张露婵
  • 教育程度:博士研究生

  • 职称:副教授

  • 电话:

  • 邮箱:zhanglc@szu.edu.cn

  • 地址:汇星楼441

教程程度 博士研究生 职称 副教授
电话 邮箱 zhanglc@szu.edu.cn
地址 汇星楼441 教育经历 2014.09-2017.08 香港科技大学数学系 博士
<br>
2010.08-2012.09 新加坡南洋理工大学物理数学学院 硕士
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2006.09-2010.06 华中科技大学数学与统计学院 学士
工作经历 2026.03至今 深圳大学数学科学学院副教授
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2021.10-2026.02 深圳大学数学科学学院助理教授
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2019.09-2021.09 香港科技大学研究助理教授
<br>
2017.09-2019.09 新加坡国立大学博士后

研究领域 材料科学中的数学建模和数值模拟计算
获得荣誉 深圳市“鹏城孔雀”计划C岗
<br>
深圳大学数学科学学院2025年度高水平科研成果奖
<br>
深圳大学数学科学学院2023年度高水平科研成果奖
教学课程 《科学计算》、《高等数学A》、《线性代数》

科研成果 [1] L.C. Zhang, J. Han, Y. Xiang and D.J. Srolovitz, Equation of motion for a grain boundary, Physical Review Letters, 119, 246101, 2017.
<br>
[2] L.C. Zhang, Y.J. Gu and Y. Xiang, Energy of low angle grain boundaries based on continuum dislocation structure, Acta Materialia, 126, 11-24, 2017.
<br>
[3] L.C. Zhang and Y. Xiang, Motion of grain boundaries incorporating dislocation structure, Journal of the Mechanics and Physics of Solids, 117, 157-178, 2018.
<br>
[4] M.Y. Zhou, L. Xu, L.C. Zhang, J. Wu, Y.B. Li, and H.Y. Chen, Perfect invisibility concentrator with simplified material parameters, Frontiers of Physics, 13(4), 134101, 2018.
<br>
[5] L.C. Zhang, J. Han, Y. Xiang and D.J. Srolovitz, The effect of randomness on the strength of high-entropy alloys, Acta Materialia, 166, 424-434, 2019.
<br>
[6] C.Z. Wei, L.C. Zhang, J. Han, D.J. Srolovitz and Y. Xiang, Grain boundary triple junction dynamics: a continuum disconnection model, SIAM Journal on Applied Mathematics, 80, 1101-1122, 2020.
<br>
[7] Y. Lan, Y. Xiang and L.C. Zhang, An elastic interaction-based loss function for medical image segmentation, the 23rd International Conference on Medical Image Computing and Computer Assisted Intervention (MICCAI), 2020.
<br>
[8] L.C. Zhang and Y. Xiang, A new formulation of coupling and sliding motions of grain boundaries based on dislocation structure, SIAM Journal on Applied Mathematics, 80(6), 2365–2387, 2020.
<br>
[9] T.P. Jiang, Y. Xiang and L.C. Zhang, Stochastic Peierls-Nabarro model for dislocations in high entropy alloys, SIAM Journal on Applied Mathematics, 80(6), 2496-2517, 2020.
<br>
[10] L.C. Zhang, X.X. Qin and Y. Xiang, Continuum model for dislocation structures of semicoherent interfaces, Computational Materials Science, 190, 110277, 2021.
<br>
[11] L.C. Zhang, J. Han, Y. Xiang, and D. J. Srolovitz, Equation of motion for grain boundaries in polycrystals, npj Computational Materials, 7, 64, 2021.
<br>
[12] X.X. Qin, Y.J. Gu, L.C. Zhang and Y. Xiang, Continuum model and numerical method for dislocation structure and energy of grain boundaries, SIAM Multiscale Modeling and Simulation, 20(1), 323-348, 2022.
<br>
[13] X.X. Qin, L.C. Zhang and Y. Xiang, A three-dimensional continuum simulation method for grain boundary motion incorporating dislocation structure, Journal of Scientific Computing, 90, 3, 2022.
<br>
[14] Y. Wu, Y. Lan, L.C. Zhang and Y. Xiang, Feature flow regularization: improving structured sparsity in deep neural networks, Neural Networks, 161, 598-613, 2023.
<br>
[15] Y. H. Yang, L.C. Zhang and Y. Xiang, Stochastic continuum models for high-entropy alloys with short-range order, SIAM Multiscale Modeling and Simulation, 21 (4), 1323-1343, 2023.
<br>
[16] Y.X. Feng, Y. Lan, L.C. Zhang and Y. Xiang, ElasticLaneNet: A Geometry-Flexible Approach for Lane Detection,  IEEE/CVF Winter Conference on Applications of Computer Vision (WACV), 2025.
<br>
[17] L.C. Zhang, X.X. Qin and Y. Xiang, A unified variational model for grain boundary dynamics incorporating microscopic structure, SIAM Journal on Applied Mathematics, in press.
<br>
[18] Y. Wu, L.C. Zhang, and Y. Xiang, A Convergent ADMM Algorithm for Grain Boundary Energy Minimization, Journal of Scientific Computing, in revision.
科研项目 国家自然科学基金面上项目:晶体材料中晶界网络的动力学连续模型和数值模拟 (主持),2023.01-2025.12.
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国家自然科学基金青年基金:晶体材料中异质界面的结构、能量及动力学的连续模型和数值模拟 (主持),2023.01-2025.12.
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深圳市优秀科技创新人才培养项目(优青项目):材料科学中的数学建模和数值模拟(主持),2024.06-2027.06.
<br>
深圳市“鹏城孔雀”启动经费:晶体材料中缺陷的数学建模和数值模拟(主持),2023.01-2025.12

