工程案例驱动的工程力学问题链教学:模式构建与准实验效果验证

CASE-DRIVEN PROBLEM CHAIN TEACHING IN ENGINEERING MECHANICS: MODE CONSTRUCTION AND QUASI-EXPERIMENTAL EFFECT VERIFICATION

  • 摘要: 针对工程力学教学与工程实践脱节的困境,以某深基坑支护工程为真实载体,构建覆盖工程力学核心知识点的“受力场景→力学模型→计算验证”三段式问题链教学模式,并采用平行班准实验设计验证其效果。结果表明:实验班力学建模测试成绩(78.56±8.23)显著高于对照班(64.31±12.50),工程问题识别得分提升22.0%,内力图绘制准确率提高17.8个百分点,相对提升30.4%;ANCOVA控制入学成绩后,教学方法主效应依然显著;实验班学习投入显著优于对照班,教师“一线工程师身份”的中介效应占总效应的38%,是问题链教学发挥效用的重要传导机制之一。该模式的设计逻辑可迁移至桥梁、隧道等工程情境,为工科基础课情境化教学改革提供可借鉴的实施路径。

     

    Abstract: To address the disconnect between engineering mechanics teaching and engineering practice, a three-stage problem-chain teaching mode of “loading scenario → mechanical model → calculation verification” covering the core knowledge points of engineering mechanics was constructed based on a real deep foundation pit support project, and its effectiveness was verified through a quasi-experimental design with parallel classes. Results indicated that the experimental class scored significantly higher on the mechanics modeling test (78.56 ± 8.23) than the control class (64.31 ± 12.50), with a 22.0% improvement in engineering problem identification scores and the accuracy in drawing internal force diagrams increased by 17.8 percentage points, corresponding to a relative increase of 30.4%. The main effect of the teaching method remained significant after controlling for entrance scores via ANCOVA. Learning engagement in the experimental class was significantly higher than that in the control class, and the mediating effect of the teacher’s “practicing engineer identity” accounted for 38% of the total effect, serving as one of the important transmission mechanisms. The design logic of this mode can be transferred to bridge, tunnel and other engineering scenarios, providing a transferable implementation path for contextualized teaching reform in basic engineering courses.

     

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