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哈尔滨工业大学能源科学与工程学院研究生考研导师简介-赵军明

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基本信息科学研究教育教学论文专著English ProfileDownload
基本信息
赵军明,汉族,1980年生,博士,教授,博士生导师。
博士学位论文获2009年度全国优秀博士学位论文提名奖。主持国家自然科学基金面上项目1项、青年基金项目1项、国防973项目子专题1项及航天院所多项横向科研项目,同时作为主要研究人员参与自然科学基金创新群体项目、国家自然科学基金重点项目、面上项目、总装预先研究项目等。出版专著1本,发表论文70余篇,其中SCI检索50余篇,发表论著SCI他引400余篇次。

招生信息:

硕士研究生2人/年,博士研究生1~2人/年。欢迎思想活跃、踏实认真的优秀学生申报,从事新能源及微尺度热辐射领域的前沿研究,研究组为您提供自由活跃的科研氛围、出国交流机会、一流的实验条件以及具有竞争力的待遇,欢迎您的加入!

有任何问题欢迎随时Email我: jmzhao@hit.edu.cn。


荣誉称号



2008 博士论文获哈尔滨工业大学优秀博士学位论文
2009 博士论文获全国优秀博士学位论文提名论文
2009 入选哈尔滨工业大学优秀青年教师培养计划
2011 获哈尔滨工业大学第四届青年教师教学基本功竞赛二等奖
2014 入选哈尔滨工业大学基础研究杰出人才培育计划
2015 入选哈尔滨工业大学青年拔尖人才选聘计划(教授)
2016 JQSRT/Elsevier Viskanta Young Scientist Award(新闻报道)


工作经历

2007年9月-2008年8月,香港理工大学,机械工程系,研究助理

2008年6月-2010年6月,哈尔滨工业大学,能源科学与工程学院,讲师

2010年5月-,哈尔滨工业大学,能源科学与工程学院,硕士生导师

2010年7月-2015年12月,哈尔滨工业大学,能源科学与工程学院,副教授

2013年4月-,哈尔滨工业大学,能源科学与工程学院,博导

2013年7月-2014年7月,Georgia Institute of Technology, School of Mechanical Engineering, Visiting Scholar

2015年12月-,哈尔滨工业大学,能源科学与工程学院,教授


教育经历

2004.9 - 2007.7,哈尔滨工业大学,工程热物理专业,博士

2002.9 - 2004.7,哈尔滨工业大学,流体机械专业,硕士

1998.9 - 2002.7,哈尔滨工业大学,流体机械专业,本科


主要任职



国际传热传质中心理事会成员(Member of the Scientific Council of the International Centre for Heat and Mass Transfer (ICHMT))
美国机械工程师学会会员(Member of American Society of Mechanical Engineers (ASME))
美国航空航天学会会员(Member of American Institute of Aeronautics and Astronautic (AIAA))
国际应用光谱协会会员(Member of Society for Applied Spectroscopy (SAS))
浙江大学煤炭分级转化清洁发电协同创新中心研究员
教育部学位中心学位论文评议专家
国家自然科学基金通讯评议专家
科技部专家库项目评审专家
Organization Committee Members: 2nd International Workshop on Micro-Nano Thermal Radiation: Energy, Manufacturing, Materials and Sensing
下列杂志论文评阅人:
ASME Journal of Heat Transfer
International Journal of Heat and Mass Transfer
Journal of Quantitative Spectroscopy and Radiative Transfer
International Journal of Thermal Sciences
Physical Review B
Optics Express
Applied Optics
Optics & Laser Technology
The Astrophysical Journal
International Journal of Numerical Methods for Heat and Fluid Flow
Bioresource Technology
AIAA Journal of Thermophysics and Heat Transfer
Heat Transfer Research
Computational Thermal Sciences
Journal of Porous Media
Transport in Porous media
Applied Spectrosopy
Optics and Laser Technology
Applied Mathematical Modelling
SCIENCE CHINA Technological Sciences
IEEE Photonics
IEEE Access


链接

链接名称ResearchGate

链接地址http://www.researchgate.net/profile/J_Zhao5



链接名称我的科学网博客

链接地址http://blog.sciencenet.cn/u/jmzhao


研究领域
微纳尺度近场辐射换热,表面及介质辐射特性调控理论

增材制造(3D打印)过程的热物理问题

微藻/细胞辐射特性/光学特性
新颖太阳能材料、节能材料设计及热辐射物性

基于辐射传输的非接触测量理论

计算热辐射学、目标红外辐射特性建模与仿真

粗糙表面及颗粒散射(BRDF及散射相函数)理论及实验研究


科研项目

项目名称

项目来源

起讫时间

承担角色

项目类别
能源微藻光生物反应器内的热辐射传输基础问题

国家自然科学基金面上项目

2013年1月~

负责人

纵向项目
利用热辐射光子隧通的多模式耦合传热及传热强化

哈尔滨工业大学基础研究杰出人才培育计划

2014年1月~

负责人

纵向项目
固体材料高温基础 辐射物性的实验测 量与理论建模

国家自然科学基金重点项目

2014年1月~

参与

纵向项目
地物双向反射分布特性

973子专题

2013年5月~

负责人

纵向项目
基于显卡并行加速的实时红外仿真计算模块研制

航天二院

2013年6月~

负责人

横向项目
密集粒子系相干辐射特性及近场辐射换热

哈尔滨工业大学青年拔尖人才选聘计划

2016年1月~

负责人

纵向项目
微结构辐射特性及其调控机理

国际自然科学基金重点项目

2009年1月~

参与

纵向项目
梯度折射率介质内瞬态矢量辐射传输机理及其数值模拟

国家自然科学基金面上

2011年1月~

参与

纵向项目
模型传热分析及软件研制

航天二院

2012年7月~

负责人

横向项目
泡沫金属等效热辐射特性及其预测方法

国家自然科学基金青年基金

2010年1月~

负责人

纵向项目
热辐射传输与流动控制

国家自然科学基金创新群体

2015年1月~

参与

纵向项目
热辐射微尺度效应

总装预研

2011年1月~

参与

纵向项目
红外辐射计算模型和并行算法

航天二院

2014年11月~

负责人

横向项目
背景红外辐射特性计算模块研制

航天二院

2009年2月~

参与

横向项目


讲授课程
本科生:
《传热学》

《太阳能工程》

研究生:

《计算传热学》

《统计热力学》

《微尺度热物理》

招生信息

硕士招生:

硕士研究生2人/年;

博士招生:

博士研究生1~2人/年;

欢迎思想活跃、踏实认真的优秀学生申报,从事新能源及微尺度热辐射领域的前沿研究,研究组为您提供自由活跃的科研氛围、出国交流机会、一流的实验条件以及具有竞争力的待遇,欢迎您的加入!

有任何问题欢迎随时Email我: jmzhao@hit.edu.cn。


出版物
专著

Invited book chapter:
J.M. Zhao, L.H. Liu, 2017,“Radiative Transfer Equation and Solutions", DOI: 10.1007/978-3-319-32003-8_56-1
In book: Handbook of Thermal Science and Engineering, Publisher: Springer, Editors: F.A. Kulachi

刘林华,赵军明, 谈和平. 辐射传递方程数值模拟的有限元和谱元法.科学出版社. 2008.

