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1.

The thermal data sets of Landsat for the years 2014 and 2019 are used to assess the transients of land surface temperature (LST) in Visakhapatnam, India. The variation in estimated temperature fields is compared with the land use pattern to validate temperature with reference to land use land cover (LULC). During the considered period, the built-up area in the study region increased by 63%. The aerial extent of water bodies has come down by 12.5%, and there is a significant drop in vegetation cover. The LST of the regions with the densely built-up area is high compared to the other types of land use. A mean rise of 4.8 °C in the LST has been noticed over the study area during this period. Few monitoring points representing rural areas within the proximity of the study region have been established, and the LST is monitored explicitly. As a result, it has been observed that the temperature in rural areas is relatively lower than the city region, which confirms the urban heat island effect. A micro-level study has been conducted by dividing the study area into four zones as per administrative boundaries. Statistical analysis using the zonal attributes affirms a positive correlation of 0.55 between LST and the built-up area. In contrast, a negative correlation of 0.52 between LST and vegetation cover is observed. The LULC results are validated using Google Earth Images captured at a finer resolution. Being selected as one of the cities under the smart city mission by the Urban Development Ministry of Govt. of India, it is expected that the land use pattern in Visakhapatnam will change drastically in the coming years. The findings of this study foster the relationship between LST and LULC, and the conclusions thus drawn would help planners for the sustainable development of Visakhapatnam.

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2.
随着全球气候变化和人类活动的不断加剧,导致生态、资源与环境问题日趋严重,区域空间格局变化与地表温度的研究已成为全球环境变化的热门和重点研究课题。采用2000年、2006年和2010年的TM遥感影像,结合GIS和RS技术研究南京市不同时期的时空分布特征、演变特征以及地表温度的变化。结果表明: 2000~2010年南京市城区建设用地面积增长幅度较大,而耕地面积却呈显著递减趋向,水体和草地面积基本保持稳定,林地面积略有增长。NDVI和MNDWI均与地表温度呈负相关,通过构建TVX空间观察南京城市化进程,发现植被覆盖度持续降低,地表温度急速上升,到2010年,所有土地利用类型的聚类点的转化轨迹趋于一点,变化向量幅度是:林地>草地>水体>耕地,研究结果表明林地和水域对城市地表热环境具有强大的缓解作用,在城市化进程中,要注重城市水域和林地的保护,同时要改善城市绿化、减少能耗和节制热源  相似文献   

3.
Despite legislation and voluntary initiatives aimed at protecting the environment, previously undeveloped areas of Costa Rica are subject to new development opportunities. This growth has been largely unchecked, and has led to enormous amounts of foreign direct investment. This unchecked investment has led to destabilization of the natural environment, and, in the case of the Dominical?CUvita corridor on the Pacific Coast, has led to an observed increase in landsliding activity. Data collection for a landslide inventory of the study area was created via direct inspection and remote sensing techniques in December 2007 and November 2008. Evaluation of data was based on the slide location, surrounding land cover/land use, and evidence of reactivation. Data were subjected to a ??2 2 × 3 contingency table and the Freeman?CHalton extension of the Fisher exact probability test to gauge the level of impact from human-induced land-use change on the rate of landslide events. The results suggest more attention needed to monitor the impacts of human agency in the region lest landslide susceptibility become greater.  相似文献   

4.
基于最小累积阻力模型的贵阳市景观生态安全格局构建   总被引:10,自引:0,他引:10  
贵阳市是我国典型的喀斯特地区,水土流失严重,生态环境脆弱。在生态重要性、景观连通性和生态需求分析的基础上进行生态源地识别,根据土地覆被状况、人为干扰程度和夜间灯光数据构建了生态阻力面,基于最小累积阻力模型识别生态廊道网络,在此基础上构建了贵阳市域和市区的景观生态安全格局。结果表明:(1)贵阳市最重要和重要生态斑块总面积5 393.43 km2,主要分布在西部和北部;生态用地斑块的景观连通度总体较高,其中园地最好,林地最差;生态需求较高的区域主要分布在人口密集的城市建成区周边。生态源地占总面积的18.56%,集中分布于北部及西南部红枫湖、百花湖等区域;(2)贵阳市生态廊道总长为933.58 km,其中关键廊道长287.6 km,沿东北向西南方向延伸。现状廊道遍布市域,主要为河流水系;潜在廊道和关键廊道98%都为林地,主要分布于北部和西部生态环境较好的山地丘陵区;(3)市区景观生态安全格局中,生态源地主要集中在百花湖、红枫湖、香纸沟、相思河等风景区,花溪湿地和南明河作为市区关键廊道纵贯南北。最后,在此基础上提出了"保护和建设并重、区县间统一规划的"生态系统管理对策,为贵阳市生态环境建设提供切实可行的科学指导。  相似文献   

