首页> 外文会议>ASME Pressure Vessels Piping Conference >COKE DRUM BOTTOM HEAD FLANGE DESIGN OPTIMISATION
【24h】

COKE DRUM BOTTOM HEAD FLANGE DESIGN OPTIMISATION

机译:焦炭桶底部法兰设计优化

获取原文

摘要

Bottom head flange leaks on coke drums are a too common occurrence for coke drum operators. This paper discusses why these complex joints leak, exploring phenomena such as bolt relaxation, flange rotation, bolt hole cracking, plastic deformation of a flange face due to cyclic thermal transients, as well as investigating the effects of gasket stress variation which can lead to gasket movement and distortion during successive drum cycles. The industry; trend is to install automatic bottom un-heading devices (BUDs) to facilitate safe, reliable coke removal and to increase production through shortening un-heading operations. A case study is reviewed which shows how a new drum flange, coupled to a BUD, has been optimized using Finite Element Analysis (FEA). The findings show adequate flange thickness and optimized hub dimensions are required to combat plastic deformation of the flange ring and reduce gasket stress variation. Five designs are modelled, varying the flange thickness, outside diameter and hub geometry. Due to the close proximity of a new side nozzle, the full lower section of the drum has been modelled using quarter and half symmetry FEA with applied temperature distributions from each phase of a typical coke drum cycle; heating, coking and quench. This has allowed for nozzle loadings to be evaluated and the location of the flange weld to be optimized to give the greatest fatigue life. An explanation into why periodic re-tightening is required to keep these joints tight is provided along with recommendations on suitable joint assembly techniques using a combination of bolt load verification and alternative bolting patterns from ASME PCC-1 [1].
机译:对于焦炭塔操作员来说,焦炭塔底底法兰泄漏是很常见的。本文讨论了为什么这些复杂的接头会泄漏,探讨了诸如螺栓松弛,法兰旋转,螺栓孔破裂,由于周期性热瞬变而导致的法兰面塑性变形等现象,并研究了可能导致垫片变形的垫片应力变化的影响。在连续的鼓周期中运动和变形。行业;趋势是安装自动底部去头装置(BUD),以方便安全,可靠地去除焦炭,并通过缩短去头操作来提高产量。审查了一个案例研究,该案例表明如何使用有限元分析(FEA)对与鼓风罩连接的新鼓法兰进行优化。研究结果表明,需要适当的法兰厚度和优化的毂尺寸才能抵抗法兰环的塑性变形并减少垫片应力变化。对五种设计进行了建模,改变了法兰的厚度,外径和轮毂的几何形状。由于靠近一个新的侧喷嘴,已经使用四分之一和半对称的FEA对鼓的整个下部区域进行了建模,并从典型的焦塔循环的每个阶段施加了温度分布。加热,焦化和淬火。这样就可以评估喷嘴的负载,并可以优化法兰焊缝的位置,以提供最大的疲劳寿命。通过结合螺栓载荷验证和ASME PCC-1 [1]的替代螺栓模式,对为什么需要定期重新拧紧以保持这些接头紧密的解释,以及有关合适的接头组装技术的建议。

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