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SWR 1000: THE MAIN DESIGN FEATURES OF THE ADVANCED BOILING WATER REACTOR WITH PASSIVE SAFETY SYSTEMS

机译:SWR 1000:具有无源安全系统的先进沸水器的主要设计特点

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The latest developments in nuclear power generation technology mainly concern large-capacity plants in the 1550 -1600 MW range, or very small plants (100 - 350 MW). The SWR 1000 boiling water reactor (BWR), by contrast, offers all of the advantages of an advanced plant design, with excellent safety performance and competitive power generation costs, in the medium-capacity range (1000 MW). The SWR 1000 design is particularly suitable for countries whose power systems do not include any large power plants. The economic efficiency of this medium-sized plant in comparison with large-capacity designs is achieved by deploying very simple passive safety equipment, simplified systems for plant operation, and a very simple plant configuration in which systems engineering is optimized and dependence on electrical and instrumentation & control (I&C) systems is reduced. In addition, systems and components that require protection against natural and external man-made hazards are accommodated in such a way that as few buildings as possible have to be designed to withstand the loads from such events. The fuel assemblies to be deployed in the SWR 1000 core, meanwhile, have been enlarged from a 10X10 rod array to a 12X12 array. This reduces the total number of fuel assemblies in the core and thus also the number of control rods and control rod drives, as well as in-core neutron flux monitors. The design owes its competitiveness to the fact that investment costs, maintenance costs and fuel cycle costs are all lower. In addition, refueling outages are shorter, thanks to the reduced scope of outage activities. The larger fuel assemblies have been extensively and successfully tested, as have all of the other new components and systems incorporated into the plant design. As in existing plants, the forced coolant circulation method is deployed, ensuring problem-free startup, and enabling plant operators to adjust power rapidly in the high power range (70percent-100percent) without moving the control rods, as well as allowing spectral-shift and stretchout operation. The considerable gains provided by forced coolant circulation in terms of operational flexibility and fuel utilization mean that the investment and maintenance costs of the pumps are covered after several years service. The plant safety concept is based on a combination of passive safety systems and a reduced number of active safety systems. All postulated accidents can be controlled using passive systems alone. Control of a postulated core melt accident is assured with considerable safety margins thanks to passive flooding of the containment for in-vessel melt retention. The SWR 1000 is compliant with international nuclear codes and standards, and is also designed to withstand the effects of an aircraft crash involving a military aircraft or a large passenger airliner.
机译:核发电技术的最新发展主要涉及1550 -1600 MW范围内的大容量植物,或非常小的植物(100 - 350 MW)。相比之下,SWR 1000沸水反应器(BWR)提供了先进的工厂设计的所有优点,具有出色的安全性能和竞争力产生成本,在中等容量范围内(1000 MW)。 SWR 1000设计特别适用于其动力系统不包括任何大型发电厂的国家。通过部署非常简单的被动安全设备,植物操作简化系统以及系统工程优化和依赖电气和仪器,通过部署非常简单的被动安全设备,简化的植物配置来实现与大容量设计相比的经济效率。和控制(I&C)系统减少。此外,需要防止自然和外部人为危险的系统和组件,以这种方式可以使得尽可能少的建筑物设计以承受来自这些事件的负载。同时,要在SWR 1000芯中部署的燃料组件已从10x10杆阵列扩大到12x12阵列。这减少了芯中的燃料组件的总数,因此还减少了控制杆和控制杆驱动的数量,以及核心中子通量监视器。该设计归因于投资成本,维护成本和燃料循环成本均欠其竞​​争力。此外,由于降低的中断活动范围,加油中断较短。较大的燃料组件已被广泛且成功地测试,与植物设计中的所有其他新组件和系统都有。与现有植物一样,部署强制冷却剂循环方法,确保无故障启动,并使工厂运营商能够在高功率范围内快速调节功率(70percent-100percent)而不移动控制杆,以及允许光谱换档并伸出行动。在操作灵活性和燃料利用方面,强制冷却液循环提供的相当大的收益,意味着泵的投资和维护成本在多年的服务之后覆盖。植物安全概念基于被动安全系统的组合和减少数量的主动安全系统。所有假设的事故都可以单独使用被动系统来控制。由于容器内熔体保留的遏制被动泛滥,通过相当大的安全利润,确保了对假设核心熔体事故的控制。 SWR 1000符合国际核代码和标准,也旨在承受涉及军用飞机或大型客机的飞机撞车的影响。

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