期刊文献+

A comparison of IBC with 1997 UBC for modal response spectrum analysis in standard-occupancy buildings 被引量:1

A comparison of IBC with 1997 UBC for modal response spectrum analysis in standard-occupancy buildings
下载PDF
导出
摘要 This paper presents a comparison of the seismic forces generated from a Modal Response Spectrum Analysis (MRSA) by applying the provisions of two building codes, the 1997 Uniform Building Code (UBC) and the 2000-2009 International Building Code (IBC), to the most common ordinary residential buildings of standard occupancy. Considering IBC as the state of the art benchmark code, the primary concern is the safety of buildings designed using the UBC as compared to those designed using the IBC. A sample of four buildings with different layouts and heights was used for this comparison. Each of these buildings was assumed to be located at four different geographical sample locations arbitrarily selected to represent various earthquake zones on a seismic map of the USA, and was subjected to code-compliant response spectrum analyses for all sample locations and for five different soil types at each location. Response spectrum analysis was performed using the ETABS software package. For all the cases investigated, the UBC was found to be significantly more conservative than the IBC. The UBC design response spectra have higher spectral accelerations, and as a result, the response spectrum analysis provided a much higher base shear and moment in the structural members as compared to the IBC. The conclusion is that ordinary office and residential buildings designed using UBC 1997 are considered to be overdesigned, and therefore they are quite safe even according to the IBC provisions. This paper presents a comparison of the seismic forces generated from a Modal Response Spectrum Analysis (MRSA) by applying the provisions of two building codes, the 1997 Uniform Building Code (UBC) and the 2000-2009 International Building Code (IBC), to the most common ordinary residential buildings of standard occupancy. Considering IBC as the state of the art benchmark code, the primary concern is the safety of buildings designed using the UBC as compared to those designed using the IBC. A sample of four buildings with different layouts and heights was used for this comparison. Each of these buildings was assumed to be located at four different geographical sample locations arbitrarily selected to represent various earthquake zones on a seismic map of the USA, and was subjected to code-compliant response spectrum analyses for all sample locations and for five different soil types at each location. Response spectrum analysis was performed using the ETABS software package. For all the cases investigated, the UBC was found to be significantly more conservative than the IBC. The UBC design response spectra have higher spectral accelerations, and as a result, the response spectrum analysis provided a much higher base shear and moment in the structural members as compared to the IBC. The conclusion is that ordinary office and residential buildings designed using UBC 1997 are considered to be overdesigned, and therefore they are quite safe even according to the IBC provisions.
机构地区 Umm Al-Qura University
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2011年第1期99-113,共15页 地震工程与工程振动(英文刊)
关键词 response spectrum analysis seismic forces multi-story buildings seismic design building codes IBC UBC response spectrum analysis seismic forces multi-story buildings seismic design building codes IBC UBC
  • 相关文献

参考文献18

  • 1Ghosh SK, Kim J and Shad F (2009), "Seismic Design Using Structural Dynamics - 2006 IBC, 2009 IBC, ASCE/SEI 7-05", International Code Council Inc.
  • 2International Code Council, Inc. (2009), 2009 International Building Code, Falls Church, VA, USA.
  • 3Kaplan AEC Engineering Inc (2000), UBC-IBC Structural (1997-2000)." Comparison & Cross References, International Codes Series.
  • 4American Society of Civil Engineers (2007), "The Seismic Provisions of SEI/ASCE 705", SEI/ASCE 7-05, US-VA.
  • 5International Code Council Inc. (2003), 2003 International Building Code, Falls Church, VA, USA.
  • 6Building Seismic Safety Council (2004), NEHRP Recommended Provisions and Commentary for Seismic Regulations for New Buildings and Other Structures (FEMA 450), 2003 Edition, Washington D.C., USA.
  • 7Gupta, AK (1992), Response Spectrum Method in Seismic Analysis and Design of Structures, CRC Press.
  • 8Ghosh SK and Khuntia M (1999), "Impact of Seismic Design Provisions of 2000 IBC: Comparison with 1997 UBC", Proc. SEAOC 68th Annual Convention, Santa Barbra, pp. 229-254.
  • 9Newmark N M and Hall WJ (1982), "Earthquake Spectra and Design," Engineering Monographs on Earthquake Criteria, Structural Design and Strong Motion Records,Vol. III, Earthquake Engineering Research Institute, Oakland, USA.
  • 10Pong W S, Lee A and Lee Z (2006a), "The International Building Code and its Implication on Seismic Design," Paper No. 238, Fourth Int. Conf. on Earthquake Engineering, Taipei, Taiwan.

共引文献5

同被引文献5

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部