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新疆不同草地类NDVI近20年月际时空动态及其驱动因素
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作者 李超 靳瑰丽 +6 位作者 刘文昊 沈秉娜 陈梦甜 李文雄 杜玟霖 潘逸萱 依迪力斯·亚森 《生态学报》 北大核心 2026年第1期1-16,共16页
新疆草地类型丰富,四季分明,草地生产力随季节波动显著,开展长时间序列及逐月动态监测,对精准掌握草地变化规律、科学保护与合理利用草地资源意义重大。以MODIS-NDVI为数据源,采用一元回归分析、多元残差分析及hurst指数,探讨了2001—2... 新疆草地类型丰富,四季分明,草地生产力随季节波动显著,开展长时间序列及逐月动态监测,对精准掌握草地变化规律、科学保护与合理利用草地资源意义重大。以MODIS-NDVI为数据源,采用一元回归分析、多元残差分析及hurst指数,探讨了2001—2023年3—10月新疆11个草地类归一化植被指数(NDVI)在年际和月际尺度的动态变化,并分析了气候和人类活动对其影响,以及未来变化趋势。结果表明:(1)2001—2023年,新疆草地NDVI整体呈现波动增加趋势,增加趋势的面积占75.99%,减少趋势占的5.86%;在月际变化中,草地平均NDVI呈现先增加后减小的趋势,7月份达到峰值;年际动态中,4月、5月和10月的增加趋势最为明显,各类草地NDVI均呈现增加趋势;空间上呈现山地高、平原低的分布格局;(2)2001—2023年,气候变化和人类活动的综合作用是新疆多数草地NDVI增加的主导驱动因素,占比55.13%;其中,人类活动对新疆草地NDVI变化的贡献率较气候变化更大,尤其在5月份,贡献率在80%—100%区间的面积达到最高为62.34%,在高寒类草地及沼泽中占比均超过90%;(3)在荒漠草原类草地,降水和人口密度对NDVI的正贡献率较大,促进草地NDVI生长;高放牧强度会导致草地NDVI的减小,草地保护政策的完善与实施为草地NDVI的改善提供了有利条件;(4)未来变化趋势上,新疆草地NDVI以增加趋势为主,占比92.49%,但在6—9月,未来呈现下降趋势的草地面积约占25%,8月达到34.88%,温性草甸草原和山地草甸两类草地中呈现下降趋势的草地超过10%,在未来的草地利用和管理中需要重点关注。 展开更多
关键词 时空特征 归一化植被指数(ndvi) 月际动态 驱动因子 未来变化
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Correction to:Commentary review on the use of normalized difference vegetation index(NDVI)in the era of popular remote sensing 被引量:3
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作者 Sha Huang Lina Tang +2 位作者 Joseph PHupy Yang Wang Guofan Shao 《Journal of Forestry Research》 SCIE CAS CSCD 2021年第6期2719-2719,共1页
The article“A commentary review on the use of normalized difference vegetation index(NDVI)in the era of popular remote sensing”,written by Sha Huang·Lina Tang·Joseph P.Hupy·Yang Wang and Guofan Shao,w... The article“A commentary review on the use of normalized difference vegetation index(NDVI)in the era of popular remote sensing”,written by Sha Huang·Lina Tang·Joseph P.Hupy·Yang Wang and Guofan Shao,was originally published electronically on the publisher’s internet portal on 31st May 2020 without open access.With the author(s)’decision to opt for Open Choice the copyright of the article changed on 25th July 2020 to©The Author(s)2020 and the article is forthwith distributed under a Creative Commons Attribution 4.0 International License(https://creativecommons.org/licenses/by/4.0/),which permits use,sharing,adaptation,distribution and reproduction in any medium or format,as long as you give appropriate credit to the original author(s)and the source,provide a link to the Creative Commons licence,and indicate if changes were made. 展开更多
关键词 difference index LICENSE
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Retrospective analysis of two northern California wild-land fires via Landsat five satellite imagery and Normalized Difference Vegetation Index (NDVI) 被引量:1
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作者 Bennett Sall Michael W. Jenkins James Pushnik 《Open Journal of Ecology》 2013年第4期311-323,共13页
Wild-land fires are a dynamic and destructive force in natural ecosystems. In recent decades, fire disturbances have increased concerns and awareness over significant economic loss and landscape change. The focus of t... Wild-land fires are a dynamic and destructive force in natural ecosystems. In recent decades, fire disturbances have increased concerns and awareness over significant economic loss and landscape change. The focus of this research was to study two northern California wild-land fires: Butte Humboldt Complex and Butte Lightning Complex of 2008 and assessment of vegetation recovery after the fires via ground based measurements and utilization of Landsat 5 imagery and analysis software to