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基于CLUE-S和InVEST模型的苏州市生境质量评估及预测

唐娇娇 余成 张委伟 陈德超

唐娇娇,余成,张委伟,等.基于CLUE-S和InVEST模型的苏州市生境质量评估及预测[J].环境工程技术学报,2023,13(1):377-385 doi: 10.12153/j.issn.1674-991X.20210657
引用本文: 唐娇娇,余成,张委伟,等.基于CLUE-S和InVEST模型的苏州市生境质量评估及预测[J].环境工程技术学报,2023,13(1):377-385 doi: 10.12153/j.issn.1674-991X.20210657
TANG J J,YU C,ZHANG W W,et al.Habitat quality assessment and prediction in Suzhou based on CLUE-S and InVEST models[J].Journal of Environmental Engineering Technology,2023,13(1):377-385 doi: 10.12153/j.issn.1674-991X.20210657
Citation: TANG J J,YU C,ZHANG W W,et al.Habitat quality assessment and prediction in Suzhou based on CLUE-S and InVEST models[J].Journal of Environmental Engineering Technology,2023,13(1):377-385 doi: 10.12153/j.issn.1674-991X.20210657

基于CLUE-S和InVEST模型的苏州市生境质量评估及预测

doi: 10.12153/j.issn.1674-991X.20210657
基金项目: 国家自然科学基金项目(41801148,41701477)
详细信息
    作者简介:

    唐娇娇(1995—),女,硕士研究生,主要从事环境规划与管理研究,2278918228@qq.com

    通讯作者:

    陈德超(1972—),男,教授,博士,主要从事环境规划与管理研究,dcchen2002@163.com

  • 中图分类号: X826

Habitat quality assessment and prediction in Suzhou based on CLUE-S and InVEST models

  • 摘要:

    评估城市化进程中土地利用变化下的生境质量演变,对于构建综合生态规划体系、应对全球可持续发展的重大挑战具有重要意义。基于苏州市2010年和2018年遥感影像解译的土地利用数据和社会经济等数据,选取高程、坡度、到公路的距离、人口密度等驱动因子,采用CLUE-S模型模拟多情景下2030年土地利用变化,并通过生态系统服务评估与权衡(InVEST)模型评估过去并预测未来的生境质量时空演变,探讨土地利用变化对生境质量的影响。结果表明:最优拟合尺度为400 m×400 m,Kappa系数达到0.854 5,模型能够很好地模拟研究区未来的土地利用格局;苏州市2030年生态保护情景下的生境质量优于2018年,而2030年自然增长情景下的生境质量差于2010年和2018年;从空间分布看,苏州市中心城区、工业较集中和人口活动强度大的地区生境质量差,太湖周边等水系发达地区生境质量较好。因此,未来研究区在发展经济的同时,更要注重生态保护,实现高质量发展。

     

  • 图  1  研究区域行政区划

    Figure  1.  Administrative division of the study area

    图  2  不同模拟尺度下各地类ROC变化

    Figure  2.  Changes in ROC of each land use type under different simulation scales

    图  3  苏州市2018年实际土地利用与模拟土地利用对比

    Figure  3.  Comparison of actual land use and simulated land use in Suzhou City in 2018

    图  4  苏州市2030年不同情景下土地利用模拟结果

    Figure  4.  Land use simulation results of different scenarios in Suzhou City in 2030

    图  5  苏州市过去、现状和未来不同情景下生境质量空间分布

    Figure  5.  Spatial distribution of past, present and future habitat quality in Suzhou under different scenarios

    表  1  各土地利用类型转换矩阵

    Table  1.   Transformation matrix of each land use type

    土地利用类型耕地水域建设用地其他用地
    耕地1111
    水域1111
    建设用地1111
    其他用地1111
      注:1表示可以相互转换。
    下载: 导出CSV

