Optimization of Larch Timbering Cross Section Based on Finite Element

In view of the problem of the low utilization rate of larch as building materials, the cross-sectional dimension of larch wooden beams was optimized in this paper. The size of the larch wooden beam is 2000mm×80mm×80mm and the moisture content is 8.45%. By measuring experiments, The larch was static...

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Main Author: Wei Wang
Format: Article
Language:English
Published: European Alliance for Innovation (EAI) 2022-01-01
Series:EAI Endorsed Transactions on Scalable Information Systems
Subjects:
Online Access:https://publications.eai.eu/index.php/sis/article/view/330
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author Wei Wang
author_facet Wei Wang
author_sort Wei Wang
collection DOAJ
description In view of the problem of the low utilization rate of larch as building materials, the cross-sectional dimension of larch wooden beams was optimized in this paper. The size of the larch wooden beam is 2000mm×80mm×80mm and the moisture content is 8.45%. By measuring experiments, The larch was statically analyzed by finite element softwareWith the volume of the beam as the target function, cross-section height and width as design variables, maximum stress and maximum deformation as state variables, and the results of static analysis as the state variable. Using these dates as the constraint of optimization design, the cross-sectional dimension of the larch wooden beam has been optimized as 2000 mm long, 55.02mm wide and 110.3mm high. The material was saved approximately 5.5% compared with that before optimization and improved the utilization efficiency of larch wooden beams in the construction industry.
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spelling doaj.art-1ba17fb825ab47b08227d80c33184a5f2022-12-22T04:08:17ZengEuropean Alliance for Innovation (EAI)EAI Endorsed Transactions on Scalable Information Systems2032-94072022-01-019510.4108/eai.26-1-2022.172998Optimization of Larch Timbering Cross Section Based on Finite ElementWei Wang0Northeast Forestry University In view of the problem of the low utilization rate of larch as building materials, the cross-sectional dimension of larch wooden beams was optimized in this paper. The size of the larch wooden beam is 2000mm×80mm×80mm and the moisture content is 8.45%. By measuring experiments, The larch was statically analyzed by finite element softwareWith the volume of the beam as the target function, cross-section height and width as design variables, maximum stress and maximum deformation as state variables, and the results of static analysis as the state variable. Using these dates as the constraint of optimization design, the cross-sectional dimension of the larch wooden beam has been optimized as 2000 mm long, 55.02mm wide and 110.3mm high. The material was saved approximately 5.5% compared with that before optimization and improved the utilization efficiency of larch wooden beams in the construction industry. https://publications.eai.eu/index.php/sis/article/view/330larchavailabilityfinite elementoptimization
spellingShingle Wei Wang
Optimization of Larch Timbering Cross Section Based on Finite Element
EAI Endorsed Transactions on Scalable Information Systems
larch
availability
finite element
optimization
title Optimization of Larch Timbering Cross Section Based on Finite Element
title_full Optimization of Larch Timbering Cross Section Based on Finite Element
title_fullStr Optimization of Larch Timbering Cross Section Based on Finite Element
title_full_unstemmed Optimization of Larch Timbering Cross Section Based on Finite Element
title_short Optimization of Larch Timbering Cross Section Based on Finite Element
title_sort optimization of larch timbering cross section based on finite element
topic larch
availability
finite element
optimization
url https://publications.eai.eu/index.php/sis/article/view/330
work_keys_str_mv AT weiwang optimizationoflarchtimberingcrosssectionbasedonfiniteelement