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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 6452
A STUDY OF VARIOUS STRUCTURAL FRAMING SYSTEMS SUBJECTED TO
SEISMIC LOADS
Mr. Vikas Devidas Borse1, Dr.D.P. Joshi2
1
ME Student, Civil Engg. Dept.Late.G.N.Sapkal College of Engg., Nashik
2Head of Department, Civil Engg. Dept., Late. G.N. Sapkal College of Engg., Nashik
---------------------------------------------------------------------***----------------------------------------------------------------------
Abstract - Moment frames have been widely used for seismic
resisting systems due totheir superior deformationandenergy
dissipation capacities. Past experiencesrevealedthatmajority
failures of the structure at due to faulty design hence proper
analysis and design is compulsory to safeguard the loss of life
and property. The objective of the study is to investigate the
seismic behavior of the structure having various structural
configurations like (OMRF) ordinary moment resisting frame
and (SMRF) special moment resisting frame. a comparative
study of all these types of frames will shed light on the best
suited frame to the adopted for seismic loads in Indian
scenario. Modeling & Analysis of (G+10) building is done in
zone III, IV, V. As results obtained best suited type of framing
system will be used to study and analysis using brick masonry
and siporex in zone V .
Key Words: lateral loads, SMRF, OMRF, brick masonry,
Siporex .
1. INTRODUCTION :
An earthquake is a natural phenomenon associated with
violent shaking of the ground. They are vibrations of the
earth’s surface caused by sudden movements. Since
earthquake forces are random in nature and unpredictable,
the engineering tools needs to be sharpened for analyzing
structures under the actiontheseforces.Abuilding’sframing
works in conjunction with its foundationtoprovidestrength
and stability for the structure; it is also another critical
component of the load path. Properly designed and
constructed building framing is important in all locations.
however, in earthquake prone areas ensuring proper
building framing is critical.Framingmusttransferall gravity,
uplift, and lateral loads to the foundation.
1.1 R.C. Moment frames:
A fundamental structure in engineering the frame is a two-
dimensional series of interconnected members joined
together. The members are not necessarily straightandmay
be free jointed anywhere along their length. In real
structures, moment frames in two orthogonal directions are
often connected together to form a three-dimensional frame
of columns and beams. Moment frames also can be drawn
on to provide resistance to horizontal loads out of the plane
of the frame.
OMRF(Ordinary Moment Resisting Frame): Theordinary
moment resisting frames are designed to carry vertical and
horizontal loads in the same plane but may also bedrawnon
to provide resistance to horizontal loads out of the plane of
the frame ordinary moment resisting frames (OMRF) are
designated for areas with historically low seismic ground
acceleration.
SMRF (SPECIAL MOMENTREISTINGFRAMES):Reinforced
concrete special moment frames are used as part of seismic
force-resisting systems in buildings. Beams, columns, and
beam-column joints inmomentframesareproportioned and
detailed to resist flexural, axial, and shearing actions that
result as a building sways through multiple displacement
cycles during earthquake. Special proportioning and
detailing requirements result in a frame capable of resisting
strong earthquake shaking.
2. LITERATURE REVIEW
Sang Whan Han,et al (2005)[1]-Worked on Seismic
behaviors of columns in ordinary and intermediate moment
resisting concrete frames. In this paper 3 storey office
building were designed, IMRF and OMRF building were
assumed to be located in seismic zone 1,study attempted to
investigate the effectofdifferent reinforcementanddifferent
member sizes. Strength of OMRCF and IMRCF columns
exceeded ACI-318-02. Change due to lap splices was
noticeable in OMRCF.
Nabin Raj .C,et al (2012)[2]-Here steel bracings are
incorporated with RC frames. .6,12and 18storey building is
analyzed. MathCAD software used to get Eigen values and
Eigen vectors. Bracings in bare frame increased stiffness,
hence braced frameperform better.bareframesteel demand
is reduced to 2.58% from 4%and reduction continues in 12
and 6 storey.
