广州市松材线虫病管理信息系统研建
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摘要
松材线虫病是影响森林健康的主要因素之一。松材线虫病管理信息系统的研建对有效控制松材线虫害危害,保证林木的健康生长,巩固造林绿化成果,促进生态环境建设,充分发挥森林的生态、经济、社会效益有着重要的意义。随着空间信息技术的发展,作为地球空间信息核心技术--“3S”技术也正发展和完善。在松材线虫病管理信息系统中,应用“3S”技术具有广泛的研究前景。该系统建立在松材线虫病信息网络管理平台的基础上,综合运用了“3S”技术、网络技术、虚拟仿真技术,实现了松材线虫病信息的集成化管理。
     林业从计划经济向市场经济转轨,信息管理的方式方法和技术手段都发生了变化,松材线虫病管理信息系统以广州市松材线虫病为管理对象,分析了松材线虫病的特点,比较了国内外对松材线虫病管理信息系统研究的发展状况,利用现代科学技术、航空录像技术提供的信息手段,在管理目标约束下,对广州市松材线虫病管理信息系统等问题进行了如下研究。
     (1)论述了建立广州市松材线虫病管理信息系统的可行性,指出了建立该系统的理论基础和技术基础,构建了广州市松材线虫病管理信息系统的体系框架。
     (2)通过航空录像获得航片信息,GPS技术采集地面信息,实现了实时获得松材线虫病的属性数据和空间数据功能。
     (3)经过数据分析,监测松材线虫孳生地的分布以及松材线虫导致的森林损失情况、灾害程度分级,设计最佳的防治计划和最优防治路线。
     (4)建立了适合广州市松材线虫病生命系统模型,对广州市松材线虫病发生、传播、迁移、扩散动态过程进行模拟,并建立相应的灾情损失评估模型,比较模型模拟得到的数据与实际调查得到的资料,对模型模拟结果进行评价。
     (5)运用GIS的技术优势,根据松材线虫病发生和防治数据、松树资源及监测信息、气象信息等因素进行综合分析,应用灰色系统理论等预测预报模型实现对不同区域、不同时期发生和危害情况的松材线虫病的预测预报。
     (6)研制了基于“3S”技术的广州市松材线虫病管理信息系统,构成了整体的、实时的和动态的松材线虫病的发生发展状态的监测、防治、预测预报系统,从而及时、有针对性的实现了松材线病的综合治理。
     松材线虫病管理信息系统的集成是一个综合的概念,它需要应用信息技术等多种高新技术。本系统采用ArcGIS8.2作为地理信息平台,采用面向对象的设计方法,以Visual Foxpro 6.0、PowerBuilder 8.0为开发工具。后台采用ORACLE 9数据库,前端采用Windows 2000 Professional操作系统。
Bursaphelenchus xylophilus Nickle disease is the one of major factor that affects the health of forest. Bursaphelenchus xylophilus Nickle Disease Management Information System grind build for effective control Bursaphelenchus xylophilus Nickle disease harmful harm, guarantee the healthy growth of woods , strengthen afforestation forestation accomplishment , promote the construction of ecological environment, develop economy and the ecology of forest fully , social benifit have important meaning. Along with the development of the technology of spatial information, as the key technology of the earth of spatial information -3S technical also straight development with perfect. In Bursaphelenchus xylophilus Nickle Disease Management Information System, apply the technology of 3S to have extensive research prospect. This system has synthesized on establishment Bursaphelenchus xylophilus Nickle disease foundation of ill information network management platform the integrated management that has realized Bursaphelenc
    hus xylophilus Nickle disease information with 3S technology, network technology and fictitious emulation technology.
    Forestry turns rail, the ways and means of information management and technical means from planned economy to market economy, have occured change , Bursaphelenchus xylophilus Nickle Disease Management Information System is taking Guangzhou city Bursaphelenchus xylophilus Nickle disease as management, have analysed the characteristic of Bursaphelenchus xylophilus Nickle disease for elephant, have compared domestic and international for the Bursaphelenchus xylophilus Nickle disease research of management information system development condition, record using modern science and technology and aviation as technology offers , information means, under management goal restraint, for Guangzhou city Bursaphelenchus xylophilus Nickle disease, the problems such as management information system are as follows to study.
