赵芬芳 教授

发布者:OUCSHENG发布时间:2021-03-15浏览次数:746

姓名:赵芬芳  

学习与工作简历:

2022.01---至今  中国海洋大学水产学院           教   授

2012.01-2021.12    中国海洋大学水产学院         副 教 授

1998.12-2011.12    中国海洋大学水产学院         讲    师

1996.07-1998.12    青岛海洋大学水产学院         助    教


1989.09-1993.07    青岛海洋大学水产学院         本   科:海洋渔业

1993.07-1996.07    青岛海洋大学水产学院         硕   士:捕捞学

2005.10-2006.08    东北师范大学留日预校         日语培训

2006.10-2007.03    东京大学工学系研究科         研 究 生:

2007.04-2010.03    东京大学工学系研究科         博   士:环境海洋工学

2018.09-2019.09    挪威斯塔万格大学访问学者


教学工作

本科课程

工程流体力学            64学时/学年(本科课程

海洋渔业与海洋农牧        32学时/学年(通识课程)

渔具力学            48学时/学年(研究生课程)

科研方向及科研项目

主要研究方向为设施渔业工程、环保型渔具渔法

  1. 基于OpenFOAM不同底质下人工鱼礁冲刷淤积的数值模拟研究32073025,国家自然科学基金,2021.01-2024.1258万,主持。

  2. 椭圆形多孔介质浮式消波堤水动力学特性数值模拟研究31172446,国家自然科学基金,2012.01-2015.1262万,主持。

  3. 深远海集约化养殖工程及其环境响应的数值模拟,201564020,中央高校基本科研业务费,2015.01-2017.1244万,主持。

  4. 浮式消波堤水槽模型试验 20150106,横向, 2015.01-2015.128万,主持。

  5. 多孔介质浮式防波堤消波效果的研究教外司留[2012]1707号,留学归国人员科研启动金,2013.01-2014.123万,主持。

  6. 福建中鸿渔业有限公司巴布亚新几内亚远洋渔业项目可行性研究报告,横向,2016.01-2016.124万,主持。

  7. 深远海工业化大型养殖装备与模式,国家重点研发项目,2019YFD09010032019.11-2022.12280万,参加。

  8. 深远海养殖设施铜合金网工程布网技术与推广,科技服务,201903312019.01-2019.1236万元,参加。

  9. 深远海新型升降式鱼类养殖网箱系统研发与产业化示范,山东省重点研发计划,2017CXGC01072017.01-2019.12100万,参加。

  10. 南极磷虾高效捕捞技术研究,技术开发与合作,横向,201502562015.01-2018.12200万,参加。

  11. 黄海冷水团鱼类养殖新型潜式网箱系统研发,山东省重点研发计划,2016CYJS04A01-52016.01-2018.1250万,参加。

  12. 渔用网线水动力学研究31072246,国家自然科学基金,2011-2013,参加。

  13. 近海围网立体化养殖工程技术研究2008C12065-1,省攻关 2008-2010,参加。

  14. 波流场中养殖网箱系统动力响应特性的研究40576045,国家自然科学基金,2006-2008,参加。

  15. 海水集约化养殖设施工程优化技术021110101,山东省攻关,2003.01-2005.05,参加。

  16. 大洋金枪鱼延绳钓作业状态的数值模拟方法的研究20040423007,博士基金,2004-2005,参加。

  17. 近海网箱养殖设施的工程优化,十五863项目,2001-2005,参加。

  18. 深海抗风浪网箱的研制,十五863项目,2001-2005,参加。

学术论著

已发表的论文:

  1. Tang,Y.L.; Wei, S.W.; Yang, M.D.; Wang, X.X.; Zhao,F.F.*;Experimental investigation of local scour around artificial reefs insteady currents. J. Ocean Univ. China,2021.

  2. Wang,G.; Huang, L.Y.; Wang, L.; Zhao,F.F.; Li, Y.Y.; Wan,R.; A metamodeling with CFD method for hydrodynamic optimisations ofdeflectors on a multi-wing trawl door, Ocean Eng.,2020, 232: 109045.

  3. Wang,G.*, Martin, T., Huang, L., and Bihs, H., 2021, “Modelling theflow around and wake behind net panels using large eddysimulations,” Ocean Eng., 239, p. 109846

  4. Wang,X.X.; Liu, X.Y.; Tang, Y.L.; Zhao,F.F.; Numericalanalysis of the flow effect of the Menger-Type artificial reefs withdifferent void space complexity indices, Symmetry,2021.

