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所在平台: Udemy |
课程主页: https://www.udemy.com/course/design-of-reinforced-concrete-structures/
课程评论:没有评论
Coursera 课程《钢筋混凝土结构设计》课程总结: 本课程旨在全面介绍钢筋混凝土结构构件的设计原理和方法。课程内容涵盖了低配筋、平衡配筋、高配筋及双筋截面的设计。通过详细的算例,课程阐释了钢筋混凝土结构构件的行为和设计方法。 课程首先从基础结构分析入手,讲解如何获取设计所需的弯矩和剪力。接着,课程将重点介绍主要结构单元,包括梁、柱和板的设计。课程将理论原理与实际应用相结合,所有设计示例均参考了印度标准 IS456。 课程深入讲解了包括使用性(serviceability)、极限状态(limit state)概念、最小配筋要求、锚固长度(development length)以及弯曲、受压、受拉和剪切行为的概念。 本课程特别适合以下人群: * **工程专业学生:** 对土木和结构工程职业感兴趣的学生。 * **土木工程师:** 需要巩固基础理论和 IS456 核心概念的工程师。 * **建筑行业专业人士:** 希望提升钢筋混凝土结构设计知识和实践能力的专业人士。 课程涵盖的主要主题包括: * 钢筋混凝土构件的设计理念 * 单筋截面设计 * 双筋梁设计 * T 形梁设计 * 柱设计 * 板设计 * 弯曲、剪切设计 * 锚固长度设计
Design of Reinforced Concrete StructuresIn this course, we will cover the fundamental concepts and methods of "Design of Reinforced Concrete Structural Elements", we will also explore design of under reinforced, balanced, over reinforced and doubly reinforced sections. Worked examples are used to illustrate behavior and design methodology of RCC structural elements. The basic structural analysis explains how to obtain the bending moment and shear force for a design. This course has been designed to cover the key structural elements like Beams, Columns and Slabs. The design examples are covered with theoretical principles referred by the standard of IS456 with practical approaches also being demonstrated. This course illustrates the detailed explanation of serviceability, limit state concepts, minimum steel requirements, development length, concept of flexural, compression, tension, and shear behavior. This course is suitable for engineering students and civil engineers who are exploring opportunities in civil and structural engineering career. The course refreshes the fundamental concepts of theory and core concepts of IS456. This course also is beneficial for construction industry professionals. The Major topics covered in this courseDesign Philosophy of RCC elements. Design of Singly reinforce sections Design of Double Reinforced beams Design of T beams. Design of Columns Design of Slabs. Design of Flexure, Shear Design of Development length.