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胡德安

(湖南大學機械與運載工程學院教授、博導)

鎖定
胡德安,男,1977年10月生,漢族,博士,湖南大學機械與運載工程學院教授、博士生導師。 [1] 
中文名
胡德安
國    籍
中國
民    族
漢族
出生日期
1977年10月
畢業院校
湖南大學
學位/學歷
博士
職    業
教師
專業方向
特種車輛 機器人設計與開發 防護材料/結構設計與分析
職    務
湖南大學機械與運載工程學院院長助理
學術代表作
《局部Petrov-Galerkin方法在非線性邊值問題中的應用》,
職    稱
教授

胡德安人物經歷

胡德安教育經歷

2003年03月-2006年03月 湖南大學力學與航空航天學院,獲博士學位 [1] 

胡德安工作經歷

2006年06月-2007年05月 湖南大學機械與汽車工程學院,講師
2006年09月-2011年06月 湖南大學機械工程博士後流動站從事研究工作
2013年06月-2014年05月 澳大利亞昆士蘭科技大學訪問學者
2007年06月-2014年11月 湖南大學機械與運載工程學院,副教授
2007年06月-至今 碩士研究生導師
2014年12月-至今 湖南大學機械與運載工程學院,教授,博士生導師
2017年11月-至今 湖南大學機械與運載工程學院,院長助理 [1] 

胡德安學術兼職

目前為國際華人計算力學協會(ICACM)理事、中國計算力學專業委員會特邀委員、無網格與粒子類方法專業組委員、計算爆炸力學專業組委員以及南方計算力學聯絡委員會委員。多次受邀參加國際、國內學術會議並作大會報告、邀請報告,作為大會組委會副主席、秘書長或分會場主席組織多次國際、國內學術會議。擔任國際期刊《International Journal of Novel Ideas: Computational Methodology》編委。國家自然科學基金通訊評審員。多個國際、國內核心期刊審稿人。 [1] 

胡德安研究領域

特種車輛
機器人設計與開發
防護材料/結構設計與分析
設計軟件開發與應用 [1] 

胡德安科研項目

主持包括國防“973”子項目、軍民融合項目、裝備預研基金項目、國家自然科學基金面上項目、國家自然科學基金青年基金項目等在內的多項國家級課題以及企業橫向課題。2009至2013年期間,作為技術主管負責國防“973”項目(湖南大學為總體單位)的實施和管理,該項目研究成果獲得了軍方有關單位的認可。另外,作為主要研究人員,參與了國家重點基礎研究發展計劃(國家“973”計劃)、國家基金委創新羣體項目、國家傑出青年基金、“十一五”國防基礎科研重點項目、總裝備部預先研究項目、教育部國防基礎研究項目等多項課題。 [1] 

