首页> 外文会议>ICONE18;International conference on nuclear engineering >THREE TYPES OF A PASSIVE SAFETY CONTAINMENT FOR A NEAR FUTURE BWR WITH ACTIVE AND PASSIVE SAFETY SYSTEMS
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THREE TYPES OF A PASSIVE SAFETY CONTAINMENT FOR A NEAR FUTURE BWR WITH ACTIVE AND PASSIVE SAFETY SYSTEMS

机译:具有主动和被动安全系统的近来压水堆的三种被动安全性防护措施

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The paper presents three types of a passive safety containment for a near future BWR. They are tentatively named Mark S~+, Mark D and Mark X containments in the paper. They all have a leak tight secondary containment vessel (SCV) in order to meet the reactor site criteria without relying on an active standby gas treatment system at a DBA LOCA. One of their common features is very low peak pressure at severe accidents without venting the containment atmosphere to the environment. The containment pressure can be limited within the design pressure. Even if a large amount of hydrogen is generated at a severe accident, it can be released into the SCV. Hydrogen detonation or deflagration is completely prevented without using igniters. Another feature is the capability to submerge the PCV and the RPV above the core level without relying on accident management. The core debris is completely submerged not only ex-vessel but also in-vessel. The third feature is robustness against external events such as a large commercial airplane crash. All the containments have built-in passive safety systems (BIPSS) including a passive containment cooling system (PCCS) and a passive cooling core catcher that has radial cooling channels. The Mark S~+ and Mark D containments are applicable to a large power BWR up to 1830 MWe. The SCV is made of steel-concrete composite. The PCV can be vented into the inerted part of the SCV at a severe accident. The Mark X containment has the steel secondary containment vessel (SSCV) and can be cooled by natural convection of outside air. It can accommodate a medium power BWR up to about 1000 MWe and has a permanent grace period without replenishing the PCCS pool. In all cases the plants have active and passive safety systems constituting in-depth hybrid safety (IDHS). The IDHS provides in-depth protection against severe accidents and also enables N+2 design. All the three containments coupled with the IDHS can potentially provide an evacuation free plant at a severe accident caused by severe natural disasters such as a giant earthquake, a tsunami, a mega hurricane, and so on.
机译:本文介绍了在不久的将来的BWR中使用的三种类型的被动安全壳。它们在本文中分别命名为Mark S〜+,Mark D和Mark X密闭容器。它们都具有不漏气的二级安全壳(SCV),以满足反应堆现场的标准,而无需依靠DBA LOCA上的主动备用气体处理系统。它们的共同特征之一是在严重事故中的峰值压力非常低,而没有将安全壳大气排放到环境中。密闭压力可以限制在设计压力之内。即使在严重事故中产生大量氢气,也可以将其释放到SCV中。无需使用点火器,就可以完全防止氢气爆炸或爆燃。另一个功能是能够将PCV和RPV淹没在核心级别之上,而无需依赖事故管理。核心碎片不仅完全浸没在船上,而且也完全浸没在船内。第三个特征是对外部事件(例如大型商用飞机坠毁)的鲁棒性。所有的安全壳都有内置的被动安全系统(BIPSS),包括被动安全壳冷却系统(PCCS)和具有径向冷却通道的被动冷却堆芯捕集器。 Mark S〜+和Mark D密闭装置适用于功率高达1830 MWe的大功率BWR。 SCV由钢混凝土复合材料制成。如果发生严重事故,可以将PCV排放到SCV的惰化部分。 Mark X安全壳具有钢制二次安全壳(SSCV),可以通过外部空气的自然对流进行冷却。它可以容纳高达1000 MWe的中功率BWR,并且具有永久的宽限期,而无需补充PCCS池。在所有情况下,工厂都有构成深度混合安全(IDHS)的主动和被动安全系统。 IDHS提供了针对严重事故的深度保护,还支持N + 2设计。在由大地震,海啸,特大飓风等严重自然灾害引起的严重事故中,所有这三个密闭空间加上IDHS都可能提供免费的疏散工厂。

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