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661.
新疆博斯腾流域湿地遥感监测及时空变化过程   总被引:4,自引:0,他引:4  
博斯腾流域是新疆最大的湖泊湿地分布区。湿地作为干旱区的一种特殊景观类型,在流域生态环境和水循环中发挥了重要的作用,其产生和消失、扩大和萎缩对区域生态环境将产生重要的影响。以Landsat系列数据为主要数据源,完成了博斯腾流域的3期遥感制图(1990、2000、2010年),分析了博斯腾流域湿地分布现状,探讨了区域湿地的时空变化过程和动态变化特征。结果表明:新疆博斯腾流域的湿地面积总体上一直在萎缩,1990-2010年总面积减少了16.24%;但是减少趋势相对变缓,且不同类型的湿地变化过程有所不同。其中:1990-2000年河流湿地和湖泊湿地表现为增加趋势,芦苇沼泽湿地表现为减少趋势;2000-2010年河流湿地、芦苇沼泽和湖泊湿地面积都表现为萎缩。在变化动态特征上,流域河流、湖泊湿地最近20a呈现倒"V"型波动,而芦苇沼泽湿地则持续下降。通过湿地变化与区域生态环境因子耦合分析表明,在近期内人类活动是造成区域湿地萎缩的主要因素。  相似文献   
662.
黄河三角洲新生湿地土壤对营养成分和碳的扣留   总被引:1,自引:0,他引:1  
研究碳的扣留和埋藏速率对全球碳收支平衡预算有重要的意义。为了研究碳的年均扣留量,2007年5月,选择黄河三角洲新生湿地的3种植被,由建林乡附近至河口布设8个剖面,在枯水季节进行剖面原位取样以及含水量、有机碳、总碳和营养成分的实验室分析测试。同时利用黄河三角洲分流河道频繁改动过程中沉积间断所形成的古土壤层作为新生湿地的时间标计算沉积物的沉积速率,从而计算出碳的加积速率。结果表明:虽然湿地沉积物碳的浓度非常低,其总碳与有机碳的浓度分别为<2%和<1%,其土壤的碳氮比为50~53, 远高于稳定的湿地土壤同名组分值15~25,但由于研究区较高的沉积速率,其碳的加积速率与世界其它地区的盐沼湿地相当,总碳和有机碳的加积速率分是为594~1771g/(m2·a)和58~228g/(m2·a)。且前者受控于沉积物的沉积速率,与各营养成分总量的加积速率显著相关,而后者主要与有机碳浓度以及其它营养成分Mn、Cu、Zn和Fe等呈显著正相关。该湿地土壤的营养成分可作为湿地演化的端元成分。  相似文献   
663.
以1975年MSS,2000年ETM和2007年CBERS 02三期遥感数据为基础信息源,对塔里木盆地和准噶尔盆地湿地演化特征及主要驱动力进行了分析.结果表明:①32 a间,准噶尔盆地湿地面积增加了254.94 km2,塔里木盆地湿地面积减少了2 739.88 km2,沼泽湿地的严重退化引起了塔里木盆地湿地的锐减;②塔里木盆地湿地演化可分为破碎化和消亡2个发展阶段,湿地主导类型已由沼泽湿地转变为河流湿地,景观多样性指数与均匀度指数降低,说明湿地多样性减小;准噶尔盆地湿地景观多样性指数和均匀度指数持续增加,而优势度指数持续减小,说明湿地景观结构趋于均匀化;③塔里木盆地和准噶尔盆地年降水量和年均气温呈逐年上升趋势,增加量分别为0.59 mm/a和0.042℃/a,1.69 mm/a和0.047℃/a;准噶尔盆地湿地演化与气候变化密切相关;④1975-2000年和2000-2007年间,塔里木盆地因“围湿造田”直接丧失的湿地面积高达1 035.06 km2和1 030.30 km2,分别占2个时期湿地减少面积的81.74%和69.92%.人类活动是引起塔里木盆地湿地面积锐减的主要原因.  相似文献   
664.