assess landscape change. Multi-temporal and burn severity dynamics and assessment through satellite imagery were used to visually ascertain levels of landscape change, under two temporal scales. Visual interpretation indicated noticeable levels of landscape change and relevant insight into the magnitude and impact of both wild-land fires. Normalized Burn Ratio (NBR) and delta NBR (DNBR) data allowed for quantitative analysis of burn severity levels. DNBR results indicate low severity and low re-growth for Butte Humboldt Complex “burned center” subplots. In contrast, DNBR values for Butte Lightning Complex “burned center” subplots indicated low-moderate burn severity levels. 展开更多
关键词 Wild-Land Fire BURN Severity Vegetation Recovery Normalized difference VEGETATIVE index (ndvi) Normalized BURN Ratio (NBR)
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2000—2022年水热-积雪作用下青藏高原草地NDVI时空演变特征
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作者 朱立新 林辉 +2 位作者 龙江平 杨培松 林冰冰 《生态学报》 北大核心 2026年第1期299-313,共15页
青藏高原作为全球气候变化的敏感区,其草地植被对水热因子和积雪变化响应显著。基于归一化植被指数(NDVI)、积雪覆盖度(FSC)、气温(TMP)和降水量(PRE)等数据,利用Theil-Sen趋势分析、MK趋势检验、Pearson相关性分析和贡献度分析,从垂直... 青藏高原作为全球气候变化的敏感区,其草地植被对水热因子和积雪变化响应显著。基于归一化植被指数(NDVI)、积雪覆盖度(FSC)、气温(TMP)和降水量(PRE)等数据,利用Theil-Sen趋势分析、MK趋势检验、Pearson相关性分析和贡献度分析,从垂直梯度和空间格局双尺度,解析了青藏高原草地分布区NDVI及其响应因子的时空变化特征,并定量评估了气温、降水和积雪因子对NDVI趋势变化的贡献程度。研究结果表明:(1)2000—2022年间,青藏高原草地分布区呈显著“暖湿化”,NDVI显著增加,呈东南高、西北低的格局,年际变化速率为9×10^(-4)a^(-1)。空间上NDVI整体以增加趋势为主导(占比62.45%),藏北高原中部、阿尼玛卿山等地区草地NDVI表现出极显著增加趋势;海拔上年际变化速率表现为先上升后下降的趋势,2000—2500m处增长速率最快,为21.46×10^(-4)a^(-1)。(2)由不同海拔尺度相关性结果可知,NDVI与降水呈显著正相关,与气温和积雪多为弱负相关。空间尺度上,NDVI与积雪覆盖在冈底斯山、念青唐古拉山等高山地区呈显著负相关,青海高原、唐古拉山、念青唐古拉山等地区NDVI与降水量呈显著正相关,与气温在藏北高原及青海高原等区域呈较强的相关性。(3)NDVI变化响应因子贡献度遵循基本规律:积雪、降水与气温均表现出正向主导效应,且气温贡献高于降水与积雪(占比42.2%)。空间上藏北高原和青海高原地区NDVI变化主要以气温主导,昆仑山、唐古拉山等高山地区主要为积雪主导;降水主导呈零散分布。垂直梯度上,2500—4000m区间内降水正向主导NDVI变化;4000—6000m区间内气温正向主导NDVI变化。 展开更多
关键词 气候变化 青藏高原 草地动态变化 积雪覆盖 ndvi
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Assessment of vegetation cover changes and the contributing factors in the Al-Ahsa Oasis using Normalized Difference Vegetation Index(NDVI)
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作者 Walid CHOUARI 《Regional Sustainability》 2024年第1期42-53,共12页
The abandonment of date palm grove of the former Al-Ahsa Oasis in the eastern region of Saudi Arabia has resulted in the conversion of delicate agricultural area into urban area.The current state of the oasis is influ... The abandonment of date palm grove of the former Al-Ahsa Oasis in the eastern region of Saudi Arabia has resulted in the conversion of delicate agricultural area into urban area.The current state of the oasis is influenced by both expansion and degradation factors.Therefore,it is important to study the spatiotemporal variation of vegetation cover for the sustainable management of oasis resources.This study used Landsat satellite images in 1987,2002,and 2021 to monitor the spatiotemporal variation of vegetation cover in the Al-Ahsa Oasis,applied multi-temporal Normalized Difference Vegetation Index(NDVI)data spanning from 1987 to 2021 to assess environmental and spatiotemporal variations that have occurred in the Al-Ahsa Oasis,and investigated the factors influencing these variation.This study reveals that there is a significant improvement in the ecological environment of the oasis during 1987–2021,with increase of NDVI values being higher than 0.10.In 2021,the highest NDVI value is generally above 0.70,while the lowest value remains largely unchanged.However,there is a remarkable increase in NDVI values between 0.20 and 0.30.The area of low