首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >FREE SPAN DESIGN DEVELOPMENT: EXPERIENCE WITH THE NEW REVISION OF DNVGL-RP-F105
【24h】

FREE SPAN DESIGN DEVELOPMENT: EXPERIENCE WITH THE NEW REVISION OF DNVGL-RP-F105

机译:免费的空间设计开发:体验DNVGL-RP-F105的新版本

获取原文

摘要

Free spans constitute a threat to the integrity of offshore pipelines. Ocean currents and wave induced flow near the seabed can cause excitation of vortex induced vibrations (VIV), exposing the pipeline to cyclic loading which may result in fatigue failure. In extreme environmental events, waves and currents may cause significant bending moments due to VIV or direct wave loading, which may cause unacceptably high combined loading potentially resulting in pipeline failure. Safe and reliable free span design is therefore a key aspect of pipeline design in general. When free spans are located in close proximity to each other, modal response may cause span interaction, effectively coupling potential VIV or direct wave action response of two or more spans. Such spans configurations are called multi-spans. Treatment, and particularly identification of multi-span configurations has long been a challenge in the pipeline industry. In 2017, a new revision of the DNV GL recommended practice for free span pipeline design DNVGL-RP-F105 was issued. Among other subjects, the new revision provides significantly improved guidance on identification and classification of multi-span free spanning pipelines. The new guidance facilitates the option of automating identification, modal analysis and ultimately fatigue analysis of multi-span configurations. This paper demonstrates background for and benefits withOl the new revision of DNVGL-RP-F105 in systematic and automated treatment of multi-span identification, fatigue and extreme loading assessments based on recent experience from a selection of pipeline design and operations management case studies.
机译:自由跨度对海上管道的完整性构成威胁。海流和海床附近的波浪引起的流动会引起涡激振动(VIV)的激发,使管道承受周期性载荷,这可能会导致疲劳破坏。在极端的环境事件中,由于VIV或直接的波浪载荷,波浪和电流可能会导致明显的弯矩,这可能会导致不可接受的高组合载荷,从而可能导致管道故障。因此,安全可靠的自由跨度设计通常是管道设计的关键方面。当自由跨度彼此紧邻时,模态响应可能会引起跨度相互作用,从而有效耦合潜在的VIV或两个或多个跨度的直接波作用响应。这样的跨度配置称为多跨度。在管道工业中,处理,尤其是多跨度配置的识别一直是一个挑战。 2017年,发布了DNV GL推荐的自由跨度管道设计规范DNVGL-RP-F105的新修订版。在其他主题中,新修订版对多跨度自由跨接管道的识别和分类提供了显着改进的指导。新指南简化了自动识别,模态分析以及最终对多跨度配置进行疲劳分析的选项。本文基于管道设计和运营管理案例研究的最新经验,展示了DNVGL-RP-F105新修订版在多跨度识别,疲劳和极限载荷评估的系统化和自动化处理中的应用背景和收益。

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