胡德安學術成果

在“Computer Methods in Applied Mechanics and Engineering”、“Journal of Computational Physics”、“International Journal for Numerical Methods in Engineering”、“International Journal of Impact Engineering”、“Composites Science and Technology”、“Composite Structures”和“Ceramics International”等國際、國內核心期刊上發表科研論文80餘篇,其中SCI論文50餘篇;撰寫國防報告多篇;授權和申請國家發明專利6項;授權計算機軟件著作權3項。獲得2009年湖南省國防科學技術進步二等獎和2010年湖南省自然科學三等獎。2015年獲得第三屆杜慶華工程計算方法優秀青年學者獎。2016年獲得湖南省傑出青年基金項目資助。2017年獲得湖南省研究生思想政治教育研究會優秀案例獎。 [1] 
代表論文
[1]Li Liu, Dean Hu* and Xu Han*. A three-dimensional unit cell model with controllable crimped structure for investigating finite strain response of collagen fiber reinforced biological composite. Composites Science and Technology, 2018, 164: 178-186.
[2]Ping Liu, Dean Hu*, Qiankun Wu and Xuemei Liu. Sensitivity and uncertainty analysis of interfacial friction effect in SHPB tests for concrete materials. Construction and Building Materials. 2018, 163: 414-427.
[3]Detao Wan, Dean Hu*, Sundararajan Natarajan, Stéphane P.A. Bordas and Ting Long. A linear smoothed higher-order CS-FEM for the analysis of notched laminated composites. Engineering Analysis with Boundary Elements, 2017, 85: 127-135.
[4]Ting Long, Dean Hu*, Detao Wan, Chen Zhuang and Gang Yang. An arbitrary boundary with ghost particles incorporated in coupled FEM-SPH model for FSI problems. Journal of Computational Physics, 2017, 350:166-183.
[5]Detao Wan, Dean Hu*, Sundararajan Natarajan, Stéphane P.A. Bordas and Ting Long. A linear smoothed quadratic finite element for the analysis of laminated composite Reissner–Mindlin plates. Composite Structures, 2017, 180: 395-411.
[6]Lixuan Zhang, Gang Yang* and Dean Hu. Identification of Voids in Structures Based on Level Set Method and FEM. International Journal of Computational Methods, 2017, DOI: 10.1142/S0219876218500159.
[7]Gang Yang, Dean Hu*, Xu Han* and Guowei Ma. An extended edge-based smoothed discrete shear gap method for free vibration analysis of cracked Reissner-Mindlin plate. Applied Mathematical Modelling, 2017, DOI: 10.1016/j.apm.2017.06.046.
[8]Zhiwei Shen, Dean Hu*, Youmin Zhang and Xu Han. Continuous twice-impacts analysis of UHMWPE laminate fixed with bolted joints. International Journal of Impact Engineering, 2017, 109:293-301.
[9]Dean Hu*, Youmin Zhang, Zhiwei Shen and Qingyu Cai. Investigation on the ballistic behavior of mosaic SiC/UHMWPE composite armor system. Ceramics International, 2017, 43: 10368-10376.
[10]Detao Wan, Dean Hu*, Sundararajan Natarajan, Stéphane P.A. Bordas, Gang Yang. A fully smoothed XFEM for analysis of axisymmetric problems with weak discontinuities. International Journal for Numerical Methods in Engineering, 2017, 110(3): 203-226.
[11]Chen Zhuang, Gang Yang*, Ting Long and Dean Hu. Numerical comparison of removal and deposition for fully-distributed particles in central- and split-type air-conditioning rooms. Building and Environment, 2017, 112: 17-28.
[12]Gang Yang*, Dean Hu*, Guowei Ma, Shuyao Long. The improved smoothed DSG elements based on global coordinate for analysis of Reissner-Mindlin plates. Acta Mechanica Sinica, 2017, DOI 10.1007/s10409-016-0607-x.
[13]Ping Liu, Xu Han, Dean Hu* and Chao Jiang. Sensitivity and Uncertainty Analysis of SHPB tests for Concrete Materials. International Journal of Applied Mechanics, 2016, 8(8): 1650088-1-23.
[14]Kang Xia, Haifei Zhan*, De'an Hu and Yuantong Gu. Failure mechanism of monolayer graphene under hypervelocity impact of spherical projectile. Scientific Reports, 2016, DOI: 10.1038/srep33139.
[15]Detao Wan, Dean Hu*, Gang Yang, Ting Long. A fully smoothed finite element method for analysis of axisymmetric problems. Engineering analysis with boundary elements, 2016, 72: 78-88.
[16]Ting Long, Dean Hu*, Gang Yang and Detao Wan. A particle-element contact algorithm incorporated into the coupling methods of FEM-ISPH and FEM-WCSPH for FSI problems. Ocean Engineering, 2016, 123: 154-163.
[17]Dean Hu*, Yigang Wang, Haifei Zhan, Gang Yang, Shuyao Long. A new type of high-order element based on the mesh-free interpolation. Engineering analysis with boundary elements, 2016, 65: 63-71.
[18]Gang Yang, Dean Hu*, Guowei Ma, Detao Wan. A novel integration scheme for solution of consistent mass matrix in free and forced vibration analysis. Meccanica, 2016, 51(8): 1897-1911.
[19]Yigang Wang, Dean Hu*, Gang Yang, Xu Han and Y.T. Gu. An effective sub-domain smoothed Galerkin method for free and forced vibration analysis. Meccanica, 2015, 50: 1285-1301.
[20]G. Yang*, X Han, D.A. Hu. Simulation of explosively driven metallic tubes by the cylindrical smoothed particle hydrodynamics method. Shock Waves, 2015, 25: 573-587.
[21]Tong Li*, Ling Liu, Dean Hu and et.al, Comprehensive Contribution of Filament Thickness and Crosslinker Failure to the Rheological Property of F-actin Cytoskeleton. Cellular and Molecular Bioengineering, 2015, DOI: 10.1007/s12195-015-0382-y.
[22]Dean Hu, Ting Long, Yihua Xiao, Xu Han and Yuantong Gu*. Fluid-structure interaction analysis by coupled FE-SPH model based on a novel searching algorithm. Computer Methods in Applied Mechanics and Engineering, 2014, 276: 266-286.
[23]De’an Hu*, Chunhan Liu, Yihan Xiao and Xu Han. Analysis of explosion in concrete by axisymmetric FE-SPH adaptive coupling method. Engineering Computations, 2014, 31(4): 758-774.
[24]Dean Hu, Yigang Wang, G.R. Liu, Tong Li, Xu Han and Y.T. Gu*. A sub-domain smoothed Galerkin method for solid mechanics problems. International Journal for Numerical Methods in Engineering, 2014, 98: 781-798.
[25]Dean Hu*, Yigang Wang, Yangyang Li, Yuantong Gu and Xu Han. A Meshfree-Based Local Galerkin Method with Condensation of Degree of Freedom. Finite Elements in Analysis and Design, 2014, 78: 16-24.
[26]De’an Hu*, Yigang Wang, Yangyang Li and Xu Han. A Meshfree-Based Local Galerkin Method with Condensation of Degree of Freedom for Elastic Dynamic Analysis. Acta Mechanica Sinica, 2014, 30(1): 92-99.
[27]Dean Hu*, Ting Long, Chunhan Liu, Gang Yang and Xu Han. Swelling Movement induced by Underground Explosion of Aluminized Explosive in Multilayered Compact Material. International Journal of Rock Mechanics and Mining Sciences, 2014, 71: 330-339.
[28]Dean Hu*, Yangyang Li, Xu Han, Gang Yang and Chao Jiang. A Sub-Domain RPIM with Condensation of Degree of Freedom. Engineering Analysis with Boundary Elements, 2013, 37: 1161-1168.
[29]De'an Hu*, Zhanhua Sun, Chao Liang and Xu Han. A meshfree algorithm for the dynamic impact analysis of hyperelasticity. Acta Mechanica Solida Sinica, 2013, 26(4): 362-372. [1] 
參考資料
  • 1.    師資隊伍  .湖南大學機械與運載工程學院官網[引用日期2017-07-26]