首页> 外文会议>Offshore technology conference >Mooring Chain Wear Experiments and Findings
【24h】

Mooring Chain Wear Experiments and Findings

机译:系泊链磨损实验和发现

获取原文

摘要

Whilst mooring chain design practice has traditionally considered wear and corrosion together under a single allowance for material loss, the two phenomena are influenced by different factors whereby they may act synergistically to accelerate degradation rates or act completely independently. As chain wear has been attributed to both the acceleration of corrosion-related degradation and the cause of chain failures and early mooring repairs by itself, it was investigated as part of the SCORCH JIP. An extensive literature review and meta-analysis of wear research was carried out in order to determine a framework for assessing the wear of mooring chains. The literature review found that the phenomenon of wear in general and mooring chain wear in particularly was not well understood, with little agreement as to a general analytical model for wear prediction. The particular wear regimes under which mooring chain wear occurs was identified and a critical analysis of available data on mooring chain wear was carried out where it was determined that experimental conditions were likely to have been outside of the bounds of validity for what would be experienced in the field. A generic formulation for chain wear was presented, where the amount of wear is proportional to the work done at the interlink contact due to the relative sliding of the chain links. Supplementary to the literature review, a series of wear tests of full-scale mooring chain links were carried out under varying load conditions for different grades of chain. These tests were used to determine empirical coefficients for the prediction of chain wear. A model for wear prediction was presented based on the position of the chain in the mooring line, the tension in the line and the relative motion of the chain links. The evolution of the contact surface between chain links was modelled using 3D geometries of idealized chain links in order to determine a relationship between the volume of worn metallic area and the depth of wear, which can be more easily measured in-service.
机译:传统上,系泊链设计实践将磨损和腐蚀综合考虑在单一的材料损失允许范围内,但这两种现象受不同因素的影响,因此它们可以协同作用以加快降解速度或完全独立地起作用。由于链条磨损归因于腐蚀相关退化的加速以及链条故障和早期系泊修复的原因,因此已将其作为SCORCH JIP的一部分进行了研究。为了确定评估系泊链磨损的框架,进行了广泛的文献综述和磨损研究的荟萃分析。文献综述发现,一般的磨损现象尤其是系泊链的磨损现象还没有得到很好的理解,对于用于磨损预测的一般分析模型几乎没有共识。确定了发生锚链磨损的特定磨损方式,并对锚链磨损的可用数据进行了严格的分析,确定了实验条件可能超出了锚链磨损的有效性范围。场。提出了链条磨损的通用公式,其中由于链节的相对滑动,磨损量与在链节接触处完成的工作成比例。作为文献综述的补充,针对不同等级的链条,在不同的载荷条件下,进行了全尺寸系泊链节的一系列磨损测试。这些测试用于确定经验系数,以预测链条磨损。根据锚链在系泊绳中的位置,链中的张力和链节的相对运动,提出了一种磨损预测模型。使用理想化链节的3D几​​何形状对链节之间的接触表面的演变进行建模,以确定磨损的金属区域的体积与磨损深度之间的关系,这可以在使用中更容易地进行测量。

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