Design of Earthquake Resistant Concrete Reinforced Multi Storied Residential Apartment Building

Project Date:2019 August

Project Location : Sanepa, Kathmandu

Project Title : Design of Concrete Reinforced Multi Storied Residential Apartment Building

Project Type : Final Year Project

Verified by : Professor Dr. Siddharth Shankhar and Professor Hari Darshan Shrestha, Lecturer Arun Paudel

This Project Mainly Focuses on Design of Earthquake Resistant Multi storied Concrete Reinforced Residential Building which has 7+ storey. The project Covers Following Procedures:
1) Collection of Architectural Drawings.
2) Fixing Columns’ Position Using Various Types of Grids Over Architectural Drawing.
3)Drawing Beam-Column Layout Plan.
4)Load Calculation.
5)Preliminary Structural Design.
6)Estimation of Building Construction.
7)Modeling of Structural Elements in Computer.
8)Definition and Application of Loads.
9)Structural Analysis of Structure.
10) Final Design of Structure.
11) Manual Verification of Final Design.
12)Preparation of Final Structural Drawing.

Final Report Contains Following Contents

Acknowledgement
Abstract
Acronyms
1 Introduction
1.1 Background 1
1.2 Title and theme of the project work 2
1.3 Objective of the project 3
1.4 Building description 3
2 Methodology
2.1 Planning of the building
2.2 Load assessment and preliminary design
2.2.1 Load assessment

2.2.2 Preliminary Design
2.3 Idealization and analysis of structure
2.3.1 Idealization of structure
2.3.1.a Idealization of supports
2.3.1.b Idealization of load
2.3.1.c Idealization of joint constraint
2.3.2 Modeling and analysis of structure
2.3.2.a Salient feature of SAP2000 V18
2.3.2.b Input and output
2.4 Design and detailing
2.4.1 Design philosophy
2.4.1.a Limit state method of design for RCC
2.4.2 Detailing principal for RC structure

2.4.2.a Ductile detailing of RC structure
2.4.3 Codal references
2.5 Drawings
2.6 Organization and preparation of project work
3 Structural planning of the building
3.1 Structural planning
3.1.1 Structural system
3.1.2 Planning of beam-column frame
4 Load assessment and preliminary design
4.1 Load assessment 4.1.1 Gravity load assessment of building
4.1.2 Load cases and combination
4.1.2.1 Load cases
4.1.2.2 Identification of loads
4.1.2.3 Load combination
4.1.2.4 Assessment of vertical loading
4.2 Seismic load calculation
4.3 Preliminary Design
5 Idealization of structure
A. Idealization of support
B. Idealization of slab

C. Idealization of staircase
D. Idealization of beams and columns
E. Idealization of structural system
6 Structural analysis
6.1 Analysis of structure
6.2 Storey drift computation from SAP2000 analysis
7 Design of structural member
7.1 Design of slab
7.2 Design of beam
7.3 Design of column
7.4 Design of staircase
7.5 Design of lift wall
7.6 Design of basement wall
7.7 Design of footing