Design and analysis of seismic metamaterials: An assessment of energy dissipation effect

碩士 === 國立成功大學 === 土木工程學系 === 107 === Inspired by recent demonstrations of wave manipulation with seismic metamaterials, we propose the concept of quantifying the energy dissipation effect. Firstly, we briefly introduce the energy dissipation mechanism of metamaterials and design the unit cell based...

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Main Authors: Guan-HuiLi, 李冠慧
Other Authors: Tungyang Chen
Format: Others
Language:zh-TW
Published: 2019
Online Access:http://ndltd.ncl.edu.tw/handle/3bdpw5
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spelling ndltd-TW-107NCKU50151002019-10-26T06:24:17Z http://ndltd.ncl.edu.tw/handle/3bdpw5 Design and analysis of seismic metamaterials: An assessment of energy dissipation effect 地震超材料設計之減震模擬及效益評估 Guan-HuiLi 李冠慧 碩士 國立成功大學 土木工程學系 107 Inspired by recent demonstrations of wave manipulation with seismic metamaterials, we propose the concept of quantifying the energy dissipation effect. Firstly, we briefly introduce the energy dissipation mechanism of metamaterials and design the unit cell based on the effective medium theory. Secondly, the energy dissipation effect is analytically derived based on Snell's law. Considering the real-scale energy dissipation reaction, the model in frequency domain and in time domain are established by the finite element program. Lastly, we propose a method of evaluating the energy dissipation effect in a large-scale spatial configuration. Tungyang Chen 陳東陽 2019 學位論文 ; thesis 113 zh-TW
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language zh-TW
format Others
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description 碩士 === 國立成功大學 === 土木工程學系 === 107 === Inspired by recent demonstrations of wave manipulation with seismic metamaterials, we propose the concept of quantifying the energy dissipation effect. Firstly, we briefly introduce the energy dissipation mechanism of metamaterials and design the unit cell based on the effective medium theory. Secondly, the energy dissipation effect is analytically derived based on Snell's law. Considering the real-scale energy dissipation reaction, the model in frequency domain and in time domain are established by the finite element program. Lastly, we propose a method of evaluating the energy dissipation effect in a large-scale spatial configuration.
author2 Tungyang Chen
author_facet Tungyang Chen
Guan-HuiLi
李冠慧
author Guan-HuiLi
李冠慧
spellingShingle Guan-HuiLi
李冠慧
Design and analysis of seismic metamaterials: An assessment of energy dissipation effect
author_sort Guan-HuiLi
title Design and analysis of seismic metamaterials: An assessment of energy dissipation effect
title_short Design and analysis of seismic metamaterials: An assessment of energy dissipation effect
title_full Design and analysis of seismic metamaterials: An assessment of energy dissipation effect
title_fullStr Design and analysis of seismic metamaterials: An assessment of energy dissipation effect
title_full_unstemmed Design and analysis of seismic metamaterials: An assessment of energy dissipation effect
title_sort design and analysis of seismic metamaterials: an assessment of energy dissipation effect
publishDate 2019
url http://ndltd.ncl.edu.tw/handle/3bdpw5
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