Shape design optimization of SPH fluid-structure interactions considering geometrically exact interfaces

Youn Doh Ha, Min Geun Kim, Hyun Seok Kim, Seonho Cho

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Fluid-structure interaction problems are solved by applying a smoothed particle hydrodynamics method to a weakly compressible Navier-Stokes equation as well as an equilibrium equation for geometrically nonlinear structures in updated Lagrangian formulation. The geometrically exact interface, consisting of B-spline basis functions and the corresponding control points, includes the high order geometric information such as tangent, normal, and curvature. The exactness of interface is kept by updating the control points according to the kinematics obtained from response analysis. Under the scheme of explicit time integration and updated Lagrangian formulation, the required shape design velocity should be updated at every single step. The update scheme of design velocity is developed using the sensitivity of physical velocity. The developed sensitivity analysis method is further utilized in gradient-based shape optimization problems and turns out to be very efficient since the interaction pairs of particles determined in the response analysis can be directly utilized.

Original languageEnglish
Pages (from-to)319-336
Number of pages18
JournalStructural and Multidisciplinary Optimization
Volume44
Issue number3
DOIs
StatePublished - Sep 2011

Keywords

  • B-spline
  • Design velocity update
  • Fluid-structure interaction
  • Geometrically exact interface
  • Shape design optimization
  • Smoothed particle hydrodynamics

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