JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2022, Vol. 46 ›› Issue (2): 187-195.doi: 10.12302/j.issn.1000-2006.202010020
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QIU Fengting1,2,3(), GUO Zhifeng1, ZHANG Zongke1,*(), WEI Xianhu1, LI Junjie3, LYU Zheng3
Received:
2020-10-14
Accepted:
2021-01-24
Online:
2022-03-30
Published:
2022-04-08
Contact:
ZHANG Zongke
E-mail:qiuft@aircas.ac.cn;zhangzk@aircas.ac.cn
CLC Number:
QIU Fengting, GUO Zhifeng, ZHANG Zongke, WEI Xianhu, LI Junjie, LYU Zheng. Spatio-temporal change characteristics of vegetation coverage and its relationship with meteorological factors in the Greater Mekong Subregion[J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2022, 46(2): 187-195.
Table 1
The transfer matrix of vegetation coverage in the GMS from 2005 to 2019"
年份 years | 初始 类型 initial type | 转换占比/% conversion proportion | 合计/% total | ||||
---|---|---|---|---|---|---|---|
裸地 | 低 | 中 | 中高 | 高 | |||
2005— 2016 | 裸地 | 0.64 | 0.21 | — | — | — | 0.85 |
低 | 0.15 | 0.68 | 0.31 | 0.08 | — | 1.22 | |
中 | — | 0.30 | 1.51 | 1.76 | 0.19 | 3.75 | |
中高 | — | 0.05 | 1.00 | 19.34 | 13.34 | 33.73 | |
高 | — | — | 0.09 | 5.39 | 54.97 | 60.45 | |
合计 | 0.79 | 1.24 | 2.91 | 26.7 | 68.50 | 100.00 | |
2016— 2019 | 裸地 | 0.61 | 0.17 | — | — | — | 0.79 |
低 | 0.13 | 0.77 | 0.31 | — | — | 1.21 | |
中 | — | 0.23 | 1.85 | 0.80 | 0.05 | 2.93 | |
中高 | — | — | 1.30 | 20.70 | 4.53 | 26.54 | |
高 | — | — | 0.11 | 10.84 | 57.58 | 68.53 | |
合计 | 0.74 | 1.17 | 3.57 | 32.34 | 62.17 | 100.00 |
[1] | 孙红雨, 王长耀, 牛铮, 等. 中国地表植被覆盖变化及其与气候因子关系:基于NOAA时间序列数据分析[J]. 遥感学报, 1998(3):204-210,T001. |
SUN H Y, WANG C Y, NIU Z, et al. Analysis of the vegetation cover change and the relationship between NDVI and environmental factors by using NOAA time series data[J]. J Remote Sensing, 1998(3):204-210,T001. | |
[2] | 陈文静, 杨从从. 2001-2017年青海省NDVI时空变化特征及其对气候因子的响应[J]. 森林工程, 2020, 36(5):54-61. |
CHEN W J, YANG C C. Spatiotemporal change characteristics of NDVI and its response to climate factors in Qinghai from 2001 to 2017[J]. Forest Engineering, 2020, 36(5): 54-61. | |
[3] |
PENG J, LIU Z, LIU Y, et al. Trend analysis of vegetation dynamics in Qinghai-Tibet Plateau using Hurst Exponent[J]. Ecol Indic, 2012, 14(1):28-39. DOI: 10.1016/j.ecolind.2011.08.011.
doi: 10.1016/j.ecolind.2011.08.011 |
[4] |
ZHANG Z M, VAN C F, DE CLERCQ E M, et al. Mountain vegetation change quantification using surface landscape metrics in Lancang watershed,China[J]. Ecol Indic, 2013, 31(Complete):49-58. DOI: 10.1016/j.ecolind.2012.11.013.
doi: 10.1016/j.ecolind.2012.11.013 |
[5] |
GUTMAN G, IGNATOV A. The derivation of the green vegetation fraction from NOAA/AVHRR data for use in numerical weather prediction models[J]. Int J Remote Sens, 1998, 19(8):1533-1543. DOI: 10.1080/014311698215333.
doi: 10.1080/014311698215333 |
[6] |
ANYAMBA A, TUCKER C J. Analysis of Sahelian vegetation dynamics using NOAA-AVHRR NDVI data from 1981-2003[J]. J Arid Environ, 2005, 63(3):596-614. DOI: 10.1016/j.jaridenv.2005.03.007.
