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基于BIM的配网工程快速建模及平台设计
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作者 李佳 冯德志 +2 位作者 段祥骏 石立廷 张天明 《电工技术》 2024年第9期71-76,80,共7页
在新型电力系统建设背景下,现代智慧配网的构建对配网工程的数字化建设提出了新要求。配网工程点多面广,涉及的设备类型多样,差异化特征明显,工程建设安全、质量管控存在诸多难点。为适应数字化建设需求,构建了基于BIM的配网工程基础构... 在新型电力系统建设背景下,现代智慧配网的构建对配网工程的数字化建设提出了新要求。配网工程点多面广,涉及的设备类型多样,差异化特征明显,工程建设安全、质量管控存在诸多难点。为适应数字化建设需求,构建了基于BIM的配网工程基础构件库模型体系,提出了工程级模型建模技术,开发了BIM模型初始化构建软件,可实现配网工程二维图纸向三维可视化模型转换,提升配网工程管控的可视化水平,保障工程建设质量以及安全性。 展开更多
关键词 配网工程 BIM模型 构件库 二三维转化 建模软件
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Realistic flat-band model based on degenerate p-orbitals in two-dimensional ionic materials 被引量:1
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作者 Jiang Zeng Ming Lu +2 位作者 Haiwen Liu Hua Jiang X.C.Xie 《Science Bulletin》 SCIE EI CSCD 2021年第8期765-770,M0003,共7页
Though several theoretical models have been proposed to design electronic flat-bands, the definite experimental realization in two-dimensional atomic crystal is still lacking. Here we propose a novel and realistic fla... Though several theoretical models have been proposed to design electronic flat-bands, the definite experimental realization in two-dimensional atomic crystal is still lacking. Here we propose a novel and realistic flat-band model based on threefold degenerate p-orbitals in two-dimensional ionic materials. Our theoretical analysis and first-principles calculations show that the proposed flat-band can be realized in 1 T layered materials of alkali-metal chalogenides and metal-carbon group compounds. Some of the former are theoretically predicted to be stable as layered materials(e.g., K2 S), and some of the latter have been experimentally fabricated in previous works(e.g., Gd2 CCl2). More interestingly, the flat-band is partially filled in the heterostructure of a K2 S monolayer and graphene layers. The spin polarized nearly flatband can be realized in the ferromagnetic state of a Gd2 CCl2 monolayer, which has been fabricated in experiments. Our theoretical model together with the material predictions provide a realistic platform for the study of flat-bands and related exotic quantum phases. 展开更多
关键词 Flat-band Degenerate orbitals Material realization 1T structure Partially filled
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