1. 云南师范大学 地理学部,云南,昆明,650500
2. 云南省农业科学院 热区生态农业研究所, 云南 元谋,651300
3. 元谋干热河谷植物园, 云南 元谋,651300
纸质出版:2022
移动端阅览
梁巧玲, 史正涛, 陈越豪, 等. 基于遥感生态指数的元谋干热河谷生态环境动态监测及其驱动力分析[J]. 水土保持通报, 2022,42(6):146-154.
Liang Qiaoling, Shi Zhengtao, Chen Yuehao, et al. Ecological Environmental Dynamic Monitoring and Driving Force Analysis of Yuanmou Dry-hot Valley Based on Remote Sensing Ecological Index[J]. Bulletin of Soiland Water Conservation, 2022, 42(6): 146-154.
梁巧玲, 史正涛, 陈越豪, 等. 基于遥感生态指数的元谋干热河谷生态环境动态监测及其驱动力分析[J]. 水土保持通报, 2022,42(6):146-154. DOI: 10.13961/j.cnki.stbctb.20220929.002.
Liang Qiaoling, Shi Zhengtao, Chen Yuehao, et al. Ecological Environmental Dynamic Monitoring and Driving Force Analysis of Yuanmou Dry-hot Valley Based on Remote Sensing Ecological Index[J]. Bulletin of Soiland Water Conservation, 2022, 42(6): 146-154. DOI: 10.13961/j.cnki.stbctb.20220929.002.
[目的] 探究元谋干热河谷2000-2020年生态环境变化现状,对该区域生态进行动态监测及其驱动力分析,为干热河谷的生态环境保护和可持续发展提供理论依据。[方法] 选取3期Landsat TM/OIL影像数据计算绿度(NDVI)、湿度(WET)、干度(NDBSI)、热度(LST)4个指标来构建遥感生态指数(RSEI)评价体系,并通过地理探测器对影响区域的生态环境因素进行量化分析。 [结果] ①2000,2010和2020年元谋干热河谷的RSEI均值分别为0.628,0.609和0.684,呈先降后升的变化趋势。 ②在2000-2020年这20 a间,区域内生态环境改善面积占29.58%,主要分布河谷两侧;生态恶化面积占21.45%,主要散布在农耕区和居民区周围。 ③对影响元谋干热河谷RSEI的10个因子进行驱动力分析发现,绿度指标和土地利用对RSEI的空间分异特征解释力最强。 [结论] 多因子交互结果显示,元谋干热河谷的生态环境现状是多重因素共同作用的结果,所有因子在交互作用下均有协同增强的作用;绿度指标和土地利用是研究区生态环境质量的主要驱动因子。因此,在探究元谋干热河谷生态环境恢复与保护,应合理规划利用土地资源,落实植被保护及修复政策及措施。
[Objective] The current level of ecological environmental change in the Yuanmou dry-hot valley from 2000 to 2020 was determined
and the dynamic monitoring and driving force of the regional ecology were analyzed in order to provide a theoretical basis for ecological environmental protection and sustainable development of the dry-hot valley. [Methods] Three Landsat TM/OIL image datasets were selected to calculate the greenness (NDVI)
humidity (WET)
dryness (NDBSI)
and heat (LST) indexes to construct the remote sensing ecological index (RSEI) evaluation system. The ecological environmental factors affecting the region were quantified and analyzed by geographic detector. [Results] ① The mean values of RSEI in the Yuanmou dry-hot valley in 2000
2010 and 2020 were 0.628
0.609
and 0.684
respectively
showing a trend of initially decreasing and then increasing. ② During the 20-year study period
the area of ecological environmental improvement accounted for 29.58% of the total area
mainly located on both sides of the river valley. The area of ecological deterioration accounted for 21.45% of the total area
and was mainly scattered around agricultural areas and residential areas. ③ The driving force analysis of 10 factors affecting RSEI in the Yuanmou dry-hot valley showed that NDVI and land use had the strongest explanatory power for the spatial differentiation characteristics of RSEI. [Conclusion] The interaction results of multiple factors showed that the ecological environment of the Yuanmou dry-hot valley was the result of multiple factors
and all factors produced synergistic enhancement effects under the interaction. NDVI and land use were the main driving factors of eco-environmental quality in the study area. Therefore
in the exploration of Yuanmou ecological environmental restoration and protection
we should rationally plan and use land resources
and implement vegetation protection and restoration policies and measures.
李勇.少数民族地区特色县域经济发展探析:云南元谋县域经济发展战略研究[D].北京:中央民族大学,2004.
喻锋,张丽君.遵循生态文明理念,加强国土空间规划[J].国土资源情报,2013(2):2-4.
朱贞榕.基于遥感生态指数(RSEI)的南昌市生态环境质量评价[D].江西 南昌:东华理工大学,2017.