  5. Zhao,F.F.; Yin, G.; Ong,M.C.; Numerical study on flow around partially buriedtwo-dimensional ribs at high Reynolds numbers. Ocean Eng.,2020, 198: 106988.

  6. Tang,Y.L.; Yang, W.Z.; Sun, L.Y.; Zhao,F.F.*;Long, X.Y.; Wang, G.; Studies on factors influencing hydrodynamiccharacteristics of plates used in artificial reefs. J. OceanUniv. China, 2019.

  7. Wan,R.; Jia, M.X.; Guan, Q.L.; Huang, L.Y.; Cheng, H.; Zhao,F.F.; He, P.G.; Hu, F.X.; Hydrodynamic performance of anewly-designed Antarctic krill trawl using numerical simulation andphysical modeling methods, Ocean Eng., 2020, 179:173-179.

  8. Wang,G.; Huang, L.Y.*; Wang, L.; Zhao, F.F.; Wang, X.X.; Wan,R.; Effects of Euler angles of vertical cambered otter board onhydrodynamics based on response surface methodology andmulti-objective genetic algorithm., J. Offshore Mech. Arct. Eng.,2020, 143(2): 021401.

  9. Tang,Y.L.Hu,Q.; Wang, X.X.*; Zhao,F.F.*; Huang, L.Y.; Xie, T.; Evaluation of flow field inthe layouts of cross-shaped artificial reefs, ASME 2019 38thInternational Conference on Ocean, Offshore and Arctic Engineering,OMAE 2019-95192, June 9-14, 2019, Glasgow, United Kingdom.

  10. Zhao,F.F.; Ong, M.C.; Tang, Y.L.; Wang, X.M.; Experimentalstudy on the hydrodynamic characteristics of artificial reefs, ASME2019 38th International Conference on Ocean, Offshore and ArcticEngineering, OMAE 2019-96019, June 9-14, 2019, Glasgow,United Kingdom.

  11. Huang,L.Y.; Li, Y.Y.; Ni, Y.; Cheng, H.; Wang, X.X.; Wang, G.;Zhao, F.F.*; Study on the influence of mesh grouping onnumerical simulation results of fish Cages, ASME 2019 38thInternational Conference on Ocean, Offshore and Arctic Engineering,OMAE 2019-95706, June 9-14, 2019, Glasgow, United Kingdom.

  12. Wang,X.X.; Huang, L.Y.; Tang, Y.L.; Zhao,F.F.*; Sun, P.; Two-dimensional numerical simulation ofvortex shedding of multiple stranded Ropes, Proceedings of the ASME2019 38th International Conference on Ocean, Offshore and ArcticEngineering, OMAE 2019-95225, June 9-14, 2019, Glasgow,United Kingdom.

  13. Wang,G.; Wan, R.; Huang, L.Y.; Zhao, F.F.; Wang, X.X.; Zhu, W.B.;Wang, L.; Xu, Q.C.; Li, Y.Y.; Effects of Euler angles of verticalcambered otter board on hydrodynamics based on response surfacemethodology and Moga, ASME 2019 38th International Conference onOcean, Offshore and Arctic Engineering, OMAE 2019-95308, June9-14, 2019, Glasgow, United Kingdom.

  14. Wang,G.; W., R.; Wang, X.X.; Zhao, F.F.; Lan, X.Z.;Cheng, H.; Tang, W.Y.; Guan, Q.L.; 2018. Study on the influence ofcut-opening ratio, cut-opening shape, and cut-opening number on theflow field of a cubic artificial reef. Ocean Eng. 162341-352.

  15. Cheng,H.; Huang, L.Y.; Ni, Y.; Xu, Q.C.;Zhao, F.F.; WANG,X.X.; Liang, Z.L.; Numerical and experimental study of spm fishcage: comparison and validation, ASME 2018 37th InternationalConference on Ocean, Offshore and Arctic Engineering,OMAE2018-78204, June 17-22, 2018, Madrid, Spain.

  16. Cheng,H.; Huang, L.Y.; Ni, Y.; Zhao,F.F.; WANG, X.X.;Tang, Y.L.; 2018. Study on the flow characteristics of rope andcylinder with large-eddy simulation. ASME 2018 37thInternational Conference on Ocean, Offshore and Arctic Engineering,OMAE2018-78212, June 17-22, 2018, Madrid, Spain.

  17. Huang,L.Y.; Li, Y.N.; Xu, J.Q.; Xu, Q.C.*; Jia, M.X.*; Liang, Z.L.;Zhao,F.F.; Wang, X.X.; Tang, Y.L.; 2018. Effectsof aspect ratio on the hydrodynamic performance Of circular camberedotter board. ASME 2018 37th International Conference onOcean, Offshore and Arctic Engineering, OMAE2018-78450, June17-22, 2018, Madrid, Spain.