教材

帅永,齐宏, 艾青, 赵军明. 热辐射测量技术.哈尔滨工业大学出版社.2014.

代表性论文
J. Dong, J.M. Zhao*, L.H. Liu*. Radiative heat transfer in many-body systems: Coupled electric and magnetic dipole approach. Physical Review B, 2017, 95(12): 125411

J. Dong, J.M. Zhao*, L.H. Liu*. Long-distance near-field energy transport via propagating surface waves. Physical Review B, 2018, 97(7): 075422.

J.M. Zhao, Z.M. Zhang*. Electromagnetic energy storage and power dissipation in nanostructures.Journal of Quantitative Spectroscopy and Radiative Transfer. Jan. 2015, 151: 49-57.

J. M. Zhao, J. Y. Tan, L. H. Liu*. On the derivation of vector radiative transfer equation for polarized radiative transport in graded index media.Journal of Quantitative Spectroscopy and Radiative Transfer. February 2012, 113(3): 239-250.

J.M. Zhao, J.Y. Tan, L.H. Liu*. A Second Order Radiative Transfer Equation and Its Solution by Meshless Method with Applications to Strongly Inhomogeneous Media. Journal of Computational Physics. Jan. 2013, 232(1): 431–455.

J.M. Zhao*, C.Y. Ma, L.H. Liu*. Temporal scaling of the growth dependent optical properties of microalgae.Journal of Quantitative Spectroscopy and Radiative Transfer. 2018, 214: 61-70

B. Zhao, J. M. Zhao, and Z. M. Zhang*. Enhancement of near-infrared absorption in graphene with metal gratings.Applied Physics Letters. July 2014, 105: 031905. [ESI高被引论文,引用次数为“Physics学术领域同一出版年最优秀的前1%”]

X. C. Li, J. M. Zhao*, C.C. Wang, L. H. Liu*. Improved transmission method for measuring the optical extinction coefficient of micro/nano particle suspensions. Applied Optics. 2016, 55(29): 8171-8179.

J.M. Zhao, J.Y. Tan, L.H. Liu*. Monte Carlo method for polarized radiative transfer in gradient index media. Journal of Quantitative Spectroscopy and Radiative Transfer. Feb. 2015, 152: 114–126.

J.M. Zhao, L.H. Liu*. Second Order Radiative Transfer Equation and Its Properties of Numerical Solution Using Finite Element Method. Numerical Heat Transfer Part B. April 2007, 51(3):391-409.

邀请报告


J. M. Zhao. “Radiative Heat Transfer in Micro/nano Particle Suspensions: a First Principle Approach”. 2019 Progress in Electromagnetics Research Symposium, 17-20 June 2019, Rome, Italy

J. M. Zhao. “Near-field Radiative Heat Transfer in Particulate system”. China-Japan Heat Transfer Symposium 2019, Jan 15, 2019, Tianjin, China

赵军明. “稠密颗粒介质辐射换热研究进展”. 2018中国工程热物理学会传热传质会议. 2018.10.12-15, 哈尔滨

赵军明. “散射性梯度折射率介质内偏振光传输”. 第三届全国偏振与椭偏测量研讨会. 2018.11.11-13, 深圳

J. M. Zhao. “Electromagnetic Energy Density in Dispersive and Dissipative Media: a Review”. The Third International Workshop Nano-Micro Thermal Radiation (NanoRad 2017). June 26-28, 2017, Daejeon, South Korea

J. M. Zhao. “Radiative Properties of Microalgae for Biofuel Production”. The 3rd Sino-EU Doctoral School for Sustainability Engineering. Aug 30-Sept 1, 2016, Harbin, China

论文列表


期刊论文:

1. M.G. Luo, J. Dong, J.M. Zhao*, L.H. Liu. Radiative heat transfer between metallic nanoparticle clusters in both near field and far field. Physical Review B. 2019, 99:134207.

2. B.W. Xie, L.X. Ma, J.M. Zhao, L.H. Liu. Dependent absorption property of nanoparticle clusters: an investigation of the competing effects in the near field. Optics Express. 2019, 27(8): A280-A291.

3. Z. Qin, J.M. Zhao, L.H. Liu*. Theoretical study on low-lying electronic states of CP radical: Energy levels, Einstein coefficients, Franck-Condon factors and radiative lifetimes. Journal of Quantitative Spectroscopy & Radiative Transfer. 2019, 230: 36-47.

4. Z. Qin, J.M. Zhao, L.H. Liu*. Energy Levels, Transition Dipole Moment, Transition Probabilities and Radiative Lifetimes for Low-lying Electronic States of PN. Journal of Quantitative Spectroscopy and Radiative Transfer. 2019, 227: 47-56.

5. Z. Qin, J.M. Zhao, L.H. Liu*. Radiative transition probabilities between low-lying electronic states of N2. Molecular Physics. 2019, DOI: 10.1080/**.2018.**

6. C.Y. Ma, J.M. Zhao*, L.H. Liu. Theoretical analysis of the radiative properties of pronucleus multicellular Cyanobacteria. Journal of Quantitative Spectroscopy & Radiative Transfer. 2019, 224: 91-102.

7. C.Y. Ma, J.M. Zhao*, L.H. Liu*, L. Zhang. Growth-dependent radiative properties of chlorella vulgaris and its influence on prediction of light fluence rate in photobioreactor. Journal of Applied Phycology. 2019, 31: 235–247.

8. B.W. Xie, J. Dong, J.M. Zhao, L.H. Liu. Radiative properties of hedgehog-like ZnO-Au composite particles with applications to photocatalysis. Journal of Quantitative Spectroscopy & Radiative Transfer. 2018, 217: 1-12.

9. C.Y. Ma, J.M. Zhao*, L.H. Liu, Experimental study of the temporal scaling characteristics of growth-dependent radiative properties of Spirulina platensis. Journal of Quantitative Spectroscopy & Radiative Transfer. SEP 2018, 217: 453-458.

10. 马春阳, 赵军明*, 刘林华. 鱼腥藻辐射特性实验研究. 工程热物理学报. 2018, 39: 2260-2263.

11. J.M. Zhao*, C.Y. Ma, L.H. Liu*. Temporal scaling of the growth dependent optical properties of microalgae. J. Quant. Spectrosc. Radiat. Transfer. 2018, 214: 61-70

12. 马春阳, 宋功发, 赵军明*, 刘林华. 微藻生长期辐射特性测量方法. 哈尔滨工业大学学报. 2018, 50(1): 50-58

13. Z. Qin, J.M. Zhao, L.H. Liu*. High-temperature partition functions, specific heats and spectral radiative properties of diatomic molecules with an improved calculation of energy levels. Journal of Quantitative Spectroscopy and Radiative Transfer, 2018, 210: 1-18.

14. X.C. Li, C.C. Wang, J. M. Zhao*, L.H. Liu*. Temperature-dependent optical constants of highly transparent solids determined by the combined double optical pathlength transmission-ellipsometry method. Applied Optics, 2018, 57(5): 1260-1266.

15. J. Dong, J.M. Zhao*, L.H. Liu*. Long-distance near-field energy transport via propagating surface waves. Physical Review B, 2018, 97(7): 075422.