doi: 10.1016/j.jaridenv.2005.03.007 |
[7] | 贺振, 贺俊平. 基于SPOT-VGT的黄河流域植被覆盖时空演变[J]. 生态环境学报, 2012, 21(10):1655-1659. |
HE Z, HE J P. Spatio-temporal variation of vegetation cover based on SPOT-VGT in Yellow River basin[J]. Ecol Environ Sci, 2012, 21(10):1655-1659. DOI: 10.16258/j.cnki.1674-5906.2012.10.001.
doi: 10.16258/j.cnki.1674-5906.2012.10.001 |
|
[8] | 凌成星, 刘华, 纪平, 等. 基于无人机影像VDVI指数的植被覆盖度估算--以陕西神木防护林工程研究区为例[J]. 森林工程, 2021, 37(2):57-66. |
LING C X, LIU H, JI P, et al. Estimation of vegetation coverage based on VDVI index of UAV visible image:using the Shelterbelt Research area as an example[J]. Forest Engineering, 2021, 37(2):57-66. | |
[9] |
WEISS E, MARSH S E, PFIRMAN E S. Application of NOAA-AVHRR NDVI time-series data to assess changes in Saudi Arabia’s rangelands[J]. Int J Remote Sens, 2001, 22(6):1005-1027. DOI: 10.1080/014311601300074540.
doi: 10.1080/014311601300074540 |
[10] |
WANG X, PIAO S L, CIAIS P, et al. Spring temperature change and its implication in the change of vegetation growth in north America from 1982 to 2006[J]. PNAS, 2011, 108(4):1240-1245. DOI: 10.1073/pnas.1014425108.
doi: 10.1073/pnas.1014425108 |
[11] | 武正丽, 贾文雄, 赵珍, 等. 2000-2012年祁连山植被覆盖变化及其与气候因子的相关性[J]. 干旱区地理, 2015, 38(6):1241-1252. |
WU Z L, JIA W X, ZHAO Z, et al. Spatial-temporal variations of vegetation and its correlation with climatic factors in Qilian Mountains from 2000 to 2012[J]. Arid Land Geogr, 2015, 38(6):1241-1252. DOI: 10.13826/j.cnki.cn65-1103/x.2015.06.017.
doi: 10.13826/j.cnki.cn65-1103/x.2015.06.017 |
|
[12] | 孙睿, 刘昌明, 朱启疆. 黄河流域植被覆盖度动态变化与降水的关系[J]. 地理学报, 2001, 56(6):667-672. |
SUN R, LIU C M, ZHU Q J. Relationship between the fractional vegetation cover change and rainfall in the Yellow River basin[J]. Acta Geogr Sin, 2001, 56(6):667-672. DOI: 10.3321/j.issn:0375-5444.2001.06.005.
doi: 10.3321/j.issn:0375-5444.2001.06.005 |
|
[13] | 郭永强, 王乃江, 褚晓升, 等. 基于Google Earth Engine分析黄土高原植被覆盖变化及原因[J]. 中国环境科学, 2019(11):4804-4811. |
GUO Y Q, WANG N J, CHU X S, et al. Analyzing vegetation coverage changes and its reasons on the Loess Plateau based on Google Earth Engine[J]. China Environ Sci, 2019(11):4804-4811. DOI: 10.19674/j.cnki.issn1000-6923.2019.0560.
doi: 10.19674/j.cnki.issn1000-6923.2019.0560 |
|
[14] |
GORELICK N, HANCHER M, DIXON M, et al. Google Earth Engine: planetary-scale geospatial analysis for everyone[J]. Remote Sens Environ, 2017, 202:18-27. DOI: 10.1016/j.rse.2017.06.031.
doi: 10.1016/j.rse.2017.06.031 |
[15] | 张滔, 唐宏. 基于Google Earth Engine的京津冀2001-2015年植被覆盖变化与城镇扩张研究[J]. 遥感技术与应用, 2018, 33(4):593-599. |
ZHANG T, TANG H. Vegetation cover change and urban expansion in Beijing-Tianjin-Hebei during 2001-2015 based on Google Earth Engine[J]. Remote Sens Technol Appl, 2018, 33(4):593-599. DOI: 10.11873/j.issn.1004-0323.2018.4.0593.
doi: 10.11873/j.issn.1004-0323.2018.4.0593 |
|
[16] |
KAWABATA A, ICHII K, YAMAGUCHI Y. Global monitoring of interannual changes in vegetation activities using NDVI and its relationships to temperature and precipitation[J]. Int J Remote Sens, 2001, 22(7):1377-1382. DOI: 10.1080/01431160119381.