NDVI values(0.00–0.20)has remained almost stable,but the region with high NDVI values(above 0.70)expands during 1987–2021.Furthermore,this study finds that in 1987–2002,the increase of vegetation cover is most notable in the northern region of the study area,whereas from 2002 to 2021,the increase of vegetation cover is mainly concentrated in the northern and southern regions of the study area.From 1987 to 2021,NDVI values exhibit the most pronounced variation,with a significant increase in the“green”zone(characterized by NDVI values exceeding 0.40),indicating a substantial enhancement in the ecological environment of the oasis.The NDVI classification is validated through 50 ground validation points in the study area,demonstrating a mean accuracy of 92.00%in the detection of vegetation cover.In general,both the user’s and producer’s accuracies of NDVI classification are extremely high in 1987,2002,and 2021.Finally,this study suggests that environmental authorities should strengthen their overall forestry project arrangements to combat sand encroachment and enhance the ecological environment of the Al-Ahsa Oasis. 展开更多
关键词 Normalized difference Vegetation index(ndvi) Vegetation cover Ecological environment Land use and land cover(LULC) Urban expansion Al-Ahsa Oasis
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Interannual Variability of the Normalized Difference Vegetation Index on the Tibetan Plateau and Its Relationship with Climate Change 被引量:25
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作者 周定文 范广洲 +3 位作者 黄荣辉 方之芳 刘雅勤 李洪权 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2007年第3期474-484,共11页
The Qinghai-Xizang Plateau, or Tibetan Plateau, is a sensitive region for climate change, where the manifestation of global warming is particularly noticeable. The wide climate variability in this region significantly... The Qinghai-Xizang Plateau, or Tibetan Plateau, is a sensitive region for climate change, where the manifestation of global warming is particularly noticeable. The wide climate variability in this region significantly affects the local land ecosystem and could consequently lead to notable vegetation changes. In this paper, the interannual variations of the plateau vegetation are investigated using a 21-year normalized difference vegetation index (NDVI) dataset to quantify the consequences of climate warming for the regional ecosystem and its interactions. The results show that vegetation coverage is best in the eastern and southern plateau regions and deteriorates toward the west and north. On the whole, vegetation activity demonstrates a gradual enhancement in an oscillatory manner during 1982-2002. The temporal variation also exhibits striking regional differences: an increasing trend is most apparent in the west, south, north and southeast, whereas a decreasing trend is present along the southern plateau boundary and in the central-east region. Covariance analysis between the NDVI and surface temperature/precipitation suggests that vegetation change is closely related to climate change. However, the controlling physical processes vary geographically. In the west and east, vegetation variability is found to be driven predominantly by temperature, with the impact of precipitation being of secondary importance. In the central plateau, however, temperature and precipitation factors are equally important in modulating the interannual vegetation variability. 展开更多
关键词 Tibetan Plateau normalized difference vegetation index ndvi ECOSYSTEM climate change interannual variability
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赣江源国家级自然保护区2015―2024年景观格局动态及NDVI变化特征
