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Practical ETABS Training of G+9 Building with RSA Analysis
Rating: 4.2 out of 5(4 ratings)
53 students

Practical ETABS Training of G+9 Building with RSA Analysis

Analysis & Design of G+9 Residential building with Static & Dynamic Response Spectrum Analysis method in Practical way.
Created byStructural Guru
Last updated 9/2022
English
English [Auto],

What you'll learn

  • Introduction to Etabs software and its special features.
  • How to use architectural drawing to calculate center line of building.
  • Calculation of center line distances for grid calculation input and center line drawing preparation for Etabs
  • Creating Grids and Levels as initial input from center line drawing prepared
  • Defining member, element and material properties
  • Modelling beams and columns of G+9 Building.
  • Modelling slabs, shear walls, stair case room in G+9 building.
  • Defining various type of loads for G+9 building
  • Assigning properties and loads on G+9 building structure.
  • Defining Loading combinations for analysis of G+9 building.
  • Defining RSA functions,Manual calculation of sa/g acceleration values and load parameters for G+9 building.
  • Creating Dynamic modal cases,Checking the model for error and trouble shooting.
  • Performing Static & Response Spectrum Analysis and reading the results of analysis.
  • Comparing the both analysis results and correcting scale factor for base shears and other design parameters.
  • Correcting story deflections, drifts, and story torsional effects in modal by shear wall or bracing insertion.
  • Performing structural design with static & dynamic both cases.
  • Understanding the software output design results and how to use in detailing.
  • Exporting etabs file to RCDC advanced design & detailing purpose.
  • Report creation

Course content

1 section34 lectures28h 19m total length
  • Introduction1:08:00

    Introduction of Etabs Software and its uses.

  • Modelling Of G+9 Residential Building-11:08:00

    Model the g+9 residential building in etabs using architectural plan and elevation, grids and story heights; apply loads, run analysis, perform design, and generate detailing via rcdc.

  • Modelling Of G+9 Residential Building-253:27

    Count grids and stories in ETABS for a g+9 residential building. Navigate plan, elevation, and 3D views using global and local axes.

  • Modelling Of G+9 Residential Building-343:38
  • Modelling Of G+9 Residential Building-443:17
  • Modelling Of G+9 Residential Building-514:27
  • Modelling Of G+9 Residential Building-658:22
  • Modelling Of G+9 Residential Building-751:07
  • Modelling Of G+9 Residential Building-81:04:37
  • Frame Design -127:12
  • Frame Design -249:59

    Model a dog-leg staircase in ETABS for a G+9 building, including bottom and middle landing beams, flight slabs, cantilevers, and lift considerations, with slab design strips and load preparation.

  • Frame Design -31:02:07

    Explore frame design in ETABS for a G+9 RSA building, including lift-room shear walls and dummy non-property walls to resist wind. Learn grids, define, draw, and assign loads.

  • Frame Design -41:03:26
  • Frame Design -555:47
  • Frame Design -643:38
  • Frame Design -71:08:37
  • Frame Design -841:27

    Master frame design for a G+9 building by detailing headroom, water tank walls, slabs, and loads such as water, wall, plastering, equipment, and lift cabin.

  • Frame Design -91:01:16
  • Frame Design -1053:54

    Identify and resolve frame design warnings in Etabs by using the model explorer to locate overlapping beams and slabs, delete or adjust items, and run the analysis.

  • Frame Design -1148:53
  • Frame Design -1247:48
  • Frame Design -131:18:42

    Learn practical frame design in ETABS for a G+9 building, diagnose shear failures in beams, iteratively adjust beam and column sizes, and verify that all members pass design checks.

  • Slab Design21:33
  • Shearwall Design42:54
  • SMRF Frame Design Concepts30:01

    Learn to convert an Etabs g+9 frame from mrf to smrf by setting zone five, applying a five for the response reduction factor, and enabling ductile design.

  • Exporting Etabs results to RCDC-135:54
  • Exporting Etabs results to RCDC-250:25
  • RESPONSE SPECTRUM ANALYSIS-134:38

    Develop proficiency in response spectrum analysis (RSA) for a G+9 building in ETABS, contrasting RSA with time history and pushover analyses, and exploring deflection, modes, and torsion across multiple modes.

  • RESPONSE SPECTRUM ANALYSIS-251:52

    Learn how to perform response spectrum analysis in Etabs after completing static analysis and design, define RSA parameters, run RSA, and redesign with RC detailing.

  • RESPONSE SPECTRUM ANALYSIS-355:19

    Learn to set up ET ABS response spectrum analysis for a G+9 building, defining RSA functions for x, y, z, and inputting response vectors and soil types, with diaphragms.

  • RESPONSE SPECTRUM ANALYSIS-442:56

    Explore response spectrum analysis in ETABS for a G+9 building. Configure modal and region cases, RSX/RSY loads, and mass participation targets, then tune scale factors.

