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所在平台: Udemy |
课程主页: https://www.udemy.com/course/practical-staadpro-connect-g9-bldg-steel-warehouse-design/
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课程名称:实用的StaadPro连接G+9建筑及钢结构仓库设计 课程概述:该课程由结构Guru-GURURAYAR ASSOCIATES(工程咨询及培训公司)提供,该公司是ISO 9001-2015认证的企业,致力于在印度及海外培养独立的结构设计工程师和顾问。我们以实际设计方法论进行培训,旨在提高客户的结构设计质量和经济性。我们的使命是通过培训和指导,帮助全球的土木工程师转型为设计和咨询领域的专家。 课程内容:本课程涵盖静态G+9住宅建筑的建模、分析与设计,具体内容包括但不限于: - 结构介绍与类型 - StaadPro的特性及硬件要求 - 软件界面组织与操作 - 结构几何、坐标系统及模型定义 - 属性设置、载荷案例、分析案例与组合 - 设计设置与输出显示定义 - 基本操作与文件操作 - 材料属性定义与截面特性 - 负荷案例的添加与分配,包含死载、活载、风载和地震载荷 - 结构设计分析,如混凝土框架设计与钢结构设计 - 响应谱分析与设计,包括动态负荷的创建与分析 该课程将实用的设计理念与现代软件工具相结合,帮助学习者掌握建筑结构的设计与分析,进而推动他们的职业发展。
StructuralGuru-GURURAYAR ASSOCIATES (ENGINEERING CONSULTANCY & TRAINING'S) ISO 9001-2015 CERTIFIES COMPANYWe 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 Structure2. Types of structures3. Basic definitions Idealization of structures4. About Staadpro Features hardware requirements5. Staadpro screen organization GUI overview6. Unit systems Structure geometry7. Coordinate systems (Global and Local)8. The Structural Model9. Units10. Objects and Elements11. Groups12. Coordinate13. Systems and Grids14. Properties15. Load Cases16. Functions17. Analysis Cases18. Combinations19. Design settings20. Output and Display Definitions21. The Graphical User Interface22. The Staadpro Screen Main Window23. Menu Bar24. Toolbars25. Display Windows26. Status Line27. Using the Mouse28. Viewing Options 2-D and 3-D Views29. Perspective Pan, Zoom, and 3-D Rotate Limits30. Element View Options31. Other Options32. Refreshing the Display Window33. Basic Operations34. File Operations35. Defining Named Entities Drawing36. Objects37. Snap Tools38. Drawing Controls39. Selecting Graphically40. Selecting by Feature41. Editing Assigning Undo arid Redo42. Analysing Displaying43. Graphical Displays44. Model Definition45. Analysis Results46. Function Plots47. Tabular Displays48. Designing49. Locking and Unlocking50. Entering Numerical Data51. Setting Options52. Define Grid System53. Selecting template54. Entering Grid System Data55. Adding Grid Lines In X, Y and Z Directions56. Define Material Properties57. Specify Design Parameters58. Material Property Data59. Define Section Properties60. Add Frame Section Property61. Specify Frame Section Properties for Beam62. Add New Frame Section Properties for Column63. Specify Area Section Properties for Slab64. Draw Drawing beams with different methods65. Drawing Column as with different orientation66. Drawing slabs67. Assigning Properties68. Assigning Properties to Frame Elements69. Assigning Properties to Area Elements70. Assign Restraints Assigning Fixed, Pinned, Roller Support at Joints71. Define and Assign Load Cases72. Adding and Assigning Dead Load Case73. Adding and Assigning Live Load Case74. Add rig and Assigning Wind Load Case75. Adding and Assigning Seismic Load Case76. Defining Load Combinations77. Adding different Load Combinations for dead Load, Live Load, Wind Load and Seismic Load78. View Analysis Results in Tabular Form79. View Analysis Result Diagrams of Frame Elements80. View Analysis Result Contour in Slab Panels81. Concrete Design82. Concrete Frame Design and View Design Results83. Steel Design Steel84. Frame Design and View85. Design Results86. View Design Parameters87. View Load Combination for Concrete Frame Design88. View Reinforcement for Frame Design89. View Percentage Steel for Frame Design90. Steel Frame Design and View Design Results91. 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