    (1) Have discussed establishment the Guangzhou city feasibility of Bursaphelenchus xylophilus Nickle Disease Management Information System, have pointed out establishment the theoretical basic and technical foundation of this system, have founded the system frame that Guangzhou city Bursaphelenchus xylophilus Nickle Disease Management Information System.
    (2)Through aerial record, picture gets navigation flat information and GPS technical
    
    
    collection ground information , really gets space data function and the property data of Bursaphelenchus xylophilus Nickle disease when realizing.
    (3) Via data analysis, inspection Bursaphelenchus xylophilus Nickle breeds the distribution of land as well as the forest loss condition that Bursaphelenchus xylophilus Nickle causes and calamity level to grade , designs the planned and optimum route of the best of prevention and cure of prevention and cure.
    (4) Have established to suit Guangzhou city Bursaphelenchus xylophilus Nickle disease life systematic model, for Guangzhou city Bursaphelenchus xylophilus Nickle disease, disease is occured and propagated , move and proliferation development course imitate , and establish the corresponding loss assessment model of the condition of a disaster , compare the model information and that data and actual investigation get that can be imitated , appraise for model simulated result.
    (5) With the technical advantage of CIS, according to Bursaphelenchus xylophilus Nickle disease occur with the data of prevention and cure, the resource of pine tree and inspection information , meteorology the factors such as information carry out integration analysis, the forecast forecast models such as application grey systematic theory realize , is for different area , not same time the forecast forecast that occurs the disease of the Bursaphelenchus xylophilus Nickle disease of and harm condition.
    (6) The Guangzhou city Bursaphelenchus xylophilus Nickle Disease Management Information System that has developed the technology based on 3S has formed overall, real time and dynamic Bursaphelenchus xylophilus Nickle disease, is ill to
引文
[1]World Commission on Environment and Development. Our Common Future Oxford University Press. 1987.
    [2]程绪珂,等.建设有中国特色生态园林的探索.园林,1990(1):4-5.
    [3]刘德良.现代城市林业的作用及发展思考[J].广西科学学报,2002,18(1):32-37.
    [4]马世骏.森林的启示[M].北京:中国科学技术出版社,1994.81-83.
    [5]王劲峰,等著.中国自然灾害影响评价方法研究.北京:中国科学技术出版社,1993.173.
    [6]郑北鹰.专家警告:外来森林病虫害每年吞噬560亿.光明日报.2003-2-14.
    [7]萧刚柔.近年来我国森林昆虫研究进展[J].林病虫通讯,1992,(3):36-41.
    [8]关百钧,施昆山.森林可持续发展研究综述[J].世纪林业,1995,(4):1-6.
    [9]石根生.地理信息系统与森林病虫害管理[J].森林病虫通讯,1996,(3):38-40.
    [10]周淑芷,张真.生物多样性保护与森林病虫害的综合管理[J].世界林业研究,1996,9(2):18-22.
    [11]赵博光.美国及加拿大利用性信息素进行森林虫害预报的研究进展[J].北京林业大学学报, 1996,18(2):90-95.
    [12]刘乃生.森林病虫害的可持续控制[J].中国林业,1998,(11):38-39.
    [13]陈谋询.论森林资源管理基本原理[J].林业发展战略与系统工程,1999.97-95.
    [14]李元喜,文新跃,陈端吕.集成“3S”的森林经理信息系统的研建.韶关学院学报,2003,9 (9)53-55.
    [15]苏新宁,邵波.信息传播技术.[M]南京:南京大学出版社,1998.
    [16]李德仁.论RS、GPS、GIS集成的定义、理论与关键技术.遥感学报,1997,1(2):64-68.
    [17]刘惠明,林中大.3S技术及其在林业上的应用.广东林业科技,2002,18(2):44-47.
    [18]Brockhaus J A, Khorram S, Bruck R I et al. A comparison of Landsat TM and SPOT HRV data for use in the development of forest defoliation models. International Journal of Remote Sensing., 192, 13: 3235-3240.
    [19]Lamber N J, Ardo J, Rock B N. et al. Spectral characterization and regression-based classification of forest damage in Norway spruce stands in the Czech Republic using Landsat thematic Mapper data. Intermational Journal of Remote Sensing., 1995, 16: 1261-1287.
