学院新闻|布院教师在数学国际学术期刊发表学术论文

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近期,我校布莱恩特学院李俊德教授与美国、加拿大的研究团队共同在流体数值科学计算领域取得重要研究进展。他的研究成果“基于有限元素法数值计算微流管道中毛细流体的动态现象研究”(On numerical modeling of capillary flow dynamics in a microchannel model by using the finite element method)在数学科学国际学术期刊《应用力学与技术物理学报》(Journal of Applied Mechanics and Technical Physics) ,以论文出版,这是布莱恩特学院首次以第一单位在国际学术期刊上发表论文,代表我院在国际化的领域又取得一项高水平的研究成果。



《应用力学与技术物理学报》主要聚焦在刊登高水平文章与研究结果为目的。其领域包括流体机械与应用物理,边界流体 超音速流、湍流、离子物理, 多项流体 与热传导等等。

李俊德教授毕业于英国牛津大学,获得数学博士学位,李教授专长应用数学、非线性物理、偏微分方程、数学建模。在布院服务近两年,并担任数学分析,统计学相关的课程授课。本文是使用数值分析方法,解决了微米尺度中的流体问题,以及工程应用中微奈米毛细芯片中的流体压力分布的问题,并解决了未来设计流体芯片中的结构问题。

布莱恩特学院是由美国布莱恩特大学(Bryant University)和北京理工大学珠海学院于2015年共同建立的创新型文理学院(Liberal Arts College)。她不仅秉承了美国文理学院博雅教育、规模小而精、注重教育质量的优良传统,而且创造性地实行文理与商科相融合的教育模式--在四年以英文为主导的学习环境下,学院的格言以“独立之精神,自由之思想”为院训,培养同学们独立思考和积极探索之学术,学院的目标是以世界一流的师资培育世界一流的人才,在此良好的学风环境下,相信老师与学生在未来科研领域都将获得了显着性的成长与各界广泛的的关注。

It is our great delight to announce that a scientific research paper entitled “On numerical modeling of capillary flow dynamics in a microchannel model by using the finite element method” by Dr. C. T. Lee of Bryant Zhuhai College, Beijing Institute of Technology Zhuhai, was accepted and published in Journal of Applied Mechanics and Technical Physics, 57(5) 2016, pp. 937-948. In addition, it is the first paper that addresses Bryant Zhuhai as a signature institution indicated by the first author in the article. This paper addressed a special type of microchannel model with submillimeter-scale geometries with the aim of exploring the capillary flows and fluid dynamics in the micro-channel using finite element method.

 

Journal of Applied Mechanics and Technical Physics presents top-level work in fluid mechanics and applied physics. Each issue contains valuable contributions on: hypersonic flow, boundary layer theory, turbulence and hydrodynamic stability, free boundary flows, plasma physics, shock waves, explosives and detonation processes, combustion theory, multiphase flows, heat and mass transfer, composite materials, thermal properties of new materials, plasticity, creep, and failure.

 

Dr. Lee joined in Bryant Zhuhai college in 2016 holding the professorship and taught mathematics-related courses in college. The primary research interests of Dr. Lee include Nonlinear Physics, Mathematical Modeling, Statistical modeling, Numerical Analysis and Scientific Computing. Not only has Dr. Lee’s research made a global impact on field of micro-fluidic dynamics, he has also made significant contributions to the area of nonlinear physics. 

 

Bryant Zhuhai College is located within the Beijing Institute of Technology Zhuhai and will continue to advance Bryant University's reputation for innovation and excellence in its academic programs with the aim to educate and inspire students to discover their passion, become innovative leaders with character, and make a difference around the world. Bryant Zhuhai's innovative academic programs are attuned to the needs of industry and society in both USA and China.


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图文:李俊德教授

编辑:罗婉元

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