  • RESPONSE SPECTRUM ANALYSIS-557:04
  • RESPONSE SPECTRUM ANALYSIS-658:11
  • RESPONSE SPECTRUM ANALYSIS-751:08

    Learn to perform response spectrum analysis for a g+9 building, identify torsional irregularity with delta max/min ratios, and mitigate torsion by placing RC shear walls at the corners.

Requirements

  • No prior Etabs knowledge or experience required to join this course. From scratch to advanced level training included.
  • Even students or fresh graduates can learn easily.
  • Windows system with 4 GB RAM will be good enough.

Description

GURURAYAR ASSOCIATES

(ENGINEERING CONSULTANCY & TRAINING'S)

ISO 9001-2015 CERTIFIES COMPANY


We are GURURAYAR ASSOCIATES MSME registered and ISO 9001-2015 certified single ownership company established in 2016 with 25 years of Industrial, commercial and residential design/consultancy experience in the field, we decided to alter direction. Now, we share our passion by helping others.

OUR MISSION:

To build an independent professional structural design engineers/consultants in all over India and abroad as well. We train people with our practical design methodology which is being currently practiced in engineering consultancy. We are committed to excel the quality and economic structural design services to our clients as well. Our ramp up process is designed to empower your team. Business mentors are key—that’s why when it comes to client selection, we’re choosy. We want to give each of you the right time and guidance you deserve.


OUR VISION :

"To give real service, you must add something which cannot be bought or measured by MONEY"

- Sir M.Vishveshwarayya.


OUR MOTTO: HELP EACH OTHER! GROW TOGETHER!!

TRANSFORMING MILLIONS OF CIVIL ENGINEERS FROM ALL OVER THE GLOBE IN TO DESIGNING AND CONSULTANTS FIELD!.


COURSE DESCRIPTION:

Detailed Syllabus For Static G+9 Residential Building Modelling, Analysis & Design:-

 Introduction  Structure  Types of structures  Basic definitions  Idealization of structures  About ETABS  Features  hardware requirements  ETABS screen organization  GUI overview  Unit systems  Structure geometry  Coordinate systems (Global and Local)  The Structural Model  Units  Objects and Elements  Groups  Coordinate Systems and Grids  Properties  Load Cases  Functions  Analysis Cases  Combinations  Design settings  Output and Display Definitions  The Graphical User Interface  The ETABS Screen  Main Window  Menu Bar  Toolbars  Display Windows  Status Line  Using the Mouse  Viewing Options  2-D and 3-D Views  Perspective  Pan, Zoom, and 3-D Rotate  Limits  Element View Options  Other Options  Refreshing the Display Window  Basic Operations  File Operations  Defining Named Entities  Drawing Objects  Snap Tools  Drawing Controls  Selecting  Selecting Graphically  Selecting by Feature  Editing  Assigning  Undo arid Redo  Analyzing  Displaying  Graphical Displays  Model Definition  Analysis Results  Function Plots  Tabular Displays  Designing  Locking and Unlocking  Entering Numerical Data Setting Options  Define Grid System  Selecting template  Entering Grid System Data  Adding Grid Lines In X, Y and Z Directions  Define Material Properties Specify Design Parameters Material Property Data  Define Section Properties  Add Frame Section Property  Specify Frame Section Properties for Beam  Add New Frame Section Properties for Column  Specify Area Section Properties for Slab  Draw  Drawing beams with different methods  Drawing Colum as with different orientation  Drawing slabs  Assigning Properties  Assigning Properties to Frame Elements  Assigning Properties to Area Elements  Assign Restraints  Assigning Fixed, Pinned, Roller Support at Joints  Define and Assign Load Cases  Adding and Assigning Dead Load Case  Adding and Assigning Live Load Case  Add rig and Assigning Wind Load Case  Adding and Assigning Seismic Load Case  Defining Load Combinations  Adding different Load Combinations for dead Load, Live Load, Wind Load and Seismic Load  View Analysis Results in Tabular Form  View Analysis Result Diagrams of Frame Elements  View Analysis Result Contour in Slab Panels  Concrete Design  Concrete Frame Design and View Design Results  Steel Design  Steel Frame Design and View Design Results  View Design Parameters  View Load Combination for Concrete Frame Design  View Reinforcement for Frame Design  View Percentage Steel for Frame Design  Steel Frame Design and View Design Results  View Load Combination for Steel Frame Design.


Detailed Syllabus For Response Spectrum Analysis & Design of G+9 Residential Building:-

1. Defining RSA functions. 2. Manual calculation of sa/g acceleration values 3. Creating Dynamic loads. 4. Creating Dynamic modal cases. 5. Perform RSA Analysis & Scale factor correction of static & Dynamic base reactions. 6. Correcting story deflections, drifts, and story torsional effects in modal by shear wall or bracings insertion. 7. Performing structural design



Who this course is for:

  • Entrepreneurs
  • Site Engineers
  • Design Engineers
  • Engineering Students
  • Architects
  • Builders/Promoters
  • Construction Engineers
  • Quantity Surveyors
  • QA/QC Engineers
  • Project Managers
  • Draftsmen
  • Project Engineers
  • Planning Engineers