    [20]武红敢.森林病虫害遥感监测研究的现状与展望.北京,遥感新进展与发展战略,中国科学技术出版社,1996,302-307.
    [21]武红敢,乔彦友,陈林洪,等.马尾松林分叶面积指数动态变化的遥感监测研究.植物生态
    
    学报,1997,21(5):485-488.
    [22]戴昌达,唐伶俐,等.应用TM图像监测与评估林火、虫灾和洪涝灾害的理论与实践.环境遥感,1993,8(2)102-111.
    [23]Mamiya, Y. History of pine wilt disease in Japan.J.Nematol., 1988, 20 (2): 219-226.
    [24]岸洋一.食树.森林防疫,1988,37(7):132-136.
    [25]真宫靖治,材线虫病研究最近话题——第106回日本林学会大会,森林防疫,1995,44(8):153-155.
    [26]田村弘忠,韩国枯损后,森林防疫,1986,45(2):28-31.
    [27]Endia, N. The status of pine wilting disease caused by Bursaphelenchus xylophilus (Steiner &Buhrer) NickleNematoda: Aphelenchodidae. Bullentin OEPP/(16): 1,55-60,77-78.
    [28]Chio, Y. E. and Y. S. Moon. Survey on distribution of pine wood nematode (Bursaphelenchus xylophilus) and its pathogenicity to pine trees in Korea. Korean Journal of Plant Pathology, 1989, 5(3): 277-286.
    [29]Moon, Y.S., W.H. Yeo, S.M. Lee, et al. Seasonal damaged rate by pine wood nematode, Bursaphelenchus xylophilus, and maturation feeding pattern of Japanese pine sawyer, Monochamus alternatus, Proc. Of the 3rd Regional Workshop of IYFRO 7.03.08, Chayi, Taiwan, 116-123.
    [30]Dropkin, V.H..Pinewilt in the U. S. Proc. U.S.-Jpn. Sem. on Pine Wilt. Dis. East-west Centre, Honolula, HA., 1984, 3-5.
    [31]Wingfield, M. J., R. A Blanchette, T.H. Nicholls, et al. Association of pine wood nematode with stressed trees in Minnesota, Iowa, and Wisconsin. Plant Dis., 1982, 66(10): 934-937.
    [32]Bergdahl, D.R. Impact of pinewood nematode in North America:present and future. J. Nematol, 1988, 20(2): 260-265.
    [33]程瑚瑞,林茂松,黎伟强,等,南京黑松上发现萎蔫线虫病,森林病虫通讯,1983,(4):1-5
    [34]程瑚瑞,林茂松,黎伟强.南京松树线虫研究,南京农学院学报,1983,(4):1
    [35]孙永春.南京中山陵发现松材线虫.江苏林业科技,1982.
    [36]段世文.我国确立松材线虫防治工作目标.新华社.
    [37]翰密斯.凯密斯(加拿大).平衡的法则-林业与环境问题.中国环境科学出版社,1996.
    [38]Steiner, G, and E.M. Buhrer. Aphelenchoides xy]ophilus n. sp. A nematode associated with blue stain and other fungi in timber. J. Agric. Res., 1934, 48:949-951.
    [39]Nickle, W.R. Pine wood nematode (Bursaphelenchus xylophilus) in Japanese black pine
    
    (Pinus thunbergii) and red pine (Pinus resinosa ) in Delaeare and Maryland, USA. Proc. U.S.-Jpn. Sen. On Pine Wlt Dis East-West Centre, Honolulu, 1984, HA26-31.
    [40]真宫靖治,清原友也,德重阳山.材组织中 Bursaphelenchus属线虫新种,(反称).应动昆大会讲要,1971,15:28.
    [41]远田畅男.台湾材线虫病被害.森林防疫,37(9):161—166.
    [42]Linit, M. J. Transmission of pinewood nematode through feeding wounds of Monochamus carolinensis (Coleoptera: Cerambycidae). J. Nematol, 1990,22(2):231-236.
    [43]齐藤谛.材线虫病枯损木昆虫相,日林东北之志,1981,33:159-160.
    [44]作山健.年越枯发生地域材线虫病发生生态防除(Ⅰ)本病危害地感染源驱除效果实证.森林防疫,1990,39(12):230-2339.
