Analysis of a Tall Structure Considering Lateral Load Resisting Members

Authors(2) :-Md Amir Iqbal, Afzal Khan

The advancement of high strength structural materials just as the presentation of overwhelming improvement techniques gave a lift in the improvement of tall designs. As the stature of the design builds, they become dynamically defenseless against wind load and seismic burden. The resistance of tall designs to parallel burdens is the essential determinant in the definition of new fundamental structural systems that create by the consistent undertakings of structural architects to continue expanding the structure tallness while keeping the diversion inside commendable purposes of control and restricting the proportion of materials. In this proposed work a scientific examination will be consider on such frameworks like outrigger framework with center shear divider and hex lattice frameworks, in order to decide their structural proficiency in moving the horizontal loads securely to the ground. A correlation of outrigger framework with center shear divider and a hex network framework was made on a 15-story building strengthened concrete structure by utilizing standard bundle ETABS by looking at changed boundaries, for example, Maximum Story Displacement, Maximum Story Drift, Forces, Moment and Story Shear.

Authors and Affiliations

Md Amir Iqbal
Student, Department of Civil Engineering, M.I.T.S, Bhopal, Madhya Pradesh, India
Afzal Khan
Professor, Department of Civil Engineering, M.I.T.S, Bhopal, Madhya Pradesh, India

Structural Analysis, Forces, Deflection, Lateral Forces, Etabs

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Publication Details

Published in : Volume 6 | Issue 1 | January-February 2022
Date of Publication : 2022-02-28
License:  This work is licensed under a Creative Commons Attribution 4.0 International License.
Page(s) : 99-109
Manuscript Number : IJSRCE226111
Publisher : Technoscience Academy

ISSN : 2456-6667

Cite This Article :

Md Amir Iqbal, Afzal Khan, "Analysis of a Tall Structure Considering Lateral Load Resisting Members", International Journal of Scientific Research in Civil Engineering (IJSRCE), ISSN : 2456-6667, Volume 6, Issue 1, pp.99-109, January-February.2022
URL : https://ijsrce.com/IJSRCE226111

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