The Soil and Water Assessment Tool (SWAT) is a physically‐based hydrologic model developed for agricultural watersheds, which has been infrequently validated for forested watersheds, particularly those with deep overwinter snow accumulation and abundant lakes and wetlands. The goal of this study was to determine the applicability of SWAT for modelling streamflow in two watersheds of the Ontonagon River basin of northern Michigan which differ in proportion of wetland and lake area. The forest‐dominated East Branch watershed contains 17% wetland and lake area, whereas the wetland/lake‐dominated Middle Branch watershed contains 26% wetland and lake area. The specific objectives were to: (1) calibrate and validate SWAT models for the East Branch and Middle Branch watersheds to simulate monthly stream flow, and (2) compare the effects of wetland and lake abundance on the magnitude and timing of streamflow. Model calibration and validation was satisfactory, as determined by deviation of discharge D and Nash and Sutcliffe coefficient values E that compared simulated monthly mean discharge versus measured monthly mean discharge. Streamflow simulation discrepancies occurred during summer and fall months and dry years. Several snow melting parameters were found to be critical for the SWAT simulation: TIMP (snow temperature lag factor) and SMFMX and SMFMN (melting factors). Snow melting parameters were not transferable between adjacent watersheds. Differences in seasonal pattern of long‐term monthly streamflow were found, with the forest‐dominated watershed having a higher peak flow during April but a lower flow during the remainder of the year in comparison to the wetland and lake‐dominated watershed. The results suggested that a greater proportion of wetland and lake area increases the capacity of a watershed to impound surface runoff and to delay storm and snow melting events. Representation of wetlands and lakes in a watershed model is required to simulate monthly stream flow in a wetland/lake‐dominated watershed. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   
665.
The glacially formed northeastern German lowlands are characterized by extensive floodplains, often interrupted by relatively steep moraine hills. The hydrological cycle of this area is governed by the tight interaction of surface water dynamics and the corresponding directly connected shallow groundwater aquifer. Runoff generation processes, as well as the extent and spatial distribution of the interaction between surface water and groundwater, are controlled by floodplain topography and by surface water dynamics. A modelling approach based on extensive experimental analyses is presented that describes the specific water balance of lowland areas, including the interactions of groundwater and surface water, as well as reflecting the important role of time‐variable shallow groundwater stages for runoff generation in floodplains. In the first part, experimental investigations of floodplain hydrological characteristics lead to a qualitative understanding of the water balance processes and to the development of a conceptual model of the water balance and groundwater dynamics of the study area. Thereby model requirements which allow for an adequate simulation of the floodplain hydrology, considering also interactions between groundwater and surface water have been characterized. Based on these analyses, the Integrated Modelling of Water Balance and Nutrient Dynamics (IWAN) approach has been developed. This consists of coupling the surface runoff generation and soil water routines of the deterministic, spatially distributed hydrological model WASIM‐ETH‐I with the three‐dimensional finite‐difference‐based numerical groundwater model MODFLOW and Processing MODFLOW. The model was applied successfully to a mesoscale subcatchment of the Havel River in northeast Germany. It was calibrated for two small catchments (1·4 and 25 km2), where the importance of the interaction processes between groundwater and surface waters and the sensitivity of several controlling parameters could be quantified. Validation results are satisfying for different years for the entire 198 km2 catchment. The model approach was further successfully tested for specific events. The experimental area is a typical example of a floodplain‐dominated landscape. It was demonstrated that the lateral flow processes and the interactions between groundwater and surface water have a major importance for the water balance and periodically superimposed on the vertical runoff generation. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
666.
森林湿地生态系统服务功能及价值评估研究综述   总被引:2,自引:2,他引:0  
森林湿地生态服务功能价值评估逐渐成为湿地科学前沿领域的热点话题。在介绍当前森林湿地生态系统定义和分布的基础上,综述了森林湿地主要生态服务功能的类型、机理和价值评估方法,旨在加强人们对森林湿地生态系统服务功能的认识,并为森林湿地的管理与保护提供科学支持。  相似文献   
667.
在全球气候变化的背景条件下,中国河口海湾生态系统的研究逐渐深入和系统化,研究热点开始关注国际公约中的重要生态敏感区,大大缩短了与国际学术界同类研究的差距。以长江口为例,由于河口海湾地区处于海洋、陆地和河流生态系统相互作用的界面上,具有开放度高、敏感度高、脆弱性高和稳定性低的"三高一低"特征。针对长江口大量滩涂栖息地被围垦和侵占的现状,提出了在长江口受损湿地构建人工替代栖息地进行人工优化的途径。中国河口海湾研究不仅需要开展国际、国内交流,还要广泛争取国际组织的资助和合作,探索跨学科、跨行业、跨地区参与动态保护管理和开发利用,使以长江三角洲为代表的中国滨海河口海湾三角洲地区的保护开发和资源利用实现可持续的生态文明。  相似文献   
668.