Dr.Valsson Varghese,et al (2013)[3]-Hereforseismicloads
the comparisons are made of OMRCF & SMRCF, criteria will
depend on materials strength and ductility of structural
compounds. Ductile detailing structure is safetodesignthan
non-ductile detailing structure.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 6453
G.V.Sivaprasad,et al (2013)[4]-In this paper 5th,10th ,15th
,20th storied structures were analyzed and modeled using
staad.pro zone2 seismic zone considered, study involves
design of alternate shear wall in a structural frame and its
orientation. studied in Vishakhapatnam region with &
without shear wall. Conclusion: With shear wall SMRFtough
gives more safety. SMRF is little bit cost effective. Min% on
spacing of lateral ties at beam column joint is different from
OMRF & SMRF .Lateral deflections are less.
Mohammad H. Jinya ,et al (2014)[5]-In this case central
opening are provided in periphery wall with different
percentage i.e. 15% and 25% and brick compressive
strength are used as per IS : 1905-1987 i.e. 5.0 and 12.5
N/mm2 and Brick Masonry strengthis0.50and1.06N/mm2
.Equivalent diagonal strut (EDS) method is used to find out
width. Diagonal strut will change theseismic performanceof
RC building. Axial force in column increased, story
displacement and story drift are decreased andbaseshearis
increase with higher stiffness.
Keerthy Peethambaram,et al (2015)[6]-In this paper we
study nonlinear push over analysis was used to evaluate the
seismic performanceofthreebuildingswith4differentplans
having same area and height and results of effect of plan
aspect ratio on seismic response of building have been
presented in terms of displacement, base shear. Conclusion:
Plan dimensions have been significant effect on seismic
behavior of building. Base shear increases with increase in
Pan expect ratio.iii.40 % to 108 % of increased base shear.
Performance point of building frame in terms of base shear
and displacement investigate.
Sheovinay Rai,et al (2015)[7]-In this study different
structural configurations such as SMRF & OMRF are studied
with different software’s such as E Tabs and staad.pro G+6
RCC Regular building are analyzed and seismic zone III&IV
are taken in consideration. Averagedisplacementandstorey
drift in SMRF than OMRF. .
Mohammad Musaib,et al (2016)[8]-Here comparing two
code results feature is 1893 2002 part 1 and IBC 2003
American using staad Pro. Structure is analyzed. Base shear
value for MRF IS 1893-2002 part 1 is higher than IBC. Storey
drift is not satisfying criteria for drip for IES 1893 IBC
satisfies Criterion in first case.
Nishant Kumar ,et al (2017)[9]- In this paper axial forces,
base shear, bending moment, storey drift, ductility were
modeled and analyzed, here G+8 building was analyzed.
Conclusion: Storey sway increases with increase in no of
stories. Base shear found less in SMRF than OMRF. Required
area of steel was less in SMRF than OMRF.
3. SUMMARY
From above literature it can be stated that study is made on
various framing systems .different zones have been studied
and for this, comparison of OMRF and SMRF in zones 3,4,5
their comparison will provide a detailed structural study to
ensure stability of structure and use of lightweight material
can also be done in zone v.
4. CONCLUSION
Previous literature shows that the study has been made for
comparison of OMRF and SMRF in different earthquake
zones, hence comparative study of OMRF and SMRF in Zone
3,4,5 is to be studied and also (light weight infill material) is
considered to study the seismic performance of SMRF
structure for critical zone V.
