A Study on Seismic Retrofit of Automated Storage Systemsin a High-tech Fabrication Plant

碩士 === 國立成功大學 === 建築學系 === 106 === Based on the experiences learned from current earthquakes, it is recognized that the losses to the high-tech fab can be significant. This study aims to increase the seismic capacity of an automated storage system STK in the cleanroom of a high-tech fab. In order to...

Full description

Bibliographic Details
Main Authors: Min-ChiKo, 柯敏琪
Other Authors: George C. Yao
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/5p4g55
id ndltd-TW-106NCKU5222051
record_format oai_dc
spelling ndltd-TW-106NCKU52220512019-05-16T01:08:00Z http://ndltd.ncl.edu.tw/handle/5p4g55 A Study on Seismic Retrofit of Automated Storage Systemsin a High-tech Fabrication Plant 高科技廠房自動化倉儲系統耐震補強研究 Min-ChiKo 柯敏琪 碩士 國立成功大學 建築學系 106 Based on the experiences learned from current earthquakes, it is recognized that the losses to the high-tech fab can be significant. This study aims to increase the seismic capacity of an automated storage system STK in the cleanroom of a high-tech fab. In order to reduce the responses of STK system during earthquake, a practical seismic retrofit program is proposed in the end of this study. The efficiency of the retrofit programme was verified by a series of small-scale STK shaking table tests and numerical analyses. For the study of different options, a numerical model of the STK system was builded and its accuracy was verified by comparing to the experimental results. Eventually, a full-scale computation was established and used to numerically reduce retrofitted acceleration of STK system to be kept under 500 gal. The results show a 86.5 % reduction of the acceleration reaction. George C. Yao 姚昭智 2018 學位論文 ; thesis 150 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立成功大學 === 建築學系 === 106 === Based on the experiences learned from current earthquakes, it is recognized that the losses to the high-tech fab can be significant. This study aims to increase the seismic capacity of an automated storage system STK in the cleanroom of a high-tech fab. In order to reduce the responses of STK system during earthquake, a practical seismic retrofit program is proposed in the end of this study. The efficiency of the retrofit programme was verified by a series of small-scale STK shaking table tests and numerical analyses. For the study of different options, a numerical model of the STK system was builded and its accuracy was verified by comparing to the experimental results. Eventually, a full-scale computation was established and used to numerically reduce retrofitted acceleration of STK system to be kept under 500 gal. The results show a 86.5 % reduction of the acceleration reaction.
author2 George C. Yao
author_facet George C. Yao
Min-ChiKo
柯敏琪
author Min-ChiKo
柯敏琪
spellingShingle Min-ChiKo
柯敏琪
A Study on Seismic Retrofit of Automated Storage Systemsin a High-tech Fabrication Plant
author_sort Min-ChiKo
title A Study on Seismic Retrofit of Automated Storage Systemsin a High-tech Fabrication Plant
title_short A Study on Seismic Retrofit of Automated Storage Systemsin a High-tech Fabrication Plant
title_full A Study on Seismic Retrofit of Automated Storage Systemsin a High-tech Fabrication Plant
title_fullStr A Study on Seismic Retrofit of Automated Storage Systemsin a High-tech Fabrication Plant
title_full_unstemmed A Study on Seismic Retrofit of Automated Storage Systemsin a High-tech Fabrication Plant
title_sort study on seismic retrofit of automated storage systemsin a high-tech fabrication plant
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/5p4g55
work_keys_str_mv AT minchiko astudyonseismicretrofitofautomatedstoragesystemsinahightechfabricationplant
AT kēmǐnqí astudyonseismicretrofitofautomatedstoragesystemsinahightechfabricationplant
AT minchiko gāokējìchǎngfángzìdònghuàcāngchǔxìtǒngnàizhènbǔqiángyánjiū
AT kēmǐnqí gāokējìchǎngfángzìdònghuàcāngchǔxìtǒngnàizhènbǔqiángyánjiū
AT minchiko studyonseismicretrofitofautomatedstoragesystemsinahightechfabricationplant
AT kēmǐnqí studyonseismicretrofitofautomatedstoragesystemsinahightechfabricationplant
_version_ 1719174200084660224