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作者 王华 唐星林 +2 位作者 汤浩藩 温馨 王丽艳 《南方林业科学》 2025年第4期48-55,共8页
【目的】基于2015、2020和2024年遥感影像,结合景观格局指数与NDVI指标,揭示赣江源国家级自然保护区景观要素的时空演变规律,为生态保护与科学管理提供依据。【方法】将区域划分为林地、疏林地、农田、草地、水域和建设用地6类,借助GIS... 【目的】基于2015、2020和2024年遥感影像,结合景观格局指数与NDVI指标,揭示赣江源国家级自然保护区景观要素的时空演变规律,为生态保护与科学管理提供依据。【方法】将区域划分为林地、疏林地、农田、草地、水域和建设用地6类,借助GIS与Fragstats计算NP、PD、ED、LPI、FRACT、SHDI等格局指标,并分析年最大NDVI变化。【结果】(1)2015至2024年,赣江源国家级自然保护区的景观类型始终以林地为主,约占总面积的96.448%。疏林地持续减少,林地和草地逐渐增加,建设用地呈减少趋势,而农田和水体未发生转移,景观格局趋于平稳。(2)2015至2024年,赣江源国家级自然保护区的景观多样性指数(SHDI)为0.178~0.184,变化不显著。景观斑块数量(NP)从388个增至416个,斑块密度(PD)从2.4个/km^(2)增至2.6个/km^(2),边缘密度(ED)从16.8 m/hm^(2)增至17.2 m/hm^(2),表明景观出现了破碎化。与2015年相比,2024年最大斑块面积指数(LPI)和平均分维数(FRACT)未见变化,说明区域内大型斑块未明显裂化,景观边界的复杂性未改变。(3)NDVI从2015至2020年增加了13.11%,到2024年增加了16.39%。近十年赣江源国家级自然保护区实验区的NDVI增幅达20.34%。【结论】赣江源国家级自然保护区景观格局在封山育林和严格管控下,保护区景观连通性与稳定性显著增强,植被覆盖持续改善。后续应在巩固“量”的提升基础上,聚焦景观结构与生态功能“质”的优化。 展开更多
关键词 自然保护区 景观格局 斑块 景观指数 归一化植被指数
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A second modified normalized difference water index(SMNDWI) in the case of extracting the shoreline 被引量:9
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作者 LI Ming ZHENG Xiao-shen 《Marine Science Bulletin》 CAS 2016年第2期15-27,共13页
Due to the fast development of industrialization and urbanization, shorelineextraction is necessary for the sustainable development and environment protection inmany countries. This study focused on the accurate metho... Due to the fast development of industrialization and urbanization, shorelineextraction is necessary for the sustainable development and environment protection inmany countries. This study focused on the accurate methods of extracting theinstantaneous waterline —shoreline obtained as the same instant as the satellite imageis acquired. Based on NDWI (Normalized Difference Water Index) and MNDWI(Modified Normalized Difference Water Index), the study changed the bandcombination and proposed a second modified normalized water index (SMNDWI) toextract the waterline. And, this new index is applied to three types of coast to evaluatethe performance of this method with traditional ones. Results show that SNDWI isbetter than NDWI and suitable for applying to the waterline extraction. 展开更多
关键词 SHORELINE normalized difference water index LANDSAT
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基于NDVI和SIF的云南植被变化及预测研究 被引量:3
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作者 张琳 朱大明 +2 位作者 韩杨 姜昀呈 周鹏 《环境监测管理与技术》 北大核心 2025年第1期28-35,共8页
选取生物多样性热点地区云南省作为研究区,对归一化差异植被指数(NDVI)和日光诱导叶绿素荧光(SIF)数据进行监测和预测,揭示两者在监测植被变化中的差异性和互补性,通过相关性分析探讨云南省植被驱动机制,并采用BP神经网络模型和CA-Marko... 选取生物多样性热点地区云南省作为研究区,对归一化差异植被指数(NDVI)和日光诱导叶绿素荧光(SIF)数据进行监测和预测,揭示两者在监测植被变化中的差异性和互补性,通过相关性分析探讨云南省植被驱动机制,并采用BP神经网络模型和CA-Markov模型对云南省植被变化进行时空预测。结果表明:时间上,NDVI和SIF均呈上升趋势;空间上,在较高植被覆盖地区SIF存在饱和现象。SIF在地形复杂区域对植被的响应更为准确。NDVI和SIF均与气象因子呈正相关,NDVI对温度更敏感,SIF对相对湿度更敏感。时序预测上,2020—2025年NDVI和SIF呈下降趋势;空间预测上,NDVI高和SIF较高类型区域减少。 展开更多
关键词 归一化差异植被指数 日光诱导叶绿素荧光 植被变化 驱动机制 时空预测 云南省
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Drought trend analysis in a semi-arid area of Iraq based on Normalized Difference Vegetation Index, Normalized Difference Water Index and Standardized Precipitation Index 被引量:1
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作者 Ayad M F AL-QURAISHI Heman A GAZNAYEE Mattia CRESPI 《Journal of Arid Land》 SCIE CSCD 2021年第4期413-430,共18页
