首页> 外文会议>International conference on offshore mechanics and arctic engineering;OMAE2008 >EXPLICIT AND IMPLICIT INTEGRATION ALGORITHMS FOR AN ELASTOPLASTIC PIPE-SOIL INTERACTION MACROELEMENT MODEL
【24h】

EXPLICIT AND IMPLICIT INTEGRATION ALGORITHMS FOR AN ELASTOPLASTIC PIPE-SOIL INTERACTION MACROELEMENT MODEL

机译:弹塑性管土相互作用宏观模型的显式和隐式积分算法

获取原文

摘要

This paper presents the numerical formulation of an elastoplastic force-resultant model to numerically simulate the interaction of a pipe with the soil. This approach, which accounts for the load-displacement behaviour of the pipe-soil system on a macroelement level, is becoming increasingly popular in offshore engineering. The model consists of a yield surface, a non-associated flow rule, an isotropic hardening law and a description of purely elastic behaviour. It can be used to predict the behavior of one segment of pipe or numerous models can be attached to structural finite elements as nodal point elements. The latter allows the practical analysis of long pipelines. Further, by removing a number of macroelements from the pipeline, the effect of free span can be studied. To numerically incorporate large numbers of macroelements into a structural analysis, efficient and robust integration algorithms are essential. The use of both explicit and implicit integration algorithms are explored in this paper. In the explicit algorithm, the Euler forward integration scheme is adopted to achieve the real force state incrementally for each substep. On the other hand, the Euler backward integration scheme is adopted in the implicit algorithm. In this case the load state is iteratively "returned" back to the yield surface according to the end of the total displacement increment. Illustrative calculation examples are provided in this paper to demonstrate and compare the performance of the suggested algorithms.
机译:本文提出了弹塑性力-结果模型的数值公式,以数值模拟管道与土壤的相互作用。这种在宏观元素​​层面上解释管道-土壤系统的载荷-位移行为的方法,在海上工程中正变得越来越流行。该模型由屈服面,非关联流动规则,各向同性硬化定律和对纯弹性行为的描述组成。它可以用于预测一段管道的行为,或者可以将大量模型附加到结构有限元作为节点元素。后者允许对长管道进行实际分析。此外,通过从管道中删除大量的宏元素,可以研究自由跨度的影响。为了将大量的宏观元素数字化地纳入结构分析中,高效而强大的集成算法必不可少。本文探讨了显式和隐式集成算法的使用。在显式算法中,采用欧拉正向积分方案来逐步实现每个子步骤的真实力状态。另一方面,隐式算法采用了Euler向后积分方案。在这种情况下,根据总位移增量的结束,将负载状态迭代地“返回”至屈服面。本文提供了说明性的计算示例,以演示和比较建议算法的性能。

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