    表  2  胁迫因子的最大影响距离及其权重

    Table  2.   Maximum influence distance and weight of stress factors

    胁迫因子最大影响距离/km权重距离衰减函数
    耕地10.5线性
    建设用地2.50.7指数
    下载: 导出CSV

    表  3  生境适宜度及其对不同胁迫因子的敏感度

    Table  3.   Habitat suitability and its sensitivity to different stress factors

    土地利用类型生境适宜度敏感度
    耕地建设用地
    耕地0.50.30.5
    水域1.00.80.7
    建设用地000
    其他用地0.20.30.4
    下载: 导出CSV

    表  4  土地覆被模拟结果与现状数据对比

    Table  4.   Comparison of land cover simulation results and current data

    土地利用类型模拟正确的栅格数总栅格数模拟正确格栅数占比/%
    耕地16 96918 96989.46
    水域17 27619 19090.03
    建设用地12 45814 30787.07
    其他用地1 5021 64491.36
    合计48 20554 11089.09
    下载: 导出CSV

    表  5  2030年不同情景模拟下土地利用面积及占比

    Table  5.   Land use area and proportion under different scenarios in 2030

    土地利用
    类型
    2018年现状2030年
    自然增长情景
    2030年
    生态保护情景
    面积/km2占比/%面积/km2占比/%面积/km2占比/%
    耕地3 050.04 35.052 688.1831.052 849.9232.91
    水域3 070.4035.463 040.5735.123 068.9635.44
    建设用地2 289.1226.442 657.0130.692 469.7628.53
    其他用地263.043.05271.843.14268.963.12
    下载: 导出CSV

    表  6  各等级生境质量面积与占比

    Table  6.   Area and proportion of each grade of habitat quality

    等级生境质量指数2010年2018年2030年自然增长情景2030年生态保护情景
    面积/km2占比/%面积/km2占比/%面积/km2占比/%面积/km2占比/%
    0~0.21 045.6012.082 548.6429.442 503.2028.922 007.3623.18
    较差0.2~0.42 752.4831.792 644.9630.551 980.1622.872 277.6026.33
    中等0.4~0.62 159.2024.93914.5610.56462.405.341 425.6016.46
    较好0.6~0.8265.603.07448.325.181 375.0415.88473.445.46
    0.8~1.02 434.7228.132 101.1224.272 336.8026.992 473.6028.57
    下载: 导出CSV
  • [1] LI Y N, DUO L H, ZHANG M, et al. Assessment and estimation of the spatial and temporal evolution of landscape patterns and their impact on habitat quality in Nanchang, China[J]. Land,2021,10(10):1073. doi: 10.3390/land10101073
    [2] 彭建, 徐飞雄, 吴见, 等.典型旅游城市生境质量空间分异及其影响机理研究: 以黄山市为例[J]. 长江流域资源与环境,2019,28(10):2397-2409.

    PENG J, XU F X, WU J, et al. Spatial differentiation of habitat quality in typical tourist city and their influencing factors mechanisms: a case study of Huangshan City[J]. Resources and Environment in the Yangtze Basin,2019,28(10):2397-2409.
    [3] 郭力娜, 王刚, 姜广辉, 等. 2005—2019年辽宁省城镇化与生态环境质量耦合协调时空分异及影响因子研究[J]. 环境工程技术学报,2022,12(4):1123-1133.

    GUO L N, WANG G, JIANG G H, et al. Spatial-temporal differentiation and influencing factors of coupling coordination between urbanization and eco-environmental quality in Liaoning Province from 2005 to 2019[J]. Journal of Environmental Engineering Technology, 2022,12(4):1123-1133.
    [4] 刘丹, 田翠翠, 徐婷婷, 等.三亚市“山海河城”模式的生态文明建设实践探索[J]. 环境工程技术学报,2020,10(1):126-132. doi: 10.12153/j.issn.1674-991X.20190034

    LIU D, TIAN C C, XU T T, et al. Practice exploration of mountain-sea-river-city mode of ecological civilization construction in Sanya City[J]. Journal of Environmental Engineering Technology,2020,10(1):126-132. doi: 10.12153/j.issn.1674-991X.20190034
    [5] 常玉旸, 高阳, 谢臻, 等.京津冀地区生境质量与景观格局演变及关联性[J]. 中国环境科学,2021,41(2):848-859. doi: 10.3969/j.issn.1000-6923.2021.02.039

