浙江海洋大学 海洋科学与技术学院,浙江,舟山,316022
纸质出版:2023
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李思政, 王柳柱, 赵晟, 等. 基于GEE平台的舟山岛生态环境质量动态评价[J]. 水土保持通报, 2023,43(2):293-302.
Li Sizheng, Wang Liuzhu, Zhao Sheng, et al. Dynamic Evaluation of Ecological Environmental Quality of Zhoushan Island Using Google Earth Engine[J]. Bulletin of Soiland Water Conservation, 2023, 43(2): 293-302.
李思政, 王柳柱, 赵晟, 等. 基于GEE平台的舟山岛生态环境质量动态评价[J]. 水土保持通报, 2023,43(2):293-302. DOI: 10.13961/j.cnki.stbctb.2023.02.034.
Li Sizheng, Wang Liuzhu, Zhao Sheng, et al. Dynamic Evaluation of Ecological Environmental Quality of Zhoushan Island Using Google Earth Engine[J]. Bulletin of Soiland Water Conservation, 2023, 43(2): 293-302. DOI: 10.13961/j.cnki.stbctb.2023.02.034.
[目的] 对舟山岛2000—2020年的生态环境变化进行动态监测和评价,为类似海岛地区的生态环境质量评价提供科学参考。[方法] 以舟山岛为研究对象,在GEE(Google Earth Engine)平台选取2000,2005,2010,2015和2020年5期的遥感影像,提取出湿度(WET)、绿度(NDVI)、热度(LST)、干度(NDBSI)4个指标进行耦合,得到遥感生态指数(remote sensing environmental index, RSEI),利用主成分分析方法对舟山岛生态环境质量变化进行评价。 [结果] ①在5个时间节点上,舟山岛RSEI均值分别为0.631 2,0.637 5,0.611 6,0.550 3和0.502 4。在研究期间内,舟山岛的RSEI共下降了20.41%; ②舟山岛生态环境质量呈下降趋势,岛屿生态质量为优和良的面积分别下降了12.51%和11.87%,生态质量为差、较差和中的面积分别上升了7.35%,12.49%和4.55%; ③研究期间内舟山岛人类开发活动明显增强,土地利用类型发生改变,气候变化和人类活动共同作用于舟山岛,导致生态环境变差。 [结论] 利用遥感生态指数对于海岛生态环境质量同样可进行有效的监测与评价。在研究期间内舟山岛生态环境质量前期较稳定,后期降幅较明显,研究期间内总共下降约20.41%。
[Objective] The ecological environmental changes of Zhoushan Island from 2000 to 2020 were dynamically monitored and evaluated in order o provide a scientific reference for the evaluation of the ecological quality of similar island areas. [Methods] Remote sensing images of Zhoushan Island in 2000
2005
2010
2015
and 2020 were selected on the Google Earth Engine (GEE) platform. Wetness
greenness
heat
and dryness were extracted for coupling
and the remote sensing environmental index (RSEI) was obtained. The principal component analysis method was then used to evaluate changes in the quality of the ecological environment of Zhoushan Island. [Results] ① The mean values of RSEI on Zhoushan Island at the five time points were 0.631 2
0.637 5
0.611 6
0.550 3
and 0.502 4
respectively
with a total decrease of 20.41% over the study period. ② The ecological quality of Zhoushan Island exhibited a downward trend over time
with the area of the island having excellent and good ecological quality decreasing by 24.39%
and the area with poor and poorer quality increasing by 19.82%. ③ During the study period
human development activities on Zhoushan Island have increased significantly
land use types have changed
and climate change and human activities have combined to degrade the ecological environment of Zhoushan Island. [Conclusion] RSEI was effectively used to monitor and evaluate the ecological environmental quality of the island. The ecological environmental quality of Zhoushan Island was relatively stable during the early part of the study period
but there was an obvious decline in environmental quality during the later part of the study period
with a total decrease of about 20.41% during the study period.
王孟本.“生态环境”概念的起源与内涵[J].生态学报,2003,23(9):1910-1914.
李玉强,陈云,曹雯婕,等.全球变化对资源环境及生态系统影响的生态学理论基础[J].应用生态学报,2022,33(3):603-612.
池源,石洪华,郭振,等.海岛生态脆弱性的内涵、特征及成因探析[J].海洋学报,2015,37(12):93-105.
王晶,张峰,李佳芮,等.我国海岛县域经济发展特征与问题分析[J].海洋通报,2019,38(3):250-256.
杨文凤,林卿.中国海岛循环经济模式及升级路径研究[J].东南学术,2022(1):182-190.
王柳柱.基于三元结构的典型海岛可持续发展研究[D].江苏 南京:南京大学,2020.
郝斌飞,韩旭军,马明国,等. Google Earth Engine在地球科学与环境科学中的应用研究进展[J].遥感技术与应用,2018,33(4):600-611.
