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所在平台: Udemy |
课程主页: https://www.udemy.com/course/etabs-rcc/
课程评论:没有评论
课程名称:ETABS专业课程:20层建筑设计 课程概述:在本课程中,您将学习全球知名的结构设计软件ETABS,从基本建模技巧开始,深入探讨针对增强混凝土结构设计的众多高级选项、技术、工具和指南。课程将通过对一个20层建筑的实践练习,帮助您更清晰地理解相关概念。课程内容经过精心设计,确保学习步骤和主题的最佳顺序,便于您系统掌握。虽然课程以ETABS为中心,但结构设计的概念和步骤将参考ACI设计规范和ASCE负载规范。 课程重点在于专业水平的设计实践和知识。以下是课程的简要大纲: 1. ETABS用户界面、查看选项、关键词定义、快捷键、工具及小技巧 2. 薄壳、厚壳及膜的区别,刚性与半刚性楼板,如何从AutoCAD/Revit导入网格 3. 包络概念(关于弯矩、剪力和轴力包络的练习) 4. 定义矩形、圆柱网格,材料特性,框架截面,定义楼板和墙体截面 5. 在ETABS中建模结构(绘制梁、柱、楼板和墙,复制至各层,使用查看工具,隐藏/显示元素) 6. 应用负载(定义和分配负载模式,负载案例、组合,地震负载(ASCE 7-10),质量源,楼板,风负载(ASCE 7-10),P-Delta选项) 7. 一般分析与设计(分配及绘制楼板条(DDM),为墙体分配支撑,设置规范偏好,分析结果(力、变形和应力),模态分析) 8. 分析和设计结果的解释 9. 增强混凝土柱的分析与设计 10. 增强混凝土梁的分析与设计 11. 增强混凝土剪力墙的建模与设计 12. 平板楼板、带下凹板的平板楼板和梁上的双向楼板的分析与设计 13. 分析结果与力、建模错误及其解决方案、位移的解释 14. 服务性与不规则性检查(地震漂移检查、风漂移检查、扭转不规则性检查及放大、刚度不规则性检查、质量/重量不规则性检查及限制、正交方向组合) 15. 线性动态分析(LDP的定义,动态分析概念) 16. 响应谱(响应谱分析程序、动态基荷缩放及分析结果) 17. 线性时间历史分析(程序、将地震波导入ETABS、时间历史与场地响应谱匹配、动态基荷缩放、分析结果及动态分析的使用时机与理由) 18. 非线性裂缝变形(ETABS 2019) 19. 楼板设计的有限元法(ETABS 2022) 此外,课程还将涵盖新ETABS版本中的突出功能。
In this course you will learn ETABS software, a worldwide structural design software, starting from the basic modelling techniques in ETABS to exploring many available advanced options, techniques, tools and guides for reinforced concrete structural design with hands on parallel exercise on a 20-storey building for clearer concepts and understanding like no other.The course is prepared with extreme care considering the best sequence of steps and topics for easy and proper learning. Although the course is focused on ETABS, but the structural design concepts and steps are using ACI design code and ASCE loading code for references of parameters. The course focuses on the design practice and knowledge utilized on professional level worldwide. Here is a brief syllabus for the courseETABS user Interface, viewing options, definitions of keywords, shortcuts, tools and tipsDifference between shell thin, thick and membrane, Rigid and Semi-rigid diaphragms, Import grids from Autocad/Revit, Concept of envelope (Exercise on moment, shear and axial force envelope)Defining rectangular, cylindrical grids, material properties, Frame sections, Define Slab and wall sectionsModeling framing in ETABS (Draw beams, columns, slabs, walls and replicate on stories, using viewing tools, hide/unhide elements with exercise file, Automatic and manual meshing of slab and wall, Model reviewing, Creating selection groups, Merge multiple ETABS models)Applying Loading (Defining and assigning load patterns, load cases, load combinations, seismic loads (ASCE 7-10), mass source, Diaphragm, wind loads (ASCE 7-10), P-Delta options )General Analysis and Design (Assign and draw slab strips (DDM), assign pier to walls, set code preferences, Analysis results (Forces, Deformation and stresses), Modal Analysis )Analysis and Design Results InterpretationAnalysis and design of reinforced concrete columnsAnalysis and design of reinforced concrete beamsAnalysis and design of reinforced concrete shear walls modeling and designAnalysis and design of Flat plate slab, Flat slab with drop panels, and Two-way slab on beamsAnalysis results and interpretation for forces, modelling errors and their solutions and displacementsServiceability and Irregularities (Seismic drift check, Wind drift check, Torsional irregularity check & Amplification, Stiffness irregularity check, Mass/Weight irregularity check and limits, orthogonal directional combinations)Linear Dynamic Analysis (What is LDP, concepts of dynamic analysis)Response Spectrum (Response spectrum analysis procedure, scaling of dynamic base shear, and analysis results)Linear Time History analysis (Procedure, Importing seismograms to Etabs, Time history matching to site Response Spectrum, scaling of dynamic base shear, analysis results, and why & when to use dynamic analysis)Non-Linear Cracked Deflection (Etabs 2019)Finite Element Method for Slab Design (Etabs 2022)The course will also include prominent features coming in new Etabs versions. The already included are as follows: