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The Simplified Supercritical Water-Cooled Reactor (SSCWR), a new SCWR design

机译:简化超临界水冷反应堆(SSCWR),一种新的SCWR设计

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摘要

The Supercritical Water Cooled Reactor (SCWR) was chosen as one of the Generation IV reactors by GIF. At the moment, a number of concepts exist, such as the American SCWR, the Canadian CANDU-SCWR, the European HPLWR (High Performance Light Water Reactor), the Japanese Super LWR and the Korean SCWR. The driving force behind the developments is the fact that the fossil fired power plants are continuously increasing their efficiency by use of higher pressures and temperatures. The SCWR has numerous advantages over today's wide-spread Light Water Reactors. On the other hand, the scientific community must cope with various challenges before the first power plants of this type can be built. The European and the Japanese concepts are the most promising, although the complicated water flow path repeatedly sets newer challenges. Simplicity is always a good choice in reactor design, thus the authors went back to the basic once-through cycle, significantly improving it With the combination of zirconium-hydride as extra moderator, axially varying fuel enrichment and moderation, longer active length and smaller core diameter (resulting in thinner walls for the reactor pressure vessel), a new and simpler design is proposed in this paper. This design is called Simplified Supercritical Water-Cooled Reactor (SSCWR) and adapts better for the different operating conditions and burn-up, therefore it is inherently safer and more reliable. ? 2009 Elsevier Ltd. All rights reserved.
机译:超临界水冷反应堆(SCWR)被GIF选为第四代反应堆之一。目前,存在许多概念,例如美国的SCWR,加拿大的CANDU-SCWR,欧洲的HPLWR(高性能轻水反应堆),日本的Super LWR和韩国的SCWR。这些发展背后的驱动力是,化石燃料发电厂通过使用更高的压力和温度不断提高效率。与当今广泛使用的轻水反应堆相比,SCWR具有许多优势。另一方面,在建造第一批此类发电厂之前,科学界必须应对各种挑战。欧洲和日本的概念是最有前途的,尽管复杂的水流路径一再带来新的挑战。在反应堆设计中,简单始终是一个不错的选择,因此作者回到了基本的一次性循环,并对其进行了显着改进,结合氢化锆作为额外的慢化剂,轴向变化的燃料富集和慢化,更长的活性长度和更小的堆芯直径(导致反应堆压力容器的壁更薄),本文提出了一种新的、更简单的设计。这种设计被称为简化超临界水冷反应堆(SSCWR),可以更好地适应不同的操作条件和燃耗,因此它本质上更安全、更可靠。?2009 爱思唯尔有限公司保留所有权利。

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