新工科建设背景下土力学课程思政设计与实践
作者:
作者单位:

苏州科技大学 土木工程学院,江苏 苏州 215000

作者简介:

张鑫蕊(1995—),女,苏州科技大学土木工程学院讲师,主要从事能源岩土方面研究及教学工作,(E-mail)zhangxinruiqx@163.com。

中图分类号:

G642

基金项目:

国家自然科学基金项目(52308368);苏州科技大学土木工程学院岩土与地下空间工程方向专业课课程群基层教学组织(2023JC-02);教育部产学合作协同育人项目(231107580272610)


Design and practice of ideological education of soil mechanics course under the background of emerging engineering education
Author:
Affiliation:

School of Civil Engineering, Suzhou University of Science and Technology, Suzhou 215000, P.R.China

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    摘要:

    新工科建设对传统土木工程专业既是挑战又是机遇,专业授课中完美融合新工科和思政元素,有利于高校建设和学生培养。文章探讨了新工科建设背景下土力学课程教学目标和教学痛点、课程思政要求与原则、课程思政体系设计和课程思政达成途径,展示了目前的教学改革成效。在土力学教学中引入我国“嫦娥工程”“天问系列”、隧道挖掘技术、钻深井工程、“地壳探测工程”、海洋油气开采、海底采矿,以及极地建设“中国南极科考站”等工程项目,使学生认识到土力学与国家“高、精、尖”产业建设密切相关,以提高学生的学习兴趣,增强学生专业自信。对土力学课程的每个章节设计详细的思政元素融入环节,实现教授土力学理论知识的同时无痕融入思政建设元素。结合土力学第一章《绪论》课程的实例,力求达到在传授知识的同时实现理论知识与实践相结合的目标,重点培养学生的民族自豪、大国责任感,以及科技报国的理想信念。

    Abstract:

    Emerging engineering education is both a challenge and an opportunity for traditional civil engineering majors. The perfect integration of emerging engineering education and ideological and political elements in professional course teaching is crucial for development of universities and student cultivation. This article explores the teaching objectives and pain points of the soil mechanics course under the background of emerging engineering education, the requirements and principles of ideological and political education in the course, the design of the ideological and political education system in the course, and the ways to achieve ideological and political education in the course. It shows the current achievements of the teaching reform. China’s Heavenly, Earthly, Maritime, and Polar engineering projects have been incorporated into the teaching, including the Chang’e Project, Tianwen Series, tunnel excavation technology, deep well drilling projects, Crustal Exploration Project, marine oil and gas extraction projects, seabed mining projects, and the construction of the Antarctic Research Station. In teaching, the idea that the study of soil mechanics is closely related to the nation’s high-tech and cutting-edge industries is conveyed to students to enhance their interest in learning and boost their professional confidence. Each chapter of the soil mechanics course is meticulously designed to integrate ideological and political elements, seamlessly incorporating these elements while imparting theoretical knowledge of soil mechanics. It combines the example of the introduction course in Chapter 1 of soil mechanics to explain, aiming to achieve the combination of textbook theory and practice while imparting knowledge, with a focus on cultivating students’ national pride, sense of national responsibility, and the ideal and belief of not fearing difficulties in science and technology for the country.

    参考文献
    [1] 王璐, 沈扬, 刘云, 等. “新工科” 视角下土木类大学生学习共同体构建[J]. 高等建筑教育, 2020, 29(4): 1-7.
    [2] 林健. 引领高等教育改革的新工科建设[J]. 中国高等教育, 2017(S2): 40-43.
    [3] 冯双喜, 雷华阳, 刘景锦, 等. 新工科背景下土力学课程思政教学研究与探讨[J]. 高等建筑教育, 2021, 30(6): 32-38.
    [4] 吴宝海, 沈扬, 徐冉. 高校新工科课程思政建设的探索与实践[J]. 学校党建与思想教育, 2020(21): 61-62, 65.
    [5] 张乐乐. 高校思政课程与课程思政协同育人对策研究[D]. 西安: 陕西科技大学, 2023.
    [6] 郭飞, 左清军, 孔纲强, 等. 基于“挖掘-融合-协同-引领” 原则的“工程地质” 课程思政设计与实践[J]. 中国地质教育, 2023, 32(3): 53-57.
    [7] Wei J G, Liang J Q, Lu J G, et al. Characteristics and dynamics of gas hydrate systems in the northwestern South China Sea - Results of the fifth gas hydrate drilling expedition[J]. Marine and Petroleum Geology, 2019(110): 287-298.
    [8] Li C, Hu H, Yang M F, et al. Characteristics of the lunar samples returned by the Chang’E-5 mission[J]. Natl Sci Rev, 2022, 9(2): nwab188.
    [9] 蒋明镜, 王思远, 姜朋明, 等. 月球基地的建设远景与挑战[J]. 山东大学学报(工学版), 2024, 54(2): 114-125.
    [10] 高伟健, 李伟. 海底不稳定性研究进展及展望[J]. 中国工程科学, 2023, 25(3): 109-121.
    [11] 张鑫蕊, 孔纲强, 杨庆. 温度应力路径对原状海洋土强度特性影响研究[J]. 岩土工程学报, 2024, 46(2): 357-365.
    [12] Zhang X R, Kong G Q, Li H, et al. Thermal conductivity of marine sediments influenced by porosity and temperature in the South China Sea[J]. Ocean Engineering, 2022, (260): 111992.
    [13] 王思远, 蒋明镜. 基于嫦娥五号月壤粒形特征的离散元模拟方法[J]. 岩土工程学报, 2024, 46(4): 833-842.
    [14] 蒋明镜, 张鑫蕊, 司马军, 等. 壤基材料加筋月壤技术在月球基地建设中的应用[J]. 苏州科技大学学报(自然科学版), 2023, 40(3): 11-20, 53.
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张鑫蕊,杨冬英,李秉宜,于彦彦.新工科建设背景下土力学课程思政设计与实践[J].高等建筑教育,2025,(3):189-197.

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  • 最后修改日期:2024-08-30
  • 在线发布日期: 2025-05-27
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