基于3S技术的高速公路植被解译及生物量的估算和评价
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摘要
本文选取海峡西岸经济区高速公路网规划项目泰宁至建宁段作为研究对象,选择拟建高速公路中心线两侧10km和300m范围作为研究区域,以2006年12月和2007年5月的Landsat-5 TM两个时相覆盖泰宁建宁两县全部区域的遥感影像图为基础数据源,通过野外现场考察勘踏,结合专业遥感软件,把GPS、RS和GIS三者结合起来,通过监督分类、非监督分类、叠加分类、目视解译四种分类方法,对评价区的植被类型进行了分类与评价,并统计了各植被类型面积,对四种分类结果进行分析。结果表明:四种分类方法各有优缺点,其中叠加分类与目视解译的结果最相近,效果最好,具有操作简单,精度较高等优点。
     在研究区范围内共调查样方29个,后期补充验证采点10个,提取遥感影像图的植被指数和DN值进行分析并对样地数据进行处理,结合植被类型解译的结果,建立研究区植被生物量线性回归模型,通过克里金插值使最终的生物量估算结果更准确,得出高速公路研究区植被总生物量为3.4802×107t/hm2;平均生物量为228.7815t/hm2,最大生物量为300.4502t/hm2;公路建成后,永久占地484.75 hm2,工程临时用地176.6hm2,工程总共占地面积为661.35hm2,将造成评价区内生物量损失约151304.6450t,占总生物量的14.3742%。结果表明:工程建设对评价范围植被具有一定的影响,可以通过后期植被恢复与重建,在一定程度上减缓公路占地对评价区植被产生的影响,使整个评价区内的植被与生物量损失处于可承受阈内。
To accelerate the Development of the the construction of west-strait economic zone, the construction and improvement of the traffic and transport networks in Fujian province has become the important link of accelerating economic development,especially the construction of the expressway. By taking the expressway from Taining to Jianning which is one part of the Fujian expressway net as the research object,by taking the remote sensing imagines which have two phases including December 2006 and May 2007 cover all regions of two counties Taining and Jianning as basic data source, We do the vegetation interpretation and evaluation on the expressway study area from Taining to Jianning in Fujian Province using RS and GIS technology. By comparing the four methods:Unsupervised classification, Supervised classification,Overlay classification, Visual Interpretation, We not only classify and evaluate the appraisement district vegetation types, but also calculate the areas and analysis the four results.The results showed that:four classification methods each has merits and demerits, in which Overlay classification has very similar results with the Visual Interpretation's. It is the most efficient and has the merits such as simple operation, convenient use,high precision and high reliability etc.
     A total of 29 quadrats were set up,there were also 10 supplementary verify sampling points. After Extracting and analysiting the vegetation index and DN values of the remote sensing imagines, We processed datas of the sample plots,and established the linear regression model of vegetation biomass of the researching area combined with the result of the vegetation type interpretation. Using Kriging Regression,the estimation results is much more accurate, the results showed that:the total vegetation biomass in the expressway researching area is 3.4802 X 107t/hm2; the mean biomass is 228.7815t/hm2, the maximum biomass is 300.4502t/hm2; after the construction, the area of permanent land occupation is 484.75 hm2, the area of temporary land occupation is 176.6hm2, the gross floor area of the project is 661.35hm2 which will cause losses of biomass about 151304.6450t in the appraisement district,which accounts for 14.3742 percent of the total biomass. The result shows that:the construction of the project have relatively little influence to the vegetation in the evaluating scope,which is in the bearing threshold of the natural ecosystem.what is more,by doing the late vegetation restoration, the influence of the gross floor area of the expressway project to the vegetation will be effectively alleviated.