    [45]竹谷昭彦,细田隆治,等.枯损数温度关系(2).日林九支研论,1979,32:255-256.
    [46]来燕学,周永平,俞林祥,等.松林火灾对松材线虫病流行关系的研究.林业科学研究,2000,13(2):182-187.
    [47]徐克勤,徐福元,许文力,等.干旱胁迫对松材线虫病发生的影响.南京林业大学学报,1996,20(2):80-83.
    [48]清水一郎.茨城县材线虫病被害激害化气象要因.东京大学农学部演习林报告,1987,76:279-286.
    [49]田中洁.材线虫病发生及SO2影响.日林论,1975.86:247-289.
    [50]徐福元,杨宝君,葛明宏.松材线虫病媒介昆虫的调查.森林病虫通讯,1993,(2):20-21.
    [51]左藤平典,等.材线虫病被害木以外传播可能性.日本东北之志,1981,32:210-211.
    [52]Linit, M. J.,E. Kondo and M. T. Smith. Insects associated with the pinewood nematode, Bursaphelenchus xylophilus (Nematoda: Aphelenchoididae), in Missouri. Envion. Enttomal., 1983, 12(2):467-470.
    [53]Mamiya, Y. Behavior of the pine wood nematode, Bursaphelenchus xylophilus, associated with the diseasee development of pine wilt. Proc. U. S. -Jpn Sem. On Pine Wilt Dis. East-West Centre, Honolulu, 1984, HA 14-25.
    [54]宋双玉.松材线虫病木的直观检验,植物检验,1993,7(1):23-24.
    [55]周弘,王开湘,叶春巧,等.进境木包装松材线虫检验检疫制样方法比较.植物检疫,2002,16(5):268-270.
    [56]臧秀强,等.影响松材线虫检疫检验的因素,森林病虫通讯,1993,(4):10-12.
    [57]蒋巧根,张一平,王旭辉.松材线虫病被害木伐桩灭虫试验研究.江苏林业科技,1998,25
    
    (3):35—38.
    [58]王玉燕,宋双玉,臧秀强,等.用溴甲烷熏蒸松材线虫病木处理技术的研究,林业科学研究,1994,7(6):671—676.
    [59]原川义雄,福林无漏夫,谷野寅藏,等.材水中浸渍杀虫试验,森林防疫,1978,27:83.
    [60]松原功.千叶县松虫被害木物理的防除实验例.森林防疫,1993,42(11):217—220.
    [61]林业部科技司编.中国森林生态系统定位研究.东北林业大学出版社,1994.
    [62]孙淑清,罗继生,李庆君.现代技术在我国森林病虫害监测管理中的应用.防护林科技,2004.3(2): 38—39.
    [63]戴昌达,唐伶俐,陈刚,等.应用TM图像监测及评估林火、虫害和洪涝灾害的理论与实践.环境遥感,1993,8(2):102-111.
    [64]周立,森林虫害监测与防治综合管理信息系统中3S集成技术实现[J].林业资源管理,1999, (1):59—62.
    [65]徐华潮,吴鸿,傅丽青.森林虫害综合治理研究.浙江林业科技,2002,3(2)74—76.
    [66]冯仲科,等.基于3S技术的森林资源与环境监测系统的构想.北京林业大学学报,2001,23(4): 90—92.
    [67]黄建文.遥感及GIS技术在森林资源信息更新中的应用.林业资源管理,2000(2):59—62.
    [68]武红敢,等.3S技术在安徽省森林病虫害监测与管理中的应用.昆虫与环境——中国昆学会2001年学术年会论文集,286—291.
    [69]吴坚,马小明,李志清,等.航空录像技术在森林病虫害监测中的应用.林业科学研究,1994,7(5):579—584.
    [70]董振辉、赵铁良、阎峻,等.森林病虫害监测预报软件的开发及应用.Forest Pest and Disease,2002,3(21):6—9.
    [71]朱忠保.森林生态学.中国林业出版社,1991.
    [72]A. N.rencz and J nemeth, Defection of Mountain Pine Beetle Infestation Using Landsat Mss and Simulated Thematic Mapper Data Canadian Journal of Remote Sensing,, 1985, 11(1): 50-58.