王小娜,田金炎,李小娟,等. Google Earth Engine云平台对遥感发展的改变[J].遥感学报,2022,26(2):299-309.
郭新,王乃江,张玲玲,等.基于Google Earth Engine平台的关中冬小麦面积时空变化监测[J].干旱地区农业研究,2020,38(3):275-280.
Vogels M, Jong S D, Sterk G, et al. Spatio-temporal patterns of smallholder irrigated agriculture in the Horn of Africa using GEOBIA and sentinel-2 imagery [J]. Remote Sensing, 2019,11(2):143.
徐晗泽宇,刘冲,王军邦,等. Google Earth Engine平台支持下的赣南柑橘果园遥感提取研究[J].地球信息科学学报,2018,20(3):396-404.
Osvaldo J P, Laerte G, Ferreira F P, et al. Assessing pasture degradation in the Brazilian Cerrado based on the analysis of MODIS NDVI time-series [J]. Remote Sensing, 2018,10(11):1761.
吴梓銮,刘小平,罗明.基于GEE平台的粤港澳大湾区建筑物高度时空演变特征分析[J].地理与地理信息科学,2022,38(2):48-54.
马帅.基于Google Earth Engine的城镇化与生态环境和谐发展动态研究[D].上海:上海师范大学,2021.
杨妍菲,张晓祥,薛明慧.基于GEE平台的山地城市城镇扩展演变研究:以重庆主城区为例[J].测绘地理信息,2022,47(5):78-83.
Lin Lili, Hao Zhenbang, Post Christopher J, et al. Monitoring land cover change on a rapidly urbanizing island using Google Earth Engine [J]. Applied Sciences, 2020,10(20):7336.
Huang Huabing, Chen Yanlei, Nicholas C, et al. Mapping major land cover dynamics in Beijing using all Landsat images in Google Earth Engine [J]. Remote Sensing of Environment, 2017,202:166-176.
徐涵秋.区域生态环境变化的遥感评价指数[J].中国环境科学,2013,33(5):889-897.
Hang Xin, Luo Xiaochun, Cao Yun, et al. Ecological quality assessment and the impact of urbanization based on RSEI model for Nanjing, Jiangsu Province, China [J]. the Journal of Applied Ecology, 2020,31(1):219-229.
Fan Chao, Gui Feng, Wang Liuzhu, et al. Evaluation of environmental quality based on remote sensing data in the coastal lands of Eastern China[J]. Journal of Coastal Research, 2020,36(6):1229-1236.
李蕊,陈国清,李玮贤,等.基于遥感生态指数的神东矿区1995—2020年生态环境质量的时空变化特征分析[J].水土保持通报,2021,41(3):143-151.
胡思汉,姚玉增,付建飞,等.基于RSEI指数的东北矿区生态质量变化评价:以辽宁弓长岭区为例[J].生态学杂志,2021,40(12):4053-4060.
唐燕文.基于遥感生态指数的东江源流域生态环境质量评价[D].江西 赣州:江西理工大学,2021.
陈丽红,刘普幸,花亚萍.基于RSEI的疏勒河流域生态质量综合评价及其成因分析[J].土壤通报,2021,52(1):25-33.
林中立,徐涵秋.基于遥感的海岛型城市发展生态效应分析:以厦门岛为例[J].福州大学学报(自然科学版),2019,47(5):610-616.
Wen Xiaole, Ming Yanli, Gao Yonggang, et al. Dynamic monitoring and analysis of ecological quality of Pingtan comprehensive experimental zone, a new type of sea island city, based on RSEI [J]. Sustainability, 2019,12(1):21.
中国海岛志(浙江卷·第二册·舟山群岛南部)[M].北京:海洋出版社,2014.
樊超,桂峰,赵晟.海岛城镇空间扩展及景观生态演变研究:以舟山为例[J].海洋通报,2019,38(4):447-454.
唐常春,李亚平,杜也,等.1980—2018年粤港澳大湾区国土空间结构演变[J].地理研究,2021,40(4):928-944.
徐涵秋.城市遥感生态指数的创建及其应用[J].生态学报,2013,33(24):7853-7862.
Crist E P. A TM tasseled cap equivalent transformation for reflectance factor data [J]. Remote Sensing of Environment, 1985,17(3):301-306.
Muhammad Hasan Ali Baig,Zhang Lifu,Shuai Tong, et al. Derivation of a tasselled cap transformation based on Landsat 8 at-satellite reflectance [J]. Remote Sensing Letters, 2014,5(5):423-431.
Bannari A, Morin D, Bonn F, et al. A review of vegetation indices [J]. Remote Sensing Reviews, 1996,13(1):95-120.
Christos P, Manolis G G, Dimitrios D A. Exploring the impact of various spectral indices on land cover change detection using change vector analysis: A case study of Crete Island, Greece [J]. Remote Sensing, 2020,12(2):319.
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