REFERENCES
[1] Sang Whan Han And N.Y.Jee “Seismic behaviors of
columns in ordinary and intermediatemoment resisting
concrete frames”,Science Direct;EngineeringStructures
27(2005)951–962,doi:10.1016/j.engstruct.2005.01.012
[2] Nabin Raj .C And S.Elavenil “Analytical study on seismic
performance of hybrid (DUAL) structural system
subjected to earthquake” International Journal of
Modern Engineering Research(IJMER),Vol.2,Issue.4,Jul-
Aug.2012, pp-2358-2363,ISSN:2249-6645
[3] Dr.Valsson Varghese And YogeshRamakantBorkar“
Comparative study of SMRF building over OMRF
building with seismic and wind effect” International
Journal of Engineering Research and Applications
(IJERA),ISSN:2248-9622, Vol.3,Issue 3, May-Jun 2013
pp.1501-1503
[4] G.V.Sivaprasad And S.Adiseshu “A comparative study of
OMRF&SMRF structural system for tall and high rise
buildings subjected to seismic loads” International
Journal of Research in Engineering and
Technology(IJRET),Vol:02,Issue:09,Sep-2013,
eISSN;2319-1163
[5] Mohammad H. Jinya And V. R. Patel “Analysis of RC
frame with and without masonry infill wall with
different stiffness with outer central opening”
International Journal of Research in Engineering and
Technology(IJRET),Vol:03,Issue:06,Jun-2014,
eISSN;2319-1163
[6] Keerthy Peethambaram And Vivek Philip “Seismic
performance assessment of multistoried RC moment
resisting frames based on plan aspect ratio bypushover
analysis”(IJIRST) International Journal for Innovative
Research in Science & Technology,Vol.2,Issue.05,Oct-
2015,ISSN:2349-6010
[7] Sheovinay Rai,Rajiv Banerjee And Tabish Izhar.(8)(
2015 Dec):-“ A comparative study of OMRF&SMRF
structural system using different software’s”
International Journal of Innovative Research in
Advanced Engineering(IJIRAE),Issue 12,Vol 2(Dec)
2015,ISSN:2349-2763
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 6454
[8] Mohammad Musaib And Prof.Mohammad Moiz“
Comparative study of Indian code and international
Building Code(IBC) in seismic assessment” (IJSRD)
International Journal for Scientific Research &
Development, Vol.4, Issue 08,2016,ISSN:2321-0613
[9] Nishant Kumar And Dr.V.Pandey“Comparison and
optimization of 8 storey’s ordinary moment resistant
frame and special moment resisting frame”
International Journal for Research in Applied Science &
Engineering Technology(IJRASET),Vol 5, Issue x,Oct-
2017, ISSN:2321-9653

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IRJET- A Study of Various Structural Framing Systems Subjected to Seismic Loads

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 6452 A STUDY OF VARIOUS STRUCTURAL FRAMING SYSTEMS SUBJECTED TO SEISMIC LOADS Mr. Vikas Devidas Borse1, Dr.D.P. Joshi2 1 ME Student, Civil Engg. Dept.Late.G.N.Sapkal College of Engg., Nashik 2Head of Department, Civil Engg. Dept., Late. G.N. Sapkal College of Engg., Nashik ---------------------------------------------------------------------***---------------------------------------------------------------------- Abstract - Moment frames have been widely used for seismic resisting systems due totheir superior deformationandenergy dissipation capacities. Past experiencesrevealedthatmajority failures of the structure at due to faulty design hence proper analysis and design is compulsory to safeguard the loss of life and property. The objective of the study is to investigate the seismic behavior of the structure having various structural configurations like (OMRF) ordinary moment resisting frame and (SMRF) special moment resisting frame. a comparative study of all these types of frames will shed light on the best suited frame to the adopted for seismic loads in Indian scenario. Modeling & Analysis of (G+10) building is done in zone III, IV, V. As results obtained best suited type of framing system will be used to study and analysis using brick masonry and siporex in zone V . Key Words: lateral loads, SMRF, OMRF, brick masonry, Siporex . 