5.
滑坡、崩塌和泥石流是三峡库区的三大主要地质灾害类型,其中滑坡所占比例最大。强降水、连阴雨等气象因素是诱发滑坡、泥石流等地质灾害的重要因子。利用三峡库区及其周边地区蓄水前常规气象站1971~2003年逐日降水资料和库区有完整记录的滑坡个例资料分析了滑坡灾害与发生前各个时段降雨的强度、持续时间、总量等之间的关系,初步确定不同保证率下诱发三峡库区滑坡灾害发生的临界降水量值,为开展三峡库区滑坡灾害气象监测预警提供科学依据  相似文献   

6.
This study quantified land use/land cover (LULC) changes in Pearl River Delta (PRD) of South China and its impact on regional climate over the last two decades. The LULC change analyses were accomplished by applying a change detection method to a set of Landsat imagery and ancillary data acquired from 1970s to 2000. The results indicate that the urban expansion is the prevailing LULC change in the PRD. Impact of LULC change on regional climate was simulated by using a mesoscale climate model. Two different land cover datasets circa 1990 and 2000 were input to the model to investigate the impact of urbanization on regional weather and climate condition in summer 2005. The simulation results show that rapid urban expansion can substantially alter regional climate conditions in the PRD region including monthly mean temperature, precipitation, moisture, and surface heat fluxes.  相似文献   

7.
以星云湖流域自然人文环境特征、主要生态环境问题为出发点,结合景观生态学原理方法、熵值法和GIS空间分析技术,实现星云湖流域生态安全的空间分异格局及优化。选取海拔高程、坡度、土壤侵蚀强度、地质灾害易发性、土地覆被(利用方式和植被覆盖度)、人口密度、距自然保护区距离、距离建设用地和距水源距离等因素为阻力因子叠加生成综合阻力要素,根据GIS空间成本距离分析原理,引用最小累积阻力模型识别构建流域生态廊道和生态节点,进一步规划优化流域生态功能网络的结构和功能。研究表明:(1)从各安全等级面积比例和平均生态安全指数角度,星云湖流域中度安全占流域总面积的45.81%,高度安全为25.24%,较低安全为21.05%,不安全占7.9%,平均生态安全指数为2.95,流域生态安全总体处于中度安全,生态系统健康一般,但部分地区生态安全性较低,主要分布在南部、东部和北部地区,应重视这些区域的生态保护和建设;同时,坡度、水土流失因子和水资源(自然环境要素)、土地利用格局和距离建设用地(人类活动干扰要素)等因素是流域生态安全格局形成的主要因子;(2)识别规划了中枢生态源、核心型生态源斑块、一般生态源、多种级别的生态廊道和生态节点或战略点等构成的具有结构性和层次性的流域生态安全网络格局,对不同层次和结构的生态源、生态廊道和生态节点或战略点进行针对性建设保护,将有效提升流域生态系统的功能价值性和系统的完整性,进而加强流域生态稳定安全。  相似文献   

8.

The land surface temperature (LST) and land use land cover (LULC) are the major components of climate- and environment-related studies. The objective of this study was to assess the relationship of LST with remotely sensed LULC-derived vegetation indices during 2018 at the global, latitudinal and continental scales. Moderate resolution imaging spectroradiometer (MODIS) Aqua daytime LST and eight LULC MODIS indices (NDVI, EVI, LAI, DSI, NDWI, albedo, NDSI, NDBI) were processed using Earth Engine Code Editor. The analysis was conducted using correlation coefficient and significance of the relationship of variables based on 2050 randomly selected points at the global scale. Based on the univariate and geographically weighted regression methods, the research confirmed that vegetation greenness (NDVI), leaf water content (NDWI) and snow cover (DSI) are the codominant drivers of decreasing LST at the global scale including Europe, Asia, South America and North America at the continental scale. Snow cover during winter and vegetation greenness in summer seasons control the global LST. Although albedo shows an inverse relationship, NDBI and NDSI displayed a positive relationship to LST at the global scale. In conclusion, temporal seasonal and inter-annual dynamics of LST in response to snow cover and vegetation properties (greenness, moisture) should be focused on understanding and regulating LST at varying scales.

