首页> 外文会议>ASME Pressure Vessels and Piping Division/K-PVP conference;PVP2010 >THREE DIMENSIONAL FSI SIMULATION OF EXTRUDED ROD BUNDLES IMMERSED IN FLUID USING PARTITIONED COUPLING TECHNIQUE
【24h】

THREE DIMENSIONAL FSI SIMULATION OF EXTRUDED ROD BUNDLES IMMERSED IN FLUID USING PARTITIONED COUPLING TECHNIQUE

机译:运用分区耦合技术对浸没在流体中的杆束进行三维三维有限元模拟

获取原文

摘要

Dynamic response of extruded rod bundles immersed in fluid is an important feature as a seismic response of fuel rods. For their safety assessment, prediction of dynamic behavior is required. For the prediction, fluid structure interaction should be considered properly which significantly affects the dynamic behavior. However, actual behavior of the bundles includes complex modes of response and not only the interaction between fluid and structure but also the interaction between the bundles and external structure can affect its behavior. Therefore simulation method which can consider the interaction of complicated structures is expected.There are two different approaches for simulating their dynamic behavior. One is the monolithic method, in which one matrix constructed from two physics is solved, and the other is the partitioned method in which two different matrices are solved separately. The partitioned method enables us to utilize an advantage of existing simulation codes, for example their high parallel efficiency.One of the present authors developed a numerical simulation system ADVENTURE, which is a general purpose finite element simulation system which includes several finite element solvers designed to suite for large scale application in parallel computing environments. The authors have developed a simulation system of fluid structure interaction based on ADVENTURE system applying partitioned coupling technique.In this paper, the overview of the system is explained and several numerical simulation results of the dynamic response of the extruded rod bundles are shown. The result shows thiscoupling technique can give reasonable results and it can apply a larger scale problem of 9x9 arrays of extruded rod bundles.
机译:浸入流体中的挤压棒束的动态响应是燃料棒的地震响应的重要特征。为了对其进行安全评估,需要预测动态行为。为了进行预测,应适当考虑流体结构的相互作用,这会显着影响动力学行为。但是,束的实际行为包括复杂的响应模式,不仅流体与结构之间的相互作用而且束与外部结构之间的相互作用也会影响其行为。因此,期望可以考虑复杂结构相互作用的仿真方法。 有两种不同的方法来模拟它们的动态行为。一种是单块方法,其中求解一个由两种物理学构成的矩阵,另一种是分区方法,其中分别求解两个不同的矩阵。分区方法使我们能够利用现有仿真代码的优势,例如它们的高并行效率。 本作者之一开发了一种数值模拟系统ADVENTURE,这是一种通用的有限元模拟系统,其中包括多个有限元求解器,这些求解器设计用于在并行计算环境中进行大规模应用。作者开发了基于ADVENTURE系统的流体结构相互作用模拟系统,该系统采用了分区耦合技术。 在本文中,对系统进行了概述,并给出了挤压杆束动态响应的一些数值模拟结果。结果显示 耦合技术可以给出合理的结果,并且可以解决9x9挤压杆束阵列的更大范围的问题。

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