全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

Design and Fabrication of Aluminum Cladding and Curtain Wall of a Sports Club

DOI: 10.4236/ojce.2019.91001, PP. 1-17

Keywords: Aluminum Composite Panel, Curtain Wall, Fabrication, Numerical Modeling, Cladding

Full-Text   Cite this paper   Add to My Lib

Abstract:

The paper discusses the design, fabrication and the execution of the cladding supported by steel trusses and curtain wall of a sports club. The cladding and the curtain walls were subjected to a wind load of 1.2 Kpa considering basic wind speed of 25 m/s as per the project specifications. The first part of the paper deals with the cladding work of the canopy that consist of a 4 mm thick aluminium composite panels supported by steel trusses extended from the main structure. Two types of steel trusses were provided, the main truss connected to the space truss, whereas the intermediate truss connected to channels. Both trusses were spaced at 2.5 m centre to centre. These trusses were fabricated at factory and transported to the site for installation. The second part of the paper is related to the curtain wall design having Maximum Mullion spacing of 2 m, considered as worst scenario for the design calculations. The maximum Mullion height was 5.55 m, adopted in the calculations with bottom and top pinned connection. The Technal system was adopted for the design of mullions and transoms. Design was carried out using numerical modeling with CSI SAP2000 for cladding and its supporting structures. The bracket was realized and checked for the corresponding induced forces. All the structural systems were found safe according to different acceptance criterion.

References

[1]  Muhammad, L.B. (2010) Systematic Evaluation of Curtain Wall Types. Master of Science in Architecture, Institute of Graduate Studies and Researc, Eastern Mediterranean University, Gazimağusa.
[2]  Sanders, R.M. (2006) Curtain Walls: Not Just Another Pretty Façade. Journal of Architectural Technology, 23, 1-8.
[3]  Sivanerupan, S., Wilson, J.L. and Gad Swinburne, E. (2011) Structural Analysis and Design of Glazed Curtain Wall Systems. Australian Journal of Structural Engineering, 12, 57-67.
[4]  BS 8188-1 (1991) Structural Use of Aluminium, Part 1: Code of Practice for Design. British Standard.
[5]  BS 8188-2 (1991) Structural Use of Aluminium, Part 2: Specification for Materials, Workmanship and Protection. British Standard.
[6]  BS 5427-1 (1996) The Use of Profiles Sheet for Roof and Wall Cladding on Buildings. British Standard.
[7]  CSI SAP V15 (2002) Integrated Finite Element Analysis and Design of Structures Basic Analysis Reference Manual. Computers and Structures, Inc., Berkeley.
[8]  EN-1991-1-1 (2004) Eurocode 1, Actions on Structures—Part 1-1: General Actions-Densities, Self-Weight, Imposed Loads for Buildings. European Committee for Standardization, CEN, Brussels.
[9]  EN-1990 (2002) Eurocode 0, Basis of Structural Design. European Committee for Standardization, CEN, Brussels.
[10]  Muller, U. (2011) Introduction to Structural Aluminium Design. Whittles Publishing.
[11]  BS 5950-1 (2000) Structural Use of Steelwork in Building. British Standard.
[12]  BS 5950-2 (2001) Specification for Materials, Fabrication and Erection—Rolled and Welded Sections. British Standard.
[13]  Naqash, M.T., Formisano, A. and Matteis, G.D. (2016) Aluminium Framing Members in Facades. INALCO, Trans Tech Publications, Switzerland.
[14]  Naqash, M.T., Formisano, A. and Matteis, G.D. (2016) Design and Performance Testing of a Skylight in Qatar. INALCO, Trans Tech Publications, Switzerland.
[15]  Naqash, M.T. (2015) A Case Study on the Structural Design of Honey Comb Core Metal Panel. The International Journal of Advanced Structures and Geotechnical Engineering, 4.
[16]  Naqash, M.T. (2015) Structural Design Proposal for the Le Boulevard Skylight Doha Qatar. International Journal of Advanced Structures and Geotechnical Engineering, 4, 97-103.
[17]  Chan, L. (1999) Structural Use of Glass in Buildings. The Institute of Structural Engineers.
[18]  PrEN 13474-2 (2000) Glass in Building—Design of Glass Panes—Part 2: Design for Uniformly Distributed Loads. European Standard.
[19]  PrEN 13474-3 (2009) Glass in Building—Determination of the Strength of Glass Panes—Part 3: General Method of Calculation and Determination of Strength of Glass by Testing. European Standard.
[20]  Technal (2018) Technal.com—Technal.
[21]  Soleil, A.B. and Airfoil, C.S. (2018) Aluminium Brise Soleil|CS Airfoil®.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133