Analysis of Development and Research Trends of Aerospace Engineering Based on CiteSpaceII

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Abstract:

The paper selected English articles between 2000 and 2012 published in 20 journals of aerospace engineering from Web of Science in 2012 as a data source. With the aid of CiteSpaceII, a kind of information visualization software, the paper analyzed Chinese research institution co-occurrence network, noun phrases and key words co-occurrence network and evolution of knowledge map of aerospace engineering. And then the paper applied the mapping knowledge domain methods to analysis of Chinese research institutions collaboration, research hotspots, knowledge base, research fronts and trends of aerospace engineering. Co-occurrence network of institutions of aerospace engineering demonstrates that there are many institutions in the aerospace engineering field but very little collaboration with other institutions. And hypersonic inlet and tangent orbit have been both research fronts of national aerospace engineering since 2000.

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Advanced Materials Research (Volumes 945-949)

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3400-3405

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June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] C Chen: Journal of the American Society for Information Science and Technology. Vol. 57(2006), pp.359-377.

Google Scholar

[2] Jianhua Hou, Chen Han: ASONAM (2011), p.551.

Google Scholar

[3] Yue Chen, Jianhua Hou, Yongxia Liang: Journal of the China Society for Scientific and Technical Information. Vol. 28(2006), pp.401-419.

Google Scholar

[4] Jianhua Hou, Chunbo Zhang, Xukun Wang: Science and Management of S&T(2008). pp.10-14.

Google Scholar

[5] Price D.J. des: Little science, Big science. New York: Columbia University Press(1963).

Google Scholar

[6] Price D.J. des: Science Since Babylon, New Haven: Yale University Press(1963).

Google Scholar

[7] Guangzhi Liu: M. Chi. Thesis(2013).

Google Scholar

[8] Chaomei Chen Ibekwe-SanJuan, Fidelia, Jianhua Hou: J. Am. Soc. Inf. Sci. Technol(2010). p.1386.

Google Scholar

[9] C Chen: Proceedings of the International Conference on Intelligent User Interfaces( IUI 2005). p.98.

Google Scholar

[10] Stengel R F: IEEE Control System Magazine. Vol. 11(1991), pp.14-23.

Google Scholar

[11] Astrom K J: Proceedings of lst European Control Conference(1991). pp.2328-2329.

Google Scholar

[12] Chunhui Liu: Journal of Astronautics, Vol. 18(1997), pp.98-105.

Google Scholar

[13] Yasong Qiu, Junqiang Bai, Jun Hua: Acta Aeronautica et Astronautica Sinica. Vol. 34(2013), pp.1249-1260.

Google Scholar

[14] Renzhang Zhu, Hongfang Wang, Yujie Xu, Yuliang Wei: Spacecraft Engineering. Vol. 20(2011), pp.11-36.

Google Scholar

[15] Risheng Xi: Chinese Journal of Space Science. Vol. 22(2002), pp.346-356.

Google Scholar

[16] Feuerbacher B, Hamacher H, Naumann R J: Material Science in Space(1986).

Google Scholar

[17] Walter H U: Fluid Science and Materials Science in Space(1987).

Google Scholar

[18] Xingzhou Liu: Journal of Propulsion Technology. Vol. 29(2008), pp.385-395.

Google Scholar

[19] Fayu Jie, Gang Li, Zhongchang Xu: Journal of Propulsion Technology(2004), pp.27-54.

Google Scholar

[20] Dongzhe Wang, Gang Zhan, Xibin CAO: Journal of Astronautics. Vol. 34(2013), pp.1434-1441.

Google Scholar

[21] Zhang G, Zhou D, Mortari D: Journal of Guidance, Control, and Dynamics. Vol. 35(2012), pp.186-194.

Google Scholar

[22] Renwei Zhang: Beijing University of Aeronautics & Astronautics Press(1998).

Google Scholar