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个人简介

教育经历 学士(2002),德国汉堡应用科技大学 (HAW Hamburg); 硕士(2005),德国凯泽斯劳滕工业大学 (TU Kaiserslautern); 博士(2011),德国亚琛工业大学 (RWTH Aachen University)。 工作经历 科研项目经理(2011-2013),德国埃斯凯普研究协会; 博士后研究员(2013-2014),德国亚琛工业大学机械工程学院化学工程中心过程系统工程研究所; 博士后研究员(2014-2016)德国亥姆霍兹国家研究中心联合会于里希研究中心; 副教授(2016-2017), 中山大学化学工程与技术学院; 教授(2017-今), 中山大学化学工程与技术学院。

研究领域

1.数学建模与高性能科学计算 2.大规模传热传质反问题 3.气候-化学交互作用,大气传输和化学过程:反演模拟 4.大数据分析与科学可视化

近期论文

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T. Rößler*, O. Stein, Y. Heng, P. Baumeister, and L. Hoffmann, Trajectory errors of different numerical integration schemesdiagnosed with the MPTRAC advection module driven by ECMWFoperational analyses, Geoscientific Model Development, Accepted, 2017. P. Bandi, S. Groß, Y. Heng, W. Marquardt, A. Mhamdi, M. Modigell,A. Reusken, L. Zhang, On reduced modeling of mass transport in wavy falling films,AIChE Journal, Accepted, 2017. Y.Q. Wang, S.S. Lyu, J.L. Luo, Z.Y. Luo, Y.X. Fu, Y. Heng,J.H. Zhang and D.C. Mo*, Copper Vertical Micro Dendrite Fin Arrays and their Superior Boiling Heat Transfer Capability,Applied Surface Science, 422, 388–393, 2017. Z.Y. Luo, S.S. Lyu, Y.X. Fu, Y. Heng, D.C. Mo*,The Janus effect on superhydrophilic Cu mesh decorated with Ni-NiO/Ni(OH) 2 core-shell nanoparticles for oil/water separation,Applied Surface Science, 409, 431–437, 2017. K.X. Chen, S.S.Lyu, Z.Y. Luo, Y.X. Fu, Y. Heng and D.C. Mo*, Theoretical Design of New Two-Dimensional Topological Insulator Family, Physical Chemistry Chemical Physics, 19, 7481­–7485, 2017. Y. Heng*, L. Hoffmann, S. Griessbach, T. Rößler, and O. Stein: Inverse transport modeling of volcanic sulfur dioxide emissions using large-scale simulations, Geoscientific Model Development, 9, 1627–1645, 2016. L. Hoffmann*, T. Roessler, S. Griessbach, Y. Heng, and O. Stein: Lagrangian transport simulations of volcanic sulfur dioxide emissions: impact of meteorological data products,Journal of Geophysical Research: Atmospheres, 121, 4651–4673, 2016. J. Petkovsek, Y. Heng, M. Zupancic, H. Gjerkes, F. Cimerman, I. Golobic*, IR thermographic investigation of nucleate pool boiling at high heat flux,International Journal of Refrigeration, 61, 127–139, 2016. Y. Heng*: Mathematical Formulation and Efficient Solution of 3D Inverse Heat Transfer Problems in Pool Boiling, FortschrittBerichte, VDI Verlag (德国工程师协会出版社), Series 3, Nr. 922, 164 pages, 2011. S. Lu, Y. Heng*, A. Mhamdi, A robust and fast algorithm for three-dimensional transient inverse heat conduction problems, International Journal of Heat and Mass Transfer, 55, 7865-7872, 2012. Y. Heng*, M. Soemers, M. Theissen, WissensbasierteAufbereitung von Prozessdatenmit Workflow-Support, MitteldeutscheMitteilungen, VDI Verlag (德国工程师协会出版社), 1/2012, 8-9, 2012. Y. Heng, M. Karalashvili, A. Mhamdi, W. Marquardt*, A multi-level adaptive solution strategy for 3D inverse problems in pool boiling, International Journal of Numerical Methods for Heat and Fluid Flow, 21, 469-493, 2011. Y. Heng, S. Lu*, A. Mhamdi, S. V. Pereverzev, Model functions in the modified L-curve method - case study: the heat flux reconstruction in pool boiling, Inverse Problems, 26, 055006, 13 pages, 2010. A. A. Nejad, M. J. Maghrebi, H. B. Tabrizi*, Y. Heng, A. Mhamdi, W. Marquardt, Optimal Operation of alloy material in solidification processes with inverse heat transfer,International Communications in Heat and Mass Transfer, 37, 711-716, 2010. Y. Heng, A. Mhamdi, E. Wagner, P. Stephan, W. Marquardt*, Estimation of local nucleate boiling heat flux using a three-dimensional transient heat conduction model,Inverse Problems in Science and Engineering, 18, 279-294, 2010. Y. Heng, A. Mhamdi, W. Marquardt*, Efficient reconstruction of local heat fluxes in pool boiling experiments by goal-oriented adaptive mesh refinement, Heat and Mass Transfer, 46, 1121-1135, 2010. H. Egger, Y. Heng*, A. Mhamdi, W. Marquardt, Efficient solution of a three dimensional inverse heat conduction problem in pool boiling, Inverse Problems, 25, 095006, 19 pages, 2009. Y. Heng, A. Mhamdi, S. Gross, A. Reusken, M. Buchholz, H. Auracher, W. Marquardt*, Reconstruction of local heat fluxes in pool boiling experiments along the entire boiling curve from high resolution transient temperature measurements, International Journal of Heat and Mass Transfer, 51, 5072-5087, 2008.

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