  18. Zhao,F.F.; Zhang, T.Z.;Wan, R.; Huang, L.Y.; Wang, X.X.*; Bao, W.G.; Hydrodynamic loadsacting on a circular porous plate horizontally submerged in waves.Ocean Eng. 2017, 136: 168-177.

  19. XuQ.C.; Huang, L.Y.; Zhao, F.F.; Wang, X.X.; Tang, Y.L.; Liang,Z.L.; Wan, R.; Sun, P.; Liu, C.D.; Cheng, H.; Zhao, Y.P.; 2017.Effects of aspect ratio on the hydrodynamic performance offull-scale rectangular otter board: Numerical simulation study.Ocean Eng., 142, 338-347.

  20. XuQ.C.; Huang, L.Y.; Zhao, F.F.; Wang, X.X.; Tang, Y.L.; Liang,Z.L.; Wan, R.; Sun, P.; Liu, C.D.; Cheng, H.; 2017. Study on thehydrodynamic characteristics of the rectangular V-type otter boardusing computational fluid dynamics. Fish. Sci., 83(2),181-190.

  21. Wang,X.X.; Zhao, F.F.*; Tang, Y.L.; Huang, L.Y.; Wan, R.; Cheng,H., 2017.  Numerical analysis of submersible mussel raft for exposedmarine environment, ASME 2017 36th International Conference onOcean, Offshore and Arctic Engineering, OMAE2017-61682, June 25-30,2017, Trondheim, Norway.

  22. Tang,Y.L.; Long, X.Y.; Wang, X.X.; Zhao,F.F.; Huang, L.Y.; Effect of reefs spacing on flow fieldaround artificial reef based on the hydrogen bubble experiment Tang,ASME 2017 36th International Conference on Ocean, Offshore andArctic Engineering, OMAE 2017-61623, June 25-30, 2017, Trondheim,Norway.

  23. Wang,X.X.; Wan, R.; Zhao, F.F.; Huang, L.Y.; Sun, P.; Tang, Y.L.;Comparative study of dynamics of gravity cages with different meshesin waves and current, ASME 2017 36th International Conference onOffshore Mechanics and Arctic Engineering, OMAE 2016- 54549, June19-24, 2016, Busan, Korea

  24. Zhao,F.F.; Chen, Y.; Wan,R.; Huang, L.Y.; Sun, P.; Bao, W.G., 2015. Interactions ofhorizontal circular porous plates with waves. Proceedings of the25rd International Offshore and Polar Engineering Conference, ISOPE2015p1454-1461.June 21-26, 2015, Kona, Big Island, HI, United states

  25. Huang,L.Y.; Xu, Q.C.; Wang, X.X.; Zhao, F.F.; Zhang, L.; Liang,Z,L,; Wan, R.; Shi; J.G.;  Experimental study on resistancecharacteristics of three-stranded polyethylene twines in flow,International Conference on Logistics, Engineering, Management andComputer Science, LEMCS 2014: 512-516.

  26. Zhao,F.F; Wan, R.; Huang, L.Y.; Liang, Z.L.; Kinoshita, T.; Bao, W.G;Fujihashi, K., 2013. Experimental study on scattering waves around aporous horizontal elliptic plate. Proceedings of the 23rdInternational Offshore and Polar Engineering Conference, ISOPE 2013.

  27. Zhao,F.F.; Kinoshita, T.; Bao, W.G.; Huang, L.Y.*; Liang, Z.L.; Wan,R.; Interaction between waves and an array of floating porouscircular cylinder. China Ocean Eng., 2012,26(3),397-412.

  28. Zhao,F.F.*; Kinoshita, T.; Bao, W.G.; Wan, R.; Huang, L.Y.;Hydrodynamics and wave-drift force of a porous cylinder. AppliedOcean Research, 2011, 33:169-177.

  29. Zhao,F.F.*; Bao, W.G.; Kinoshita, T.; Itakura, H.; Theoretical andexperimental study on a porous cylinder floating in waves.Journal of Offshore Mechanics and Arctic Engineering 2011,133(1).

  30. Zhao,F.F.*; Bao, W.G.; Kinoshita, T.; Itakura, H.; Interaction ofwaves and a porous cylinder with an inner horizontal porous plate.Applied Ocean Research, 2010, 32:252-259.

  31. Bao,W.G.; Kinoshita, T.; Zhao,F.F.; Wave forces acting on a semisubmerged porouscircular cylinder. Journal of Engineering for the MaritimeEnvironment, partM, 2009,223:349-360.