Drought was a severe recurring phenomenon in Iraq over the past two decades due to climate change despite the fact that Iraq has been one of the most water-rich countries in the Middle East in the past.The Iraqi Kurdi... Drought was a severe recurring phenomenon in Iraq over the past two decades due to climate change despite the fact that Iraq has been one of the most water-rich countries in the Middle East in the past.The Iraqi Kurdistan Region(IKR)is located in the north of Iraq,which has also suffered from extreme drought.In this study,the drought severity status in Sulaimaniyah Province,one of four provinces of the IKR,was investigated for the years from 1998 to 2017.Thus,Landsat time series dataset,including 40 images,were downloaded and used in this study.The Normalized Difference Vegetation Index(NDVI)and the Normalized Difference Water Index(NDWI)were utilized as spectral-based drought indices and the Standardized Precipitation Index(SPI)was employed as a meteorological-based drought index,to assess the drought severity and analyse the changes of vegetative cover and water bodies.The study area experienced precipitation deficiency and severe drought in 1999,2000,2008,2009,and 2012.Study findings also revealed a drop in the vegetative cover by 33.3%in the year 2000.Furthermore,the most significant shrinkage in water bodies was observed in the Lake Darbandikhan(LDK),which lost 40.5%of its total surface area in 2009.The statistical analyses revealed that precipitation was significantly positively correlated with the SPI and the surface area of the LDK(correlation coefficients of 0.92 and 0.72,respectively).The relationship between SPI and NDVI-based vegetation cover was positive but not significant.Low precipitation did not always correspond to vegetative drought;the delay of the effect of precipitation on NDVI was one year. 展开更多
关键词 climate change DROUGHT Normalized difference Vegetation index(ndvi) Normalized difference Water index(NDWI) Standardized Precipitation index(SPI) delay effect
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Simple method for extracting the seasonal signals of photochemical reflectance index and normalized difference vegetation index measured using a spectral reflectance sensor 被引量:2
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作者 Jae-Hyun RYU Dohyeok OH Jaeil CHO 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第7期1969-1986,共18页
A spectral reflectance sensor(SRS)fixed on the near-surface ground was developed to support the continuous monitoring of vegetation indices such as the normalized difference vegetation index(NDVI)and photochemical ref... A spectral reflectance sensor(SRS)fixed on the near-surface ground was developed to support the continuous monitoring of vegetation indices such as the normalized difference vegetation index(NDVI)and photochemical reflectance index(PRI).NDVI is useful for indicating crop growth/phenology,whereas PRI was developed for observing physiological conditions.Thus,the seasonal change patterns of NDVI and PRI are two valuable pieces of information in a crop-monitoring system.However,capturing the seasonal patterns is considered challenging because the vegetation index values estimated by the reflection from vegetation are often governed by meteorological conditions,such as solar irradiance and precipitation.Further,unlike growth/phenology,the physiological condition has diurnal changes as well as seasonal characteristics.This study proposed a novel filtering method for extracting the seasonal signals of SRS-based NDVI and PRI in paddy rice,barley,and garlic.First,the measurement accuracy of SRSs was compared with handheld spectrometers,and the R^(2)values between the two devices were 0.96 and 0.81 for NDVI and PRI,respectively.Second,the experimental