16. Z. Qin, J.M. Zhao, L.H. Liu*. Radiative transition probabilities for the main diatomic electronic systems of N-2, N-2(+), NO, O-2, CO, CO+, CN, C-2 and H-2 produced in plasma of atmospheric entry. Journal of Quantitative Spectroscopy and Radiative Transfer, 2017, 202: 286-301.

17. Y.B. Liu, J. Qiu*, J.M. Zhao, L.H. Liu*. General design method of ultra-broadband perfect absorbers based on magnetic polaritons. Optical express, 2017, 25(20): A980.

18. L.X. Ma, J.Y. Tan*, J.M. Zhao*, F.Q. Wang, C.A. Wang. Dependent scattering and absorption by densely packed discrete spherical particles: Effects of complex refractive index. Journal of Quantitative Spectroscopy and Radiative Transfer. 2017, 196: 94-102.

19. J. Dong, J.M. Zhao*, L.H. Liu*. Radiative heat transfer in many-body systems: Coupled electric and magnetic dipole approach. Physical Review B, 2017, 95(12): 125411.

20. L.X. Ma, J.Y. Tan*, J.M. Zhao*, F.Q. Wang, C.A. Wang. Multiple and dependent scattering by densely packed discrete spheres: comparison of radiative transfer and Maxwell theory. Journal of Quantitative Spectroscopy & Radiative Transfer, 2017, 187: 255-266.

21. 李兴灿, 赵军明*, 刘林华*, 张琳. 微藻光谱衰减特性测量的一种改进方法. 科学通报. 2017, 62(4): 328-334

22. X. C. Li, C.C. Wang, J. M. Zhao*, L. H. Liu*. A new method for determining the optical constants of highly transparent solids. Applied Spectroscopy. 2017. 71(1): 70-77.

23. X. C. Li, J. M. Zhao*, L. H. Liu*, L. Zhang. Optical extinction characteristics of three biofuel production microalgae determined by an improved transmission method. Particuology.. August 2017, 33:1-10

24. J. Dong, J.M. Zhao*, L.H. Liu*. Near-field radiative heat transfer between clusters of dielectric nanoparticles. Journal of Quantitative Spectroscopy & Radiative Transfer. August 2017, 197:114-122

25. 马春阳,宋功发,赵军明*,刘林华. 小球藻细胞群散射相函数的实验研究. 工程热物理学报. 2017, 38(5): 1068-1070

26. X. C. Li, J. M. Zhao*, C.C. Wang, L. H. Liu*. Improved transmission method for measuring the optical extinction coefficient of micro/nano particle suspensions. Applied Optics. 2016, 55(29): 8171-8179.

27. 关洪宇, 张文杰, 赵军明*, 刘林华*, 史要涛. 钛合金粗糙表面的偏振光及变温BRDF特性. 红外与毫米波学报. Feb 2016, 35(1):109-115.

28. L. Zhang, J. M. Zhao*, L. H. Liu*, A new stabilized finite element formulation for solving radiative transfer equation. Journal of Heat Transfer. 2016, 138(6): 064502

29. J. Dong, J. M. Zhao, L. H. Liu*. Effect of spine-like surface structures on the radiative properties of microorganism. Journal of Quantitative Spectroscopy & Radiative Transfer. 2016, 173: 49-64.

30. C. Y. Ma, J. M. Zhao*, L. H. Liu*, L. Zhang, X. C. Li, B. C. Jiang. GPU-accelerated inverse identification of radiative properties of particle suspensions in liquid by Monte Carlo method. Journal of Quantitative Spectroscopy and Radiative Transfer. 2016, 172: 146-159.

31. 马春阳, 赵军明*, 刘林华, 姜宝成. 考虑细胞形态的小球藻光散射特性模拟. 工程热物理学报. Nov 2015, 36(11): .2437-2440.

32. J. Dong, J.M. Zhao, L.H. Liu*. Morphological effects on the radiative properties of soot aerosols in different internally mixing states with sulfate. Journal of Quantitative Spectroscopy and Radiative Transfer. July 2015, 165: 43-55.

33. B. Zhao, J. M. Zhao, and Z. M. Zhang*. Resonance enhanced absorption in a graphene monolayer using deep metal gratings. Journal of the Optical Society of America B. May 2015, 32(6):1176-1185.

34. X. C. Li, L. H. Liu*, J. M. Zhao, J.Y. Tan. Optical Properties of Sodium Chloride Solution within Spectral Range from 300 to 2500 nm at Room Temperature. Applied Spectroscopy. May 2015, 69(5): 635-640.

35. X. C. Li, J. M. Zhao, L. H. Liu*, J. Y. Tan. Optical properties of edible oils within spectral range from 300 to 2500 nm determined by double optical pathlength transmission method. Applied Optics. May 2015, 54(13): 3886-3893.

36. J.M. Zhao, J.Y. Tan, L.H. Liu*. Monte Carlo method for polarized radiative transfer in gradient index media. Journal of Quantitative Spectroscopy and Radiative Transfer. Feb. 2015, 152: 114–126.

37. J.M. Zhao, Z.M. Zhang*. Electromagnetic energy storage and power dissipation in nanostructures. Journal of Quantitative Spectroscopy and Radiative Transfer. Jan. 2015, 151: 49-57.

38. B. Zhao, J. M. Zhao, and Z. M. Zhang*. Enhancement of near-infrared absorption in graphene with metal gratings. Applied Physics Letters. July 2014, 105: 031905.

39. 刘志远, 赵军明*, 刘林华*. 微米孔径泡沫铝的光谱等效衰减系数. 工程热物理学报. Oct. 2013, 34(10): 1899-1901.

40. 张文杰, 赵军明*, 刘林华*.泡沫金属导热-辐射耦合传热的相似分析. 工程热物理学报. June 2013, 34(6): 1114-1117.

41. 刘立君*, 赵军明. 多维梯度折射率介质稳态辐射传递的扩散近似. 计算物理. 2013, 30 (1): 120–125.

42. J.M. Zhao, J.Y. Tan, L.H. Liu*. A Second Order Radiative Transfer Equation and Its Solution by Meshless Method with Applications to Strongly Inhomogeneous Media. Journal of Computational Physics. Jan. 2013, 232(1): 431–455.

43. L. Zhang, J.M. Zhao*, L.H. Liu, S.Y. Wang. Hybrid Finite Volume / Finite Element Method for Radiative Heat Transfer in Graded Index Media. Journal of Quantitative Spectroscopy and Radiative Transfer. Sep. 2012, 113(14): 1826–1835.

44. J.M. Zhao, J.Y. Tan, L.H. Liu*. A Deficiency Problem of the Least Squares Finite Element Method for Solving Radiative Transfer in Strongly Inhomogeneous Media. Journal of Quantitative Spectroscopy and Radiative Transfer. August 2012, 113(12): 1488–1502.

45. 裘俊, 刘林华*, 赵军明. 椭圆柱形光学黑洞红外辐射特性分析. 工程热物理学报. August 2012, 33(8): 1367-1370.

46. 张文杰,谭建宇,赵军明*,刘林华*. 考虑热辐射效应的泡沫金属有效导热系数数值分析.中国电机工程学报. Jan. 2012, 32(2): 104-109.