  32. Zhao,F.F.; Wang, R.; Huang, L.Y.; Kinoshita, T.; Bao, W.G.;Wave Drift Force Acting on a Porous Body. Proceeding of APHydro2010(CD).

  33. Zhao,F.F.; Kinoshita, T.; Bao, W.G.; Itakura, H.; Wave fieldsdiffracted by an array of porous circular cylinders. ASME 2010 29thInternational Conference on Ocean, Offshore and Arctic Engineering,OMAE2010-20288, June 6-11, 2010, Shanghai, China

  34. Zhao,F.F.; Kinoshita, T.; Bao, W.G.; Itakura, H.; Theoreticaland experimental study on a porous cylinder floating in waves, ASME2019 28th International Conference on Ocean, Offshore and ArcticEngineering, OMAE2009-79089, May 31-June 5, 2009, Honolulu,HI, United states.

  35. Bao,W.G.; Zhao, F.F.;Kinoshita, T.; Itakura, H.; Calculation of wave forces acting on aCylinder with a porous plate fixed inside. 28th InternationalConference on Ocean, Offshore and Arctic Engineering,OMAE2009-79088, May 31-June 5, 2009, Honolulu, HI, Unitedstates.

  36. Zhao,F.F.; Kinoshita, T.; Bao, W.G.; Wave fields diffracted byan array of truncated circular cylinders, ASME 2008 27thInternational Conference on Ocean, Offshore and Arctic Engineering,OMAE2008-57167, June 15-20, 2008, Estoril, Portugal.

  37. Song,W.H.; Liang, Z.L.; Chi, H.F.; Huang, L.Y.; Zhao, F.F.; Zhu,L.X.; Chen, B.H.; Experimental study on the effect of horizontalwaves on netting panels, Fish. Sci., 2006, 725967-976.

  38. 黄煜;赵芬芳;张同征;框架式消波堤消浪特性研究,水运工程,201907:-37.

  39. 刘圣聪;黄六一;倪益;程晖;赵芬芳;王欣欣;梁振林;KINOSHITATakeshi;圆形重力式网箱缆绳张力对波、流的响应特性,产学报,201943(06):1518-1526.

  40. 程晖;黄六一;倪益;董双林;赵芬芳;水流条件下单点系泊不同结构“钻石型”重力式网箱的水动力特性数值模拟,国海洋大学学报(自然科学版),2019,49(03):161-170.

  41. 黄六一;倪益;程晖;王欣欣;赵芬芳;梁振林;模型试验准则的重力式圆形网箱水动力比较研究;渔业现代化,201845(02):6-12.

  42. 兰孝政;万荣;唐衍力;黄六一;赵芬芳;鲍伟光;刘长东;王召磊;圆台型人工鱼礁单体流场效应的数值模拟,中国海洋大学学报(自然科学版)201646(08):47-53.

  43. 刘莉莉;万荣;黄六一;赵芬芳;波流场中张网渔具水动力学特性的数值模拟,中国海洋大学学报(自然科学版)201343(05):24-29.

  44. 黄六一;梁振林;万荣;木下健;赵芬芳;宋伟华;王欣欣;石建高;波流作用下网格锚泊的单个重力式网箱缆绳张力;中国水产科学;201118(03):636-645.

  45. 黄六一;梁振林;万荣;TakeshiKinoshita赵芬芳;宋伟华;王欣欣;波流作用下圆形重力式网箱缆绳张力的试验研究,中国水产学会,2009年中国水产学会学术年会论文摘要集,中国水产学会,2009:220.

  46. 黄六一;梁振林;宋伟华;赵芬芳;朱立新;方形箱网结构减流效果试验,中国水产科学,2007145860-863.

  47. 黄六一;梁振林;赵芬芳;朱立新;宋伟华;网箱形状在海流中变化特性的模型试验,中国海洋大学学报,2006366245-248.

  48. 黄六一; 梁振林;万荣; 赵芬芳;朱立新; HDPE圆形升降式网箱下沉时最大倾角的研究,中国海洋大学学报,200636(6)953-95.

  49. 朱立新;梁振林;黄六一;赵芬芳NumericalSimulation of Dynamic Response of Supple NetsChinaOcean Eng.200603:443-456.

  50. 宋伟华;梁振林;赵芬芳;黄六一;朱立新;陈伯海;单点系泊网衣构件波浪试验研究,海洋与湖沼,200503:199-206.

