Buffeting response of a suspension bridge (time domain)

バージョン 2.4 (233 KB) 作成者: E. Cheynet
The coupled dynamic response of a suspension bridge to wind turbulence is computed in the time domain
ダウンロード: 286
更新 2023/3/27

Time-domain Buffeting response of a suspension bridge

The coupled dynamic response of a suspension bridge to wind turbulence is computed in the time domain

View Buffeting response of a suspension bridge (time domain) on File Exchange Buy Me A Coffee

Summary

The lateral, vertical and torsional response of a suspension is computed in the time domain using computed turbulent velocity time histories. The simplified Bridge model of the Lysefjord Bridge [1] is considered for the modelling of the structure. Turbulence is modelled using the Kaimal model [2]. The quasi-steady theory, as well as the strip assumption, are used. Modal coupling between the lateral, vertical and torsional motions are accounted for in the time-domain model.

Content

The present submission contains:

  • The function dynaRespTD.m that computes the bridge response in the time domain (Non-linear load + modal coupling)
  • The function dynaResp_noCouplingTD.m that computes the bridge response in the time domain (linearised load + no modal coupling)
  • An example file that compares the time-domain approach with the frequency domain approach
  • Various functions used for the example file, including simulation of correlated wind histories [3], computation of the bridge modal parameters [4], computation of the bridge response in the frequency domain [5].

Any suggestion, comment or question is welcomed.

References

[1] Cheynet, E., Jakobsen, J. B., & Snæbjörnsson, J. (2016). Buffeting response of a suspension bridge in complex terrain. Engineering Structures, 128, 474-487.

[2] Kaimal, J. C., Wyngaard, J. C. J., Izumi, Y., & Coté, O. R. (1972). Spectral characteristics of surface‐layer turbulence. Quarterly Journal of the Royal Meteorological Society, 98(417), 563-589.

[3]https://se.mathworks.com/matlabcentral/fileexchange/68632-wind-field-simulation-the-fast-version

[4] https://se.mathworks.com/matlabcentral/fileexchange/51815-calculation-of-the-modal-parameters-of-a-suspension-bridge

[5] https://se.mathworks.com/matlabcentral/fileexchange/51970-buffeting-response-of-a-suspension-bridge-frequency-domain

引用

E. Cheynet (2024). Buffeting response of a suspension bridge (time domain) (https://github.com/ECheynet/dynaRespTD/releases/tag/v2.4), GitHub. 取得済み .

MATLAB リリースの互換性
作成: R2019b
すべてのリリースと互換性あり
プラットフォームの互換性
Windows macOS Linux
カテゴリ
Help Center および MATLAB AnswersNumerical Integration and Differential Equations についてさらに検索
謝辞

ヒントを与えたファイル: Automated vehicle identification using bridge vibrations

Community Treasure Hunt

Find the treasures in MATLAB Central and discover how the community can help you!

Start Hunting!

GitHub の既定のブランチを使用するバージョンはダウンロードできません

バージョン 公開済み リリース ノート
2.4

See release notes for this release on GitHub: https://github.com/ECheynet/dynaRespTD/releases/tag/v2.4

2.3

See release notes for this release on GitHub: https://github.com/ECheynet/dynaRespTD/releases/tag/v2.3

2.2.0.0

See release notes for this release on GitHub: https://github.com/ECheynet/dynaRespTD/releases/tag/v2.2

2.1

See release notes for this release on GitHub: https://github.com/ECheynet/dynaRespTD/releases/tag/v2.1

2.0

Added Github repository

1.4

The example file is simplified

1.3

The example is updated using a more time-consuming setup (more simulations, higher sampling frequency...)

1.2

New function added and example updated

1.0.0

この GitHub アドオンでの問題を表示または報告するには、GitHub リポジトリにアクセスしてください。
この GitHub アドオンでの問題を表示または報告するには、GitHub リポジトリにアクセスしてください。