期刊文献+

模拟与仿真:工程科技人才培养模式创新 被引量:11

Innovating Engineering Education Mode: Simulation-based Engineering and Science
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摘要 在当今大数据时代,基于模拟与仿真的工程科学(SBE&S)在诸多领域发挥着越来越重要的作用,同时SBE&S在提高工程师实践与创新能力以及拓展科学理解力方面也不断体现出巨大优势。本文着重讨论了SBE&S的内涵及发展,以及将模拟仿真引入工程教育的必要性,并详细介绍了仿真思维逻辑以及基于模拟仿真的工程教育模式框架和路径图。 Simulation-Based Engineering and Science (SBEI^S) is playing a more and more important role in many fields in the Big Data era. It also has great advantage in improving the engineers' ability of practice and innovation and promoting their understanding of scientific paradigm. This paper focuses on the theoretical essence and development of SBE&S as well as the necessity of introducing simulation into engineering education. Then it elaborates the simulation cognitive process, simulation-based engineering education model framework and path diagram.
出处 《高等工程教育研究》 CSSCI 北大核心 2013年第3期32-37,共6页 Research in Higher Education of Engineering
基金 2012年教育部人文社科专项(工程科技人才培养研究)委托项目"基于仿真和模拟的工程教育模式创新"
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参考文献24

  • 1Oden, Tinsley( 2006 ) : Simulation - Based Engineering Sei ence, Revolutionizing Engineering Science through Simula lion, Report of the National Science Foundation Blue Ribbon Panel on Simulation-Based Engineering Science,2006.
  • 2中国科学技术协会(主编)、中国系统仿真学会(编著):《2009~2010年仿真科学与技术学科发展报告》,中国科学技术出版社2010年版.
  • 3庄茁.适应全球化的基于仿真的工程与科学[J].中国制造业信息化(应用版),2009,38(12):58-60. 被引量:4
  • 4NSF (2003): Revolutionizing Science and Engineering Through Cyberinfrastrueture: Report of the National Science Foundation Blue- Ribbon Advisory Panel on Cyberin frastructure,Jan. 2003.
  • 5Sandia ( 2004 ) : Simulation Based Engineering Science: A Re port on a Workshop Held Under the Auspices of the National Science Foundation, April 15-16, 2004, http: ff www. san- dia. gov/tecs/studies/SBES Workshop- 1 Report. pdf.
  • 6NAE(2005) -Tenth Annual Symposium on Frontiers of Engi-neering, National Academy of Engineering, http- /// www. nap. edu/catalog/l1220, html,2005.
  • 7PITAC(2005): Report to the President, Computational Sci- ence- Ensuring America's Competitiveness, President's Infor- mation Technology Advisory Committee, 2005.
  • 8Sandia(2008) : A Computation- Based Engineering Summit: Transforming Engineering Through Computational Simula- tion, September 16-17, 2008,Washington, DC, http:// www. sandia, gov/tecs/TECSsummit, html.
  • 9Estep, Donald (2009) : Computational Science and Engineer- ing Programs in the United States, http: //www. stat. co- lostate, edu/- estep/education/cse/siam- estep- cse. pdf.
  • 10Turner (2006) ; Undergraduate Computational Science and Engineering Education, September 20, 2006, http ://www. siam. org/about/pdf/CSE Report. pdf \ bibitemTurner, 1Turner, Peter, et al( 2011 ) - Undergraduate Computational Science and Engineering Education, SIAM WORKING GROUP ON CSE UNDERGRADUATE EDUCATION,S1 AMREVIEW,Vol. 53, No. 3, pp. 561-574.

二级参考文献22

  • 1王飞跃.从计算思维到计算文化.中国计算机学会通讯,2007,3(11).
  • 2教育部高等学校计算机基础课程教学指导委员会.高等学校计算机基础教学发展战略研究报告暨计算机基础课程教学基本要求[M].北京:高等教育出版社,2009.
  • 3John Ziman. Real Science-What it is and What it means[M].上海:上海科技教育出版社,2008:178.
  • 4Jeannette M. Wing. Computational Thinking[J]. Communications of ACM, 2006, 49(3): 33-35.
  • 5杨玉良.实施通识教育,培养未来社会中坚[Z].教育部直属高校工作咨询委员第二十次全体会议大会交流发言材料,2010.
  • 6President's Information Technology Advisory Committee. Computational Science: Ensuring America's Competitiveness[EB/OL]. http://www.nitrd.gov/pitaclreportsl20050609_computationallcomputati onal.pdf, June 2005.
  • 7Peter J. Denning. Great principles of computing[J]. Communications of the ACM, 2003, 46(11).
  • 8David Patterson. Restoring the popularity of computer science[J]. Communications of the ACM, 2005, 48(9).
  • 9美国国家科学基金CPATH计划2009年项目申报说明[EB/OL].http://www.nsf.gov/cise/funding/cpath_faq.jsp#1.
  • 10美国国家科学基金CDI计划官方网站[EB/OL].http://www.nsf.gov/crssprgm/cdi/.

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