钢结构原理教学内容和教学方法的探讨与实践
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中图分类号:

G642.0;TU391

基金项目:

国家自然科学基金(51678010)


Discussion and practice on teaching content and method of steel structure principle
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    摘要:

    钢结构原理作为土木工程专业(含结构工程、桥梁工程、地下工程、轨道工程方向)的必修课,其重要性不言而喻。为适应钢结构的应用和发展,结合钢结构的教学科研,探讨钢结构原理课程的内容设置、学时分配、课堂教学和实践教学比例,结合多媒体、结构试验技术等手段探讨课堂和实验教学的方法,以提高学生听课积极性,调动学生情绪,增加师生互动。同时,结合教师的科研内容,实现理论教学、工程实践应用及科研的有效结合,激发学生的创新思维能力。

    Abstract:

    As a compulsory course for civil engineering specialty including structural engineering bridge engineering underground engineering track engineering the importance of steel structure principle is self-evident. In order to adapt to the application and development of steel structure, setting and adjustment of the teaching content, allocation of teaching hours and proportion of classroom teaching and practical teaching are studied combined with the teaching and scientific research of steel structure. Methods of classroom and experiment teaching are discussed combined with multimedia and structural test technology the contents forms and methods of experiment teaching are provided. This paper explores how to improve students' enthusiasm in classes, how to arouse students' study emotions and how to strengthen interaction between teachers and students. At the same time, it discusses how to combine teachers' scientific research content realize the effective combination of theoretical teaching, engineering practice application and scientific research, and stimulate students' innovative thinking ability.

    参考文献
    [1] CAI W G, WU Y, ZHONG Y, et al. Corrigendum to"China building energy consumption:Situation, challenges and corresponding measures"[J]. Energy Policy, 2009, 37(6):2054-2059.
    [2] ZHANG Y, HE C Q, TANG B J, et al. China's energy consumption in the building sector:A life cycle approach[J]. Energy & Buildings, 2015, 94:240-251.
    [3] LI B, YAO R M. Urbanisation and its impact on building energy consumption and efficiency in China[J]. Renewable Energy, 2009, 34(9):1994-1998.
    [4] 张爱林. 工业化装配式多高层钢结构住宅产业化关键问题和发展趋势[J]. 住宅产业, 2016(1):10-14.
    [5] 张爱林. 工业化装配式高层钢结构体系创新、标准规范编制及产业化关键问题[J]. 工业建筑, 2014, 44(8):1-6.
    [6] 中华人民共和国住房和城乡建设部,中华人民共和国国家质量监督检验检疫总局.绿色建筑评价标准:GB/T50378-2014[S]. 北京:中国建筑工业出版社, 2014.
    [7] Liu X, Zhang Y, Zhang A, et al. Model test for the tensioning construction process of a large-span prestressed suspended dome[J].Advances in Structural Engineering, 2016, 20(4):504-518.
    [8] Liu X C, Cui F Y, Zhan X X, et al. Seismic performance of bolted connection of H-beam to HSS-column with web end-plate[J]. Journal of Constructional Steel Research,2019,156:167-181.
    [9] ZHANG A L, LIU X C. The new development of industrial assembly high-rise steel structure system in China[C]//Proceedings of the 10th Pacific Structural Steel Conference. Singapore:Research Publishing Services,2013:976-981.
    [10] 刘学春,徐阿新,孙超,等.高层装配式斜支撑钢框架结构设计研究[J].建筑结构学报,2015,36(5):157-165.
    [11] Liu X C, Zhou X J, Zhang A L, et al. Design and compilation of specifications for a modular prefabricated high-rise steel frame structure with diagonal braces. Part I:Integral structural design[J]. Structural Design of Tall and Special Buildings,2018:e1415.
    [12] Liu X C, He X N, Zhang A L, et al. Design and specification compilation of a modular prefabricated high-rise steel frame structure with diagonal braces part Ⅱ:Elastic-plastic time-history analysis and joint design[J]. Structural Design of Tall and Special Buildings,2017:e1414.
    [13] 王国周,瞿履谦. 钢结构:原理与设计[M].北京:清华大学出版社,1993.
    [14] 沈祖炎,陈以一,陈扬骥. 房屋钢结构设计[M].北京:中国建筑工业出版社,2008.
    [15] 赵根田,孙德发.钢结构[M].2版.北京:机械工业出版社,2011.
    [16] 张耀春.钢结构设计原理[M].北京:高等教育出版社,2011.
    [17] 何若全. 钢结构基本原理[M].北京:中国建筑工业出版社,2011.
    [18] 张艳霞,刘学春,吴宝瀛. 钢结构[M].北京:清华大学出版社,2014.
    [19] 陈绍蕃,顾强. 钢结构-上册-钢结构基础[M].3版.北京:中国建筑工业出版社,2014.
    [20] Liu X C, Cui F Y, Jiang Z Q, et al.Tension-bend-shear capacity of bolted-flange connection for square steel tube column[J]. Engineering Structures, 2019,201:439-460.
    [21] Liu X C, He X N, Wang H X, et al. Compression-bend-shearing performance of column-to-column bolted-flange connections in prefabricated multi-high-rise steel structures[J]. Engineering Structures, 2018,160:439-460.
    [22] Liu X C, He X N, Wang H X, et al. Bending-shear performance of column-to-column bolted-flange connections in prefabricated multi-high-rise steel structures[J]. Journal of Constructional Steel Research,2018,145:28-48.
    [23] Liu X C, Zhan X X, Pu S H, et al. Seismic performance study on slipping bolted truss-to-column connections in modularized prefabricated steel structures[J]. Engineering Structures, 2018,163:241-254.
    [24] Liu X C, Yang Z W, Wang H X, et al. Seismic performance of H-section beam to HSS column connection in prefabricated structures[J]. Journal of Constructional Steel Research, 2017,138:1-16.
    [25] Liu X C, Pu S H, Zhang A L, et al.Performance analysis and design of bolted connections in modularized prefabricated steel structures[J]. Journal of Constructional Steel Research, 2017,133:360-373.
    [26] Liu X C, Zhan X X, Zhang A L, et al. Random imperfection method for stability analysis of suspended dome[J].International Journal of Steel Structures, 2017,17(1):91-103.
    [27] Liu X C, Pu S H, Zhang A L, et al. Static and seismic experiment for bolted-welded joint in modularized prefabricated steel structure[J]. Journal of Constructional Steel Research, 2015, 115(8):417-433.
    [28] Liu X C, Xu A X, Zhang A L, et al. Static and seismic experiment for welded joints in modularized prefabricated steel structure[J]. Journal of Constructional Steel Research, 2015, 112(5):183-195.
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刘学春,白正仙,朱涛,王玥.钢结构原理教学内容和教学方法的探讨与实践[J].高等建筑教育,2020,29(4):101-108.

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  • 最后修改日期:2019-09-27
  • 在线发布日期: 2020-08-19
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