1. INTRODUCTION : An earthquake is a natural phenomenon associated with violent shaking of the ground. They are vibrations of the earth’s surface caused by sudden movements. Since earthquake forces are random in nature and unpredictable, the engineering tools needs to be sharpened for analyzing structures under the actiontheseforces.Abuilding’sframing works in conjunction with its foundationtoprovidestrength and stability for the structure; it is also another critical component of the load path. Properly designed and constructed building framing is important in all locations. however, in earthquake prone areas ensuring proper building framing is critical.Framingmusttransferall gravity, uplift, and lateral loads to the foundation. 1.1 R.C. Moment frames: A fundamental structure in engineering the frame is a two- dimensional series of interconnected members joined together. The members are not necessarily straightandmay be free jointed anywhere along their length. In real structures, moment frames in two orthogonal directions are often connected together to form a three-dimensional frame of columns and beams. Moment frames also can be drawn on to provide resistance to horizontal loads out of the plane of the frame. OMRF(Ordinary Moment Resisting Frame): Theordinary moment resisting frames are designed to carry vertical and horizontal loads in the same plane but may also bedrawnon to provide resistance to horizontal loads out of the plane of the frame ordinary moment resisting frames (OMRF) are designated for areas with historically low seismic ground acceleration. SMRF (SPECIAL MOMENTREISTINGFRAMES):Reinforced concrete special moment frames are used as part of seismic force-resisting systems in buildings. Beams, columns, and beam-column joints inmomentframesareproportioned and detailed to resist flexural, axial, and shearing actions that result as a building sways through multiple displacement cycles during earthquake. Special proportioning and detailing requirements result in a frame capable of resisting strong earthquake shaking. 2. LITERATURE REVIEW Sang Whan Han,et al (2005)[1]-Worked on Seismic behaviors of columns in ordinary and intermediate moment resisting concrete frames. In this paper 3 storey office building were designed, IMRF and OMRF building were assumed to be located in seismic zone 1,study attempted to investigate the effectofdifferent reinforcementanddifferent member sizes. Strength of OMRCF and IMRCF columns exceeded ACI-318-02. Change due to lap splices was noticeable in OMRCF. Nabin Raj .C,et al (2012)[2]-Here steel bracings are incorporated with RC frames. .6,12and 18storey building is analyzed. MathCAD software used to get Eigen values and Eigen vectors. Bracings in bare frame increased stiffness, hence braced frameperform better.bareframesteel demand is reduced to 2.58% from 4%and reduction continues in 12 and 6 storey. Dr.Valsson Varghese,et al (2013)[3]-Hereforseismicloads the comparisons are made of OMRCF & SMRCF, criteria will depend on materials strength and ductility of structural compounds. Ductile detailing structure is safetodesignthan non-ductile detailing structure.
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 6453 G.V.Sivaprasad,et al (2013)[4]-In this paper 5th,10th ,15th ,20th storied structures were analyzed and modeled using staad.pro zone2 seismic zone considered, study involves design of alternate shear wall in a structural frame and its orientation. studied in Vishakhapatnam region with & without shear wall. Conclusion: With shear wall SMRFtough gives more safety. SMRF is little bit cost effective. Min% on spacing of lateral ties at beam column joint is different from OMRF & SMRF .Lateral deflections are less. Mohammad H. Jinya ,et al (2014)[5]-In this case central opening are provided in periphery wall with different percentage i.e. 15% and 25% and brick compressive strength are used as per IS : 1905-1987 i.e. 5.0 and 12.5 N/mm2 and Brick Masonry strengthis0.50and1.06N/mm2 .Equivalent diagonal strut (EDS) method is used to find out width. Diagonal strut will change theseismic performanceof RC building. Axial force in column increased, story displacement and story drift are decreased andbaseshearis increase with higher stiffness. Keerthy Peethambaram,et al (2015)[6]-In this paper we study nonlinear push over analysis was used to evaluate the seismic performanceofthreebuildingswith4differentplans having same area and height and results of effect of plan aspect ratio on seismic response of building have been presented in terms of displacement, base shear. Conclusion: Plan