张锋

  • 发布时间:2019-09-17
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  • 作者:
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  • 阅读次数:1703




张  锋 

Feng Zhang 

教授、博导 

办公电话: 13023058896

邮箱: fzhang188@163.com



教育背景及工作经历

  • 2001-2006 兰州大学,生态学,博士(硕博连读) 

  • 1993-1997 西北师范大学,数学,学士 

  • 2018-至今 新浦金350vip教授 

  • 2015-2018 甘肃农业大学理学院特聘教授 

  • 2013-2015 南非斯坦陵布什大学数学系研究员 

  • 2009-2012 南非斯坦陵布什大学入侵生物研究中心博士后 

  • 2006-2009 甘肃农业大学理学院副教授 

  • 1997-2006 甘肃农业大学理学院助教和讲师 

研究方向 

  • 研究兴趣在生态学、数学和物理学的交叉界面上,主要通过数学模型和计算机模拟解释生态系统的非随机模式和物理性质,揭示其生态和进化机理,探索生物多样性的形成和维持机制。目前主要研究生态与进化反馈的复杂性和微生物群落的互作关系。在Ecology LettersEvolutionAnimal BehaviourProceedings of the Royal Society、Applied Mathematics and Computation、Nonlinear Dynamics、Chaos Solutions & Fractals 等生态学、数学和物理学领域的主流期刊上发表学术论文60 多篇。论文被Nature、Science、PNAS、Nature Communications、Nature Ecology & Evolution、Trends in Ecology & Evolution、Ecology Letters、PLoS Biology、Ecology 等期刊引用600 多次,其中被Nature Science 多次引用。 

  • 欢迎具有良好数学基础,对自然界有强烈好奇心的同学,一起探讨生态系统的复杂性和功能机理。  

开授课程

  • 现代生态学、种群生态学、理论生态学 

代表性论著(*表示通讯作者)

  • Liu YP, Wang SY, Li ML, Zhang F*, Wang RW. The emergence of adaptive diversification from plant’s light competition. Chaos Solitons & Fractals, 2021, in press (IF 5.944, JCR 1 , Top)

  • Wang SY, Liu YP, Zhang F*, Wang RW. Super-rational aspiration induced strategy updating promotes cooperation in the asymmetric prisoner’s dilemma game. Applied Mathematics and Computation, 2021, 403: 126180 (IF 4.091, JCR 1 ,Top)

  • Zhang F*, Zhang JM, Cao ML, Zhang Y, Hui C. Exponential damping: The key to successful containment of COVID-19. Frontiers in Public Health, 2021, 8: 580619 (IF 3.709, JCR3 )

  • Liu YP, Wang L, Zhang F*, Wang RW. Diffusion sustains cooperation via forming diverse spatial patterns in prisoner's dilemma game. Applied Mathematics and Computation, 2020, 375: 125077. (IF 4.091, JCR 1 ,Top)

  • Yang XQ, Zhang F*, Wang WX. Predation promotes cooperation in Prisoner's Dilemma Games. Physica A: Statistical Mechanics and its Applications, 2019, 514: 20-24. (IF 3.263, JCR 2 )

  • Zhang D, Song WX, Chen NL, Zhang F*. The role of spatial scale in organism-environment positive feedback. Nonlinear Dynamics, 2019, 95: 2019–2029 (IF 4.867, JCR 1 ,Top)

  • Nuwagaba S, Zhang F*, Hui C. A hybrid behavioural rule of adaptation and drift explains the emergent architecture of antagonistic networks. Proceedings of the Royal Society B: Biological Sciences, 2015, 282: 20150320. (IF 4.823, JCR 2 ,Top)

  • Zhang F, Hui C. Recent experience-driven behavior optimizes foraging. Animal Behaviour, 2014, 88:13-19. (IF 3.137, JCR 1 ,Top)

  • Zhang F, Hui C, Pauw A. Adaptive divergence in Darwin’s race: How coevolution can generate trait diversity in a pollination system. Evolution, 2013, 67: 548-560. (IF 4.659, JCR 2 ,Top)

  • Zhang F*, Tao Y, Hui C. Organism-induced habitat restoration leads to bi-stability in metapopulations. Mathematical Biosciences, 2012, 240: 260-266. (IF 1.454, JCR 3 )

  • Zhang F*, Hui C. Eco-evolutionary feedback and the invasion of cooperation in prisoner’s dilemma games. PLoS ONE, 2011, 6(11): e27523. (IF 4.092, JCR 2 )

  • Zhang F*, Hui C, Terblanche JS. An interaction switch predicts the nested architecture of mutualistic networks. Ecology Letters, 2011, 14: 797-803. (IF 17.557, JCR 1 ,Top)


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