study of threshold criteria with respect to meteorological variables(i.e.,insolation,cloudiness,sunshine duration,and precipitation)was conducted,and sunshine duration was the most useful one for excluding distorted values of the vegetation indices.After data processing based on sunshine duration,the R^(2)values between the measured vegetation indices and the extracted seasonal signals of vegetation indices increased by approximately 0.002–0.004(NDVI)and 0.065–0.298(PRI)on the three crops,and the seasonal signals of vegetation indices became noticeably improved.This method will contribute to an agricultural monitoring system by identifying the seasonal changes in crop growth and physiological conditions. 展开更多
关键词 photochemical reflectance index normalized difference vegetation index VEGETATION remote sensing spectral reflectance sensor
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塔里木河干流植被NDVI时空动态变化及影响因素探测 被引量:3
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作者 马晓倩 钟瑞森 +2 位作者 吴彬 刘坤 钟文静 《环境科学》 北大核心 2025年第9期5813-5824,共12页
识别塔里木河干流植被覆盖的时空变化规律及其驱动因素,对于保护该流域生态系统的稳定性至关重要.基于2000~2020年塔里木河干流归一化植被指数(NDVI)、气候、地形和人为因子,采用Theil-Sen Median斜率估计和Mann-Kendall趋势显著性检验... 识别塔里木河干流植被覆盖的时空变化规律及其驱动因素,对于保护该流域生态系统的稳定性至关重要.基于2000~2020年塔里木河干流归一化植被指数(NDVI)、气候、地形和人为因子,采用Theil-Sen Median斜率估计和Mann-Kendall趋势显著性检验、Hurst指数以及地理探测器等方法分析了2000~2020年塔里木河干流NDVI时空动态变化特征,并探讨了NDVI时空分异影响因素.结果表明:①2000~2020年,塔里木河干流地区的NDVI呈波动上升的趋势,增长速率为0.0012 a^(−1),主要以低植被覆盖为主,面积占比为59.4%.NDVI空间分布特征明显,呈增加趋势的面积区域占比为44.9%.②Hurst指数预测,NDVI呈现改善趋势的面积为64%,呈现退化趋势的面积为36%.③影响力探测显示高程是主要驱动因素,q值为0.4219;交互探测显示气温∩高程的交互作用最显著,q值为0.532;生态探测显示降水∩气温的交互作用对NDVI的变化始终存在显著差异,而坡向∩夜间灯光的交互作用始终不存在显著差异.④上游河段的NDVI空间分异主要由气候因素和地形因素共同作用,中游逐渐向人为因素过渡,下游人为因素已成为主导因素.因此,塔里木河干流地区的NDVI在过去20 a里呈现改善趋势,未来该地区的NDVI状况将更加依赖于水热条件的平衡. 展开更多
关键词 归一化植被指数(ndvi) 地理探测器 时空动态 影响因素 塔里木河干流
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中亚干旱区植被NDVI时空变化及其区域对比研究 被引量:2
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作者 张汝菡 宫雨生 谈明洪 《环境科学研究》 北大核心 2025年第1期90-100,共11页
植被在生态系统中扮演着重要的角色,归一化植被指数(Normalized Difference Vegetation Index,NDVI)是反映植被变化的重要指标。为阐明中亚干旱区(中亚五国和中国新疆地区)植被NDVI时空演变规律及其影响因素的差异,本研究基于谷歌地球引... 植被在生态系统中扮演着重要的角色,归一化植被指数(Normalized Difference Vegetation Index,NDVI)是反映植被变化的重要指标。为阐明中亚干旱区(中亚五国和中国新疆地区)植被NDVI时空演变规律及其影响因素的差异,本研究基于谷歌地球引擎(Google Earth Engine,GEE),利用2000−2020年植被生长季间MODIS NDVI产品计算逐年平均归一化植被指数(NDVI),采用Sen′s斜率、Mann-Kendall检验,分析中亚干旱区植被NDVI的时空变化;同时结合遥感数据、气象数据和土地利用等数据,构建多元线性回归模型,探索影响NDVI变化的驱动因素。结果表明:①2000−2020年中亚干旱区植被NDVI整体上呈现波动上升趋势,中国新疆地区植被NDVI整体增长速率为2.9×10^(−3)a^(−1),远高于中亚五国总体增长速率(0.6×10^(−3)a^(−1))。②从NDVI变化空间分布来看,中亚五国植被变化趋势空间分布较为分散,植被NDVI改善区域面积占比为25.9%,退化区域面积占比为8.78%;中国新疆地区植被变化呈现出明显的空间集聚效应,改善区域集中在绿洲和主要农业区,植被改善区域面积占比为37.72%,植被退化区域面积仅占0.46%。③植被NDVI受到气候、地形及人类活动要素的多重影响。气温升高抑制中亚干旱区植被生长,降水量增加利于植被生长,高程显著影响植被生长,人类合理利用土地及灌溉设施投入对于植被恢复具有积极作用。研究显示,中亚五国与中国新疆地区植被变化存在明显差异,中国新疆地区植被改善情况明显优于中亚五国。植被NDVI变化受到自然因素和人类活动共同影响,需要综合考虑区域异质性与多重影响因素的协同作用。 展开更多
关键词 中亚干旱区 归一化植被指数(ndvi) 区域差异 时空动态 谷歌地球引擎(GEE)
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Monitoring the Sequential Cropping Index of Arable Land in Zhejiang Province of China Using MODIS-NDVI 被引量:3
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作者 PENG Dai-liang HUANG Jing-feng JIN Hui-min 《Agricultural Sciences in China》 CAS CSCD 2007年第2期208-213,共6页
