Passive Vibration Control of Tall Structures with Uncertain Parameters—A Reliability Analysis

Publikation: Sonstige PublikationForschungPeer-Review

Autoren

  • Said Elias
  • Deepika Gill
  • Rajesh Rupakhety
  • Simon Olafsson

Externe Organisationen

  • University of Iceland
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Details

OriginalspracheEnglisch
Seitenumfang10
PublikationsstatusVeröffentlicht - Nov. 2020
Extern publiziertJa

Publikationsreihe

NameLecture Notes in Civil Engineering
Band103
ISSN (Print)2366-2557
ISSN (elektronisch)2366-2565

Abstract

The paper studies the reliability analysis and passive vibration control (PVC) of tall structures with uncertain parameters. A tall structure is modeled using certain parameters, Monte Carlo method is employed to create the uncertain parameters for the selected tall structure. The robust tune-able PVC (TPVC) schemes are installed to mitigate the response of the structure under earthquake excitations. Different tuned mass damper (TMD) schemes are used to mitigate the response of the structure. These schemes are single TMD (STMD), multiple TMDs (MTMDs), and distributed MTMDs (d-MTMDs). Newmark’s integration method is used to solve the equation of motion for the coupled system. It is found that ignoring the uncertainties in parameters of structure cause reduction in performances of the TPVC. Different probability distribution functions (PDF) are compared to select the most suitable one.

ASJC Scopus Sachgebiete

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Passive Vibration Control of Tall Structures with Uncertain Parameters—A Reliability Analysis. / Elias, Said; Gill, Deepika; Rupakhety, Rajesh et al.
10 S. 2020. (Lecture Notes in Civil Engineering; Band 103).

Publikation: Sonstige PublikationForschungPeer-Review

Elias S, Gill D, Rupakhety R, Olafsson S. Passive Vibration Control of Tall Structures with Uncertain Parameters—A Reliability Analysis. 2020. 10 S. doi: 10.1007/978-981-15-8138-0_47
Elias, Said ; Gill, Deepika ; Rupakhety, Rajesh et al. / Passive Vibration Control of Tall Structures with Uncertain Parameters—A Reliability Analysis. 2020. 10 S. (Lecture Notes in Civil Engineering).
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