Buffum H W, Benyi S J, Paul J F. Environmental Monotoring and Assessment Program:Current Status of Virginian Province (US) Estuaries[J]. Environmental Monitoring and Assessment, 1999, 56(1):1-25.
梁齐云,苏涛,张灿,等.基于改进遥感生态指数的黄山市生态质量评价研究[J].地球物理学进展,2022,37(04):1448-1456.
赵管乐,彭培好.基RSEI的典例干热河谷区:四川省攀枝花市生态环境变化分析[J].山地学报,2021,39(6):842-854.
周萌,刘友存,孟丽红,等.基于遥感生态指数的东江源区2000-2019年生态环境质量评价[J].水土保持通报,2021,41(4):231-240.
Wang Jie, Ma Jiali, Xie Feifei, et al. Improvement of remote sensing ecological index in arid regions:Taking Ulan Buh Desert as an example[J]. Chinese Journal of Applied Ecology, 2020,31(11):3795-3804.
董悦,付梅臣,陈乃鸽,等.近30年唐山市生态服务价值空间分异及地理探测研究[J/OL].农业资源与环境学报:1-16[2022-09-28].DOI:10.1 3254/j.jare.2021.0617.
潘志贤,彭辉,方海东,等.元谋干热河谷旱坡地发展草地农业的前景[J].山地农业生物学报,2012,31(1):53-56.
排日海·合力力,昝梅,阿里木江·卡斯木.乌鲁木齐市生态环境遥感评价及驱动因子分析[J].干旱区研究,2021,38(5):1484-1496.
刘伦辉.横断山区干旱河谷植被类型[J].山地学报,1989,7(3):175-182.
钟祥浩.干热河谷区生态系统退化及恢复与重建途径[J].长江流域资源与环境,2000,9(3):376-383.
陈越豪,何光熊,史亮涛,等.干热河谷典型区元谋县土地利用变化与动态预测[J].科学技术与工程,2021,21(20):8366-8375.
刘芳,闫慧敏,刘纪远,等.21世纪初中国土地利用强度的空间分布格局[J].地理学报,2016,71(7):1130-1143.
Rouse Jr J W, Haas R H, Schell J A, et al. Monitoring the vernal advancement and retrogradation (green wave effect) of natural vegetation[R]. NaSa/Gsfct Type Final Report, 1973.
王建,赵牡丹,李健波,等.基MODIS时序数据的秦巴山区生态环境质量动态监测及驱动力分析[J].山地学报,2021,39(6):830-841.
Baig M H A, Zhang L, Shuai T, et al. Derivation of a tasselled cap transformation based on Landsat 8 at-satellite reflectance[J]. Remote Sensing Letters, 2014,5(5):423-431.
Xu Hanqiu. A new index for delineating built-up land features in satellite imagery[J]. International journal of remote sensing, 2008,29(14):4269-4276.
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.
Chander G, Markham B L, Helder D L. Summary of current radiometric calibration coefficients for Landsat MSS, TM, ETM
+
, and EO-1 ALI sensors[J]. Remote Sensing of Environment, 2009, 113(5):893-903.
郭燕滨.典型热岛城市热环境效应的遥感动态监测与分析[D].福建福州:福州大学,2015.
王琳,徐涵秋.快速城市化下福州市的热环境变迁[J].同济大学学报:自然科学版,2017,45(9):1336-1344.
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.
钟欣呈,许泉立.基于RSEI模型的玉溪市生态环境变化监测与评价[J].水土保持研究,2021,28(4):350-357.
张娟,文广超,王恩营,等.基于遥感生态指数的焦作市生态环境动态监测与评价[J].水土保持通报,2020,40(6):107-114.
张立伟,张运,黄晨.皖江城市带近20 a生态环境变化遥感指数分析[J].长江流域资源与环境,2018,27(5):1061-1070.
代云豪,管瑶,刘孟琴,等.1990-2020年阿拉尔垦区生态环境质量动态监测与评价[J].水土保持通报,2022,42(2):122-128.
任晨阳.长三角地区生态环境质量与城市化时空耦合协调特征分析[D].上海:上海师范大学,2021.
郭方圆.湘潭县"三生"功能空间分异特征及影响因素分析[D].湖南长沙:湖南师范大学,2021.
高焕霖,张廷龙,樊华烨,等.基于地理探测器的杨凌示范区生态环境质量影响因素定量分析[J].西北林学院学报,2020,35(5):185-194.
刘佳茹.2005-2018年祁连山生态脆弱性遥感评价研究[D].甘肃兰州:西北师范大学,2021.
王劲峰,徐成东.地理探测器:原理与展望[J].地理学报,2017,72(1):116-134.
0
浏览量
639
下载量
5
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621