47. J. M. Zhao, J. Y. Tan, L. H. Liu*. On the derivation of vector radiative transfer equation for polarized radiative transport in graded index media. Journal of Quantitative Spectroscopy and Radiative Transfer. February 2012, 113(3): 239-250.

48. J. Y. Tan, J. M. Zhao, L. H. Liu*. Geometric Optimization of a Radiation-Conduction Heating Device Using Meshless Method. International Journal of Thermal Science. October 2011, 50(10):1820-1831.

49. 刘剑, 赵军明, 刘林华*. 单层元胞结构金属泡沫的透射特性. 工程热物理学报. December 2010, 31(12): 2101-2104.

50. 裘俊, 刘林华*, 赵军明. 氧化膜对一维随机粗糙铝表面双向反射特性影响. 工程热物理学报. Oct. 2010, 31(10): 1717-1720.

51. Md. Mahbub Alam, Y. Zhou*, J.M. Zhao, O. Flamand and O. Boujard. Classification of the tripped cylinder wake and bi-stable phenomenon. International Journal of Heat and Fluid Flow. August 2010, 31(4): 545-560.

52. L. Zhang, J. M. Zhao, L.H. Liu*. Finite Element Model for Thermal Radiative Properties in Graded Index Fiber Coated with Thin Absorbing Film. Numerical Heat Transfer Part A. July 2010, 58(2): 85-100.

53. 赵军明, 刘林华*. Mie散射偏振特性对平板介质内辐射换热的影响. 工程热物理学报. June, 2010, 31(6): 1034-1036.

54. J.M. Zhao, L. H. Liu*, P. -f. Hsu, J. Y. Tan. Spectral Element Method for Vector Radiative Transfer Equation. Journal of Quantitative Spectroscopy and Radiative Transfer. Feb. 2010, 111(3): 433-446.

55. L. Zhang, J.M. Zhao, L.H. Liu*. Finite Element Approach for Radiative Transfer in Multi-Layer Graded Index Cylindrical Medium with Fresnel Surfaces. Journal of Quantitative Spectroscopy and Radiative Transfer. Feb. 2010, 111(3): 420-432.

56. 谈和平*,刘林华*,易洪亮,赵军明,齐宏,谭建宇. 计算辐射学的进展. 科学通报. Sep 2009, 54(18): 2627-2637.

Tan HP*, Liu LH*, Yi HL, J.M. Zhao, H. Qi, J.Y. Tan. Recent progress in computational thermal radiative transfer. Chinese Science Bulletin. Nov 2009, 54(22): 4135-4147.

57. J.M. Zhao, L.H. Liu*. Three-Dimensional Transient Radiative Transfer Modeling Using Discontinuous Spectral Element Method. AIAA Journal of Thermophysics and Heat Transfer, Oct-Dec 2009, 23(4):836-840.

58. L. Zhang, J.M. Zhao, L.H. Liu*. Finite Element Method for Modeling Radiative Transfer in Semitransparent Graded index Cylindrical Medium. Journal of Quantitative Spectroscopy and Radiative Transfer. Sep. 2009, 110(13): 1085–1096.

59. J.Y. Tan, J.M. Zhao, L.H. Liu*. Comparative Study on Accuracy and Solution Cost of the First/Second-Order Radiative Transfer Equations Using Meshless Method. Numerical Heat Transfer Part B, April 2009, 55(4): 324-337.

60. J.Y. Tan, J.M. Zhao, L.H. Liu*. Meshless Method for Geometry Boundary Identification Problem of Heat Conduction. Numerical Heat Transfer Part B, Feb. 2009, 55(2): 135-154.

61. J.M. Zhao, L.H. Liu*. Spectral Element Method with Adaptive Artificial Diffusion for Solving Radiative Transfer Equation. Numerical Heat Transfer Part B, June 2008, 53(6): 536-554.

62. J.M. Zhao, L.H. Liu*. Discontinuous Spectral Element Approach for Solving Transient Radiative Transfer Equation, AIAA Journal of Thermophysics and Heat Transfer, Jan.–Mar. 2008, 22(1): 20-28.

63. J.M. Zhao, L.H. Liu*. Spectral Element Approach for Coupled Radiative and Conductive Heat Transfer in Semitransparent Medium. ASME Journal of Heat Transfer. Oct. 2007, 129(10). 1417-1424.

64. J.M. Zhao, L.H. Liu*. Discontinuous Spectral Element Method for Solving Radiative Heat Transfer in Multidimensional Semitransparent Media. Journal of Quantitative Spectroscopy and Radiative Transfer. Sep. 2007, 107(1):1-16.

65. J.M. Zhao, L.H. Liu*. Solution of Radiative Heat Transfer in Graded Index Media by Least Square Spectral Element Method. International Journal of Heat and Mass Transfer. July. 2007, 50(13-14): 2634-2642.

66. J.M. Zhao, L.H. Liu*. Second Order Radiative Transfer Equation and Its Properties of Numerical Solution Using Finite Element Method. Numerical Heat Transfer Part B. April 2007, 51(3):391-409.

67. J.M. Zhao, L.H. Liu*. Least-Squares Spectral Element Method for Radiative Heat Transfer in Semitransparent Media. Numerical Heat Transfer Part B. Nov. 2006, 50(5): 473-489.

68. 赵军明, 刘林华*. 求解多维半透明介质内辐射传递的谱元法. 化工学报. May 2007, 58(5), 1110-1114.

69. 张琳, 刘林华*, 赵军明. 半透明介质内辐射换热数值求解的迎风有限元法. 中国电机工程. 2007. 27(11): 73-77.



会议论文:

70. M.G. Luo, J. M. Zhao, L.H. Liu. Near-field radiative heat transfer in a chain of nanoparticles with another chain in proximity. The 9th International Symposium on Radiative Transfer RAD-19. June 3-7, 2019, Athens, Greece

71. B.K. Liu, J. M. Zhao, L.H. Liu. Anomalous heat diffusion in a chain of large particles through radiative heat transfer. The 6th ASME International Conference of Micro/Nanoscale Heat and Mass Transfer. July 8-10, 2019, Dalian, China

72. M.G. Luo, J. M. Zhao, L.H. Liu. Near field radiative heat transfer in a chain of metallic particles . The 6th ASME International Conference of Micro/Nanoscale Heat and Mass Transfer. July 8-10, 2019, Dalian, China

73. J.M. Zhao, J.Y. Tan, L.H. Liu. Solution of polarized radiative transfer in gradient index media using spectral element method. 2018 Progress in Electromagnetics Research Symposium, 2018, Toyama, Japan (presentation)

74. B.K. Liu, J. M. Zhao, L.H. Liu. Radiative heat transfer in densely packed spherical particle system by Monte Carlo method. The 16th International Heat Transfer Conference. August 10-15, 2018, Beijing, China. (DOI: 10.1615/IHTC16.rti.024195)

75. M.G. Luo, J. M. Zhao, L.H. Liu. Thermal radiation effect on the effective thermal conductivity of porous material by pore level numerical simulation. The 16th International Heat Transfer Conference. August 10-15, 2018, Beijing, China. (DOI: 10.1615/IHTC16.pma.024135)

76. 徐德宇,赵军明,刘林华. 石墨烯/AZO/SiC复合结构的近场辐射换热特性. 中国工程热物理学会传热传质会议2018, 哈尔滨, 2018年10月12-15日. 获“王补宣-过增元青年优秀论文二等奖”

77. 马春阳, 赵军明, 刘林华. 鱼腥藻辐射特性实验研究.中国工程热物理学会传热传质会议2017, 苏州, 2017年10月27-30日.