个人简介

张露婵,深圳大学数学科学学院副教授,博士生导师。主要从事材料科学中的数学建模和数值计算,通过多尺度建模和高性能算法探索材料中微观缺陷(位错、晶界等)的结构、能量和动力学性质,进而分析预测材料宏观力学性质(强度、韧性等)。相关工作发表在Physical Review Letters、SIAM Journal on Applied Mathematics、SIAM Multiscale Modeling and Simulation、Acta Materialia、npj Computational Materials、Journal of the Mechanics and Physics of Solids等。主持国家自然科学基金面上项目、青年基金,香港研究资助局GRF,深圳市优青等科研项目。


教育经历

  • 2014.09-2017.08 香港科技大学数学系 博士
    2010.08-2012.09 新加坡南洋理工大学物理数学学院 硕士
    2006.09-2010.06 华中科技大学数学与统计学院 学士

工作经历

  • 2026.03至今 深圳大学数学科学学院副教授
    2021.10-2026.02 深圳大学数学科学学院助理教授
    2019.09-2021.09 香港科技大学研究助理教授
    2017.09-2019.09 新加坡国立大学博士后

研究领域

  • 材料科学中的数学建模和数值模拟计算

获得荣誉

  • 深圳市“鹏城孔雀”计划C岗
    深圳大学数学科学学院2025年度高水平科研成果奖
    深圳大学数学科学学院2023年度高水平科研成果奖

教学课程

  • 《科学计算》、《高等数学A》、《线性代数》

科研成果

  • [1] L.C. Zhang, J. Han, Y. Xiang and D.J. Srolovitz, Equation of motion for a grain boundary, Physical Review Letters, 119, 246101, 2017.
    [2] L.C. Zhang, Y.J. Gu and Y. Xiang, Energy of low angle grain boundaries based on continuum dislocation structure, Acta Materialia, 126, 11-24, 2017.
    [3] L.C. Zhang and Y. Xiang, Motion of grain boundaries incorporating dislocation structure, Journal of the Mechanics and Physics of Solids, 117, 157-178, 2018.
    [4] M.Y. Zhou, L. Xu, L.C. Zhang, J. Wu, Y.B. Li, and H.Y. Chen, Perfect invisibility concentrator with simplified material parameters, Frontiers of Physics, 13(4), 134101, 2018.
    [5] L.C. Zhang, J. Han, Y. Xiang and D.J. Srolovitz, The effect of randomness on the strength of high-entropy alloys, Acta Materialia, 166, 424-434, 2019.
    [6] C.Z. Wei, L.C. Zhang, J. Han, D.J. Srolovitz and Y. Xiang, Grain boundary triple junction dynamics: a continuum disconnection model, SIAM Journal on Applied Mathematics, 80, 1101-1122, 2020.
    [7] Y. Lan, Y. Xiang and L.C. Zhang, An elastic interaction-based loss function for medical image segmentation, the 23rd International Conference on Medical Image Computing and Computer Assisted Intervention (MICCAI), 2020.
    [8] L.C. Zhang and Y. Xiang, A new formulation of coupling and sliding motions of grain boundaries based on dislocation structure, SIAM Journal on Applied Mathematics, 80(6), 2365–2387, 2020.
