期刊文献+

炼油催化剂档案专题数据库的建设及应用 被引量:1

Construction and application of refining catalyst archivesthematic database
下载PDF
导出
摘要 从海量数据中迅速、准确地获取与炼油催化剂相关的知识信息有利于节约新型炼油催化剂开发的时间成本。科研档案作为记录过程数据和经验知识的载体,是炼油催化剂生产技术再发展的重要基础。本文通过对炼油催化剂科研档案利用现状的分析,发现档案资源并未与研发生产过程进行有效的契合,造成了资源的严重浪费。为提升档案资源在产品开发过程中的使用价值,本文提出以炼油催化剂为核心的档案专题数据库建设思路,介绍了数据库的系统体系架构、技术总体架构和部署运行架构,阐述了如何利用炼油催化剂档案专题数据库实现企业研发过程中不同用户对档案知识多样化利用的需求,使档案专题数据库在科研创新中发挥出应有的支撑作用,期望为我国石油化工领域中科研档案的数据管理和知识挖掘提供借鉴。 Rapid and accurate acquisition of refining catalysts knowledge from mass data is beneficial to saving the time cost of developing novel refining catalysts.Scientific research archives,regarded as carriers to record the process data and experiential knowledge,are the important basis for the development of refining catalyst production technology.Through analyzing the current situation about the utilization of refining catalysts-related scientific research archives,it can be found that those archives are not effectively combined with the research and production process,and thus resulting in severe waste of resources.In order to enhance the use value of archives in product development,the idea about construction of refining catalyst archives thematic database was raised.In this paper,the system architecture,overall technical framework and operation strategy were introduced,which could meet different users’demand during the research and development process.The database also realizes its supporting role in research,which is expected to work as a reference in scientific research archives of petrochemical industry in China when it comes to data management and knowledge mining.
作者 胡一鸣 HU Yiming(SINOPEC Research Institute of Petroleum Processing,Beijing 100083,China)
出处 《化工进展》 EI CAS CSCD 北大核心 2021年第S02期192-197,共6页 Chemical Industry and Engineering Progress
关键词 石油 催化剂 科研档案 知识挖掘 专题数据库 知识图谱 petroleum catalyst scientific research archives knowledge mining thematic database knowledge graph
  • 相关文献

参考文献4

二级参考文献20

  • 1高宁波,金宏,王宏安.历史数据实时压缩方法研究[J].计算机工程与应用,2004,40(28):167-170. 被引量:13
  • 2Haritsa J R, Ramamritham K. Real-time database systems in the new millennium[J]. Real-time System, 2000, 19 (3): 205-208.
  • 3Narasimhan S, Chen S K, Mah R S H. Detecting changes of steady statesusingthemathematicaltheoryofevidence[J].AIChEJ., 1986, 32(1): 1409-1418.
  • 4汪勇.流程工业历史数据库的研究[D].杭州:浙江大学,2005.
  • 5侯芙生.第五章:催化裂化.中国炼油技术[M].第三版.北京:中国石化出版社,2012.
  • 6侯芙生.第八章:加氢处理和加氢裂化.中国炼油技术[M].第三版.北京:中国石化出版社,2012.
  • 7侯芙生.第六章:催化重整.中国炼油技术[M].第三版.北京:中国石化出版社,2012.
  • 8侯芙生.第三章:原油蒸馏;第四章:延迟焦化和减黏裂化.中国炼油技术[M].第三版.北京:中国石化出版社,2012.
  • 9Energetics Incorporated. Energy and environmental profile ofthe U. S. petroleum refining industry, prepared forU. S. Department of Energy Industrial TechnologiesProgram, November 2007 [EB/OL]. http: //www. eere.energy. gov/manufacturing/industries _ technologies/petroleum _ refining, html.
  • 10U.S. Environmental Protection Agency: 2008 SectorPerformance Report, Supplement, February 2009,Updatedto include 2006 TRI data [EB/OL]. http: //www.epa. gov/ sectors/pdf/performance _ reportReferences.

共引文献34

同被引文献6

引证文献1

二级引证文献18

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部