随着大数据与人工智能时代的到来,发展智能教育,应对新技术浪潮,培养新时代所需的专业人才已成为高校的重要任务。以中国地质大学(武汉)地理空间信息工程(geospatial information engineering,GIE)专业为例,结合专业特色和优势,基于新...随着大数据与人工智能时代的到来,发展智能教育,应对新技术浪潮,培养新时代所需的专业人才已成为高校的重要任务。以中国地质大学(武汉)地理空间信息工程(geospatial information engineering,GIE)专业为例,结合专业特色和优势,基于新时代教育的新理念、新机构、新模式探索了GIE专业人才培养模式。围绕创新的“三融合”人才培养理念,开展了跨学科教学平台、专业课程结构、新型教学模式3个方面的人才培养体系设计探索。实践表明,该模式取得了显著的成果,对同类院校设置培养方案具有一定参考意义。展开更多
Engineering excavation GIS (E 2 GIS) is a real-3D GIS serving for geosciences related to geo-engineering, civil engineering and mining engineering based on generalized tri-prism (GTP) model. As two instances of GTP mo...Engineering excavation GIS (E 2 GIS) is a real-3D GIS serving for geosciences related to geo-engineering, civil engineering and mining engineering based on generalized tri-prism (GTP) model. As two instances of GTP model, G\|GTP is used for the real\|3D modeling of subsurface geological bodies, and E\|GTP is used for the real\|3D modeling of subsurface engineering excavations.In the light of the discussions on the features and functions of E 2 GIS, the modeling principles of G\|GTP and E\|GTP are introduced. The two models couple together seamlessly to form an integral model for subsurface spatial objects including both geological bodies and excavations. An object\|oriented integral real\|3D data model and integral spatial topological relations are discussed.展开更多
文摘随着大数据与人工智能时代的到来,发展智能教育,应对新技术浪潮,培养新时代所需的专业人才已成为高校的重要任务。以中国地质大学(武汉)地理空间信息工程(geospatial information engineering,GIE)专业为例,结合专业特色和优势,基于新时代教育的新理念、新机构、新模式探索了GIE专业人才培养模式。围绕创新的“三融合”人才培养理念,开展了跨学科教学平台、专业课程结构、新型教学模式3个方面的人才培养体系设计探索。实践表明,该模式取得了显著的成果,对同类院校设置培养方案具有一定参考意义。
文摘Engineering excavation GIS (E 2 GIS) is a real-3D GIS serving for geosciences related to geo-engineering, civil engineering and mining engineering based on generalized tri-prism (GTP) model. As two instances of GTP model, G\|GTP is used for the real\|3D modeling of subsurface geological bodies, and E\|GTP is used for the real\|3D modeling of subsurface engineering excavations.In the light of the discussions on the features and functions of E 2 GIS, the modeling principles of G\|GTP and E\|GTP are introduced. The two models couple together seamlessly to form an integral model for subsurface spatial objects including both geological bodies and excavations. An object\|oriented integral real\|3D data model and integral spatial topological relations are discussed.