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    Practical StaadPro connect G+9 bldg & steel warehouse design

    Posted By: lucky_aut
    Practical StaadPro connect G+9 bldg & steel warehouse design

    Practical StaadPro connect G+9 bldg & steel warehouse design
    Duration: 26h 27m | .MP4 1280x720, 30 fps(r) | AAC, 44100 Hz, 2ch | 14.5 GB
    Genre: eLearning | Language: English

    Practical Analysis & Design of G+9 Bldg with Static & Dynamic RSA method + Steel Structure Warehouse with 5ton crane.

    What you'll learn:
    Introduction to StaadPro Connect 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 staadpro
    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.
    Performing Static & Response Spectrum Analysis and reading the results of analysis.
    Performing structural design with static & dynamic both cases.
    Understanding the software output design results and how to use in detailing.

    Requirements:
    No prior Staadpro 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:
    StructuralGuru-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:
    Following topics covered as Syllabus For Static G+9 Residential Building Modelling, Analysis & Design:-

    1. Introduction Structure
    2. Types of structures
    3. Basic definitions Idealization of structures
    4. About Staadpro Features hardware requirements
    5. Staadpro screen organization GUI overview
    6. Unit systems Structure geometry
    7. Coordinate systems (Global and Local)
    8. The Structural Model
    9. Units
    10. Objects and Elements
    11. Groups
    12. Coordinate
    13. Systems and Grids
    14. Properties
    15. Load Cases
    16. Functions
    17. Analysis Cases
    18. Combinations
    19. Design settings
    20. Output and Display Definitions
    21. The Graphical User Interface
    22. The Staadpro Screen Main Window
    23. Menu Bar
    24. Toolbars
    25. Display Windows
    26. Status Line
    27. Using the Mouse
    28. Viewing Options 2-D and 3-D Views
    29. Perspective Pan, Zoom, and 3-D Rotate Limits
    30. Element View Options
    31. Other Options
    32. Refreshing the Display Window
    33. Basic Operations
    34. File Operations
    35. Defining Named Entities Drawing
    36. Objects
    37. Snap Tools
    38. Drawing Controls
    39. Selecting Graphically
    40. Selecting by Feature
    41. Editing Assigning Undo arid Redo
    42. Analysing Displaying
    43. Graphical Displays
    44. Model Definition
    45. Analysis Results
    46. Function Plots
    47. Tabular Displays
    48. Designing
    49. Locking and Unlocking
    50. Entering Numerical Data
    51. Setting Options
    52. Define Grid System
    53. Selecting template
    54. Entering Grid System Data
    55. Adding Grid Lines In X, Y and Z Directions
    56. Define Material Properties
    57. Specify Design Parameters
    58. Material Property Data
    59. Define Section Properties
    60. Add Frame Section Property
    61. Specify Frame Section Properties for Beam
    62. Add New Frame Section Properties for Column
    63. Specify Area Section Properties for Slab
    64. Draw Drawing beams with different methods
    65. Drawing Column as with different orientation
    66. Drawing slabs
    67. Assigning Properties
    68. Assigning Properties to Frame Elements
    69. Assigning Properties to Area Elements
    70. Assign Restraints Assigning Fixed, Pinned, Roller Support at Joints
    71. Define and Assign Load Cases
    72. Adding and Assigning Dead Load Case
    73. Adding and Assigning Live Load Case
    74. Add rig and Assigning Wind Load Case
    75. Adding and Assigning Seismic Load Case
    76. Defining Load Combinations
    77. Adding different Load Combinations for dead Load, Live Load, Wind Load and Seismic Load
    78. View Analysis Results in Tabular Form
    79. View Analysis Result Diagrams of Frame Elements
    80. View Analysis Result Contour in Slab Panels
    81. Concrete Design
    82. Concrete Frame Design and View Design Results
    83. Steel Design Steel
    84. Frame Design and View
    85. Design Results
    86. View Design Parameters
    87. View Load Combination for Concrete Frame Design
    88. View Reinforcement for Frame Design
    89. View Percentage Steel for Frame Design
    90. Steel Frame Design and View Design Results
    91. View Load Combination for Steel Frame Design.


    Following are detailed Syllabus covered in 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
    Civil Engineering Students
    Architects
    Builders/Promoters
    Construction Engineers
    Quantity Surveyors
    QA/QC Engineers
    Project Managers
    Draftsmen
    Project Engineers
    Planning Engineers

    More Info

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