    CHANG Y Y, GAO Y, XIE Z, et al. Spatiotemporal evolution and spatial correlation of habitat quality and landscape pattern over Beijing-Tianjin-Hebei region[J]. China Environmental Science,2021,41(2):848-859. doi: 10.3969/j.issn.1000-6923.2021.02.039
    [6] 石小伟, 冯广京, 苏培添, 等.大都市郊区土地利用时空演变特征与生境质量评价[J]. 农业工程学报,2021,37(4):275-284. doi: 10.11975/j.issn.1002-6819.2021.4.033

    SHI X W, FENG G J, SU P T, et al. Spatiotemporal evolution of land use and habitat quality assessment in the suburbs of metropolitan[J]. Transactions of the Chinese Society of Agricultural Engineering,2021,37(4):275-284. doi: 10.11975/j.issn.1002-6819.2021.4.033
    [7] 彭建, 吴见, 徐飞雄, 等.基于价值评估的黄山市生境质量时空演变特征分析[J]. 生态学报,2021,41(2):665-679.

    PENG J, WU J, XU F X, et al. Spatio-temporal evolution characteristics of habitat quality in typical tourism cities based on value evaluation: a case study of Huangshan[J]. Acta Ecologica Sinica,2021,41(2):665-679.
    [8] 周婷, 陈万旭, 李江风, 等.神农架林区人类活动与生境质量的空间关系[J]. 生态学报,2021,41(15):6134-6145.

    ZHOU T, CHEN W X, LI J F, et al. Spatial relationship between human activities and habitat quality in Shennongjia Forest Region from 1995 to 2015[J]. Acta Ecologica Sinica,2021,41(15):6134-6145.
    [9] 陈雅倩, 赵丽, 陶金源, 等.基于InVEST模型的未利用地开发前后生境质量评价: 以唐县为例[J]. 中国生态农业学报,2020,28(7):1093-1102.

    CHEN Y Q, ZHAO L, TAO J Y, et al. Habitat quality evaluation before and after unused land development based on InVEST model: a case study of Tang County[J]. Chinese Journal of Eco-Agriculture,2020,28(7):1093-1102.
    [10] YANG Y Y. Evolution of habitat quality and association with land-use changes in mountainous areas: a case study of the Taihang Mountains in Hebei Province, China[J]. Ecological Indicators,2021,129:107967. doi: 10.1016/j.ecolind.2021.107967
    [11] 朱桂萍. 苏州统计年鉴2020[A]. 北京: 中国统计出版社, 2021: 4-5.
    [12] VERBURG P H, de KONING G H J, KOK K, et al. A spatial explicit allocation procedure for modelling the pattern of land use change based upon actual land use[J]. Ecological Modelling,1999,116(1):45-61. doi: 10.1016/S0304-3800(98)00156-2
    [13] CLAESSENS L, SCHOORL J M, VERBURG P H, et al. Modelling interactions and feedback mechanisms between land use change and landscape processes[J]. Agriculture, Ecosystems & Environment,2009,129(1/2/3):157-170.
    [14] 田义超, 黄远林, 张强, 等.北部湾南流江流域土地覆盖及生物多样性模拟[J]. 中国环境科学,2020,40(3):1320-1334. doi: 10.3969/j.issn.1000-6923.2020.03.043

    TIAN Y C, HUANG Y L, ZHANG Q, et al. Simulation of land cover and biodiversity in Nanliu River Basin in Beibu Gulf[J]. China Environmental Science,2020,40(3):1320-1334. doi: 10.3969/j.issn.1000-6923.2020.03.043
    [15] 朱康文, 雷波, 李月臣, 等.生态红线保护下的两江新区土地利用/覆盖情景模拟及生态价值评估[J]. 环境科学研究,2017,30(11):1801-1812.

    ZHU K W, LEI B, LI Y C, et al. Land use/cover scenario simulation and ecological value assessment based on the ecological protection red line: Liangjiang New Area case study[J]. Research of Environmental Sciences,2017,30(11):1801-1812.
    [16] 朱小林, 郭青霞.基于CLUE-S模型的土地利用空间格局情景模拟: 以忻州市忻府区为例[J]. 江苏农业科学,2020,48(4):254-259.