78. C.Y. Ma, J.M. Zhao, L.H. Liu, L. Zhang. The growth dependent radiative properties of microalgae and light field distribution within photobioreactors. 2017 Progress in Electromagnetics Research Symposium, 2017, Singapore.

79. L.X. Ma, J.M. Zhao, J.Y. Tan, L.H. Liu. Near-field effects on light absorption in nanoparticle system. 2017 Progress in Electromagnetics Research Symposium, 2017, Singapore.

80. 马春阳,宋功发,赵军明,刘林华. 小球藻细胞群散射相函数的实验研究,中国工程热物理学会传热传质会议2016,北京,2016年10月21日-23日

81. J. Dong, J.M. Zhao, L.H. Liu. Near-field radiative heat transfer between aggregated dielectric nanoparticles. The 8th International Symposium on Radiative Transfer (RAD-16). Cappadocia, Turkey, June 6-10, 2016.

82. J.M. Zhao, J. Qiu, L.H. Liu. Accurate geometry design of magnetic polariton with specified resonance wavelength: a combined LC circuit model and inverse technique. ASME 2016 5th Micro/Nanoscale Heat and Mass Transfer International Conference, Biopolis, Singapore, Jan 3-6, 2016.

83. 李兴灿, 赵军明, 刘林华. 微藻衰减特性测量的改进双光程法.中国工程热物理学会传热传质会议2015, 大连, 2015年10月30-11月2日.

84. 马春阳, 赵军明, 刘林华. 小球藻细胞群的辐射特性随生长时间的变化.中国工程热物理学会传热传质会议2015, 大连, 2015年10月30-11月2日.

85. C.Y. Ma, J.M. Zhao, L.H. Liu, L. Zhang. GPU-accelerated inverse identification of radiative properties of particle suspensions in liquid by Monte Carlo. Computational Thermal Radiation in Participating Media V (CTRPM V), Albi, France, April 1-3, 2015.

86. 马春阳, 赵军明, 刘林华. 考虑细胞形态的小球藻光散射特性模拟.中国工程热物理学会传热传质会议2014, 西安, 2014年10月31-11月4日.

87. J. M. Zhao, Z.M. Zhang. Electromagnetic energy density and power dissipation derived from the equivalent circuit approach. 11th AIAA/ASME Joint Thermophysics and Heat Transfer Conference, 2014. 6. 16

88. 马春阳, 赵军明, 刘林华. 基于显卡并行加速的辐射传输Monte Carlo模拟. 中国工程热物理学会传热传质会议2013, 重庆, 2013年10月25-28日.

89. W.J. Zhang, J.M. Zhao, L.H. Liu. Experimental Study of the Effective BRDF of a Copper Foam Sheet. Kusadasi, Turkey, June 2-8, 2013.

90. 马春阳, 赵军明, 谭建宇, 刘林华. 基于显卡并行加速的辐射传输Monte Carlo模拟. 中国工程热物理学会传热传质会议2013, 重庆, 2013年10月25-28日.

91. 张文杰, 赵军明, 刘林华. 泡沫金属导热-辐射耦合传热的相似分析. 中国工程热物理学会传热传质会议2012, 东莞, 2012年11月23-26日.

92. 刘志远, 赵军明, 刘林华. 微米孔径铝泡沫铝的辐射衰减特性. 中国工程热物理学会传热传质会议2012, 东莞, 2012年11月23-26日.

93. 裘俊, 刘林华, 赵军明. 椭圆柱形光学黑洞红外辐射特性分析. 中国工程热物理学会传热传质会议2011, 西安, 2011年10月14-17日.

94. 张文杰, 赵军明, 刘林华. 泡沫金属的当量辐射导热系数数值分析. 中国工程热物理学会传热传质会议2011, 西安, 2011年10月14-17日.

95. 赵军明, 谭建宇, 刘林华. 泡沫金属高温有效导热系数的热电比拟. 中国工程热物理学会传热传质会议2011, 西安, 2011年10月14-17日.

96. 赵军明, 刘林华. 二维辐射传递的无射线效应有限元求解方法. 中国工程热物理学会传热传质会议2010, 上海, 2010年10月9-10日.

97. J.M. Zhao, J.Y. Tan, L.H. Liu. Computational Efficiency of the Finite Element Method Based On the Second-Order Radiative Transfer Equation. The 6th International Symposium on Radiative Transfer. 13~19 June, 2010, Antalya, Turkey.

98. 张文杰, 赵军明, 刘林华. 泡沫金属有效导热系数的数值模拟. 高等学校工程热物理第十六届全国学术会议. , 长沙, 2010年5月20-23日.

99. 裘俊, 刘林华, 赵军明. 氧化膜对一维随机粗糙铝表面双向反射特性影响. 中国工程热物理学会传热传质会议2009, 青岛, 2009年11月14-17日.

100. 刘剑, 赵军明, 刘林华. 金属泡沫材料的发射和吸收特性. 中国工程热物理学会传热传质会议2009, 青岛, 2009年11月14-17日.

101. 赵军明, 刘林华. Mie散射偏振特性对平板介质内辐射换热的影响. 中国工程热物理学会传热传质会议2009, 青岛, 2009年11月14-17日.

102. J.M. Zhao, L.H. Liu. A Conservative Stabilization Scheme of Spectral / Finite Element Method for Solving Radiative Transfer Equation. The 7th International Symposium on Heat Transfer (ISHT 7). October 26-29, 2008, Beijing, China, 2008.

103. 赵军明, 刘林华. 谱元/有限元法求解辐射传递方程的自适应各向同性扩散格式. 中国教育学会工程热物理专业委员会第十三届全国学术会议, 西安, 2007年5月12-14日.

104. 赵军明, 刘林华. 谱元法求解辐射传递方程的各种稳定格式比较. 中国工程热物理学会传热传质会议2006, 南京, 2006年10月27-30日.

105. 赵军明, 刘林华. 基于解析再生核的无网格法. 中国工程热物理学会第十一届学术会议, 北京, 2005年11月4-6日.


My Profile

Junming Zhao (J.M. Zhao), PhD

Professor
School of Energy Science and Engineering
Harbin Institute of Technology
92 West Dazhi Street, Harbin 150001
People’s Republic of China
Tel:86-** (Office)
Email: jmzhao@hit.edu.cn, jmzhaocn@gmail.com



RESEARCH INTERESTS:

l Radiative transfer models and numerical methods for solving complex radiative transfer problems in heat transfer and optical measurement, polarized radiative transfer

l Micro/nano radiative heat transfer, radiative properties tuning for energy harvesting and thermal management, near field radiative heat transfer

l Inverse radiative transfer problems, radiative properties of particle/bioparticle suspensions, radiative properties measurement techniques



EDUCATION:

lPh.D. (09/2004-07/2007): Harbin Institute of Technology, Harbin, China, Department of Thermal Energy and Power Engineering, Major: Engineering Thermophysics.

lM.S. (09/2002-07/2004): Harbin Institute of Technology, Harbin, China, Department of Thermal Energy and Power Engineering, Major: Fluid Machinery and Engineering.

lB.S. (09/1998-07/2002): Harbin Institute of Technology, Harbin, China, Department of Thermal Energy and Power Engineering, Major: Fluid Machinery and Engineering.