  51. 万荣;崔江浩;宋协法;唐衍力;赵芬芳;黄六一;金枪鱼延绳钓捕捞作业状态的数值模拟(英文),水产学报,200502:238-245.

  52. 宋伟华;梁振林;关长涛;赵芬芳;黄六一;朱立新;应用两种不同的波浪理论计算方形网箱水平波浪力,中国水产科学,200501:91-98.

  53. 赵芬芳;梁振林;黄六一; 朱立新;浮筏式防浪堤消浪效果的试验研究,第三届海洋生物高技术论坛,2005.

  54. 赵芬芳;梁振林;黄六一;朱立新;小尺度网箱缆绳张力在波浪中的变化特性,中国水产科学,2004,增刊。

  55. 黄六一; 梁振林;赵芬芳;朱立新;小尺度方形网箱浮框在波浪中的应变研究,中国水产科学,2004,增刊。

  56. 朱立新;梁振林;赵芬芳;黄六一;网箱的概念简化与力学计算,中国水产科学,2004,增刊。

  57. 宋伟华; 梁振林;关长涛; 赵芬芳;黄六一;方形网箱水平波浪力的叠加计算和实验验证,海洋与湖沼,2004353202-208

  58. 黄六一;李文涛;赵芬芳;刘西华;“偏滩法”在中小型渔船修理上的应用;海洋湖沼通报,20040):80-83.

  59. 唐衍力;黄六一;赵芬芳;关于拖网选择性影响因子的分析研究,海洋湖沼通报,200303:89-95.

  60. 宋伟华;梁振林;赵芬芳;黄六一;朱立新;方形网箱波浪水动力学的近似计算,浙江海洋学院学报(自然科学版)200302:95-103.

国家专利

  1. 黄六一、倪益、董双林、高勤峰、赵芳芳、程晖,一种可远程控制升降的HDPE重力式抗风浪网箱系统,发明专利受理,ZL201710996271.020191022.

  2. 赵芬芳,张同征,黄六一,万荣,王欣欣,刘长东,鲍伟光,一种多功能浮式消波堤及其安装方法,国家发明专利,ZL201511029868.5,授权日期:20171128.

  3. 黄六一,许庆昌,赵芬芳,刘长东,唐衍力,梁振林,程晖,徐基强,倪益.单船拖网半柔性可折叠矩形“V”型网板.国家发明专利,申请号:20161141440.4,2016122.

  4. 黄六一,赵芬芳,刘长东,姜昭阳等,一种测量渔用网线水动力的装置和方法,国家发明专利,ZL201210427550.22014.

  5. 黄六一、刘涛、赵芬芳、唐衍力等,一种藻类鱼类混合型立体生态鱼礁及其投放方法,国家发明专利,ZL201210099787.22013102.

  6. 黄六一、张俊波、程兆海、赵芬芳,等,一种近海围网养殖装置,国家发明专利,ZL2010227838.620120822.

  7. 黄六一、梁振林、宋伟华、赵芬芳,等.一种方便升降的绳式海水养殖网箱国家发明专利ZL200710016129.12009624

  8. 黄六一、梁振林、赵芬芳、朱立新,等.圆形网箱的浮框弯圆方法,国家发明专利ZL200410036247.52007321.

  9. 梁振林,赵芬芳,黄六一.带有耐流锚泊装置的海水养殖网箱及其制造方法,国家发明专利ZL03111790.22005

  10. 梁振林,黄六一,赵芬芳,朱立新.有活动角连接结构的方形海水养殖网箱框架,国家发明专利ZL03111789.92005

  11. 梁振林,黄六一,赵芬芳.方便投饵沉式养殖网箱国家发明专利ZL03112377.52005

实用新型专利:

  1. 梁振林,赵芬芳,黄六一.耐流锚泊海水养殖网箱,实用新型ZL03215017.22004

  2. 梁振林,赵芬芳,黄六一.卷扬式升降养殖网箱装置 实用新型ZL03268994.22004

  3. 梁振林,黄六一,赵芬芳.鲆鲽类分层养殖装置 实用新型ZL03268995.02004

  4. 梁振林,赵芬芳,黄六一.可控沉式养殖网箱  实用新型ZL03216979.52004


软件著作权:

  1. 黄六一、程晖、李龙、刘长东、赵芬芳、唐衍力、许庆昌、徐基强、陈婧.拖网作业性能评价系统软件.登记号:2016SR150371,发证日期:2016622.

  2. 程晖、黄六一、赵芬芳、刘长东、唐衍力、许庆昌、李龙、徐基强、陈婧.渔具用网片设计与核算程序.登记号:2016SR150376,发证日期:2016622.