首页> 外文会议>10th International Conference on Nuclear Engineering, Vol.1, Apr 14-18, 2002, Arlington, Virginia >MAIN STEAM LINE TECHNICAL DESIGN IMPROVEMENT USING A MORE DETAILED PIPING ANALYSIS
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MAIN STEAM LINE TECHNICAL DESIGN IMPROVEMENT USING A MORE DETAILED PIPING ANALYSIS

机译:使用更多详细的管道分析技术对主要蒸汽生产线进行技术设计改进

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The paper describes a case in which with more detailed analysis of the seismic loads and with more elaborated, more accurate model the Main Steam Line of a 1000 MWe class nuclear power plant with BWR has been redesigned. Re-design and re-qualification has resulted in a new piping configuration with significantly reduced number of installed snubbers, and in a more simple support system. The analysis of the piping system has been repeated over twenty years after the original work, whereas the main differences consisted of changes in the piping code and the use of the abundant computational resources available today - besides revision of the earthquake analysis of the buildings. Final recommendation consisted in two suggested configuration change packages. One with a significant reduction in the number of earthquake restraints (snubbers) with no need to further analyze elements of the support structure before implementation. A second one with an additional possibility to reduce the number of snubbers, but requiring analysis of piping support structures to see if the higher loads are still allowable or else if a reasonable hardware changes would reinforce structural elements to carry the new load.
机译:本文描述了一种情况,其中通过对地震载荷进行更详细的分析,并通过更精细,更准确的模型,对具有BWR的1000 MWe级核电厂的主蒸汽管线进行了重新设计。重新设计和重新鉴定后,导致了新的管道配置,大大减少了已安装的缓冲器的数量,并且建立了更简单的支持系统。管道系统的分析已在原始工作之后重复了20年,而主要区别在于管道规范的更改和当今可用的大量计算资源的使用-除了修订建筑物的地震分析外。最终建议包括两个建议的配置更改包。一个大大减少了防震装置(减震器)的机构,在实施之前无需进一步分析支撑结构的要素。第二种可能会减少缓冲器的数量,但是需要分析管道支撑结构,以查看是否仍然允许较高的载荷,或者是否进行了合理的硬件更改会加强结构元件来承受新载荷。

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