POSITIONS HELD:

12/2015-Present,Professor, School of Energy Science and Engineering, Harbin Institute of Technology

07/2010-12/2015,Associate Professor, School of Energy Science and Engineering, Harbin Institute of Technology

07/2013-07/2014,Visiting scholar, School of Mechanical Engineering (in the Nanoscale Thermal Radiation Laboratory leading by Prof. Zhuomin Zhang ), Georgia Institute of Technology, USA

06/2008-07/2010,Lecture, School of Energy Science and Engineering, Harbin Institute of Technology

09/2007-08/2008,Research Assistant, Mechanical Engineering, The Hong Kong Polytechnic University



PUBLICATIONS:

Ph.D. Dissertation

J.M. Zhao, Spectral element method for solving radiative transfer equation, Harbin Institute of Technology, Defended on Jun 16, 2007.



Books

1.L.H. Liu, J.M. Zhao, H. P. Tan, The finite element and spectral element method for simulation of radiative transfer equation. Beijing: Science Press. 2008. ISBN: **54

2.Y. Shuai, H. Qi, Q. Ai, J.M. Zhao. Measurement techniques on thermal radiation. Harbin: Harbin Institute of Technology Press. 2014. ISBN: **24



Journal Papers

1.X. C. Li, J. M. Zhao*, L. H. Liu, L. Zhang. An improved method for determining optical extinction characteristics of microalgae. Chinese Science Bulletin. 2016, Inpress.

2.L. Zhang, J. M. Zhao*, L. H. Liu. A new stabilized finite element formulation for solving radiative transfer equation. Journal of Heat Transfer. 2016, 138(6), 064502.

3.H. Y. Guan, W. J. Zhang, J. M. Zhao*, L. H. Liu, Y. T. Shi. Polarization and temperature dependent BRDF of titanium alloy rough surface. Journal of Infrared and Millimeter Waves. Feb 2016, 35(1):109-115.

4.J. Dong, J. M. Zhao, L. H. Liu. Effect of spine-like surface structures on the radiative properties of microorganism. Journal of Quantitative Spectroscopy & Radiative Transfer. 2016, 173: 49-64.

5.C. Y. Ma, J. M. Zhao*, L. H. Liu, L. Zhang, X. C. Li, B. C. Jiang. GPU-accelerated inverse identification of radiative properties of particle suspensions in liquid by Monte Carlo method. Journal of Quantitative Spectroscopy and Radiative Transfer. March 2016, 172: 146-159.

6.C. Y. Ma, J. M. Zhao*, L. H. Liu, B. C. Jiang. Influence of Cell Morphology on Scattering Properties of Microalgae. Chinese Journal of Engineering Thermophysics. Nov 2015, 36(11): .2437-2440.

7.J. Dong, J.M. Zhao, L.H. Liu. Morphological effects on the radiative properties of soot aerosols in different internally mixing states with sulfate. Journal of Quantitative Spectroscopy and Radiative Transfer. July 2015, 165: 43-55.

8.B. Zhao, J. M. Zhao, and Z. M. Zhang. Resonance enhanced absorption in a graphene monolayer using deep metal gratings. Journal of the Optical Society of America B. May 2015, 32(6):1176-1185.

9.X. C. Li, L. H. Liu, J. M. Zhao, J.Y. Tan. Optical Properties of Sodium Chloride Solution within Spectral Range from 300 to 2500 nm at Room Temperature. Applied Spectroscopy. May 2015, 69(5): 635-640.

10.X. C. Li, J. M. Zhao, L. H. Liu, Tan JY. Optical properties of edible oils within spectral range from 300 to 2500 nm determined by double optical pathlength transmission method. Applied Optics. May 2015, 54(13): 3886-3893.

11.J. M. Zhao, J. Y. Tan, L. H. Liu. Monte Carlo method for polarized radiative transfer in gradient index media. Journal of Quantitative Spectroscopy and Radiative Transfer. Feb. 2015, 152: 114–126.

12.J.M. Zhao, Z.M. Zhang. Electromagnetic energy storage and power dissipation in nanostructures. Journal of Quantitative Spectroscopy and Radiative Transfer. Jan. 2015, 151: 49-57.

13.B. Zhao, J. M. Zhao, and Z. M. Zhang. Enhancement of near-infrared absorption in graphene with metal gratings. Applied Physics Letters. July 2014, 105: 031905.

14.J.M. Zhao, J.Y. Tan, L.H. Liu. A second order radiative transfer equation and its solution by meshless method with applications to strongly inhomogeneous media. Journal of Computational Physics. Jan. 2013, 232(1): 431–455.

15.Z.Y. Liu, J.M. Zhao, L.H. Liu. A study on the spectral equivalent attenuation coefficient of the micron pore size aluminum foam. Chinese Journal of Engineering Thermophysics. Oct. 2013, 34(10): 1899-1901.

16.W.J. Zhang, J.M. Zhao, L.H. Liu. Similarity analysis of conductive-radiative coupled heat transfer in metal foams. Chinese Journal of Engineering Thermophysics. June 2013, 34(6): 1114-1117.

17.L.J. Liu, J.M. Zhao. Diffusion approximation of steady radiative transport in graded index media. Chinese Journal of Computational Physics. 2013, 30 (1): 120–125.

18.L. Zhang, J.M. Zhao, L.H. Liu, S.Y. Wang. Hybrid finite volume / finite element method for radiative heat transfer in graded index media. Journal of Quantitative Spectroscopy and Radiative Transfer. Sep. 2012, 113(14): 1826–1835.

19.J.M. Zhao, J.Y. Tan, L.H. Liu. A deficiency problem of the least squares finite element method for solving radiative transfer in strongly inhomogeneous media. Journal of Quantitative Spectroscopy and Radiative Transfer. August 2012, 113(12): 1488–1502.

20.J. Qiu, L. H. Liu, J. M. Zhao. Infrared radiative properties of elliptical cylindrical optical black holes. Proceedings of the Chinese Society for Electrical Engineering.. August 2012, 33(8): 1367-1370.

21.J. M. Zhao, J. Y. Tan, L. H. Liu. On the derivation of vector radiative transfer equation for polarized radiative transport in graded index media. Journal of Quantitative Spectroscopy and Radiative Transfer. February 2012, 113(3): 239-250.

22.W.J. Zhang, J.Y. Tan, J.M. Zhao, L.H. Liu. Numerical analysis of the effective thermal conductivity of metal foams with thermal radiation effects. Proceedings of the Chinese Society for Electrical Engineering. Jan. 2012, 32(2): 104-109.

23.J. Y. Tan, J. M. Zhao, L. H. Liu. Geometric optimization of a radiation-conduction heating device using meshless method. International Journal of Thermal Science. October 2011, 50(10):1820-1831.

