High-fidelity simulation of large-scale structures

被引:0
|
作者
Hoffmann, C [1 ]
Sameh, A [1 ]
Grama, A [1 ]
机构
[1] Purdue Univ, Dept Comp Sci, W Lafayette, IN 47907 USA
来源
关键词
D O I
暂无
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Active structures capable of responding to external stimulii represent the emerging frontier in structural design. Robust and real-time sensing, control, and actuation pose fundamental challenges that must be addressed in this context. As part of an ambitious project funded by the National Science Foundation, researchers at Purdue, Rice, Florida State, and the Catholic (Belgium) Universities have undertaken development of these core technologies. Over the past 18 months, considerable progress has been made in the areas of model reduction and control, sensing, and simulation-based validation. This paper describes our results in high-fidelity simulations of large structures, subject to various (mechanical and thermal) stresses. A high-fidelity simulation infrastructure poses a number of challenges. These include geometric modeling (generating a suitable mesh for the structure), physical modeling (developing mathematical models for coupling between various phenomena, specifying material properties), computational modeling (developing efficient numerical schemes and their parallel formulations), and appropriate visualization techniques. We have made fundamental contributions in each of these areas. Here, we overview some of our major contributions, along with sample simulations of existing structures. As part of our ongoing work, we also aim to perform a high-fidelity simulation of the tragic World Trade Center (WTC) crash. To this end, we have developed, from available blueprints, a highly resolved geometric model of the WTC. We also aim to complement all of our computational studies with detailed experimental validation on full-scale structures at the Bowen Lab for Structural Engineering. To the best of our knowledge, this is the first comprehensive effort to fully integrate simulation and modeling with sensing, control, and actuation in an experimental setting. In this sense, we believe that this project is a novel realization of the concept of dynamic data-driven application systems in the realm of large-scale structures.
引用
收藏
页码:664 / 671
页数:8
相关论文
共 50 条
  • [41] Simulation Basics: How to Conduct a High-Fidelity Simulation
    Willhaus, Janet
    AACN ADVANCED CRITICAL CARE, 2016, 27 (01) : 71 - 77
  • [42] The improvement and retention of skills in shoulder dystocia management with the use of high-fidelity simulation: The SAFE (SimulAtion high-FidElity) study
    Papoutsis, Dimitrios
    Klazoglou, Paraskevi
    Valasoulis, George
    Tzavara, Chara
    WOMEN AND BIRTH, 2024, 37 (03)
  • [43] High-fidelity patient simulation in physiotherapy education
    Blackstock, Felicity C.
    Jull, Gwendolen A.
    AUSTRALIAN JOURNAL OF PHYSIOTHERAPY, 2007, 53 (01): : 3 - 5
  • [44] Surgical simulation with high-fidelity haptic feedback
    Department of Systems and Computer Engineering, Carleton University, Ottawa K1S 5B6, Canada
    不详
    Int J Rob Autom, 2007, 1 (59-67):
  • [45] Instructor comfort level in high-fidelity simulation
    Harder, B. Nicole
    Ross, Carolyn J. M.
    Paul, Pauline
    NURSE EDUCATION TODAY, 2013, 33 (10) : 1242 - 1245
  • [46] High-fidelity Simulation of Oblique Detonation Waves
    Abisleiman, Sebastian S.
    Bielawski, Ral
    Raman, Venkat
    AIAA SCITECH 2024 FORUM, 2024,
  • [47] STUDY ON CONSTRUCTION SAFETY AND SIMULATION OF LARGE-SCALE STRUCTURES
    Shi, Yong-Jiu
    Jiang, Yang
    Wang, Yuan-Qing
    PROCEEDINGS OF THE TENTH INTERNATIONAL SYMPOSIUM ON STRUCTURAL ENGINEERING FOR YOUNG EXPERTS, VOLS I AND II, 2008, : 1084 - 1088
  • [48] Visualizing the Factory Floor with High-Fidelity Simulation
    Waurzyniak, Patrick
    MANUFACTURING ENGINEERING, 2015, 154 (06): : 51 - 58
  • [49] HIGH-FIDELITY AIRPLANE SIMULATION-MODEL
    YOSHINO, H
    JOURNAL OF AIRCRAFT, 1979, 16 (06): : 374 - 381
  • [50] High-fidelity simulation training for the primary exam
    Harvey, R.
    Gillan, C.
    Edgar, S.
    ANAESTHESIA, 2013, 68 (08) : 882 - 882