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9.
The present study used temporal remote sensing data for 1990, 2001 and 2006 to assess spatio-temporal patterns of forest cover changes in Shiwalik range of the Himalaya, Dehradun forest division. Forests are innately associated to human well-being. However, with the increasing anthropogenic activities, deforestation has increased. Quantitative change analysis of the forest cover for the past two decades provides valuable insight into the forest conservation vis-à-vis anthropogenic activities in the region. Spatio-temporal datasets along with biotic and abiotic variables provide opportunities to model the forest cover change further. The present study investigates forest cover change and predicts status of forest cover in the Dehradun forest division. Land Change Modeller (LCM) was used to predict status of forest cover for 2010 and 2015 using current disturbance scenarios. Comparing actual LULC of 2006 with the predicted LULC of 2006 validated change prediction model and agreement was 61.03%. The forested areas are getting degraded due to anthropogenic activities, but deforestation/degradation does not contribute much in expanding urban area. Agricultural areas and fallow lands are the main contributors to increased urban area. The study demonstrates the potential of geospatial tools to understand spatio-temporal forest cover change and generate the future scenarios.  相似文献   

10.
Physical and ecological responses of the coastal areas in the vicinity of Mumbai, India, due to relative sea level rise are examined by different inundation scenarios. Evaluation of potential habitat loss under sea level rise was made by incorporating the land use/land cover (LULC) adopted from the digital elevation model with the satellite imagery. LULC categories overlaid on 1.0, 2.0, 3.0 and 4.0 m coastal elevation showed that the coastal areas of Mumbai were mostly covered by vegetation followed by barren land, agricultural land, urban areas and water bodies. For the relative sea level rise scenarios of 1.0, 2.0, 3.0 and 4.0 m, the tidal inundation areas were estimated to be 257.85, 385.58, 487.56 and 570.63 km2, respectively, using GIS techniques. The losses of urban areas were also estimated at 25.32, 41.64, 54.61 and 78.86 km2 for the 1.0, 2.0, 3.0 and 4.0 m relative sea level rise, respectively, which is most alarming information for the most populated city on the eastern coast of India. The results conclude that relative sea level rise scenario will lead profound impacts on LULC categories as well as on coastal features and landforms in the adjoining part of Mumbai. The sea level rise would also reduce the drainage gradients that promote flooding condition to rainstorms and subsequently increase saltwater intrusion into coastal regions. Alterations in the coastal features and landforms correlated with inundation characteristics that make the coastal region more vulnerable in the coming decades due to huge development activities and population pressures in Mumbai.  相似文献   

11.
湖北省地貌类型多样,植被类型丰富,也是农业大省,物候信息监测对于自然生态和农业生产具有重要意义。使用MODIS MOD13Q1 产品中的归一化植被指数数据集,运用时间序列谐波分析法重构 NDVI时序曲线,并结合土地覆被数据,采用物候特征动态阈值法获取湖北省植被物候空间分布特征,分析不同土地覆被类型的物候指标。结果表明:(1)湖北省西部山区、东南部和东北部丘陵地区,多为自然植被覆盖,且植被状况良好,NDVI最大值达到0.75以上,大部分区域NDVI最小值在0.6以上。中部江汉平原和农作物区域NDVI变化受农业耕种方式影响较大,与自然植被NDVI变化特征有所差异。(2)不同土地覆被类型物候特征各异。湖北省大部分区域的植被在2月到3月进入生长季,11月到12月结束生长,襄阳地区呈现相反的特征。耕地、裸地、水体等受人类影响较大的土地覆被类型生长季长度较短,开始时间较晚,结束较早。森林、草地、灌丛等自然植被生长季长度较长,开始较早、结束较晚。(3)物候参数由于地形地貌、地表覆被类型、人类和自然因素的影响具有显著的差异,对区域植被生态状况、不同土地覆被类型物候空间分布特点的分析,结果对于植被生态保护、植被分类、农业区划等都具有参考意义。  相似文献   

12.
Latin American subtropical dry ecosystems have experienced significant human impact for more than a century, mainly in the form of extensive livestock grazing, forest products extraction, and agriculture expansion. We assessed the regional-scale effect of land use and land cover (LULC) on patterns of richness distribution of trees, birds, amphibians, and mammals in the Northern Argentine Dry Chaco (NADC) over c. 19 million hectares. Using species distribution models in a hierarchical framework, we modeled the distributions of 138 species. First, we trained the models for the entire Argentinean Chaco with climatic and topographic variables. Second, we modeled the same species for the NADC including the biophysical variables identified as relevant in the first step plus four LULC-related variables: woody biomass, distance to crops, density of livestock-based rural settlements (puestos), and vegetation cover. Third, we constructed species richness maps by adding the models of individual species and considering two situations, with and without LULC variables. Four, richness maps were used for assessing differences when LULC variables are added and for determining the main drivers of current patterns of species richness. We found a marked decrease in species richness of the four groups as a consequence of inclusion of LULC variables in distribution models. The main factors associated with current richness distribution patterns (both negatively) were woody biomass and density of livestock puestos. Species richness in present-day Semiarid Chaco landscapes is strongly affected by LULC patterns, even in areas not transformed to agriculture. Regional-scale biodiversity planning should consider open habitats such as grasslands and savannas in addition to woodlands.  相似文献   