    ZHU X L, GUO Q X. Study on scenario simulation of land use spatial pattern based on CLUE-S model: taking Xinfu District, Xinzhou Cityas an example[J]. Jiangsu Agricultural Sciences,2020,48(4):254-259.
    [17] 张燕, 师学义, 唐倩.不同土地利用情景下汾河上游地区碳储量评估[J]. 生态学报,2021,41(1):360-373.

    ZHANG Y, SHI X Y, TANG Q. Carbon storage assessment in the upper reaches of the Fenhe River under different land use scenarios[J]. Acta Ecologica Sinica,2021,41(1):360-373.
    [18] 郝晓敬, 张红, 徐小明, 等.晋北地区土地利用覆被格局的演变与模拟[J]. 生态学报,2020,40(1):257-265.

    HAO X J, ZHANG H, XU X M, et al. Evolution and simulation of land use/land cover pattern in Northern Shanxi Province[J]. Acta Ecologica Sinica,2020,40(1):257-265.
    [19] 赵旭, 汤峰, 张蓬涛, 等.基于CLUE-S模型的县域生产-生活-生态空间冲突动态模拟及特征分析[J]. 生态学报,2019,39(16):5897-5908.

    ZHAO X, TANG F, ZHANG P T, et al. Dynamic simulation and characteristic analysis of county production-living-ecological spatial conflicts based on CLUE-S model[J]. Acta Ecologica Sinica,2019,39(16):5897-5908.
    [20] 胡波洋, 张蓬涛, 白宁, 等.基于CLUE-S和GMOP模型的青龙满族自治县土地利用情景模拟[J]. 中国农业资源与区划,2020,41(7):173-182.

    HU B Y, ZHANG P T, BAI N, et al. Land use scenario simulation in Qinglong Manchu Autonomous County based on CLUE-S and GMOP model[J]. Chinese Journal of Agricultural Resources and Regional Planning,2020,41(7):173-182.
    [21] PONTIUS R G Jr, SCHNEIDER L C. Land-cover change model validation by an ROC method for the Ipswich watershed, Massachusetts, USA[J]. Agriculture, Ecosystems & Environment,2001,85(1/2/3):239-248.
    [22] 幸瑞燊, 周启刚.基于Ann-CA-Markov模型的生态空间预测模拟: 以重庆市万州区为例[J]. 生态与农村环境学报,2021,37(6):740-750.

    XING R S, ZHOU Q G. Predictive simulation of ecological spatial evolution based on Ann-CA-Markov model: a case study of Wanzhou District, Chongqing[J]. Journal of Ecology and Rural Environment,2021,37(6):740-750.
    [23] 蒋冲, 王德旺, 罗上华, 等.三江源区生态系统状况变化及其成因[J]. 环境科学研究,2017,30(1):10-19. doi: 10.13198/j.issn.1001-6929.2017.01.11

    JIANG C, WANG D W, LUO S H, et al. Ecosystem status changes and attribution in the Three-River Headwaters Region[J]. Research of Environmental Sciences,2017,30(1):10-19. doi: 10.13198/j.issn.1001-6929.2017.01.11
    [24] 邓楚雄, 郭方圆, 黄栋良, 等.基于INVEST模型的洞庭湖区土地利用景观格局对生境质量的影响研究[J]. 生态科学,2021,40(2):99-109. doi: 10.14108/j.cnki.1008-8873.2021.02.013

    DENG C X, GUO F Y, HUANG D L, et al. Research on the impact of land use and landsacpe pattern on habitat quality in Dongting Lake area based on INVEST model[J]. Ecological Science,2021,40(2):99-109. doi: 10.14108/j.cnki.1008-8873.2021.02.013
    [25] 高庆彦, 潘玉君, 刘化.基于InVEST模型的大理州生境质量时空演化研究[J]. 生态与农村环境学报,2021,37(3):402-408. doi: 10.19741/j.issn.1673-4831.2020.0654

