Dynamic Analysis and Optimization Design of the Component Internal Forces of a Mixer Structure System
碩士 === 國立臺北科技大學 === 土木工程系土木與防災碩士班 === 104 === In this study, theory formulas and engineering design experience are used to analyze and design a mixer structure system (MSS). In addition, the optimize design of stirrer system using LS-DYNA is considered. The design concepts base on three demands. Fir...
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ndltd-TW-104TIT056530592019-05-15T22:54:24Z http://ndltd.ncl.edu.tw/handle/xng2pd Dynamic Analysis and Optimization Design of the Component Internal Forces of a Mixer Structure System 攪拌機系統之動力分析與構件內力之優化設計 CHEN,WEI-CHIH 陳韋志 碩士 國立臺北科技大學 土木工程系土木與防災碩士班 104 In this study, theory formulas and engineering design experience are used to analyze and design a mixer structure system (MSS). In addition, the optimize design of stirrer system using LS-DYNA is considered. The design concepts base on three demands. First demand is to change the structural support of MSS. Second demand is to set auger. Third demand is size of MSS for 30m. Design cases have three cases. Case 1 is optimizing design of the cantilever end truss structural displacements. Case 2 is optimization design of uneven force roller system. Case 3 is to optimize the auger connection configuration system, anti-off device, truss set flange at the disconnect surface, configure the rubber bearing and reinforced concrete foundation. For MSS model, the empirical formula is to calculate the strength and numerical simulation of real acts using LS-DYNA. Stress and strain of proposed MSS are less than allowable stress, strain and displacement of MSS and soil subsidence amount. 王仁佐 黃昭勳 學位論文 ; thesis 0 zh-TW |
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碩士 === 國立臺北科技大學 === 土木工程系土木與防災碩士班 === 104 === In this study, theory formulas and engineering design experience are used to analyze and design a mixer structure system (MSS). In addition, the optimize design of stirrer system using LS-DYNA is considered. The design concepts base on three demands. First demand is to change the structural support of MSS. Second demand is to set auger. Third demand is size of MSS for 30m. Design cases have three cases. Case 1 is optimizing design of the cantilever end truss structural displacements. Case 2 is optimization design of uneven force roller system. Case 3 is to optimize the auger connection configuration system, anti-off device, truss set flange at the disconnect surface, configure the rubber bearing and reinforced concrete foundation. For MSS model, the empirical formula is to calculate the strength and numerical simulation of real acts using LS-DYNA. Stress and strain of proposed MSS are less than allowable stress, strain and displacement of MSS and soil subsidence amount.
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王仁佐 |
author_facet |
王仁佐 CHEN,WEI-CHIH 陳韋志 |
author |
CHEN,WEI-CHIH 陳韋志 |
spellingShingle |
CHEN,WEI-CHIH 陳韋志 Dynamic Analysis and Optimization Design of the Component Internal Forces of a Mixer Structure System |
author_sort |
CHEN,WEI-CHIH |
title |
Dynamic Analysis and Optimization Design of the Component Internal Forces of a Mixer Structure System |
title_short |
Dynamic Analysis and Optimization Design of the Component Internal Forces of a Mixer Structure System |
title_full |
Dynamic Analysis and Optimization Design of the Component Internal Forces of a Mixer Structure System |
title_fullStr |
Dynamic Analysis and Optimization Design of the Component Internal Forces of a Mixer Structure System |
title_full_unstemmed |
Dynamic Analysis and Optimization Design of the Component Internal Forces of a Mixer Structure System |
title_sort |
dynamic analysis and optimization design of the component internal forces of a mixer structure system |
url |
http://ndltd.ncl.edu.tw/handle/xng2pd |
work_keys_str_mv |
AT chenweichih dynamicanalysisandoptimizationdesignofthecomponentinternalforcesofamixerstructuresystem AT chénwéizhì dynamicanalysisandoptimizationdesignofthecomponentinternalforcesofamixerstructuresystem AT chenweichih jiǎobànjīxìtǒngzhīdònglìfēnxīyǔgòujiànnèilìzhīyōuhuàshèjì AT chénwéizhì jiǎobànjīxìtǒngzhīdònglìfēnxīyǔgòujiànnèilìzhīyōuhuàshèjì |
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