13.
丹江口水库作为南水北调中线工程水源地,其库区的土地利用/覆被变化可能带来的生态环境效应备受关注。以2000和2004年的多源遥感影像为主要数据源,解译生成土地分类数据,对研究区内土地利用变化总体特征、速度、景观优势度变化以及景观生态效应进行了分析。结果显示:库区在这4年间土地利用整体结构上没有显著改变,但是耕地、建设用地增加,林地、未利用地减少。景观多样性指数及景观均匀性指数呈下降趋势,说明景观异质程度下降,景观类型有向单一化及非均衡化方向发展的趋势。林地减少加剧库区的水土流失,导致库区的生态环境质量下降,应采取措施促使库区经济与生态环境良性地协调发展。  相似文献   

14.
基于时序NDVI的湖北省植被覆盖动态变化监测分析   总被引:3,自引:0,他引:3  
基于1998~2011年7、8月份SPOT VEGETATION NDVI数据,求取两月份NDVI平均值,构建14 a间的NDVI时序文件,通过对NDVI时序文件进行信息提取、分析,反映湖北省植被生长情况,从而监测、研究湖北省植被生长高峰期植被覆盖动态变化及趋势。具体为:利用植被覆盖分区法,将研究区分为弱植被覆盖区、稀疏植被覆盖区、低植被覆盖区、中植被覆盖区、高植被覆盖区和密集植被覆盖区等区域,监测各区域14 a间植被覆盖动态变化,结果表明,研究区整体上植被覆盖变化不大;利用Mann Kendall趋势分析法,对研究区植被覆盖变化趋势进行研究,结果表明绝大部分呈现无明显变化趋势,1655%的区域表现增加趋势,033%的区域表现减少趋势。通过以上分析结论可知,植被覆盖分区法和Mann Kendall趋势分析法的分析结果基本一致,表明两种方法能从植被覆盖状况和变化趋势角度动态反映植被的变化情况  相似文献   

15.
With the growth of socio-economic activities, natural land cover is being modified for various development purposes. This has increased the rate of land-use and land-cover changes (LULCC), and thus, affecting the overall ecosystem health. LULCC mapping is an important tool for land management and monitoring. This paper presents LULCC analysis using remotely sensed data integrated into a Geographic Information System (GIS). LULCC was quantified using Markov analysis, and the associated probability of change for each class was predicted. Landscape metrics were also used to quantify the spatial and temporal changes in the area. The unique combination of these techniques support the conclusion that with increasing human activities, (1) the deforestation rate has increased, (2) forested areas have become increasingly fragmented, and (3) the forested areas have the highest probability of getting converted to some other land-use and land-cover (LULC) class.  相似文献   

16.
川中丘陵区是长江上游重要的生态屏障,也是国家退耕还林还草和天然林资源保护工程重点实施区。近年来,由于气候变化与人类活动的影响,该区植被覆盖及生态发生了较大变化。利用该地区2000~2015年MODIS NDVI数据、气象和土地利用数据以及研究区统计数据,采用最大值合成法(MVC)、趋势分析法和相关系数法,分析了川中丘陵区经国家生态工程建设后的植被动态变化特征,并探讨了气候变化和人类活动对植被覆盖的影响。研究结果表明:近15年,川中丘陵区植被呈增加的趋势,增速为5. 84/10 a(P0. 01);31. 58%的区域植被NDVI显著增加,主要分布在嘉陵江中游和岷江中下游,2. 90%的区域植被NDVI显著减少,主要分布在城市中心及周边;研究区植被对降水的敏感性较气温更强,22. 08%的区域面积NDVI与降水是呈显著相关的,仅7. 69%区域面积NDVI与气温是显著的;森林、灌木和草地的NDVI增加明显,各自增加比例超过60%,而建设用地和湿地是NDVI减少最明显的土地利用类型;退耕还林还草和天然林资源保护工程的建设,对川中丘陵区植被覆盖的增长起到了积极作用。  相似文献   

