Density-based topological design of structures subjected to water pressure using a parametric loading surface

被引:0
|
作者
M.B. Fuchs
N.N.Y. Shemesh
机构
[1] Tel Aviv University,Department of Solid Mechanics, Materials and Systems, The Iby and Aladar Fleishman Faculty of Engineering
关键词
topological optimization; design dependent loads; pressure loads;
D O I
暂无
中图分类号
学科分类号
摘要
Topological design of structures has enjoyed a period of steady growth since the publication of a seminal paper by Bendsøe and Kikuchi. Nowadays, topology design can be recognized as a discipline in structural and multidisciplinary optimization with its idiosyncrasies, specific formulations, and solution techniques. A class of problems, known as topological optimization with design-dependent loading (see Rozvany and Prager (1979) for first closed-form solutions and Fuchs and Moses (2000) for semianalytical results) present often some intrinsic obstacles. Such is the case, in particular, in the presence of pressure loads. Indeed, when water pressure is the applied load, the density-based technique seems to run into trouble because not until the structure has converged is there a clear water/material interface where the pressure can be applied. Several authors have proposed solutions, and this paper adds its contribution. We introduce, independent of the material distribution, a parametric loading surface, the shape of which is an additional unknown. Water pressure is applied at this surface as if it were the water/material interface. By doing so, one factually severs the physical link between the smooth pressure surface and the indistinct material distribution. In order to remove any lingering material from the water region, a small elastic modulus E is assumed there. Additional care was exercised for computing the sensitivities as the loading surface meanders through the fixed grid of the finite element model. For this purpose, a smooth transition for E from the water to the material zone is imposed to alleviate any numerical instabilities that may occur in computing the sensitivities of E over the abrupt transition at the loading surface. Several cases, primarily the design of optimal dams, were tested. The method proved very robust and produced crisp water/material interfaces, which coalesced with the loading surfaces.
引用
收藏
页码:11 / 19
页数:8
相关论文
共 50 条
  • [21] SURFACE PRESSURE AND HARMONIC LOADING ON SHELLS OF REVOLUTION USING AN INTERNAL SOURCE DENSITY METHOD
    STEPANISHEN, PR
    CHEN, HW
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1992, 92 (04): : 2248 - 2259
  • [22] Strength-based design of flexible diaphragms in low-rise structures subjected to earthquake loading
    Lee, Ho Jung
    Kuchma, Daniel
    Aschheim, Mark A.
    ENGINEERING STRUCTURES, 2007, 29 (07) : 1277 - 1295
  • [23] Finite Element Model-based Design of Stiffened Welded Plated Structures Subjected to Combined Loading
    Kovesdi, Balazs
    PERIODICA POLYTECHNICA-CIVIL ENGINEERING, 2021, 65 (02): : 677 - 689
  • [24] Density-based topology optimization of a surface cooler in turbulent flow using a continuous adjoint turbulence model
    Quentin Holka
    Ephraïm Toubiana
    Julien Cortial
    Boutros Ghannam
    Maroun Nemer
    Structural and Multidisciplinary Optimization, 2022, 65
  • [25] Density-based topology optimization of a surface cooler in turbulent flow using a continuous adjoint turbulence model
    Holka, Quentin
    Toubiana, Ephraim
    Cortial, Julien
    Ghannam, Boutros
    Nemer, Maroun
    STRUCTURAL AND MULTIDISCIPLINARY OPTIMIZATION, 2022, 65 (08)
  • [26] A density-based topology optimization method using radial basis function and its design variable reduction
    Shi, Shangjun
    Zhou, Pingzhang
    Lu, Zhenhua
    STRUCTURAL AND MULTIDISCIPLINARY OPTIMIZATION, 2021, 64 (04) : 2149 - 2163
  • [27] A density-based topology optimization method using radial basis function and its design variable reduction
    Shangjun Shi
    Pingzhang Zhou
    Zhenhua Lü
    Structural and Multidisciplinary Optimization, 2021, 64 : 2149 - 2163
  • [28] Spatial-varying multi-phase infill design using density-based topology optimization
    Li, Hang
    Gao, Liang
    Li, Hao
    Tong, Haifeng
    COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2020, 372 (372)
  • [29] Design optimization of multimorphology surface-based lattice structures with density gradients
    Xin Shi
    Wenhe Liao
    Tingting Liu
    Changdong Zhang
    Dawei Li
    Weiming Jiang
    Cong Wang
    Fangxi Ren
    The International Journal of Advanced Manufacturing Technology, 2021, 117 : 2013 - 2028
  • [30] Displacement-based internal design of geosynthetic-reinforced earth structures subjected to seismic loading conditions
    Vahedifard, F.
    Leshchinsky, D.
    Meehan, C. L.
    GEOTECHNIQUE, 2013, 63 (06): : 451 - 462