外部事件期间发生故障。主控制室位于坡度以下,远程关机室位于不同的象限中。所有纵深防御系统都放置在主要位于地面以上的核岛上,而安全系统位于较低的楼层上。西屋SMR的经济性对大型轻水反应堆(LWR)的既定方法提出了挑战,该方法利用规模经济来实现经济竞争力。为了满足市场期望的较小的资本投资和具有成本竞争力的能源,西屋SMR内部采用了模块化设计方法。西屋公司的SMR建筑布局整合了模块化的三个基本设计约束。运输,装卸和模块连接技术。

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