引文
[1].黎凯等,福建高速公路网研究报告[J],2006;
    [2].李晋文,高速公路建设对生态环境的影响分析及防护对策[J],山西交通科技,2008(5);
    [3].孙青、卓慕宁等,论高速公路建设中的生态破坏及其恢复[J],土壤与环境,2002,11(2):210-212;
    [4].王菲,高速公路建设的生态环境影响评价[J],交通世界,2008,16:134-136;
    [5]包健,公路建设的生态环境影响[J],江苏环境科技,2005,18(1):47-49;
    [6]连文前,山区高速公路建设对生态的影响及对策[J],亚热带水土保持,2007,19(3):60-62;
    [7]胡蓉、王焱等,高速公路环境影响评价样方调查研究[J],环境科学与管理,2007,32(9):163-168;
    [8]周晓铁、何祥亮等,高速公路建设对低丘陵地区的生态环境影响及保护措施探讨[J],环境科学与管理,2009,34(1):192-194;
    [9]张前进、江玉林等,高速公路环境破坏与生态恢复评估研究[J],公路交通科技,2006,23(5):147-149;
    [10]余德亿等,福建高速公路生物护坡草坪的建植与养护[J],草业科学,2001,18(5):45-49]
    [11]毛文永.生态环境影响评价概论[M].北京:中国环境科学出版社[J],1998:50—68:
    [12]刘杰,崔保山,杨志峰,纵向岭谷区高速公路建设对沿线植物生物量的影响[J].生态学报,2006,26(1)83-90;
    [13]汤屯高速公路沿线生态环境现状及其影响评价[J],黄山学院学报,2004,6(6):99-102]
    [14]刘杰,崔保山,杨志峰.纵向岭谷区高速公路建设对沿线植物生物量的影响[J].生态学报,2006.26(1)83-90;
    [15]保琦蓓,高速公路施工对原生植物群落的影响评价研究[J],武汉理工大学学报,2007;
    [16]汪洋、王慧觉等,高速公路施工对原生植被生态的影响[J],中国环境科学出版 社,2009,1(22):33-34;
    [17]李燕燕,樊后保,马尾松-阔叶树混交林生物量及矿质养分的研究[J],福建农林大学学报,2005;
    [18]俞新妥等,福建杉木人工林生态系统生物产量的初步研究[J],福建林学院科技,1979:
    [19]冯宗炜,陈楚莹,张家斌等湖南省会同县两个森林群落的生物生产力[J],植物生态学与地植物学学报,1982.6(4)257-267;
    [20]林益明,杨志伟等,武夷山常绿林研究[M],厦门大学出版社,2001;
    [21]李燕燕,樊后保,马尾松-阔叶树混交林生物量及矿质养分的研究[J],福建农林大学学报,2005;
    [22]叶镜中等,福建洋口林场杉木林生物量的年变化动态[J],南京林产工业学院学报,1984,(4):1-9;
    [23]杜生明,杉木人工林生物量的研究[J],浙江林学院学报,1991,8(3):288-294;
    [24]温远光,广西杉木人工林生物量及分配规律的研究[J],广西农业大学学报,1995,(1):55-64;
    [25]穆丽蔷等;
    [26]冯永辉,冯鲁田,叶新平,等.2004.秦岭大熊猫主食竹龙头竹生物量回归模型研究[J].西北大学学报(专辑):221-222;
    [27]方宗辉,福建省杉木人工林生物量及其分配研究[J],福建林业科技,2005,32(3):82-85;
    [28]黎羲,王福升,赣南毛竹、硬头黄竹、坭竹等竹林生物量的研究[J],南京林业大学学报,2007;
    [29]陈国荣,闽南山地相思人工林生物量及生产力分析[J],福建农林大学学报,2007;
    [30]田大伦等,马尾松和湿地松林生态系统结构与功能[M],科学出版社,2005,p13-25;
    [31]张灵,兰州南北两山人工林生物量及生态系统服务功能价值化研究[J],兰州大学学报,2007;
    [32]彭小勇,闽北杉木人工林地上部分生物量模型的研究[J],福建农林大学学报,2007;
    [33]黎向东、罗天祥,东方乌毛蕨和狗脊的生物量数学模式[J],广西农学学报,1989,8(2):39-47;
    [34]李钢铁、秦富仓等,旱生灌木生物量预测模型的研究[J],内蒙古林学院学报,1998,2(2):25-31;
    [35]曾珍英、张健萍等,灌木各测树因子相关性以及器官生物量相关性的研究[J],江西农业大学学报,2005,27(5):695-699;
    [36]杨昆、管东生,森林林下植被生物量收获的样方选择和模型[J],生态学报2007,27(2):705-714;
    [37]Be dard, J., and Lapointe, G.., The estimation of dry green biomass in Hayfields from canopy spectroreflectance measurements, Grass Forage Science.1987,42:73-78;
