Language : English
周焕林
  • Personal Information

    Supervisor of Doctorate Candidates
    E-Mail:
    School/Department:工程力学系
    Gender:Male
    Status:Employed
    Discipline:Solid Mechanics
  • Profile

    周焕林简介

    合肥工业大学土木与水利工程学院工程力学系博士、教授、博士生导师。主要从事基础力学和计算力学领域的教学和科研工作。发表学术论文180余篇,其中SCI论文70余篇,SCI引用1800余次,H指数24。

    主持完成/在研国家自然科学基金面上项目3项,参与完成国家自然科学基金项目3项。主持完成安徽省高等学校省级自然科学研究重点项目和教育部留学回国人员科研启动基金等省部级项目及企业委托课题40余项。主持完成舟山大跨越370m世界第一塔组立、合江长江一桥扣塔吊装、石济黄河大桥加劲弦安装、智能组塔机试点应用等重要电力、桥梁工程项目的技术研发。联合开发的系列抱杆(起重机械)广泛应用于长江、舟山大跨越及白江、川渝等特高压输电线路工程。

    依托相应科研项目,培养毕业博士和硕士研究生60余人。毕业生多人获得国家奖学金、安徽省力学学会优秀硕士和博士论文。毕业生就业情况良好,分布在高校、科研机构、国有大中型企业等。

    欢迎优秀学子报考我们计算力学课题组力学、土木工程等专业的硕士和博士研究生。

    曾任工程力学系主任、土木与水利工程学院副院长、科研院综合管理办公室副主任兼校科协办公室主任。现兼任中国力学学会理事、中国力学学会计算力学委员会特邀委员和边界元和无网格法组成员、安徽省力学学会常务理事、南方计算力学联络委员会副主任、华东基础力学与工程应用协会副理事长、《应用数学和力学》学报编委、全国周培源大学生力学竞赛(安徽赛区)暨安徽省大学生力学竞赛秘书长等。

     

    教育背景

    1993/09 1997/06,合肥工业大学,地质工程+力学,学士

    1997/09 2000/04,合肥工业大学,固体力学专业免试研究生,硕士

    2001/02 2003/11,中国科学技术大学,固体力学专业,博士

     

    工作经历

    2006/08 2007/08,英国利物浦大学,博士后

    2008/12 至今,合肥工业大学,土木与水利工程学院,教授

     

     基金项目

    [1]      国家自然科学基金面上项目,基于边界元法和机器学习的瞬态非线性热传导反问题研究,12572224,2026/01-2029/12,主持

    [2]     国家自然科学基金面上项目,基于微分转换边界元法和布谷鸟搜索算法的瞬态热传导反问题研究,11672098,2017/01-2020/12,主持

    [3]     国家自然科学基金面上项目,不适定边界条件反演问题的正则化算法及其应用,11072073,2011/01-2013/12,主持

     

     企业项目

    [1]      国网安徽省电力有限公司安庆供电公司:智能组塔机工程试点安全性分析与监测,2023-2024(79.2万)

    [2]     国网安徽省电力有限公司宣城供电公司:基于重载无人机运输的山地110kV输电线路组塔装备关键技术研究与应用,2025-2026(200.85万)

     

    学术论文

    [1]    Chen Haolong, Xie Dongxu, Yin Yu, Liu Zhanli, Zhou Huanlin*. Design of multilayer rotatable heat flux control devices based on the improved cuckoo search algorithm[J]. International Journal of Heat and Mass Transfer, 2026, 271( Part 2): 129373.

    [2]   Chen Haolong, Yi Yuanlin, Liu Zhaotao, Liu Zhanli, Zhou Huanlin*. Identification of thermal conductivities for nonhomogeneous materials based on the hybrid machine learning model[J]. International Journal of Heat and Mass Transfer, 2026, 260:128446.

    [3]   Yuan Zongsong, Zhou Huanlin*, Li Kai*. Light-fueled self-cycling dominoes via continuous barrier crossing[J]. Chaos, Solitons & Fractals, 2026, 212(Part 1):118988.

    [4]   Qiu Wenkai, Chen Haolong*, Zhou Huanlin*. Real-time identification of temperature-dependent thermo-mechanical properties of specific pressure vessels via deep learning[J]. Engineering Analysis with Boundary Elements, 2025, 180:106514.

    [5]   Qiu Wenkai, Chen Haolong, Zhou Huanlin*. A novel hybrid deep learning algorithm for estimating temperature-dependent thermal conductivity in transient heat conduction problems[J]. International Communications in Heat and Mass Transfer, 2025, 164:108871.

    [6]   Qiu Wenkai, Chen Haolong, Zhou Huanlin*. Estimating the boundary conditions for 3D transient heat conduction by bidirectional long short-term memory network and attention mechanism[J]. International Journal of Heat and Mass Transfer, 2024, 233:126042.

    [7]   Wang Chunxiu, Fang Lixue, Wang Xuan*, Zhou Huanlin*, Guo Xin. Topology optimization of steady Navier-Stokes flow using moving morphable void method[J]. Computers and Mathematics with Applications, 2024, 161:212-224.

