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Optimum Location of Soft Storey in Multi-Storeyed Building

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The present study is focus on 11-storey reinforced concrete buildings to optimize the location of soft storey under seismic zone-v. The plan of building 40m x 40m is considered. In X- direction and y-direction number of bays is 8 and each bay width is 5m. To observe the non linear behaviour of multi-storeyed building will be studied for various position of soft storey by increasing the storey height. Soft storey is provided at 1st storey, 5th storey and 10th storey. In this first three models is analyzed by increasing height of storey as 4.5m and other three models is analyzed by increasing height of storey as 5.1m and remaining storey height is kept as 3m are compare with regular building by using ETABS software. Comparison is made for the storey displacement, storey stiffness, base shear and formation of hinge patterns. The result remarks the conclusion that base shear carrying capacity of the structure increases as the soft storey is placed at higher levels and is least when the soft storey is at the ground. The seismic performance of structures is very sensitive to stiffness ratio. The lower the stiffness ratio of soft storey displacement of that structure is high.
Blue Eyes Intelligence Engineering and Sciences Engineering and Sciences Publication - BEIESP
Title: Optimum Location of Soft Storey in Multi-Storeyed Building
Description:
The present study is focus on 11-storey reinforced concrete buildings to optimize the location of soft storey under seismic zone-v.
The plan of building 40m x 40m is considered.
In X- direction and y-direction number of bays is 8 and each bay width is 5m.
To observe the non linear behaviour of multi-storeyed building will be studied for various position of soft storey by increasing the storey height.
Soft storey is provided at 1st storey, 5th storey and 10th storey.
In this first three models is analyzed by increasing height of storey as 4.
5m and other three models is analyzed by increasing height of storey as 5.
1m and remaining storey height is kept as 3m are compare with regular building by using ETABS software.
Comparison is made for the storey displacement, storey stiffness, base shear and formation of hinge patterns.
The result remarks the conclusion that base shear carrying capacity of the structure increases as the soft storey is placed at higher levels and is least when the soft storey is at the ground.
The seismic performance of structures is very sensitive to stiffness ratio.
The lower the stiffness ratio of soft storey displacement of that structure is high.

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