24.J. Liu, J. M. Zhao, L. H. Liu. Transmittance characteristics of metal foams with single layer cellular structure. Chinese Journal of Engineering Thermophysics. December 2010, 31(12): 2101-2104.

25.J. Qiu, L. H. Liu, J. M. Zhao. Effect of oxide film on bi-directional reflection properties of one-dimensional random rough surface of aluminum. Chinese Journal of Engineering Thermophysics. Oct. 2010, 31(10): 1717-1720.

26.Md. Mahbub Alam, Y. Zhou, J.M. Zhao, O. Flamand and O. Boujard. Classification of the tripped cylinder wake and bi-stable phenomenon. International Journal of Heat and Fluid Flow. August 2010, 31(4): 545-560.

27.J. M. Zhao, L. H. Liu. Effect of Mie scattering polarization on thermal radiative transfer in a slab. Chinese Journal of Engineering Thermophysics. June, 2010, 31(6): 1034-1036.

28.L. Zhang, J. M. Zhao, L.H. Liu. Finite element model for thermal radiative properties in graded index fiber coated with thin absorbing film. Numerical Heat Transfer Part A. July 2010, 58(2): 85-100.

29.J.M. Zhao, L. H. Liu, P. -f. Hsu, J. Y. Tan. Spectral element method for vector radiative transfer equation. Journal of Quantitative Spectroscopy and Radiative Transfer. Feb. 2010, 111(3): 433-446.

30.L. Zhang, J.M. Zhao, L.H. Liu. Finite element approach for radiative transfer in multi-layer graded index cylindrical medium with fresnel surfaces. Journal of Quantitative Spectroscopy and Radiative Transfer. Feb. 2010, 111(3): 420-432.

31.Tan HP, Liu LH, Yi HL, J.M. Zhao, H. Qi, J.Y. Tan. Recent progress in computational thermal radiative transfer. Chinese Science Bulletin. Nov 2009, 54(22): 4135-4147.

32.J.M. Zhao, L.H. Liu. Three-dimensional transient radiative transfer modeling using discontinuous spectral element method. AIAA Journal of Thermophysics and Heat Transfer, Oct-Dec 2009, 23(4):836-840.

33.L. Zhang, J.M. Zhao, L.H. Liu. Finite element method for modeling radiative transfer in semitransparent graded index cylindrical medium. Journal of Quantitative Spectroscopy and Radiative Transfer. Sep. 2009, 110: 1085–1096.

34.J.Y. Tan, J.M. Zhao, L.H. Liu. Comparative study on accuracy and solution cost of the first/second-order radiative transfer equations using meshless method. Numerical Heat Transfer Part B, April 2009, 55(4): 324-337.

35.J.Y. Tan, J.M. Zhao, L.H. Liu. Meshless method for geometry boundary identification problem of heat conduction. Numerical Heat Transfer Part B, Feb. 2009, 55(2): 135-154.

36.J.M. Zhao, L.H. Liu. Spectral element method with adaptive artificial diffusion for solving radiative transfer equation. Numerical Heat Transfer Part B, June 2008, 53(6): 536-554.

37.J.M. Zhao, L.H. Liu. Discontinuous spectral element approach for solving transient radiative transfer equation, AIAA Journal of Thermophysics and Heat Transfer, Jan.–Mar. 2008, 22(1): 20-28.

38.J.M. Zhao, L.H. Liu. Spectral element approach for coupled radiative and conductive heat transfer in semitransparent medium. ASME Journal of Heat Transfer. Oct. 2007, 129(10). 1417-1424.

39.J.M. Zhao, L.H. Liu. Discontinuous spectral element method for solving radiative heat transfer in multidimensional semitransparent media. Journal of Quantitative Spectroscopy and Radiative Transfer. Sep. 2007, 107(1):1-16.

40.J.M. Zhao, L.H. Liu. Solution of radiative heat transfer in graded index media by least square spectral element method. International Journal of Heat and Mass Transfer. July. 2007, 50: 2634-2642.

41.J.M. Zhao, L.H. Liu. Second order radiative transfer equation and its properties of numerical solution using finite element method. Numerical Heat Transfer Part B. April 2007, 51:391-409.

42.J.M. Zhao, L.H. Liu. Least-squares spectral element method for radiative heat transfer in semitransparent media. Numerical Heat Transfer Part B. Nov. 2006, 50(5): 473-489.

43.L. Zhang, L.H. Liu, J.M. Zhao. Upwinding finite element method for the solution of radiative transfer in semitransparent media. Proceedings of the Chinese Society for Electrical Engineering. 2007. 27(11): 73-77.

44.J.M. Zhao, L.H. Liu. Spectral element method for solving radiative heat transfer in semitransparent media. Chinese Journal of Chemical Industry and Engineering. May 2007, 58(5), 1110-1114.



Conference papers

1.J.M. Zhao, J. Qiu, L.H. Liu. Accurate geometry design of magnetic polariton with specified resonance wavelength: a combined LC circuit model and inverse technique. ASME 2016 5th Micro/Nanoscale Heat and Mass Transfer International Conference, Biopolis, Singapore, Jan 3-6, 2016.

2.X.C. Li, J.M. Zhao, L.H. Liu, L. Zhang. An improved method to measure the extinction characteristic of microalgae suspensions. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2015, Dalian, China, Oct. 30-Nov. 2, 2015.

3.C.Y. Ma, J.M. Zhao, L.H. Liu. Time dependent radiative properties of Chlorella sp. suspensions. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2015, Dalian, China, Oct. 30-Nov. 2, 2015.

4.C.Y. Ma, J.M. Zhao, L.H. Liu, L. Zhang. GPU-accelerated inverse identification of radiative properties of particle suspensions in liquid by Monte Carlo. Computational Thermal Radiation in Participating Media V (CTRPM V), Albi, France, April 1-3, 2015.

5.C.Y. Ma, J.M. Zhao, L.H. Liu. Morphology Influence on Scattering Properties of Microalgae. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2014, Xi’an, China, Oct. 31-Nov. 4, 2014.

6.J. M. Zhao, Z.M. Zhang. Electromagnetic energy density and power dissipation derived from the equivalent circuit approach. 11th AIAA/ASME Joint Thermophysics and Heat Transfer Conference, Atlanta, USA, June 16-20, 2014.

7.W.J. Zhang, J.M. Zhao, L.H. Liu. Experimental study of the effective BRDF of a copper foam sheet. 7th International Symposium on Radiative Transfer (RAD-13), Kusadasi, Turkey, June 2-8, 2013.

8.C.Y. Ma, J.M. Zhao, J.Y. Tan, L.H. Liu. GPU accelerated Monte Carlo simulation for radiative transfer. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2013, Chongqing, China, Oct. 25-28, 2013.

9.W.J. Zhang, J.M. Zhao, L.H. Liu. Similarity analysis of conductive-radiative coupled heat transfer in metal foams. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2012, Dongguan, China, Nov. 23-26, 2012.

10.Z.Y. Liu, J.M. Zhao, L.H. Liu. Spectral extinction properties of aluminum foam with microsized pores. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2012, Dongguan, China, Nov. 23-26, 2012.