17.
岷江上游生态环境脆弱性评价   总被引:2,自引:0,他引:2  
生态环境脆弱性评价是全球生态问题和可持续发展研究中的重要内容之一。岷江上游因地质构造复杂、人地矛盾突出、生态系统异常脆弱和灵敏而备受关注。本文以岷江上游生态环境脆弱性为研究对象,选取证据权重法(WOE)进行滑坡脆弱性评价,层次分析法(AHP)进行水力侵蚀、景观破坏与污染脆弱性评价;在此基础上,进行了研究区各生态主题脆弱性的空间叠加分析;探讨了岷江上游生态环境脆弱性及其在不同影响因子作用下的空间分异特征。结果表明:研究区的滑坡脆弱性、水力侵蚀脆弱性、景观破坏与污染脆弱性均以轻微度为主,分别占研究区面积的80.43%、71.89%、75.55%;各生态环境主题脆弱性综合分析表明,54.70%的区域至少面临一种生态问题,面临两种及以上环境问题的区域占15.43%,同时面临三种环境问题的占1.35%。研究结果探讨了岷江上游生态环境存在的主要问题和影响因子,对岷江流域乃至长江流域的生态安全和可持续发展具有积极意义,未来应持续关注生态环境脆弱区的生态环境问题。  相似文献   

18.
近15年来长江源区土地利用变化及其生态环境效应   总被引:14,自引:3,他引:11  
长江源区是我国重要的水源涵养区,也是高海拔地区生物多样性最集中的地区和生态变化最为敏感的地区。基于1986年TM和2000年ETM+卫星遥感数据和野外实地调查,采用GIS软件和景观生态空间分布格局分析方法,对长江源区近15年来土地利用类型的时空变化进行了研究。结果表明:1986~2000年,源区林地和湿地面积减少54.2 %和42.69 %,建设用地、耕地和未利用土地面积分别增加120 %、43.83 %和21.1 %。全区土地利用的空间位置转换面积大于其数量变化,土地利用类型总变化的面积大小依次是草地>未利用土地>湿地>水域>林地>耕地>建设用地。土地利用动态转化过程以草地转化为未利用土地、湿地转化为草地和未利用地逆转为草地为主要特征。15年里景观破碎化程度加剧,分维数和多样性指数增加,优势度降低,景观异质性增强。长江源区脆弱的生态体系对土地利用变化响应强烈,造成水土流失与沙漠化程度加剧,导致大范围高寒草甸、草原植被退化,湿地萎缩。气候变化和人类经济活动是导致研究区土地利用变化的主要因素。  相似文献   

19.
长三角地区植被退化的空间格局及影响因素分析   总被引:1,自引:0,他引:1  
植被退化是陆地生态系统功能下降的重要表征。利用2000~2010年SPOT-VEGETATION NDVI遥感数据、土地利用数据,采用趋势分析、叠加分析和格网计算方法,对长三角植被退化的空间格局及其影响因素进行分析。结果表明:10a间长三角地区最大化NDVI均值空间分布南北高、中间低,区域14%的植被覆盖面积显著退化。植被退化呈现一定的空间分异,而人类活动是导致植被退化的主要原因。在长江以南、太湖的北部与东部,环杭州湾地区及南京、南通和台州等城市快速无序的城镇化,造成了建设用地面积增加和耕地的破碎化,使植被退化区域集中连片分布。经济利益驱动农民将水田转化为向水产养殖,引起植被退化。部分区域植被面积未减少而呈退化态势的原因有待研究。  相似文献   

20.
公路建设对区域的各种生态过程、灾害活动等影响引起广大学者的关注,目前对小尺度区域公路沿线景观格局的影响效应研究较少。利用3S技术对云南省昆明市东川区蒋家沟小流域内县乡级公路沿线三期影像的景观进行分类和制图,运用Fragstats3.3软件和景观指数计算方法,从斑块和景观两个层次上研究公路建设前后景观格局的变化。结果表明:(1)不同时期建设公路及全部公路沿线均出现坡耕地显著减少、梯田显著增加的趋势;在不同距离梯度上,针叶林、灌丛、坡耕地景观百分比不断降低,梯田、草地面积增加。(2)公路沿线景观格局动态变化则表现为:在斑块层次上,1973年前建设公路沿线景观形态更复杂,破碎化程度高,1973年后建设公路沿线阔叶林、针叶林斑块数量增加,破碎化趋势明显;在景观层次上,公路沿线景观多样性增加,景观内部连通性降低,整体景观格局破碎化加剧,但1973年前建设公路沿线空间连接性有所提升,1973年后建设公路沿线则表现出空间连接性下降的趋势,公路全线两侧150 m范围对景观水平指数的影响最大。  相似文献   

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