dimensions have been significant effect on seismic behavior of building. Base shear increases with increase in Pan expect ratio.iii.40 % to 108 % of increased base shear. Performance point of building frame in terms of base shear and displacement investigate. Sheovinay Rai,et al (2015)[7]-In this study different structural configurations such as SMRF & OMRF are studied with different software’s such as E Tabs and staad.pro G+6 RCC Regular building are analyzed and seismic zone III&IV are taken in consideration. Averagedisplacementandstorey drift in SMRF than OMRF. . Mohammad Musaib,et al (2016)[8]-Here comparing two code results feature is 1893 2002 part 1 and IBC 2003 American using staad Pro. Structure is analyzed. Base shear value for MRF IS 1893-2002 part 1 is higher than IBC. Storey drift is not satisfying criteria for drip for IES 1893 IBC satisfies Criterion in first case. Nishant Kumar ,et al (2017)[9]- In this paper axial forces, base shear, bending moment, storey drift, ductility were modeled and analyzed, here G+8 building was analyzed. Conclusion: Storey sway increases with increase in no of stories. Base shear found less in SMRF than OMRF. Required area of steel was less in SMRF than OMRF. 3. SUMMARY From above literature it can be stated that study is made on various framing systems .different zones have been studied and for this, comparison of OMRF and SMRF in zones 3,4,5 their comparison will provide a detailed structural study to ensure stability of structure and use of lightweight material can also be done in zone v. 4. CONCLUSION Previous literature shows that the study has been made for comparison of OMRF and SMRF in different earthquake zones, hence comparative study of OMRF and SMRF in Zone 3,4,5 is to be studied and also (light weight infill material) is considered to study the seismic performance of SMRF structure for critical zone V. REFERENCES [1] Sang Whan Han And N.Y.Jee “Seismic behaviors of columns in ordinary and intermediatemoment resisting concrete frames”,Science Direct;EngineeringStructures 27(2005)951–962,doi:10.1016/j.engstruct.2005.01.012 [2] Nabin Raj .C And S.Elavenil “Analytical study on seismic performance of hybrid (DUAL) structural system subjected to earthquake” International Journal of Modern Engineering Research(IJMER),Vol.2,Issue.4,Jul- Aug.2012, pp-2358-2363,ISSN:2249-6645 [3] Dr.Valsson Varghese And YogeshRamakantBorkar“ Comparative study of SMRF building over OMRF building with seismic and wind effect” International Journal of Engineering Research and Applications (IJERA),ISSN:2248-9622, Vol.3,Issue 3, May-Jun 2013 pp.1501-1503 [4] G.V.Sivaprasad And S.Adiseshu “A comparative study of OMRF&SMRF structural system for tall and high rise buildings subjected to seismic loads” International Journal of Research in Engineering and Technology(IJRET),Vol:02,Issue:09,Sep-2013, eISSN;2319-1163 [5] Mohammad H. Jinya And V. R. Patel “Analysis of RC frame with and without masonry infill wall with different stiffness with outer central opening” International Journal of Research in Engineering and Technology(IJRET),Vol:03,Issue:06,Jun-2014, eISSN;2319-1163 [6] Keerthy Peethambaram And Vivek Philip “Seismic performance assessment of multistoried RC moment resisting frames based on plan aspect ratio bypushover analysis”(IJIRST) International Journal for Innovative Research in Science & Technology,Vol.2,Issue.05,Oct- 2015,ISSN:2349-6010 [7] Sheovinay Rai,Rajiv Banerjee And Tabish Izhar.(8)( 2015 Dec):-“ A comparative study of OMRF&SMRF structural system using different software’s” International Journal of Innovative Research in Advanced Engineering(IJIRAE),Issue 12,Vol 2(Dec) 2015,ISSN:2349-2763
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 6454 [8] Mohammad Musaib And Prof.Mohammad Moiz“ Comparative study of Indian code and international Building Code(IBC) in seismic assessment” (IJSRD) International Journal for Scientific Research & Development, Vol.4, Issue 08,2016,ISSN:2321-0613 [9] Nishant Kumar And Dr.V.Pandey“Comparison and optimization of 8 storey’s ordinary moment resistant frame and special moment resisting frame” International Journal for Research in Applied Science & Engineering Technology(IJRASET),Vol 5, Issue x,Oct- 2017, ISSN:2321-9653