arrow
返回

Uncoupled method for static aeroelastic analysis

delete2021-02-01
delete15
delete
OA
AI
W
William Scholten
D
Darren J. Hartl *
DOI:10.1016/j.jfluidstructs.2021.103221delete
delete原文链接
delete分享
delete收藏
查看原文
摘要

摘要

En 中文
Fluid-structure interaction (FSI) analysis is often highly computationally expensive, making it infeasible to conduct iterative aeroelastic design studies or rigorous optimizations. This work develops a new method for aeroelastic analysis that can be more efficient in the determination of final structure fluid equilibrium configurations, especially during design studies where attributes of a structure may be altered but those of the flow are unchanged. In this new scheme, referred to as the uncoupled static aeroelastic analysis method, the usual approach of performing fluid and structure analysis that increments in time in a coupled manner is replaced by many fully decoupled, and thus highly parallelizable, structural and fluid analyses. Surrogate modeling of results enables analytical determination of interpolation intersections between physical solution fields, such intersections being proposed as the solution to coupled FSI analysis. Since the fluid and structure result sets are calculated and stored separately, fluid results can be re-used without additional analysis when the structure considered is modified (e.g., as during a design study), enabling new solutions to be quickly obtained while avoiding the more expensive fluid evaluations. This new method is demonstrated herein on three examples: (1) a rigid baffle, (2) a cantilevered deformable baffle, and (3) an aeroelastic wing. For each, the solution found via the uncoupled method is shown to closely approximate the FSI solution. Parallelization of the evaluations required to generate data for the uncoupled method enables solutions to be obtained in significantly less time as compared to the coupled scheme. (C) 2021 Elsevier Ltd. All rights reserved.
Keyword:
Fluid-structure interaction
Computational fluid dynamics
Finite element analysis
Surrogate modeling
Aeroelasticity
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

Journal of Fluids and Structures 封面图
Journal of Fluids and Structures
IF:
3.5
论文数:
3.8K
被引数:
1.2W

机构

T
Texas A&M University System
学者数:
4.4W
论文数: 4.0W
被引数: 4.0K
引用论文

引用论文

Bandgap tuning in MoSSe bilayers: synergistic effects of dipole moment and interlayer distanceMoSSe双层中的带隙调谐: 偶极矩和层间距离的协同效应
err2018-01-01
err0
PREAI
errChanjuan Shang; Bo Xu; Xueling Lei; Shicheng Yu; Diancheng Chen; Musheng Wu; Baozhen Sun; Gang Liu; Chuying Ouyang
err分享
err收藏
Bi-level model reduction for coupled problems
err2008-11-11
err41
PREAI
errCoelho, Rajan Filomeno; Breitkopf, Piotr; Knopf-Lenoir, Catherine; Villon, Pierre
err分享
err收藏
学者 查看更多内容