RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPER

Detalhes bibliográficos
Autor(a) principal: H. Alkmim, Mansour
Data de Publicação: 2017
Outros Autores: T. Fabro, Adriano, V. G. de Morais, Marcus
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Revista Interdisciplinar de Pesquisa em Engenharia
Texto Completo: https://periodicos.unb.br/index.php/ripe/article/view/21611
Resumo: Passive energy dissipation systems encompass a range of materials and devices for enhancing damping. They can be used both for natural hazard mitigation and for rehabilitation of aging or deficient structures. Among the current passive energy dissipation systems, tuned liquid column damper (TLCD), a class of passive control that utilizes liquid in a “U” shape reservoir to control structural vibration of the primary system, has been widely researched. Uncertainties can arise from simplifications in the model and from nonlinearities. To quantify uncertainties, random variables need to be associated with the systems parameters, such as stiffness and damping ratio, along with their probability density function. The Maximum Entropy Principle is used to construct the probability density function since it avoids using misinformation in the construction of model. In this paper the frequency response function of a system with a TLCD is investigated considering two cases of parameter uncertainty: the first considering uncertainties only in one parameter, the absorber damping ratio and the second considering uncertainties in two parameters, the absorber damping ratio and the structure stiffness. The results showed that, for the first case, the uncertainty is only predominant near the resonance and anti-resonance region and can indeed interfere in the optimum condition of the absorber. For the second case, the uncertainties are presented in all frequencies.
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spelling RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPERTuned Liquid Column Damper. Vibration Absorber. Model Uncertainty. Stochastic Analysis.Passive energy dissipation systems encompass a range of materials and devices for enhancing damping. They can be used both for natural hazard mitigation and for rehabilitation of aging or deficient structures. Among the current passive energy dissipation systems, tuned liquid column damper (TLCD), a class of passive control that utilizes liquid in a “U” shape reservoir to control structural vibration of the primary system, has been widely researched. Uncertainties can arise from simplifications in the model and from nonlinearities. To quantify uncertainties, random variables need to be associated with the systems parameters, such as stiffness and damping ratio, along with their probability density function. The Maximum Entropy Principle is used to construct the probability density function since it avoids using misinformation in the construction of model. In this paper the frequency response function of a system with a TLCD is investigated considering two cases of parameter uncertainty: the first considering uncertainties only in one parameter, the absorber damping ratio and the second considering uncertainties in two parameters, the absorber damping ratio and the structure stiffness. The results showed that, for the first case, the uncertainty is only predominant near the resonance and anti-resonance region and can indeed interfere in the optimum condition of the absorber. For the second case, the uncertainties are presented in all frequencies.Programa de Pós-Graduação em Integridade de Materiais da Engenharia2017-01-30info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://periodicos.unb.br/index.php/ripe/article/view/2161110.26512/ripe.v2i16.21611Revista Interdisciplinar de Pesquisa em Engenharia; Vol. 2 No. 16 (2016): STOCHASTIC MODELING AND UNCERTAINTY QUANTIFICATION; 1-11Revista Interdisciplinar de Pesquisa em Engenharia; v. 2 n. 16 (2016): STOCHASTIC MODELING AND UNCERTAINTY QUANTIFICATION; 1-112447-6102reponame:Revista Interdisciplinar de Pesquisa em Engenhariainstname:Universidade de Brasília (UnB)instacron:UNBenghttps://periodicos.unb.br/index.php/ripe/article/view/21611/19929Copyright (c) 2019 Revista Interdisciplinar de Pesquisa em Engenharia - RIPEinfo:eu-repo/semantics/openAccessH. Alkmim, MansourT. Fabro, AdrianoV. G. de Morais, Marcus2019-06-16T02:59:10Zoai:ojs.pkp.sfu.ca:article/21611Revistahttps://periodicos.unb.br/index.php/ripePUBhttps://periodicos.unb.br/index.php/ripe/oaianflor@unb.br2447-61022447-6102opendoar:2019-06-16T02:59:10Revista Interdisciplinar de Pesquisa em Engenharia - Universidade de Brasília (UnB)false
dc.title.none.fl_str_mv RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPER
title RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPER
spellingShingle RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPER
H. Alkmim, Mansour
Tuned Liquid Column Damper. Vibration Absorber. Model Uncertainty. Stochastic Analysis.
