基于菲涅耳现象的LED集鱼灯最佳入射角研究
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上海海洋大学海洋科学学院

基金项目:

国家"八六三"高技术研究发展计划(SS2012AA091803);上海市科委项目(2013ZY-87);国家远洋渔业工程技术研究中心开放课题(NERCOF2014KF03)


The optimum incidence angle of LED fish aggregation lamp based on Fresnel phenomenon
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college of marine sciences ,shanghai ocean university

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    摘要:

    为了解决平板式LED集鱼灯安装不合理的现状,使得LED集鱼灯光能得到有效利用,提高诱、集鱼效果,实验分析了海面的菲涅耳现象,利用光学的临界条件原理推导出了菲涅尔公式,并利用透射率和折射率的定义式,得到光通过两个不同介质分界面时透射率和折射率的各分量与入射角的关系式,进而利用MATLAB仿真了光在通过海面时透射率和反射率随入射角改变而变化的函数图像。结果显示,透射光强最大时的入射角为53.6°,可以此入射角指导LED集鱼灯在渔船上的安装。对于平板式LED集鱼灯,安装角度可取36.4°;对于三列式LED集鱼灯,安装角度可取23.6°,相邻两列LED集鱼灯的夹角为160°。

    Abstract:

    LED lamp is a new type of light source which was introduced to light fishing, and its reasonable arrangement on boat will directly relate to the effect of luring fish.The article analyzes the Fresnel Phenomenon.The formula of relationship between each component of transmittivity and refractive indexs and angle of incidence when light goes through two different interfaces of medium can be get through the Fresnel's formula that is deduced from the principle of optical critical condition and the definition formula of transmittivity and refraction.And then, we can get the functional images that the transmittivity and refraction changed because of the variation of incidence angle when light passes through the sea surface by making use of MATLAB.The incidence when intensity of transmission beam reaches the maximum is 53.6°.This incidence angle can guide the installation of LED fish aggregation lamp in fishing boat.But the incidence angle could be changed to 36.4° for flat plate type LED fish aggregation lamp and could be changed to 23.6° for the three columns type of LED fish aggregation lamp.The included angle between two columns of LED fish aggregation lamps is 160°.