    GAO Q Y, PAN Y J, LIU H. Spatial-temporal evolution of habitat quality in the Dali Bai Autonomous Prefecture based on the InVEST model[J]. Journal of Ecology and Rural Environment,2021,37(3):402-408. doi: 10.19741/j.issn.1673-4831.2020.0654
    [26] 张学儒, 周杰, 李梦梅.基于土地利用格局重建的区域生境质量时空变化分析[J]. 地理学报,2020,75(1):160-178. doi: 10.11821/dlxb202001012

    ZHANG X R, ZHOU J, LI M M. Analysis on spatial and temporal changes of regional habitat quality based on the spatial pattern reconstruction of land use[J]. Acta Geographica Sinica,2020,75(1):160-178. doi: 10.11821/dlxb202001012
    [27] 戴云哲, 李江风, 杨建新.长沙都市区生境质量对城市扩张的时空响应[J]. 地理科学进展,2018,37(10):1340-1351. doi: 10.18306/dlkxjz.2018.10.004

    DAI Y Z, LI J F, YANG J X. Spatiotemporal responses of habitat quality to urban sprawl in the Changsha metropolitan area[J]. Progress in Geography,2018,37(10):1340-1351. doi: 10.18306/dlkxjz.2018.10.004
    [28] 李骞国, 王录仓, 石培基, 等.基于生境质量的绿洲城镇增长边界划定: 以黑河中游地区为例[J]. 经济地理,2020,40(3):92-101.

    LI Q G, WANG L C, SHI P J, et al. Delimitation of the growth boundary of oasis towns based on habitat quality: a case study of the middle reaches of Heihe River[J]. Economic Geography,2020,40(3):92-101.
    [29] 白立敏, 冯兴华, 孙瑞丰, 等.生境质量对城镇化的时空响应: 以长春市为例[J]. 应用生态学报,2020,31(4):1267-1277.

    BAI L M, FENG X H, SUN R F, et al. Spatial and temporal responses of habitat quality to urbanization: a case study of Changchun City, Jilin Province, China[J]. Chinese Journal of Applied Ecology,2020,31(4):1267-1277.
    [30] XU L T, CHEN S, XU Y, et al. Impacts of land-use change on habitat quality during 1985-2015 in the Taihu Lake Basin[J]. Sustainability,2019,11(13):3513. doi: 10.3390/su11133513
    [31] LI F X, WANG L Y, CHEN Z J, et al. Extending the SLEUTH model to integrate habitat quality into urban growth simulation[J]. Journal of Environmental Management,2018,217:486-498.
    [32] 刘春芳, 王川.基于土地利用变化的黄土丘陵区生境质量时空演变特征: 以榆中县为例[J]. 生态学报,2018,38(20):7300-7311.

    LIU C F, WANG C. Spatio-temporal evolution characteristics of habitat quality in the Loess Hilly Region based on land use change: a case study in Yuzhong County[J]. Acta Ecologica Sinica,2018,38(20):7300-7311.
    [33] WANG S Q, ZHENG X Q, ZANG X B. Accuracy assessments of land use change simulation based on Markov-cellular automata model[J]. Procedia Environmental Sciences,2012,13:1238-1245. doi: 10.1016/j.proenv.2012.01.117
    [34] KU C A. Incorporating spatial regression model into cellular automata for simulating land use change[J]. Applied Geography,2016,69:1-9. doi: 10.1016/j.apgeog.2016.02.005
    [35] 刘欣, 赵艳霞, 冯晓淼, 等.基于CLUE-S模型的多目标土地利用格局模拟与优化: 以河北省廊坊市北三县为例[J]. 地理与地理信息科学,2018,34(5):92-98. doi: 10.3969/j.issn.1672-0504.2018.05.016

    LIU X, ZHAO Y X, FENG X M, et al. Simulation and optimization of multi-objective land use pattern based on the CLUE-S model: a case study of the three northern counties of Langfang in Hebei Province[J]. Geography and Geo-Information Science,2018,34(5):92-98. □ doi: 10.3969/j.issn.1672-0504.2018.05.016
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