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网络计划技术在东秦岭特长隧道平行导坑开挖工程中的应用 被引量:2
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作者 范磊 陈彬 《铁道标准设计》 2002年第11期64-66,共3页
根据东秦岭隧道平行导坑的施工情况 ,详细叙述网络计划技术在隧道开挖掘进工序中计划管理上的应用 ,仅此 1项 ,就使工期缩短 7个月 。
关键词 东秦岭特长隧道 开挖掘工程 铁路隧道 网络计划 平行导坑 掘进工序 计划管理
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JAMIP:an artificial-intelligence aided data-driven infrastructure for computational materials informatics 被引量:6
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作者 Xin-Gang Zhao Kun Zhou +13 位作者 Bangyu Xing Ruoting Zhao Shulin Luo Tianshu Li Yuanhui Sun Guangren Na Jiahao Xie Xiaoyu Yang Xinjiang Wang Xiaoyu Wang Xin He Jian Lv Yuhao Fu Lijun Zhang 《Science Bulletin》 SCIE EI CSCD 2021年第19期1973-1985,M0003,共14页
Materials informatics has emerged as a promisingly new paradigm for accelerating materials discovery and design.It exploits the intelligent power of machine learning methods in massive materials data from experiments ... Materials informatics has emerged as a promisingly new paradigm for accelerating materials discovery and design.It exploits the intelligent power of machine learning methods in massive materials data from experiments or simulations to seek new materials,functionality,and principles,etc.Developing specialized facilities to generate,collect,manage,learn,and mine large-scale materials data is crucial to materials informatics.We herein developed an artificial-intelligence-aided data-driven infrastructure named Jilin Artificial-intelligence aided Materials-design Integrated Package(JAMIP),which is an open-source Python framework to meet the research requirements of computational materials informatics.It is integrated by materials production factory,high-throughput first-principles calculations engine,automatic tasks submission and monitoring progress,data extraction,management and storage system,and artificial intelligence machine learning based data mining functions.We have integrated specific features such as an inorganic crystal structure prototype database to facilitate high-throughput calculations and essential modules associated with machine learning studies of functional materials.We demonstrated how our developed code is useful in exploring materials informatics of optoelectronic semiconductors by taking halide perovskites as typical case.By obeying the principles of automation,extensibility,reliability,and intelligence,the JAMIP code is a promisingly powerful tool contributing to the fast-growing field of computational materials informatics. 展开更多
关键词 DATA-DRIVEN Materials informatics Computational material First-principles calculation High-throughput calculation
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