    参考文献
    [1] Qian W G.Study on the optimal allocation of fish aggregation lamps in squid jigging fisheries[D].Shanghai:Shanghai Fisheries University, 2005:1-146.[钱卫国.鱿钓渔业中集鱼灯的优化配置研究.上海:上海水产大学, 2005:1-146.]
    [2] Okamoto T, Takahashi K, Ohsawa H, et al.Application of LEDs to fishing lights for Pacific sauryp[J].Journal of Light and Visual Environment, 2008, 32(2):88-92.
    [3] Choi J S, Choi S K, Kim S J, et al.Photoreaction analysis of squids for the development of a LED-fishing lamp[C].Proceedings of the 2nd international conference on maritime and naval science and engineering.Brasov, Romania.2009:92-95.
    [4] Shen S C, Huang H J, Chao C C, et al.Design and analysis of a high-intensity LED lighting module for underwater illumination[J].Applied Ocean Research, 2012(39):89-96.
    [5] Qian W G, Chen X J, Qian X L, et al.The optical characteristics of LED fish aggregation lamp(300W)and its energy efficiency[J].Marine Fisheries, 2011, 33(1):99-105.[钱卫国, 陈新军, 钱雪龙, 等.300W型LED集鱼灯光学特性及其节能效果分析.海洋渔业, 2011, 33(1):99-105.]
    [6] Qian W G, Chen X J, Lei L, et al.The optical characteristics of 300 W green light LED lamps used for fish aggregation[J].Journal of Dalian Ocean University, 2012, 27(5):471-472.[钱卫国, 陈新军, 雷林, 等.300 W型绿光LED集鱼灯的光学特性.大连海洋大学学报, 2012, 27(5):471-472.]
    [7] Cui X L, Zhang W X.Validation and promotion of the new LED sets fish lamp energy saving effect of a real ship[J].Journal of Zhejiang Ocean University:Natural Science, 2013, 32(2):170-172.[崔雪亮, 张伟星.新型LED集鱼灯节能效果实船验证及推广.浙江海洋学院学报:自然科学版, 2013, 32(2):170-172.]
    [8] Liao L.The Fresnel Phenomenon and its application in Maya[J].China Education Innovation Hearld, 2012(17):78-79.[廖玲.菲涅尔现象及其在Maya中的应用.中国科技创新导刊, 2012(17):78-79.]
    [9] Max B, Emil W.Principles of optics[M].7th ed.Beijing:Publishing House of Electronics Industry, 2009:32-35.
    [10] Shi S X, Liu J F, Sun Y L.Electromagnetic theory of light:The transmission and control of light[M].Xi'an:Xi'an Electronic and Engineering University, 2006:11-58.[石顺祥, 刘继芳, 孙艳玲.光的电磁论:光波的传播和控制.西安:西安电子科技大学出版社, 2006:11-58.]
    [11] Chen J.Electromagnetic theory of optical[M].Beijing:Tsinghua University Press, 2000:26-48.[陈军.光学电磁理论.北京:清华大学出版社, 2000:26-48.]
    [12] Ou P.Advanced optical simulation(MATLAB version)-optical waveguide, laser[M].Beijing:Beijing University Aeronautics and Astronautics Press., 2011:9-19.[欧攀.高等光学仿真(MATLAB版)-光波导, 激光.北京:北京航空航天大学出版社, 2011:9-19.]
    [13] Zhou Q Y, Hou Z Y, Liu R S.MATLAB visualization of university of physics[M].Beijing:Tsinghua University Press, 2010:226-251.[周群益, 侯兆阳, 刘让苏.MATLAB可视化大学物理学.北京:清华大学出版社, 2010:226-251.]
    [14] Xue D Y, Chen Y Q.The MATLAB solution of advanced applied mathematicalproblem[M].Beijing:Tsinghua University Press, 2004:1-120.[薛定宇, 陈阳泉.高等应用数学问题的MATLAB求解.北京:清华大学出版社, 2004:1-120.]
    [15] Zhang Z Y.MATLAB 6.5 proficiency[M].Beijing:Beijing University Aeronautics and Astronautics Press, 2003:17-134.[张志涌.精通MATLAB6.5版.北京:北京航空航天大学出版社, 2003:17-134.]
    [16] Zheng G F.Light-field calculation of light-attraction lamp and discussion on its suitabilities to fishing gear and methods in light-pelagic trawl for squid[J].Journal of Oceanography in Taiwan Strait, 1999, 18(2):215-220.[郑国富.诱鱼灯光场计算及其对光诱鱿鱼浮拖网作业的影响.台湾海峡, 1999, 18(2):215-220.]
    [17] Chui X Z, Arakawa F, Arimoto G, et al.Line source modelusing in small squid fishing boats fish lamp andits illumination in the water distribution[J].Bulletin of the Japanese Society of Scientific Fisheries, 2003, 69(1):44-51.[崔淅珍, 荒川久幸, 有元贵文, 等.线光源モデルを用ぃた小型ィカ钓り渔船集鱼灯の水中照度分布解析.日本水产学会誌, 2003, 69(1):44-51.]
    [18] Qian W G, Wang F.Comparative study on the calculated methods of illuminate of sea surface about aggregating fish lamps[J].Journal of Zhejiang Ocean University:Natural Science, 2004, 23(4):285-290.[钱卫国, 王飞.集鱼灯海面照度计算方法的比较研究.浙江海洋学院学报:自然科学版, 2004, 23(4):285-290.]
    [19] Guan W J, Qian W G, Chen X J.Computing underwater downward irradiance of fish aggregation lampsin class I ocean water based on Monte Carlo method[J].Journal of Fisheries of China, 2010, 34(10):140-151.[官文江, 钱卫国, 陈新军.应用Monte Carlo方法计算水上集鱼灯向下辐照度在一类海水中的分布.水产学报, 2010, 34(10):140-151.]
    [20] Zhao Z J.Design and analysis of high intensity LED lighting module for underwater optic field[D].Taiwan:Cheng Kung University, 2010:1-64.[赵志杰.高亮度LED模组于水下光场之设计与分析.台湾:成功大学, 2010:1-64.]
    [21] Wang S F.LED light source effect to the growth characteristics of the plant and optimization design[D].Tianjin:Tianjin University of Technology, 2013:1-71.[王淑凡.LED光质对植物生长特性影响及光源优化设计.天津:天津工业大学, 2013:1-71.]
    [22] Sha F, Qian W G, Wu Z Q.The theoretical calculations of underwater irradiance of upper water fish aggregation lamps and its optimal allocation in light purse seine vessels for chub mackere(Scomber japonicus)[J].Journal of Marine Sciences, 2013, 31(1):85-90.[沙锋, 钱卫国, 吴仲琪, 等.鲐鱼灯光围网渔船水上集鱼灯水中照度分布及优化配置的理论计算.海洋学研究, 2013, 31(1):85-90.]
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孔祥洪,陈新军,王伟杰,杜凯,卢克祥,钱卫国,杨渭.基于菲涅耳现象的LED集鱼灯最佳入射角研究[J].水产学报,2015,39(3):455~462

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  • 收稿日期:2014-06-20
  • 最后修改日期:2014-11-24
  • 录用日期:2015-02-11
  • 在线发布日期: 2015-03-20
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