The sequential cropping index of arable land is important agricultural information. The aim of this article is to monitor and analyze the parameter, and offer reference for agricultural production. The cropping index ... The sequential cropping index of arable land is important agricultural information. The aim of this article is to monitor and analyze the parameter, and offer reference for agricultural production. The cropping index of arable land in Zhejiang Province, China from 2001 to 2004 was calculated using the second order difference based MODIS (moderate resolution imagine spectroradimeter) vegetation data from NASA (National Aeronautic and Space Administration) in America and the land use map with a scale of 1:25 000. It was found that the peak of the time series of the NDVI curve indicated that the ground biomass of crops reached the maximum, and fluctuated with the crops growing processes such as sowing, seeding, heading, ripeness, and harvesting within one year. Thus, the sequential cropping index was defined as the number of peaks of the time series of the NDVI curve. The sequential cropping index of all cities in Zhejiang Province, China was worked out. It is seen from the spatial distribution that the cropping index in the southwest Zhejiang Province is larger than that in the northeast. As for the temporal distribution, the sequential cropping index decreased from 2001 to 2003, whereas it increased slightly from 2003 to 2004. However, the index of arable land was relatively low, as far as the geographic position and climatic resource were concerned, and the potential of the sequential cropping index was great. 展开更多
关键词 sequential cropping index MODIS-ndvi MONITORING
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基于KNDVI的大兴安岭生态功能区植被覆盖变化时空特征及驱动力分析 被引量:6
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作者 王子昊 王冰 +1 位作者 张秋良 萨如拉 《环境科学》 北大核心 2025年第5期3021-3032,共12页
大兴安岭作为中国唯一的寒温带针叶林区,具有极其重要的生态价值及意义.探究大兴安岭植被时空变化及驱动因素,对于大兴安岭生态保护、我国生态安全及推动可持续发展具有重要意义.基于MOD09GA构建了核归一化植被指数(KNDVI),将其作为衡... 大兴安岭作为中国唯一的寒温带针叶林区,具有极其重要的生态价值及意义.探究大兴安岭植被时空变化及驱动因素,对于大兴安岭生态保护、我国生态安全及推动可持续发展具有重要意义.基于MOD09GA构建了核归一化植被指数(KNDVI),将其作为衡量植被生长状况的指标,采用Theil-Sen斜率分析、Mann-Kendall检验和Hurst指数等方法,研究了大兴安岭生态功能区植被的时空动态变化及其未来发展趋势.通过最优参数的地理探测器,确定了相关环境因子对大兴安岭植被覆盖变化的驱动力.结果表明:①2001~2020年内,大兴安岭植被覆盖在空间分布上呈现出由北向南逐渐递减的趋式,KNDVI总体以0.03(10 a)^(−1)速率增加;②2001~2020年内,大兴安岭地区植被覆盖的空间分布格局始终保持东北-西南的方向性,并显示出向东北方向迁移的趋势.③土地利用类型的变化是影响大兴安岭生态功能区植被覆盖变化的主导因子;④与单因子相比,多因子之间的交互作用能够更好地解释植被覆盖的时空分异性.研究结果能够为深入理解大兴安岭生态功能区植被变化的内在机制,可持续发展以及应对全球气候变化提供科学建议. 展开更多
关键词 大兴安岭 核归一化植被指数(Kndvi) 驱动力 地理探测器 植被变化
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2000−2022年黔南州植被NDVI时空变化及驱动因子分析 被引量:3
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作者 马欢 计伟 +2 位作者 冯朝阳 杨娇 宋婷 《环境科学研究》 北大核心 2025年第6期1332-1343,共12页
黔南布依族苗族自治州(简称“黔南州”)位于珠江上游和长江上游的重要水源补给区,是贵州省石漠化的重灾区之一,生态环境脆弱,近年来黔南州采取退耕还林等生态恢复措施,植被覆盖显著增加,研究植被变化特征并评估其影响因素的重要性,有助... 黔南布依族苗族自治州(简称“黔南州”)位于珠江上游和长江上游的重要水源补给区,是贵州省石漠化的重灾区之一,生态环境脆弱,近年来黔南州采取退耕还林等生态恢复措施,植被覆盖显著增加,研究植被变化特征并评估其影响因素的重要性,有助于了解生态恢复成效,对区域生态环境管理和保护策略制定具有现实意义。利用MODIS获取黔南州植被NDVI数据,利用线性趋势分析、变异系数等方法,分析了2000−2022年黔南州及分流域的植被NDVI时空变化特征,并利用地理探测器探究NDVI与地形、气候、人类活动3类驱动因子的影响作用机制。结果表明:①2000−2022年黔南州植被NDVI呈波动上升趋势,平均增长率为0.53%,黔南州两大流域中,珠江流域植被NDVI较长江流域增长更为显著;分行政区来看,独山县增长最显著,多年平均增长率为0.70%。②2000−2022年,黔南州整体以高植被覆盖为主,多年平均占比达到54.82%;植被分布特征由“北部、东部高”分布转变为各区域均匀分布;研究区植被覆盖呈现为改善的面积占比为91.01%,呈现为退化的面积占比由30.35%降至13.45%,主要分布在瓮安县、贵定县中部等区域。③黔南州植被NDVI影响因素分析显示,地形因子对黔南植被分布影响最大,双因子交互作用均大于单因子,坡度和人口的交互作用最强,2000−2022年因子的单独作用增强,两种因子的交互作用降低。研究显示,黔南州植被覆盖整体处于较高水平,植被变化是多因素综合作用的结果,进一步提升改善生态环境还需要因地制宜采取不同的策略。 展开更多
关键词 归一化植被指数(ndvi) 趋势分析 地理探测器 黔南州
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辽河流域NDVI时空演变特征及其气候响应性 被引量:5
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作者 杨孟秋 朱玲 +1 位作者 王睿 胡振国 《生态学杂志》 北大核心 2025年第4期1321-1333,共13页
