首页> 外文会议>International conference on nuclear engineering >DEVELOPMENT OF EVALUATION METHOD FOR IMPACT OF AIRCRAFT FUEL EXPLOSION AND FIRE ON BWR REACTOR BUILDING
【24h】

DEVELOPMENT OF EVALUATION METHOD FOR IMPACT OF AIRCRAFT FUEL EXPLOSION AND FIRE ON BWR REACTOR BUILDING

机译:飞机燃料爆炸和着火对BWR反应堆建筑影响评估方法的开发

获取原文

摘要

A method was studied to evaluate the influences of aircraft fuel explosion and consecutive fire that would be expected to occur after a postulated aircraft crash on a BWR reactor building. In addition to the classical semi-empirical method for vapor cloud explosion (VCE) to evaluate overpressure, The Fire Dynamics Simulator version 6 (FDS6) was applied to analyze the fireball evolution by combustion of the dispersed fuel droplets, and the consecutive pool fire. The FDS spray model was used to simulate the fuel droplet dispersal. Input parameters such as droplet initial velocity and initial dispersal direction were presumed on the basis of the observations from the IMPACT water missile experiment. Our calculation result was in good agreement with the experimental data in terms of the droplet 'cloud' expanding speed by approximately 20%. This modeling manner for the droplet dispersal was also applied to the analysis of explosion in a middle-size commercial aircraft crash to the sidewall of a building that assumed a BWR reactor building. The analysis predicted that approximately 60% of aircraft fuel would be consumed in the initial fireball and most of the residual fuel would attach to the ground area close to the wall. This result can be used for the realistic determination of the initial mass and position of the residual aircraft fuel to evaluate wall integrity against thermal attack and transport of the combustion products from the secondary fire.
机译:研究了一种方法,以评估假定的飞机在BWR反应堆上坠毁后,飞机燃料爆炸和连续起火的影响。除了用于蒸气云爆炸(VCE)的经典半经验方法来评估超压之外,还使用Fire Dynamics Simulator版本6(FDS6)来分析由于分散燃料滴的燃烧和连续的池火而引起的火球演变。 FDS喷雾模型用于模拟燃料液滴的扩散。根据IMPACT水导弹实验的观察结果,推定了诸如液滴初始速度和初始扩散方向之类的输入参数。我们的计算结果与液滴“云”扩展速度约20%的实验数据非常吻合。这种液滴散布的建模方式也被用于分析中型商用飞机坠毁于假定为BWR反应堆建筑物的建筑物侧壁的爆炸。分析预测,最初的火球将消耗大约60%的飞机燃料,而大多数剩余燃料将附着在靠近墙壁的地面区域。该结果可用于实际确定飞机剩余燃料的初始质量和位置,以评估壁的完整性,以防二次攻击产生的热侵袭和燃烧产物的运输。

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