    [73]J. R.Rilay. Remote Sensing in Entomology Amm, Rev. Entomology , 1989, 34: 247-71.
    [74]张大华,梅秀英,施季森.美国林业科技发展现状及其战略.世界林业研究,1999,8(5):61—65.
    [75]国家林业局外来由害生物预防与管理赴美考察组.美国林业外来由害生物的预防与管理.中国森林病虫,2003,9(5):41—44.
    [76]Twery, M.J., et al.. Using GIS to assess gypsy moth hazard. In Proc. ASPRS/ACSM 1990 Annu.
    
    Conv., Bethesda, MD: Am. Soc: Photogrammetru and Rem ote Sensing, 1990, 3: 284-290.
    [77]杨存建,陈建清,魏一鸣.遥感和GIS在森林病虫害监测管理中的应用模式.灾害学,1999,(3):267-271.
    [78]KOBAYASHI, et al. The Japanese pine Ssawyer bettle as the vector of pine wilt disease[J]. Ann Rev Entomol, 1984, 29:115-135.
    [79]Mothods Application Group, Airhorne Video system users guide, USDA Forest Service, report MAG-92-1, Fort Collins, Colorado, 1992.
    [80]Linden,D.S., et al.. Airborne video automated processing, US Forest Service internal report . Fort Collons. Colorado, 1993.
    [81]曾泽光.广州市森林资源现状及其经营管理.中南林业调查规划,2001.6
    [82]叶渭贤,王喜平.城市林业规划建设几个问题的探讨[J].中南林业调查规划,1996,15(4):37-47.
    [83]广州社科院城管所课题组.可向山水型核心城市方向发展[N].羊城晚报,2000-10-28.
    [84]孙冰,粟娟,等.广州市城市森林的空间特征与发展研究.城市环境与城市生态,1997,10(2):50-53.
    [85]沈家芬,苏开君.广州林业发展现状及其方向研究[J].广东林业科技,2001,17(2):46-49.
    [86]黄焕华,等.广东省松褐天牛的发生与控制.中美驻干害虫学术研讨会论文集,2002.
    [87]余海滨,徐世多,陈沐荣,等.松材线虫病控制措施研究,林业科技通讯,1993,(5):24-27.
    [88]肖胜,潘辉,卢介龙.“3S”一体化技术及其在林业上的应用研究[J].福建林业科技,1999(增刊):101-105.
    [89]高志强,刘纪远等.基于RS和GIS的中国土地利用/土地覆盖状况研究.遥感学报,1999,vol.3.No.2.
    [90]粟娟,孙冰,黄家平,等.广州市城市林业管理信息系统的研制开发.城市环境与城市生态,1997,10(3):15-18.
    [91]陈炳浩.城市生态与城市绿化体系.城市林业—’92首届城市林业学术研讨会文集.北京:中国林业出版社,1993,37-43.
    [92]马荣华,等.数字地球时代“3S”集成的发展.地理科学进展,2001,20(1):89—96.
    [93]冯仲科,余新晓.“3S”技术及其应用.中国林业出版社,2000,254—264.
    [94]邱荣祖,周新年,龚玉启.“3S”技术及其在森林工程上的应用与展望.林业资源管理,2001,(1):66—71.
    [95]李树楷.初论“3S”技术一体化信息技术.环境遥感,1995,(10):76—80.
    [96]朱述龙,张占睦.遥感图像获取与分析[M].北京:科学出版社,2000,1-33.
    [97]M.F. Goodchild, Geographic Information Science, IJGIS, 1992, Vol. 6, NO.1, 235-243.
    
    
    [98]武红敢,吴坚,王福贵,等.全球定位系统(GPS)在林业导航中的实验研究.林业科学,1999,35(4):122—124.
    [99]FAO. IUFRO Guidelines for World Forest Monitoring (draft), 1992.
    [100]熊桂喜,王小虎.计算机网络[M].清华大学出版社,1998.9:368-369.
    [101]徐化成.景观生态学[M].中国林业出版社,1996.
    [102]王雨田.控制论、信息论、系统科学与哲学[M].中国人民大学出版社,1988.3:305—306.
    [103]汪克夷.管理学[M].大连理工大学出版社,1998.6:14-15.