11.J. Qiu, L.H. Liu, J.M. Zhao. Analysis of infrared radiative properties of elliptical optical black hole. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2011, Xi’an, China, Oct. 14-17, 2011.

12.W.J. Zhang, J.M. Zhao, L.H. Liu. Numerical analysis of the equivalent thermal conductivity of metal foam. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2011, Xi’an, China, Oct. 14-17, 2011.

13.J.M. Zhao, J.Y. Tan, L.H. Liu. Thermal-electrical analogy of the effective thermal conductivity of metal foam. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2011, Xi’an, China, Oct. 14-17, 2011.

14.J.M. Zhao, L.H. Liu. A ray effect free finite element method for radiative transfer in two dimensional media. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2010, Shanghai, China, Oct. 9-10, 2010.

15.J.M. Zhao, J.Y. Tan, L.H. Liu. Computational efficiency of the finite element method based on the second-order radiative transfer equation. The 6th International Symposium on Radiative Transfer. 13~19 June, 2010, Antalya, Turkey.

16.W.J. Zhang, J.M. Zhao, L.H. Liu. Numerical simulation of the effective thermal conductivity of metal foam. The 16th Chinese University Engineering Thermophysics Conference. Changsha, China, May 20-23, 2010.

17.J. Qiu, L.H. Liu, J.M. Zhao. Effect of oxide film on bidirectional reflection characteristics of one dimensional random rough surface. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2009, Qingdao, China, Nov. 14-17, 2009.

18.J. Liu, J.M. Zhao, L.H. Liu. Emission and absorption characteristics of metal foams. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2009, Qingdao, China, Nov. 14-17, 2009.

19.J.M. Zhao, L.H. Liu. Effect of Mie scattering polarization on thermal radiative transfer in a slab. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2009, Qingdao, China, Nov. 14-17, 2009.

20.J.M. Zhao, L.H. Liu. A conservative stabilization scheme of spectral / finite element method for solving radiative transfer equation. The 7th International Symposium on Heat Transfer (ISHT 7). October 26-29, 2008, Beijing, China, 2008.

21.J.M. Zhao, L.H. Liu. An adaptive isotropic diffusion scheme of spectral/finite element method for solving radiative transfer equation. The 13th Chinese University Engineering Thermophysics Conference, Xi’an, China, May 12-14, 2007.

22.J.M. Zhao, L.H. Liu. Comparison of different stabilization schemes for the solution of radiative transfer equation by spectral element methods. Heat and Mass Transfer Conference of Chinese Society of Engineering Thermophysics 2006, Nanjing, China. 2006.

23.J.M. Zhao, L.H. Liu. Meshless methods based on analytical reproducing kernels. The 11th Symposium of Chinese Society of Engineering Thermophysics, Beijing, China. 2005.

辐射换热求解的谱元法代码
Spectral element method code for radiative heat transfer in infinite slab代码为Matlab编写,可用于求解1维吸收、发射及各向异性散射性均匀折射率平板内的辐射换热。谱元法可以看做有限元法的一种,其单元形函数的采用正交多项式构造,空间离散具有很高精度,精度阶数可以通过改变近似多项式的阶数根据需要任意调节。 算法描述参见以下文献:J.M. Zhao, L.H. Liu. Least-Squares Spectral Element Method for Radiative Heat Transfer in Semitransparent Media. Numerical Heat Transfer Part B. Nov. 2006, 50(5): 473-489.



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具有精确解的辐射传递一维验证算例代码
Matlab code for several one dimensinal radiative transfer test cases with analytical results具有精确解的辐射传递一维验证算例的Matlab计算程序。 解析解描述参见以下文献:1. J.M. Zhao. Spectral Element Method for Solving Radiative Transfer

Equation. Phd dissertation, Harbin Institute of Technology, 2007,
Chap. 3
赵军明. 求解辐射传递方程的谱元法,哈尔滨工业大学博士学位论文, 2007, 第三章

2. L.H. Liu, J.M. Zhao, H. P. Tan, Finite Element and Spectral Element
Method for Simulation of Radiative Heat Transfer. Beijing:
Science Press. 2008
刘林华, 赵军明, 谭和平, 辐射传递方程数值模拟的有限元和谱元法, 北京:
科学出版社, 2008

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基于二阶辐射传递方程的无网格法代码
Meshless (meshfree) method code based on second order radaitive transfer equation.该代码为Matlab编写,实现了基于RTE以及MSORTE的配置点无网格法,可用于求解1维吸收、发射及各向异性散射性非均匀平板内的辐射换热。二阶辐射传递方程MSORTE具有很好的数值特性,可以稳定、准确的用于求解强非均匀介质内的辐射传输。通过该代码可以进行很好的验证。注:MSORTE为作者最近提出的一个新的基于原始变量的二阶形式辐射传递方程。 算法描述参见以下文献:J.M. Zhao, J.Y. Tan, L.H. Liu. A Second Order Radiative Transfer Equation and Its Solution by Meshless Method with Applications to Strongly Inhomogeneous Media. Journal of Computational Physics. Jan. 2013, 232(1): 431–455.



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梯度折射率介质内辐射换热求解的谱元法代码
Spectral element method code for radiative heat transfer in variable refractive index (graded index) slab代码为Matlab编写,可用于求解1维吸收、发射及各向异性散射性梯度折射率平板内的辐射换热。 算法描述参见以下文献:J.M. Zhao, L.H. Liu. Solution of Radiative Heat Transfer in Graded Index Media by Least Square Spectral Element Method. International Journal of Heat and Mass Transfer.2007, 50: 2634-2642.



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矢量辐射传输求解的谱元法代码
Spectral element method code for polarized (vector) radiative transfer in slab代码为Matlab编写,可用于求解1维吸收、发射及散射性平板内偏振辐射的传输。 算法描述参见以下文献:J.M. Zhao, L. H. Liu, P. -f. Hsu, J. Y. Tan. Spectral Element Method for Vector Radiative Transfer Equation. Journal of Quantitative Spectroscopy and Radiative Transfer. 2010, 111(3): 433-446.



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求解稳态及瞬态辐射传递的二维间断谱元法代码
2D Discontinuous spectral element method (discontinous Glaerkin method) code for steady / transient radiative transfer求解稳态及瞬态辐射传递的二维间断谱元法代码,代码为matlab语言。代码说明:文件名含main字样的为主程序,可直接在matlab环境下执行。Program with a @#%main@#% in the name is a main program to execute.

算法描述参见以下文献:1. J.M. Zhao. Spectral Element Method for Solving Radiative Transfer

Equation. Phd dissertation, Harbin Institute of Technology, 2007
赵军明. 求解辐射传递方程的谱元法,哈尔滨工业大学博士学位论文, 2007
2. J.M. Zhao, L.H. Liu. Discontinuous Spectral Element Approach for
Solving Transient Radiative Transfer Equation, AIAA Journal of
Thermophysics and Heat Transfer, 2008, 22(1): 20-28.
3. J.M. Zhao, L.H. Liu. Discontinuous Spectral Element Method for Solving
Radiative Heat Transfer in Multidimensional Semitransparent Media.
JQSRT. 2007, 107(1):1-16.

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