课赛融合、创新驱动的土木工程专业创新人才培养模式构建——以海南大学土木建筑工程学院为例
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1.海南大学土木建筑工程学院;2.天津大学建筑工程学院

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G642.0??

基金项目:

海南省高等学校教育教学改革研究项目、海南大学教育教学改革研究项目


Construction of strategy for civil engineering based on course-competition integration and innovation-driven
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1.School of Civil Engineering and Architecture,Hainan University;2.School of Civil Engineering,Tianjin University

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    摘要:

    在人工智能(AI)技术加速渗透与土木工程行业面临深刻的转型升级,新工科建设急需具备卓越工程实践能力和创新精神的高素质人才。然而,力学基础薄弱、培养目标与区域行业需求脱节、创新人才培养路径不明等问题严重制约了土木工程人才培养质量的提升。以成果导向教育(OBE)为核心理念,紧密围绕培养解决复杂热带海洋土木工程问题所必备的核心能力,以完全学分制为契机,通过AI技术深度融入课程教学,系统性地重塑以明晰力学知识逻辑为主线、深度融合地域特色的专业基础课程模块;以协同创新中心为平台,创新性地搭建“基础理论认知→模型制作与技能专项→项目综合创新实战”的三阶递进式实践教学平台,完善以科研激发创新、以创新反哺教学为核心的育人机制;以书院制为保障,创建协同育人、即时反馈、达成评价的运行机制。成功构建了独具特色的课赛融合、创新驱动式土木工程专业创新人才培养模式,学生的工程实践能力与创新解决能力显著提升,为同类高校在新工科背景下开展创新人才培养提供了重要的参考价值。

    Abstract:

    As artificial intelligence (AI) technologies increasingly permeate the field, the civil engineering industry is undergoing significant transformation and upgrading, creating an urgent demand for talents with exceptional engineering practice and innovative capabilities within the context of new engineering discipline development. However, issues such as an insufficient foundation knowledge in mechanics, misalignment with regional industrial needs, and unclear pathways for innovation talent have collectively impeded the development of innovative civil engineering professionals. Guided by the principles of Outcome-Based Educational (OBE), emphasis is placed on cultivating the core competencies necessary to address complex engineering challenges in tropical marine civil engineering. Foundational course modules have been restructured to establish a clear logical framework for mechanical knowledge, supported by the comprehensive credit system and enhanced through the integration of AI technologies. A three-tier progressive practical platform has been innovatively developed: spanning basic theoretical understanding, model creation and skill specialization, and comprehensive project innovation practice, utilizing the collaborative innovation center as a key platform. In addition, educational mechanisms have been enhanced by integrating research into teaching to stimulate innovation. Supported by the residential college system, an operational mechanism featuring collaborative education, real-time feedback, and achievement evaluation has been established. These efforts have led to the formation of a distinctive, innovation-driven talent cultivation model in civil engineering, characterized by the integration of course learning with competition experience. As a result, the students" engineering practice and innovation-solving abilities have been significantly enhanced, offering valuable insights for the development of emerging engineering disciplines and the cultivation of innovative talent in comparable higher education institutions.

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  • 收稿日期:2026-03-21
  • 最后修改日期:2026-04-09
  • 录用日期:2026-04-17
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