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OVERVIEW OF SECURITY PLAN FOR OFFSHORE FLOATING NUCLEAR PLANT

机译:海上浮式核电站安全计划概述

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A new Offshore Floating Nuclear Plant (OFNP) concept with high potential for attractive economics and an unprecedented level of safety is presented, along with an overview of work done in the area of security. The OFNP creatively combines state-of-the-art Light Water Reactors (LWRs) with floating platforms such as those used in offshore oil/gas operations, both of which are well-established technologies which can allow implementation on a time scale consistent with combating climate change in the near future. OFNP is a plant that can be entirely built within a floating platform in a shipyard, transferred to the site. OFNP eliminates earthquakes and tsunamis as accident precursors; its ocean-based passive safety systems eliminate the loss of ultimate heat sink accident by design. The defense of an OFNP poses new security opportunities and challenges compared to land-based plants. Such a plant can be more easily defended by virtue of the clear 360 degree lines of sight and the relative ease of identifying surface threats. Conversely the offshore plant is potentially vulnerable to underwater approaches by mini-submarines and divers. We investigate security considerations of the OFNP applicable to two potential plant options, an OFNP-300 with a 300 MWe reactor, and an OFNP-1100 with an 1100 MWe reactor. Three innovative security system approaches could be combined for the offshore plant. The first is a comprehensive detection system which integrates radar, sonar and unmanned vehicles for a long distance overview of the vicinity of the plant. The second approach is the use of passive physical barriers about 100 meters from the plant, which will force a fast-moving power boat to lose speed or stop at the barrier allowing the plant security force more time to respond. The third approach takes advantage of the offshore plant siting and the monthly or biweekly rotation of crew to reduce the total on-plant and onshore security force by using the off-duty security force on the plant as a reserve force. Through the use of these approaches, the OFNP-300 should be able to achieve a similar security cost (on a per Megawatt basis) as land-based plants of similar or somewhat larger power rating. Due to non-linear scaling of cost, the security cost of the OFNP-1100 has the potential to be reduced significantly compared to its land-based equivalents.
机译:提出了一种新的海上浮式核电站(OFNP)概念,该概念具有诱人的经济潜力和前所未有的安全水平,并且对安全领域的工作进行了概述。 OFNP创造性地将最先进的轻水反应堆(LWR)与浮动平台(例如用于海上油气运营的平台)相结合,这两种都是成熟的技术,可以在与作战作战相称的时间范围内实施气候变化在不久的将来。 OFNP是一种工厂,可以完全在造船厂的浮动平台内建造,然后转移到现场。 OFNP消除了地震和海啸作为事故的先兆;其海洋被动安全系统通过设计消除了最终散热器事故的损失。与陆地植物相比,OFNP的防御带来了新的安全机遇和挑战。借助清晰的360度视线和相对容易识别表面威胁的方法,可以更轻松地保护这种植物。相反,近海工厂可能会受到小型潜艇和潜水员水下攻击的威胁。我们研究了适用于两个潜在工厂选项的OFNP的安全性考虑,OFNP-300配备300 MWe反应堆,OFNP-1100配备1100 MWe反应堆。可以将三种创新的安全系统方法结合用于海上工厂。首先是一个综合检测系统,该系统集成了雷达,声纳和无人驾驶车辆,可对工厂附近地区进行远距离观察。第二种方法是在距工厂约100米处使用被动式物理屏障,这将迫使快速移动的机动船失去速度或停在屏障上,从而使工厂安全部队有更多时间做出响应。第三种方法是利用海上工厂的选址和机组人员每月或每两周轮换一次的优势,通过将工厂的值班安全部队用作后备部队来减少工厂内和陆地上的总安全部队。通过使用这些方法,OFNP-300应该能够达到与功率相似或稍大的陆基发电厂相似的安全成本(以每兆瓦为基础)。由于成本的非线性调整,与陆基同类产品相比,OFNP-1100的安全成本有可能大大降低。

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