首页> 外文期刊>Nuclear Engineering and Design >From field to factory―Taking advantage of shop manufacturing for the pebble bed modular reactor
【24h】

From field to factory―Taking advantage of shop manufacturing for the pebble bed modular reactor

机译:从现场到工厂-利用车间生产的卵石床模块化反应器

获取原文
获取原文并翻译 | 示例
       

摘要

The move of nuclear plant construction from the field to the factory for small, advanced pebble bed modular reactor (PBMR) designs has significant benefits compared to traditional light water reactor (LWR) field oriented designs. The use of modular factory construction techniques has a growing economic benefit over time through well-established process learning applications. This paper addresses the basic PBMR design objectives and commercialization model that drive this approach; provides a brief technical description of the PBMR design and layout with representative CAD views and discusses derived figures of merit highlighting the relative simplicity of PBMR compared to a modern LWR. The discussion emphasizes that more of PBMR can be built in the factory due to the simple design of a direct helium Brayton cycle compared to an indirect LWR steam cycle with its associated equipment. For the PBMR design there are fewer and less cumbersome auxiliary and safety systems with their attendant support requirements. Additionally, the labor force economic efficiency for nuclear projects is better in the factory than in the field, including consideration of labor costs and nuclear quality programs. Industrial learning is better in the factory because of the more controlled environment, mechanization optimization opportunities and because of the more stable labor force compared to the field. Supply chain benefits are more readily achievable with strategic contracts for module suppliers. Although building a nuclear power plant is not a typical high volume manufacturing process, for the PBMR-type of plant, with its high degree of standardization and relatively small, simplified design, the shift to factory work has a significant impact on overall project cost due to earlier identification and better coordination of parallel construction paths. This is in stark contrast to the construction of a large LWR in the past. Finally, the PBMR modular plant concept continues at the overall plant level where up to eight units can be integrated into one site on a plot plan smaller than an equivalent large LWR with similar electric output. The bottom line is that schedules are shorter, the absolute cost is lower, and both are more predictable. These advantages will yield a higher return to clients and investors.
机译:与传统的轻水反应堆(LWR)现场定向设计相比,小型先进的卵石床模块化反应堆(PBMR)设计的核电站建造从现场转移到工厂具有显着优势。随着时间的流逝,通过完善的过程学习应用程序,模块化工厂建设技术的使用具有越来越大的经济效益。本文讨论了驱动此方法的基本PBMR设计目标和商业化模型。提供具有代表性CAD视图的PBMR设计和布局的简要技术说明,并讨论派生的优点,突出显示PBMR与现代LWR相比相对简单。讨论强调,与直接LWR蒸汽循环及其相关设备相比,直接氦布雷顿循环的简单设计可在工厂中建造更多的PBMR。对于PBMR设计,伴随着辅助要求的辅助和安全系统越来越少。此外,在工厂中,考虑到人工成本和核质量计划,核电项目的劳动力经济效率要好于实地。与环境相比,工厂的工业学习更好,这是因为环境受到更多控制,机械化优化的机会以及劳动力更加稳定。通过模块供应商的战略合同更容易实现供应链收益。尽管建造核电站不是一个典型的大批量制造过程,但对于PBMR型电站,由于其高度的标准化和相对较小的简化设计,因此转向工厂工作会对整体项目成本产生重大影响以便及早发现并更好地协调平行施工路径。这与过去大型轻水堆的建造形成鲜明对比。最后,PBMR模块化工厂概念在整个工厂级别上继续存在,在该工厂中,最多可将八个单元集成到一个平面图上,该平面图小于具有类似电力输出的等效大型LWR的面积。最重要的是,时间表更短,绝对成本更低,而且两者都更可预测。这些优势将为客户和投资者带来更高的回报。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号