中国湿地变化的驱动力分析   总被引:2,自引:0,他引:2  
宫宁  牛振国  齐伟  张海英 《遥感学报》2016,20(2):172-183
在全球气候变化及中国社会经济迅速发展的背景下,为了解中国湿地分布的时空动态特征及演化规律,以4期(1978年、1990年、2000年、2008年)中国湿地遥感制图数据和3期(1990年、2000年、2005年)土地利用数据为基础,同时考虑到对湿地变化的影响程度和数据的可获取性,选取12个影响因子(平均温度、平均湿度、累计降水量、人口数量、地区生产总值、农林牧渔产值、耕地面积、粮食产量、有效灌溉面积、水库库容量、除涝面积、治碱面积)研究1978年—2008年这30年间中国湿地变化的驱动机制。考虑到地理现象的空间非平稳性,本文采用地理加权回归的方法分析驱动因子对湿地变化的影响作用。地理加权回归作为一种局部线性回归方法,能够直观地反映湿地驱动因子对湿地作用的地域差异。结果表明:不同类型的湿地变化的主要影响因素不同,内陆湿地与温度、降水以及农业耕作灌溉等密切相关;人工湿地与经济发展水平和水利设施兴建密切相关;滨海湿地与农林牧渔产业和人口等密切相关。同一类型湿地变化的主要影响因素随着时间推移也有所变化,并且影响程度在地域上也存在较为明显的南北和东西差异。本次研究结果基本反映了1978年—2008年中国湿地变化的特征规律。  相似文献   
669.
Spencer Gulf is a large (ca 22 000 km2), shallow (<60 m water depth) embayment with active heterozoan carbonate sedimentation. Gulf waters are metahaline (salinities 39 to 47‰) and warm‐temperate (ca 12 to ?28°C) with inverse estuarine circulation. The integrated approach of facies analysis paired with high‐resolution, monthly oceanographic data sets is used to pinpoint controls on sedimentation patterns with more confidence than heretofore possible for temperate systems. Biofragments – mainly bivalves, benthic foraminifera, bryozoans, coralline algae and echinoids – accumulate in five benthic environments: luxuriant seagrass meadows, patchy seagrass sand flats, rhodolith pavements, open gravel/sand plains and muddy seafloors. The biotic diversity of Spencer Gulf is remarkably high, considering the elevated seawater salinities. Echinoids and coralline algae (traditionally considered stenohaline organisms) are ubiquitous. Euphotic zone depth is interpreted as the primary control on environmental distribution, whereas seawater salinity, temperature, hydrodynamics and nutrient availability are viewed as secondary controls. Luxuriant seagrass meadows with carbonate muddy sands dominate brightly lit seafloors where waters have relatively low nutrient concentrations (ca 0 to 1 mg Chl‐a m?3). Low‐diversity bivalve‐dominated deposits occur in meadows with highest seawater salinities and temperatures (43 to 47‰, up to 28°C). Patchy seagrass sand flats cover less‐illuminated seafloors. Open gravel/sand plains contain coarse bivalve–bryozoan sediments, interpreted as subphotic deposits, in waters with near normal marine salinities and moderate trophic resources (0·5 to 1·6 mg Chl‐a m?3) to support diverse suspension feeders. Rhodolith pavements (coralline algal gravels) form where seagrass growth is arrested, either because of decreased water clarity due to elevated nutrients and associated phytoplankton growth (0·6 to 2 mg Chl‐a m?3), or bottom waters that are too energetic for seagrasses (currents up to 2 m sec?1). Muddy seafloors occur in low‐energy areas below the euphotic zone. The relationships between oceanographic influences and depositional patterns outlined in Spencer Gulf are valuable for environmental interpretations of other recent and ancient (particularly Neogene) high‐salinity and temperate carbonate systems worldwide.  相似文献   
670.
Framed into a robust stratigraphic context, multivariate analyses on the Holocene palaeobiological record (pollen, benthic foraminifers, ostracods) of the Po coastal plain (NE Italy) allowed the investigation of microtidal ecosystems variability and driving parameters along a 35-km-long land–sea transect. Millennial-scale ecosystem shifts are documented by coeval changes in the meiofauna, reflecting variations in organic matter–water depth (shallow-marine environments) and degree of confinement-salinity (back-barrier settings). In-phase shifts of vegetation communities track unsteady water-table levels and river dynamics in freshwater palustrine areas. Five environmental–ecological stages followed one another crossing four tipping points that mark changes in relative sea level (RSL), climate and/or fluvial regime. At the culmination of Mediterranean RSL rise, after the 8200 event, remarkable growth of peatlands took place in the Po estuary, while low accumulation rates typified the shelf. At the transgressive–regressive turnaround (~7000 cal a bp ), the estuary turned into a delta plain with tidally influenced interdistributary embayments. River flow regime oscillations after the Climate Optimum (post-5000 cal a bp ) favoured isolation of the bays and the development of brackish wetlands surrounded by wooded peatlands. The youngest threshold (~800 cal a bp ), which led to the establishment of the modern delta, reflects a major avulsion of the Po River.  相似文献   
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