title_short RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPER
title_full RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPER
title_fullStr RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPER
title_full_unstemmed RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPER
title_sort RESPONSE VARIABILITY WITH RANDOM UNCERTAINTY IN A TUNED LIQUID COLUMN DAMPER
author H. Alkmim, Mansour
author_facet H. Alkmim, Mansour
T. Fabro, Adriano
V. G. de Morais, Marcus
author_role author
author2 T. Fabro, Adriano
V. G. de Morais, Marcus
author2_role author
author
dc.contributor.author.fl_str_mv H. Alkmim, Mansour
T. Fabro, Adriano
V. G. de Morais, Marcus
dc.subject.por.fl_str_mv Tuned Liquid Column Damper. Vibration Absorber. Model Uncertainty. Stochastic Analysis.
topic Tuned Liquid Column Damper. Vibration Absorber. Model Uncertainty. Stochastic Analysis.
description Passive energy dissipation systems encompass a range of materials and devices for enhancing damping. They can be used both for natural hazard mitigation and for rehabilitation of aging or deficient structures. Among the current passive energy dissipation systems, tuned liquid column damper (TLCD), a class of passive control that utilizes liquid in a “U” shape reservoir to control structural vibration of the primary system, has been widely researched. Uncertainties can arise from simplifications in the model and from nonlinearities. To quantify uncertainties, random variables need to be associated with the systems parameters, such as stiffness and damping ratio, along with their probability density function. The Maximum Entropy Principle is used to construct the probability density function since it avoids using misinformation in the construction of model. In this paper the frequency response function of a system with a TLCD is investigated considering two cases of parameter uncertainty: the first considering uncertainties only in one parameter, the absorber damping ratio and the second considering uncertainties in two parameters, the absorber damping ratio and the structure stiffness. The results showed that, for the first case, the uncertainty is only predominant near the resonance and anti-resonance region and can indeed interfere in the optimum condition of the absorber. For the second case, the uncertainties are presented in all frequencies.
publishDate 2017
dc.date.none.fl_str_mv 2017-01-30
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv https://periodicos.unb.br/index.php/ripe/article/view/21611
10.26512/ripe.v2i16.21611
url https://periodicos.unb.br/index.php/ripe/article/view/21611
identifier_str_mv 10.26512/ripe.v2i16.21611
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv https://periodicos.unb.br/index.php/ripe/article/view/21611/19929
dc.rights.driver.fl_str_mv Copyright (c) 2019 Revista Interdisciplinar de Pesquisa em Engenharia - RIPE
info:eu-repo/semantics/openAccess
rights_invalid_str_mv Copyright (c) 2019 Revista Interdisciplinar de Pesquisa em Engenharia - RIPE
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Programa de Pós-Graduação em Integridade de Materiais da Engenharia
publisher.none.fl_str_mv Programa de Pós-Graduação em Integridade de Materiais da Engenharia
dc.source.none.fl_str_mv Revista Interdisciplinar de Pesquisa em Engenharia; Vol. 2 No. 16 (2016): STOCHASTIC MODELING AND UNCERTAINTY QUANTIFICATION; 1-11
Revista Interdisciplinar de Pesquisa em Engenharia; v. 2 n. 16 (2016): STOCHASTIC MODELING AND UNCERTAINTY QUANTIFICATION; 1-11
2447-6102
reponame:Revista Interdisciplinar de Pesquisa em Engenharia
instname:Universidade de Brasília (UnB)
instacron:UNB
instname_str Universidade de Brasília (UnB)
instacron_str UNB
institution UNB
reponame_str Revista Interdisciplinar de Pesquisa em Engenharia
collection Revista Interdisciplinar de Pesquisa em Engenharia
repository.name.fl_str_mv Revista Interdisciplinar de Pesquisa em Engenharia - Universidade de Brasília (UnB)
repository.mail.fl_str_mv anflor@unb.br
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