    [8]   Chen Haolong, Tang Xinyue, Liu Zhaotao, Liu Zhanli*, Zhou Huanlin*. Predicting the temperature field of thermal cloaks in homogeneous isotropic multilayer materials based on deep learning[J]. International Journal of Heat and Mass Transfer, 2024, 219:124849.

    [9]   Chen Haolong, Yu Bo, Liu Zhanli, Zhou Huanlin*. A non-iterative methodology to reconstruct boundary shapes and conditions in isotropic linear elasticity based on the BEM[J]. Engineering Analysis with Boundary Elements, 2023, 153:12-24.

    [10] Fang Lixue, Meng Zeng, Zhou Huanlin*, Wang Xuan, Guo Xin. Topology optimization of piezoelectric actuators using moving morphable void method[J]. Structural and Multidisciplinary Optimization, 2023, 66:32.

    [11]  Meng Zeng, Luo Xuanhe, Zhou Huanlin*. Lightweight design of arcuately stiffened cylindrical shells based on smeared stiffener method and active learning strategy[J]. Thin-Walled Structures, 2022, 174:109167.

    [12] Fang Lixue, Wang Xuan, Zhou Huanlin*. Topology optimization of thermoelastic structures using MMV method[J]. Applied Mathematical Modelling, 2022, 103:604-618.

    [13] Tao Ran, Meng Zeng, Zhou Huanlin*. A self-adaptive strategy based firefly algorithm for constrained engineering design problems[J]. Applied Soft Computing, 2021, 107:107417.

    [14] Meng Zeng, Ren Shanhong, Wang Xuan, Zhou Huanlin*. System reliability-based design optimization with interval parameters by sequential moving asymptote method[J]. Structural and Multidisciplinary Optimization, 2021, 63:1767-1788.

    [15] Zhou Huanlin*, Xiao Xiong, Chen Haolong, Yu Bo. Identification of thermal conductivity for orthotropic FGMs by DT-DRBEM and L-M algorithm[J]. Inverse Problems in Science and Engineering, 2020, 28(2):196-219.

    [16] Chen Haolong, Yu Bo, Zhou Huanlin*, Meng Zeng. Improved cuckoo search algorithm for solving inverse geometry heat conduction problems[J]. Heat Transfer Engineering, 2019, 40(3-4):362-374.

    [17] Chen Haolong, Yu Bo, Zhou Huanlin*, Meng Zeng. Identification of transient boundary conditions with improved cuckoo search algorithm and polynomial approximation[J]. Engineering Analysis with Boundary Elements, 2018, 95:124-141.

    [18] Meng Zeng, Zhou Huanlin. New target performance approach for a super parametric convex model of non-probabilistic reliability-based design optimization[J]. Computer Methods in Applied Mechanics and Engineering, 2018, 339:644-662.

    [19] Meng Zeng, Zhou Huanlin, Li Gang, Hu Hao. A hybrid sequential approximate programming method for second-order reliability-based design optimization approach[J]. Acta Mechanica, 2017, 228(5):1965-1978.

    [20] Meng Zeng, Zhou Huanlin, Li Gang, Yang Dixiong. A decoupled approach for non-probabilistic reliability-based design optimization[J]. Computers and Structures, 2016, 175:65-73.

    [21] Zhou Huanlin*, Tian Yu, Yu Bo, Niu Zhongrong. The natural boundary integral equation of the orthotropic potential problem[J]. Engineering Analysis with Boundary Elements, 2016, 62:186-192.

    [22] Yu Bo, Zhou Huanlin, Chen Haolong, Tong Yu. Precise time-domain expanding dual reciprocity boundary element method for solving transient heat conduction problems[J]. International Journal of Heat and Mass Transfer, 2015, 91:110-118.

    [23] Zhou Huanlin*, Jiang Wei, Hu Hao, Niu Zhongrong. Boundary element methods for boundary condition inverse problems in elasticity using PCGM and CGM regularization[J]. Engineering Analysis with Boundary Elements, 2013, 37(11):1471-1482.

    [24] Zhou Huanlin*, Niu Zhongrong, Cheng Changzheng, Guan Zhongwei. Analytical Integral Algorithm Applied to Boundary Layer Effect and Thin Body Effect in BEM for Anisotropic Potential Problems[J]. Computers & Structures, 2008, 86(15-16):1656-1671.

    [25] Zhou Huanlin*, Niu Zhongrong, Cheng Changzheng, Guan Zhongwei. Analytical integral algorithm in the BEM for orthotropic potential problems of thin bodies[J]. Engineering Analysis with Boundary Elements, 2007, 31(9):739-748.

     

    奖励情况

    [1]     安徽省教学成果奖一等奖(研究生教育教学),2025

    [2]     应用数学和力学·钱伟长优秀论文,2025,2021

    [3]     安徽省科学技术奖三等奖,2020,2015

    [4]     安徽省科协系统先进个人,2018

    [5]     安徽省教学成果奖二等奖,2010,2008

    [6]     杜庆华工程计算方法优秀青年学者奖,2009

    [7]     全国第三届基础力学青年教师讲课比赛二等奖,2008

    [8]     安徽省中青年骨干教师,2005


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