基于85%规则的桥梁结构电算问题式教学——以对杆系结构边界条件的四层理解为例
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重庆交通大学 土木工程学院, 重庆 400074

作者简介:

孙测世(1985—),男,重庆交通大学土木工程学院教授,博士,主要从事结构动力学研究,(E-mail)suncs@hnu.edu.cn。

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G642

基金项目:

重庆交通大学2019年教育教学改革研究资助项目(1903049)


Problem-oriented teaching for computation of bridge structures based on the eighty five percent rule: a case of the four-level understanding of boundary conditions for bar structures
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College of Civil Engineering, Chongqing Jiaotong University, Chongqing 400074, P.R.China

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    摘要:

    桥梁结构电算是桥梁工程专业大四的重要拓展课程,对学生解决复杂工程问题的能力培养至关重要。其中,边界条件的理解一直是教学的重点与难点。为帮助学生迅速入门并理解边界条件,基于最优学习的85%规则,开展了与结构力学课程相融合的教学探索。从一座实际连续梁桥施工图出发,通过设置四组问题,将杆系结构边界条件与学生已掌握的机动分析、链杆等知识相联系,由浅及深地引出边界条件的四层理解,从而让学生以辩证的眼光理解边界条件的分类、施加(解除)约束与链杆的关系、边界条件与杆系结构几何模型和单元划分之间的关系。随后,利用不止一切边界是“连接”,一切结点(截面)都是“连接”的思想,将MIDAS/Civil中的一般支撑和各类连接统一用链杆表示,给出6个自由度约束方向与6根链杆的关系,为学生后续的软件操作奠定基础。5年的教学实践表明,基于85%规则的桥梁结构电算问题式教学取得良好效果,学生上机时较少出现混淆不同类型边界条件的错误。

    Abstract:

    Computation of bridge structures is an important specialized course for senior students majoring in bridge engineering, which is of great significance to the cultivation of students’ ability to solve complex engineering problems. Understanding boundary conditions has always been a key and difficult point in teaching. In order to help students to understand boundary conditions quickly, a teaching exploration integrating with structural mechanics is carried out based on the eighty five percent rule for optimal learning. Four groups of questions are set up based on the construction drawing of an actual continuous beam bridge. The boundary conditions are combined with the known knowledge of kinematic analysis and rods, leading to four gradually deepened levels of understanding about boundary conditions. These explorations enable students to dialectically understand the classification of boundary conditions, the relationship between imposing (removing) constraints and rods, the relationship between boundary conditions and geometric models, and the meshing of the finite element model. Using the idea that not only all boundaries are connections, but also all nodes (sections) are connections, the supports and all kinds of connections in MIDAS/Civil are represented by chain bars. The relationship between six degrees of freedom constraint directions and six chain bars is given, laying a foundation for students’ subsequent software operation. The teaching practice in the past five years shows that the problem-oriented teaching method of computation of bridge structures based on the eighty five percent rule has a good effect, and students rarely make mistakes in confusing different types of boundary conditions in the subsequent computer modeling.

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孙测世,田维锋.基于85%规则的桥梁结构电算问题式教学——以对杆系结构边界条件的四层理解为例[J].高等建筑教育,2025,34(5):117-124.

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  • 最后修改日期:2022-11-04
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  • 在线发布日期: 2025-10-30
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