    [38]Graetz, R. D., Pech, R. P., Gentle, M. R, Landsat image data to rangeland assessment and monitoring the development and demonstration of a land image based resource information system(LIBRIS). Journal of Arid Environment. 1986,10,53-80;
    [39]Franklin, J.,and Hiernaux, P. H. Y. Estimating foliage and woody biomass in Sahelin and Sudanian wood lands using a remote sensing model. International Journal of Remote Sensing,1991,12,53-64;
    [40]Anderson, G.. L., Handson J.D, Haas. R. H. Evaluating Landsat Thematic Mapper Derived Vegetation Indices for Estimating Above-Ground Biomass on Semiarid Rangdands. Remote Sens. Environment,1993,45:165-175;
    [41]高琼,喻梅,张新时,中国东北样带对全球变化响应的动态模拟--个遥感信息驱动的区域植被模型[J],植物学报,1997,39(9):800-810;
    [42]Fraser Gemmell. Estimating Conifer forest cover with Thematic Mapper. Data using reflectance model inversion and two spectral indices in a site with variable background characteristics. Remote sensing environment.1999, 69:105-121;
    [43]Hame, T., Salli, A., Anderson, K. et. al., A new methodology for the estimation of conifer - dominated boreal forest using NOAA AVHRR data[J]. International Journal of Remote Sensing,1997,18(15),3211-3243;
    [44]Boy, D.S., Foody, G. M., and Curran, P. J. The relationship between the biomass of Cameroonia tropical forests and radiation reflected in middle infrared wavelengths (3.0-5.0 um)[J]. International Journal of Remote sensing,1999,20(5):1017-1023;
    [45]冯险峰,GIS支持下的中国陆地生物量遥感动态监测研究[J],陕西师范大学学报,2000;
    [46]李仁东,刘纪远等,应用Landsat etm数据估算郡阳湖湿生植被生物量[J],地理学报,2001,56(5):532-540;
    [47]郭志华,彭少麟,王伯荪.利用TM数据提取粤西地区的森林生物量[J].生态学报,2002,22(9):1832-1839;
    [48]刘蔚秋,广东黑石顶森林植被生物量及其遥感估算[J],中山大学学报,2003;
    [49]邢素丽,张广录,刘慧涛等,半干旱区森林植被生物量遥感估测方法研究[J],福建林学院学报,2004;
    [50]吴展波,基于3s的湖北鹿门寺林场马尾松林生物量估测模型研究[J],华中师范大学学报,2008;
    [51]张世利,基于RS, GIS的闽江流域杉木林生物量及碳贮量估测研究[J],福建农林大学学报,2008;
    [52]Wu S. Assessment of tropical forest stand characteristics with multipolarisation SAR data acquired over a mountainous region in Costa Rica[J].IEEE Trans Geosci Rem Sens.1990,28:752-755;
    [53]Kasischke E. S, Melack J. M, Dobson M. C. The Use of Imaging Radars for Ecological Applications-A Review[J]. Remote Sensing of Environment.1997,59(2):141-156;
    [54]王臣立,雷达与光学遥感结合在森林净初级生产力研究中应用[J],中科院遥感应用研究所,2006;
    [55]牛志春,青海湖环湖地区草地植被生物量遥感监测模型研究[J],南京师范大学,2003]
    [56]池宏康,周广胜等,表观反射率及其在植被遥感中的应用[J],植物生态学报,2005,29(1)74-80;
    [57]余明,生态环境综合信息图谱生成与应用[M],测绘出版社,36-42;
