RC flat plate design considering serviceability, economical efficiency, and optimal material supply chain in the structural BIM (S-BIM) environment

Junseo Bae, Seong Uk Hong, Young Sang Cho

Research output: Contribution to conferencePaper

Abstract

In the aspect of RC structural design, Building Information Modeling (BIM) procedure plays a major role in integrating various information required to perform the analysis and design and reducing time-consuming and cost. The BIM is a feasible technology contains pertinent geometric and structural information to support the operation of actual member fabrication. In addition, it provides the basis for other projects based on the parametric design method. Especially, this research discusses the RC flat plate design considering serviceability and economical efficiency which are made up of minimum thickness requirements satisfied with the deflection limitation in the S-BIM environment. In order to manage construction materials more efficiently, the methodology of optimal construction management focus on reinforcing steel by sorting their information such as diameter, length of rebar is also suggested.
Original languageEnglish
Number of pages8
Publication statusPublished - 2010
Externally publishedYes
EventThe 9th International Conference on Sustainable Energy Technologies - Shanghai, China
Duration: 24 Aug 201027 Aug 2010
http://www.set2010.org/

Seminar

SeminarThe 9th International Conference on Sustainable Energy Technologies
Abbreviated titleSET2010
CountryChina
CityShanghai
Period24/08/1027/08/10
Internet address

Fingerprint

Supply chains
Structural design
Sorting
Fabrication
Steel
Costs

Cite this

Bae, J., Hong, S. U., & Cho, Y. S. (2010). RC flat plate design considering serviceability, economical efficiency, and optimal material supply chain in the structural BIM (S-BIM) environment. Paper presented at The 9th International Conference on Sustainable Energy Technologies , Shanghai, China.
Bae, Junseo ; Hong, Seong Uk ; Cho, Young Sang. / RC flat plate design considering serviceability, economical efficiency, and optimal material supply chain in the structural BIM (S-BIM) environment. Paper presented at The 9th International Conference on Sustainable Energy Technologies , Shanghai, China.8 p.
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abstract = "In the aspect of RC structural design, Building Information Modeling (BIM) procedure plays a major role in integrating various information required to perform the analysis and design and reducing time-consuming and cost. The BIM is a feasible technology contains pertinent geometric and structural information to support the operation of actual member fabrication. In addition, it provides the basis for other projects based on the parametric design method. Especially, this research discusses the RC flat plate design considering serviceability and economical efficiency which are made up of minimum thickness requirements satisfied with the deflection limitation in the S-BIM environment. In order to manage construction materials more efficiently, the methodology of optimal construction management focus on reinforcing steel by sorting their information such as diameter, length of rebar is also suggested.",
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Bae, J, Hong, SU & Cho, YS 2010, 'RC flat plate design considering serviceability, economical efficiency, and optimal material supply chain in the structural BIM (S-BIM) environment' Paper presented at The 9th International Conference on Sustainable Energy Technologies , Shanghai, China, 24/08/10 - 27/08/10, .

RC flat plate design considering serviceability, economical efficiency, and optimal material supply chain in the structural BIM (S-BIM) environment. / Bae, Junseo; Hong, Seong Uk; Cho, Young Sang.

2010. Paper presented at The 9th International Conference on Sustainable Energy Technologies , Shanghai, China.

Research output: Contribution to conferencePaper

TY - CONF

T1 - RC flat plate design considering serviceability, economical efficiency, and optimal material supply chain in the structural BIM (S-BIM) environment

AU - Bae, Junseo

AU - Hong, Seong Uk

AU - Cho, Young Sang

PY - 2010

Y1 - 2010

N2 - In the aspect of RC structural design, Building Information Modeling (BIM) procedure plays a major role in integrating various information required to perform the analysis and design and reducing time-consuming and cost. The BIM is a feasible technology contains pertinent geometric and structural information to support the operation of actual member fabrication. In addition, it provides the basis for other projects based on the parametric design method. Especially, this research discusses the RC flat plate design considering serviceability and economical efficiency which are made up of minimum thickness requirements satisfied with the deflection limitation in the S-BIM environment. In order to manage construction materials more efficiently, the methodology of optimal construction management focus on reinforcing steel by sorting their information such as diameter, length of rebar is also suggested.

AB - In the aspect of RC structural design, Building Information Modeling (BIM) procedure plays a major role in integrating various information required to perform the analysis and design and reducing time-consuming and cost. The BIM is a feasible technology contains pertinent geometric and structural information to support the operation of actual member fabrication. In addition, it provides the basis for other projects based on the parametric design method. Especially, this research discusses the RC flat plate design considering serviceability and economical efficiency which are made up of minimum thickness requirements satisfied with the deflection limitation in the S-BIM environment. In order to manage construction materials more efficiently, the methodology of optimal construction management focus on reinforcing steel by sorting their information such as diameter, length of rebar is also suggested.

M3 - Paper

ER -

Bae J, Hong SU, Cho YS. RC flat plate design considering serviceability, economical efficiency, and optimal material supply chain in the structural BIM (S-BIM) environment. 2010. Paper presented at The 9th International Conference on Sustainable Energy Technologies , Shanghai, China.