doi: 10.1080/01431160119381 |
[17] | 杨达, 李超. “一带一路”生态环境风险防范的绿色治理路径创新:以澜沧江-湄公河次区域为例[J]. 探索, 2019(5):184-193. |
YANG D, LI C. Green governance innovation against eco-environmental risks of the Belt and Road Initiative: a case study of Lancang-Mekong River Subregion[J]. Probe, 2019(5):184-193. DOI: 10.16501/j.cnki.50-1019/d.2019.05.020.
doi: 10.16501/j.cnki.50-1019/d.2019.05.020 |
|
[18] | 赵桔超, 朱彦辉, 段国辉, 等. 基于MOD13Q1数据分析2001-2015年西双版纳植被变化特征[J]. 生态学杂志, 2019, 38(4):1083-1092. |
ZHAO J C, ZHU Y H, DUAN G H, et al. Spatial and temporal dynamics of vegetation in Xishuangbanna from 2001 to 2015 based on MOD13Q1 data[J]. Chin J Ecol, 2019, 38(4):1083-1092. DOI: 10.13292/j.1000-4890.201904.016.
doi: 10.13292/j.1000-4890.201904.016 |
|
[19] | 黄桂平, 曹艳萍. TRMM卫星3B43降水数据在黄河流域的精度分析[J]. 遥感技术与应用, 2019, 34(5):1111-1120. |
HUANG G P, CAO Y P. Accuracy analysis of TRMM 3B43 precipitation data in the Yellow River basin[J]. Remote Sens Technol Appl, 2019, 34(5):1111-1120. DOI: 10.11873/j.issn.1004-0323.2019.5.1111.
doi: 10.11873/j.issn.1004-0323.2019.5.1111 |
|
[20] | 赵虹. 全球林火斑块面积对植被绿度与地表温度的影响[D]. 太原:山西大学, 2019. |
ZHAO H. Effects of global forest fire size on vegetation greenness and land surface temperature[D]. Taiyuan: Shanxi University, 2019. DOI: 10.27284/d.cnki.gsxiu.2019.001541.
doi: 10.27284/d.cnki.gsxiu.2019.001541 |
|
[21] | 王震, 闫文德, 刘曙光, 等. 基于MODIS数据的湖南省2001-2013年植被覆盖指数时空变化研究[J]. 中南林业科技大学学报, 2016, 36(11):41-46. |
WANG Z, YAN W D, LIU S G, et al. Spatiotemporal change of vegetation cover in Hunan Province during 2001-2013[J]. J Central South Univ For Technol, 2016, 36(11):41-46. DOI: 10.14067/j.cnki.1673-923x.2016.11.008.
doi: 10.14067/j.cnki.1673-923x.2016.11.008 |
|
[22] | 张成才, 娄洋, 李颖, 等. 基于像元二分模型的伏牛山地区植被覆盖度变化[J]. 水土保持研究, 2020, 27(3):301-307. |
ZHANG C C, LOU Y, LI Y, et al. Change of vegetation coverage in Funiu mountain regions based on the dimidiate pixel model[J]. Res Soil Water Conserv, 2020, 27(3):301-307. DOI: 10.13869/j.cnki.rswc.2020.03.043.
doi: 10.13869/j.cnki.rswc.2020.03.043 |
|
[23] | 刘明霞, 刘友存, 陈明, 等. 2000-2018年赣江上游植被覆盖度时空演化及其对气候变化的响应[J]. 水土保持通报, 2020, 40(5):284-290. |
LIU M X, LIU Y C, CHEN M, et al. Spatiotemporal evolution of vegetation coverage and its response to climate change in upper reaches of Ganjiang River basin during 2000-2018[J]. Bull Soil Water Conserv, 2020, 40(5):284-290. DOI: 10.13961/j.cnki.stbctb.2020.05.041.
doi: 10.13961/j.cnki.stbctb.2020.05.041 |
|
[24] | 王佃来, 宿爱霞, 刘文萍. 几种植被覆盖变化趋势分析方法对比研究[J]. 安徽农业科学, 2019, 47(5):10-14. |
WANG D L, SU A X, LIU W P. Comparison study on several trend analytical methods of vegetation cover changes[J]. J Anhui Agric Sci, 2019, 47(5):10-14. DOI: 10.3969/j.issn.0517-6611.2019.05.003.
doi: 10.3969/j.issn.0517-6611.2019.05.003 |
|
[25] |
GONG P, WANG J, YU L, et al. Finer resolution observation and monitoring of global land cover:first mapping results with Landsat TM and ETM+ data[J]. Int J Remote Sens, 2013, 34(7):2607-2654. DOI: 10.1080/01431161.2012.748992.
doi: 10.1080/01431161.2012.748992 |
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