    [58]Dinguirard M, Slater PN(1999). Calib ration of space- multisp ectral imaging sensors:a review Remote Sensing of Environment,68,94-205;Hill J, Sturm B (1991). Radiometric correction of multitemporal Thematic Mapper data for use in agricultural land-cover classification and vegetation monitoring. International Journal of Remote Sensing,12,1471-1491;
    [59]池宏康,周广胜等,表观反射率及其在植被遥感中的应用[J],植物生态学报,2005,29(1)74-80;刘玉锋等,西天山云杉林生物量遥感监测研究---以尼勒克林区为例[J],福建师范大学,2008;
    [60]刘玉锋等,西天山云杉林生物量遥感监测研究---以尼勒克林区为例[J],福建师范大学,2008;
    [61]李海鹰,苗放等,基于6S模型的土法炼焦污染区TM遥感图像大气校正[J],内蒙古石油化工,2006,10:140-144;
    [62]宋巍巍等,五种TM大气校正模型在植被遥感中的应用[J],应用生态学报,2008,19(4):769-774;
    [63]陈蕾等,基于地面耦合的TM影像的大气校正[J],地理与地理信息科学,2004:20(2):34-37;
    [64]王桥,杨一鹏等,环境遥感[M],p55-60;
    [65]关择群,刘继琳等,遥感图像解译[M],p77-100;
    [66]王桥,杨一鹏等,环境遥感[M],71-74;
    [67]杨鑫,浅谈遥感图像监督分类与非监督分类[J],四川地质学报[J],2008:28(3):251-230;
    [68]刘礼,于强等,分层分类与监督分类相结合的遥感分类法研究[J],林业调查规划,2007,32(4):37-39.44;
    [69]王桥,杨一鹏等,环境遥感[M],p88-98;
    [70]贾海峰,刘雪华等,环境遥感原理与应用[M],清华大学出版社,p169-179;
    [71]环境遥感模型与应用[M],陈晓玲赵红梅等p137-140;
    [72]文军,王介民,一种由卫星遥感获得的修正的土壤调整植被指数[J],气象与环境研究,1997 2(3):302-309;
    [73]谭克龙、高会军等,中国半干旱生态脆弱带遥感理论与实践[J],科学出版社,42-52;
    [74]Lu D, Mausel P, BrondizioE, Moran E (2004). Relationships between forest stand parameters and Landsat TM spectral responses in the Brazilian Amazon Basin. Forest Ecology and Management,1998,149-167;
    [75]何智英,俞新妥,顺昌县高阳乡虎头山杉木丰产林调查研究报告[J],《福建林学院学报》.1987,7(3):1-11;
    [76]赵俊兰,冯仲科:森林资源清查实时自动测量定位系统的建立与应用[J],北方工业大学学报[J],2000,12(1):82-85;
    [77]林益明,杨志伟等,武夷山常绿林研究[M],p21-24;
    [78]高智慧,蒋国洪,邢爱金等.浙北平原水杉人工林生物量的研究[J].植物生态与地植物学报.1992,16(1):64-71;
    [79]林益明,杨志伟等,武夷山常绿林研究[M],厦门大学出版社,2001:42-47;
    [80]管东生,流溪河水库林区森林生态系统研究,热带亚热带森林生态系统研究[J],北京科学出版社,1989:123-124;
    [81]方精云,刘国华等,我国森林植被的生物量和净生产量[J],生态学报,1996,16(5):497-508;
    [82俞新妥,福建杉木人工林生态系统生物产量的初步探究[M],P238;
    [83]张世利等,基于SPSS相容性林分生物量非线性模型研究[J],福建农林大学学报自然科学版2008,37(5):496-500;
    [84]钱能智,叶镜中,福建省洋口林场杉木混合家系人工林的生物量[J],南京林业大学学报1992,16(3):18-24;
    [85]田大伦等,马尾松和湿地松林生态系统结构与功能[M],科学出版社,2005,p13-25;
    [86]陈辉,洪伟,兰斌,郑郁善等,闽北毛竹生物量与生产力的研究[J],林业科学1998;
    [87]方精云等,中国陆地生态系统的碳循环及其全球意义[J].现代生态学的热点问题(上册)北京:中国科学技术出版社,1996:251-265;
    [88]陈家宽,江西境内珍稀植物普通野生稻和中华水韭产地的考察[J],生物多样性,1998,6(4):260-266;
    [89]汤屯高速公路沿线生态环境现状及其影响评价[J],黄山学院学报,2004,6(6):99-10

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