全球气候变化会对区域植被变化产生影响。研究流域植被NDVI的时空变化及其对气候变化的响应能够为区域生态环境建设及管理提供重要依据。基于地理微域分异视角,本研究构建了具有辽河流域(辽宁段)特色的地理单元,运用GIS等软件对2000—2... 全球气候变化会对区域植被变化产生影响。研究流域植被NDVI的时空变化及其对气候变化的响应能够为区域生态环境建设及管理提供重要依据。基于地理微域分异视角,本研究构建了具有辽河流域(辽宁段)特色的地理单元,运用GIS等软件对2000—2022年MODIS-NDVI遥感数据以及相应时期的气温和降水数据进行了分析,借助Theil-Sen+Mann-Kendall、变异系数和偏相关分析方法,分析不同地理单元生长季NDVI的时空变化特征及其对气候的响应。结果表明:不同地理单元生长季NDVI均值呈增长趋势但增速不同,具有明显的空间异质性;结合变化趋势显著性及变异系数分析,平缓阳/阴坡淋溶土与植被具有正向交互作用,适宜多种植被类型生长;平缓阳/阴黑土的植被已经得到了较好的恢复,但仍有部分区域退化;斜陡阳/阴坡淋溶土的植被群落结构较稳定;各单元植被NDVI与气温的显著相关性较低,与降水呈显著正相关。研究结果可为辽河流域(辽宁段)植被恢复潜力评价、生态修复分区及管理提供参考。 展开更多
关键词 地理单元 辽河流域 归一化植被指数 植被变化 气候因子
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基于Albedo-NDVI特征空间的张家口康保县荒漠化时空动态监测 被引量:4
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作者 李状 刘宏伟 +4 位作者 白耀楠 韩博 苗晋杰 杜东 徐丹虹 《地球学报》 北大核心 2025年第2期409-418,共10页
荒漠化是威胁人类生存和发展的重要生态环境问题之一。我国荒漠化土地面积占比相对较高,因此持续开展荒漠化监测、治理和防治始终是我国生态保护修复工作中的一项重要任务。本文通过构建康保县1990—2022年Albedo-NDVI特征空间得到各期... 荒漠化是威胁人类生存和发展的重要生态环境问题之一。我国荒漠化土地面积占比相对较高,因此持续开展荒漠化监测、治理和防治始终是我国生态保护修复工作中的一项重要任务。本文通过构建康保县1990—2022年Albedo-NDVI特征空间得到各期荒漠化指数,进而对研究区近33年来的荒漠化空间分布特征和演化规律进行时空动态监测研究;此外,本研究还通过收集分析相关数据变化趋势进一步探究自然和人为条件等驱动因素对荒漠化演化的影响机制。结论如下:(1)各期Albedo-NDVI特征空间“干边”的Albedo-NDVI线性回归方程,R2均大于0.7,表明Albedo与NDVI呈现出较强的相关性。(2)1990—2022年,研究区极重度和重度的荒漠化面积占比逐年降低,荒漠化状况得到了有效改善。(3)1990—2022年,研究区荒漠化减轻的面积逐渐增加,荒漠化加重的面积逐渐降低。(4)研究区自然因素(气温、相对湿度、干旱指数和风速等)、人为因素(土地利用和人口变化)以及生态治理(三北防护林和京津风沙源治理等工程、退耕还林、地下水超采综合治理)相关国家管理政策等都是荒漠化发展变化的重要驱动因素。 展开更多
关键词 荒漠化差值指数 荒漠化 演化规律 驱动因素 康保县
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耦合NDVI与纹理时序特征的地块作物遥感分类 被引量:1
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作者 史洁宁 吴田军 +3 位作者 黄启厅 骆剑承 任应超 徐欣雨 《南方农业学报》 北大核心 2025年第1期29-40,共12页
【目的】充分挖掘遥感影像的时间和空间信息,准确识别地块作物类型,为作物类型空间分布制图、产量估计及农业生产决策等提供可靠的数据支持。【方法】以Google Earth影像为参考,获得美国加利福尼亚州金斯县完整的地块边界,利用多时相Sen... 【目的】充分挖掘遥感影像的时间和空间信息,准确识别地块作物类型,为作物类型空间分布制图、产量估计及农业生产决策等提供可靠的数据支持。【方法】以Google Earth影像为参考,获得美国加利福尼亚州金斯县完整的地块边界,利用多时相Sentinel-2影像构建地块归一化植被指数(NDVI)时间序列和时间—纹理二维表征图作为分类特征,NDVI时间序列捕捉作物生长的物候变化,时间—纹理二维表征图捕捉空间特征随时间的动态变化,进而使用卷积神经网络(CNN)+长短时记忆网络(LSTM)双流架构来联合时间和空间特征实现农田作物的准确识别。【结果】与仅使用NDVI时序的传统方法相比,纳入纹理时序后的方法明显提高分类精度,随机森林的分类精度由0.89提升至0.93,支持向量机的分类精度由0.88提升至0.93,表明加入空间特征的纹理时序能有效提升作物分类能力;而使用CNN+LSTM双流架构分类模型进行地块作物分类的总体精度达0.95,特别是葡萄和冬小麦的分类精度提升效果明显,F_(1)分别提升至0.90和0.92,表明相较于传统的分类器,使用CNN+LSTM双流架构可实现更精准的地块作物识别。【建议】在种植结构复杂、农作物生长习性相近的地区进行地块作物遥感分类时,考虑将纹理时序特征纳入分类体系,并使用CNN+LSTM双流架构分别捕捉作物生长的时间和空间特征。这种综合应用时间和空间信息的方法,能提升地块作物分类的准确度。 展开更多
关键词 作物分布 地块尺度 归一化植被指数(ndvi) 时间序列 空间纹理特征 CNN+LSTM双流架构
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Gini Index for Cities: A Preliminary Study on Regional Differences of Chinese City Size Distribution
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作者 Liu Wangbao & Zheng Bohong Department of Architecture and Urban Planing, Central South University, Changsha 410075, Hunan 《Chinese Journal of Population,Resources and Environment》 2004年第4期33-36,共4页
City size distribution is of interest because of a number of key stylized facts, including notably Zipf's law for cities and the importance of urban primacy. But a new and more efficient method Gini index can be u... City size distribution is of interest because of a number of key stylized facts, including notably Zipf's law for cities and the importance of urban primacy. But a new and more efficient method Gini index can be used for calculating regional city size distribution. This paper begins by developing a calculation method for the Gini index, dividing the whole country into 26 areas and then calculating each area's Gini index value. Based on these calculation results, this paper gives a preliminary study on regional differences of its city size distribution and the dynamics. 展开更多
关键词 Gini index city size distribution regional differences
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