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  1. Home/
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  3. Project 2_Design & Analysis of a Hostel building at Guwahati, Assam

Project 2_Design & Analysis of a Hostel building at Guwahati, Assam

DESIGN AND ANALYSIS OF A HOSTEL BUILDING AT GUWAHATI ASSAM   Aim: To carryout modelling, analysis, design, and preparation of construction drawings of a G+3 RCC building situated in Guwahati Assam.  Introduction: ETABS is an engineering software product that caters to multi strorey building analysis and…

  • BIM
  • CFD
  • CSS
  • DEM
  • DESIGN
  • Praveen Ps

    updated on 30 Jul 2022

DESIGN AND ANALYSIS OF A HOSTEL BUILDING AT GUWAHATI ASSAM

 

Aim:

To carryout modelling, analysis, design, and preparation of construction drawings of a G+3 RCC building situated in Guwahati Assam. 

Introduction:

  • ETABS is an engineering software product that caters to multi strorey building analysis and design.
  • SAFE represents the state of art in three dimensional finfite element technologies for structural engineering.
  • Here, in this project we are carrying out the design analysis of a G+3 building situated in Guwahati, Assam using ETABS software and then foundation design is carried out using SAFE software.

Procedure:

  • Initially open the Etabs software and then provide the grid and story information.

 

  • Next we need to define the material property.i.e concrete(M25) and rebar(Fe415 and Fe500).

 

  • Now, define section properties. i.e size of beams(400x500), columns(450x650) and thickness of slabs(150mm thickness) etc. Define --> section properties --> Slab properties. Also, define another slab for staircase as one way slab.

 

  • After defining the materials next we need to place the components. First we need to place the frame elements and then slab elements.

 

  • After placing the elements we need to define the load cases. Define --> load cases --> Provide DL, LL, Eqx, Eqx+, Eqx-, Eqy, Eqy+, Eqy-.

 

  • Now, we need to assign these loads. 
    • For live load take the value as 2kN/m2m2 with reference to IS875:part 2.
    • Take Brickwall load as 3.5kN/m
    • Floor finishes as 1.5kN/m2m2

 

  • Next assign the joints.

 

  • Also define the mass source and response spectrum function.

 

  • Then define the load combinations.

  • After that assign diaphragm to the shell.

  •  After that, we can carry out the analysis and design.

 

  • After that we need to check for story drift for RSx and RSy whether it is within the limits or not as per IS1893.

  • Hence, both the story drifts are within the codal limits. 
  • Next we need to carry out the concrete frame design and then extract the design results for beams and columns. Both flexural and shear rebar.

  • Beam- longitudinal reinforcement

  • Beam-Shear reinforcement

 

- The design result shows that 3 beams are failing in shear, hence inorder make it safe we need to increase the size of the beam. For 2 beams size have been changed to 450x650mm and for other beams size is kept as 450x750mm.

  • Beam - Longitudinal reinforcement

  • Beam - shear reinforcement

  • Column - Longitudinal reinforcement

 

  • Column - Shear reinforcement

  • Hence the design is completed. Now, we need to export this Base reactions and load conditions in f2k format for footing design using SAFE software.

  • Now, import the safe f2k file into the SAFE software. Hence all the reactions and loads have been imported to the software.

  • Define the materials for concrete and rebars.

  • Define slab properties.

  • After that using draw point option drop the points for footing for each column.

  • Now, go to draw option and draft points on footing for the piles to be developed.

  • Next we need to provide pile, using the above used option and material property as pile500.

  • Then place, the column along grid intersections.

  • Define beam for tie beams.

 

  • Now, we have to assign springs at these locations where piles are placed.
  • For this we need to calculate the spring constant. 
    • Spring constant= AE/L=196346.5⋅2500010000196346.5⋅2500010000=490873N/mm.
    • Then assign this spring constant.

  • Now, define the load combination for serviceability limit and ultimate limit.

  • Next, we need to check the design result.
    • Displacement values are within the limit, hence safe.

    • Reaction check :
    • Punching shear values are also within the range.
  • Now, we need to design the strip.

  • Now, again carryout the design.
    • For strip layer A

  • For strip layer B

  •  Hence, the design of footing is completed.
  • The reinforcement drawings associated with the design is given below:

  • Reinforcement details of beam:

  • Reinforcement details of column:

Result:

Modelling, analysis and design of G+3 building has been carried out successfully  using ETABS software and the foundation design(Pile cap and pile) has also been carried out using SAFE software.

Reinforcement details associated with modelling has also been included.

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