    [104]Proctor Tony. Management Creativity. Prentice Hall Company, 1997.
    [105]Edith T. Penrose: The Theory of the Growth of The Firm. Basil Black-well & Mo Ltd, 1993.
    [106]www. systemscience, org&chistory&xtno3. htm
    www. systemscience, org&chistory&xtno2. htm
    [107]李葵.MIS开发中C/S模式与B/S模式的结合策略.
    [108]吴桂康.我国城市林业的构建与发展探讨[J].四川林业科技,1997(4):63—65.
    [109]杨宝君,潘宏阳,汤坚,等.松材线虫病.北京:中国林业出版社,2003.
    [110]赵至模,郭依泉.群落生态学原理方法.科学技术文献出版社重庆分社,1990:225—319.
    [111]Akbulut, S., and M. J. Linit. Reproductive potential of Monochamus carolinensis (Coleoptera : Cerambycidae ) with respect to pinewood nematode phoresis. Population Ecology, 1999, 28 (2): 407-411.
    [112]Akbulut, S., and M. J. Linit. Flight performance of Monochamus carolinensis (Coleoptera : Cerambycidae) with respect to nematode phoresis and beetle characteristics. Population Ecology, 1999, 28 (6): 1014-1020.
    [113]Fujio Kobayashi Strategies for the control of pine wilt disease[A].in: Victor Dropkin. Proceedings of the LIS-Japan Seminar the resistence mechanisms of pines against pine wilt disease, 1984, 171-175.
    [114]来燕学,徐企克,陈小龙,等.江苏林业科技,2002(1).
    [115]萧刚柔.中国森林昆虫(第2版)[M].北京:中国林业出版社,1992,948—953.
    [116]Taylor. L.R. Nature, 1961, 189:732-735.
    [117]刘宽余.我国森林昆虫生态学研究进展,Forest Pest and Disease,2002,NO.1:10—13.
    [118]邬伦,刘瑜,等.地理信息系统—原理、方法和应用[M].北京大学地理教学丛书,2001.2:289—299,422—423,315—316,458.
    [119]陆守一,唐小明,王国胜.地理信息系统实用教程[M].中国林业出版社,1998.9:182—184.
    [120]H J Gotze, R T Wiliams. Digitization of Maps and Associated Geoscience Data
    
    Guidelines for Global Geoscience Transects[M]. Copublished by the Inter-Union ComIMSsion on the Lithosphere and American Geophysical Union.
    [121]U S Geodynamics Committee. North American Continent-Ocean Transects Program[M], USA:National Academy Press, 1989.
    [122]Singh,Leigh,Zafian,et al.Oracle数据库开发指南.清华大学出版社,1998.6[M]:6—7.
    [123]崔巍,索梅,晓波,牛欣源.PowerBuilder 7.0参考手册[M].清华大学出版社,2001.4: 198-199.
    [124]崔巍,贺杰,董良,顾贞.PowerBuilder 7.0数据窗口程序设计[M].清华大学出版社,2001.4: 235-239.
    [125]桂峰,陈海峰.PowerBuilder 7.0应用与开发[M].电子工业出版社,1999.5:65-69.
    [126]何旭洪,余建英.PowerBuilder 8.0数据库系统开发实例导航[M].人民邮电出版社,2002.5: 11—13.
    [127]BOWMAN, C.M., DANZIG, P. B., HARDY, D. R., MANBER, U., and SCHWARTZ, M.F.: " The Harvest Information Discovery and Access System," Computer Networks and ISDN Systems, vol. 28:119-125, Dec. 1995.
    [128]Jeffrey D. Case. Simple Network Management Protocol[S]. RFC 1157,1990.
    [129]郭放.校园网的设计与安全运行[J].计算机应用研究,2001.2:80—83.
    [130]FISCHER, W.,WALLMEIER, E.,WORSTER, T.,DAVIS, S.P.,HAYTER, A.:" Data Communications Using ATM:Architectures, Protocols, and Resource Management," IEEE Commun. Magazine, vol. 32, pp. 24-33, Aug, 1994.
    [131]http://www. 3com. com/exchangedevice. html
    [132]林辉,刘泰龙,李际平.遥感技术基础教程.中南大学出版社,2002.12.

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