    [9] T.P. Jiang, Y. Xiang and L.C. Zhang, Stochastic Peierls-Nabarro model for dislocations in high entropy alloys, SIAM Journal on Applied Mathematics, 80(6), 2496-2517, 2020.
    [10] L.C. Zhang, X.X. Qin and Y. Xiang, Continuum model for dislocation structures of semicoherent interfaces, Computational Materials Science, 190, 110277, 2021.
    [11] L.C. Zhang, J. Han, Y. Xiang, and D. J. Srolovitz, Equation of motion for grain boundaries in polycrystals, npj Computational Materials, 7, 64, 2021.
    [12] X.X. Qin, Y.J. Gu, L.C. Zhang and Y. Xiang, Continuum model and numerical method for dislocation structure and energy of grain boundaries, SIAM Multiscale Modeling and Simulation, 20(1), 323-348, 2022.
    [13] X.X. Qin, L.C. Zhang and Y. Xiang, A three-dimensional continuum simulation method for grain boundary motion incorporating dislocation structure, Journal of Scientific Computing, 90, 3, 2022.
    [14] Y. Wu, Y. Lan, L.C. Zhang and Y. Xiang, Feature flow regularization: improving structured sparsity in deep neural networks, Neural Networks, 161, 598-613, 2023.
    [15] Y. H. Yang, L.C. Zhang and Y. Xiang, Stochastic continuum models for high-entropy alloys with short-range order, SIAM Multiscale Modeling and Simulation, 21 (4), 1323-1343, 2023.
    [16] Y.X. Feng, Y. Lan, L.C. Zhang and Y. Xiang, ElasticLaneNet: A Geometry-Flexible Approach for Lane Detection,  IEEE/CVF Winter Conference on Applications of Computer Vision (WACV), 2025.
    [17] L.C. Zhang, X.X. Qin and Y. Xiang, A unified variational model for grain boundary dynamics incorporating microscopic structure, SIAM Journal on Applied Mathematics, in press.
    [18] Y. Wu, L.C. Zhang, and Y. Xiang, A Convergent ADMM Algorithm for Grain Boundary Energy Minimization, Journal of Scientific Computing, in revision.

科研项目

  • 国家自然科学基金面上项目:晶体材料中晶界网络的动力学连续模型和数值模拟 (主持),2023.01-2025.12.
    国家自然科学基金青年基金:晶体材料中异质界面的结构、能量及动力学的连续模型和数值模拟 (主持),2023.01-2025.12.
    深圳市优秀科技创新人才培养项目(优青项目):材料科学中的数学建模和数值模拟(主持),2024.06-2027.06.
    深圳市“鹏城孔雀”启动经费:晶体材料中缺陷的数学建模和数值模拟(主持),2023.01-2025.12