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1.
随着西北旱区生态恢复工程的实施,该区生态环境持续改善,植被盖度不断增加。但植被冠层截留与蒸腾耗水加剧了包气带水分的亏空程度,减小了降雨对地下水的补给。采用原位试验方法,分析了植被覆盖区和裸土区不同深度土壤水势的变化规律。结果表明,受蒸发和蒸腾的共同作用,植被覆盖区平均土壤水势(-74k Pa)远低于裸土区(-16k Pa),且变化剧烈,土壤水以向上运动为主。而裸土区土壤水势高,变化小,40cm以下土壤水向下运移,因此可以持续补给地下水。采用Hydrus-1D软件进行了长序列土壤水数值模拟,定量分析了植被盖度增加与地下水补给的关系。数值模拟结果表明,在裸土条件下,降雨对地下水的补给量介于82~333mm/a之间,平均值为197mm/a,平均降水入渗补给系数为0.53。而在植被覆盖的情况下,地下水的补给量几乎为0。最后,从植被蒸腾耗水和冠层降水截留2个方面讨论了旱区植被盖度增加对降雨入渗补给地下水的影响,提出了旱区水与生态和谐发展的建议。  相似文献   

2.
地下水依赖型生态系统生态水文研究进展   总被引:3,自引:2,他引:1  
地下水依赖型生态系统(GDEs)中植被动态和土壤水盐平衡受地下水影响显著。从地下水与植被、土壤水、地表水和盐分动态关系、气候变化与人类干扰下的GDEs响应、GDEs模型与管理等方面综述了GDEs生态水文研究进展。指出在地下水环境变化后GDEs植被如何响应、GDEs功能是否发生突变、发生突变的生态阈值等是其可持续管理亟待回答的问题,其关键和难点是如何刻画地下水到地表土壤介质中的生态水文过程,加强相应的观测与模拟研究是未来的重要方向。此外,实现GDEs可持续管理还需要明确4个问题:(1)如何界定GDEs的范围,哪些物种和生境依靠地下水存在?(2)GDEs可持续发展需要何种地下水条件?(3)在社会资源有限的情况下如何管理地下水资源;(4)观测哪些生态参数来体现GDEs管理措施的有效性?  相似文献   

3.
从水资源管理角度,地下水蒸发量被认为是无效的。特别是在我国的干旱半干旱地区,它被认为是可以通过降低地下水位而节省出来的水资源量。本文将同位素技术和遥感技术相结合,建立了基于点和像素尺度的植被蒸腾量和NDVI之间的线性数学表达式,进而成功将区域蒸散量分离为区域植被蒸腾量和区域地下水蒸发量。根据分离结果,黑河流域地下水蒸发量较大的地段主要位于黑河干流中游以及东居延海,最大地下水蒸发量可达1000 mm/a。  相似文献   

4.
由于中国西北地区地表水资源有限,地下水则成为重要的备用水资源,而地表水和地下水转化过程及其耦合模拟是水资源开发利用和科学评价的基础,因此,为了准确反映塔里木河下游间歇性生态输水后地下水的动态变化,以塔里木河下游英苏断面为例,基于Boussinesq方程建立了改进的地下水动力学(GH-D2)模型,模拟了塔里木河下游绿色走廊典型断面地下水对全时段(2000-2015年)间歇性生态输水的响应过程。结果表明,尽管Boussinesq方程的GH解能较好地模拟地下水位的瞬态变化,但模拟地下水位多年变化的结果并不理想,而改进的GH-D2模型考虑了间歇性生态输水对地下水位变化的滞后效应,对长时间尺度地下水位变化的模拟具有较好的效果。与GH和GH-D1模型相比,GH-D2模型模拟的地下水位值更接近于观测值,这将对塔里木河下游实施科学合理的生态输水计划以及生态恢复和重建策略提供关键的技术支撑。  相似文献   

5.
张宏 《第四纪研究》1998,18(4):372-372
地带性植被净初级生产力(NPP)的形成除受自身的生物生态学特性制约外,主要决定于环境中热量和水分状况的分配及组合。随着全球变化与陆地生态系统研究的开展,以模型为主要手段预测植被生产力对气候变化响应的研究逐步深入,相继提出了一些利用气候指标或指数估算植被净初级生产力的模型,如Miami模型、Chikugo模型和北京模型等。但利用上述模型无法估算盐化草甸植被等非地带性植被的NPP,因为它们的形成不依赖于大气降水,而主要依靠地下水。由于土壤蒸发能综合反映土壤的水热状况,与NPP的形成关系密切。因此,作者利用以阿维扬诺夫公式计算所得的不同地下水埋深的潜水蒸发与实测的盐化草甸植被净初级生产力数据,拟合了  相似文献   

6.
太行山山前平原地下水补给规律分析:以河北栾城为例   总被引:2,自引:0,他引:2  
采用水均衡法与通量法对太行山山前平原(河北栾城)进行了地下水补给评价,结果表明:近20 a地下水入渗补给量为8~172mm/a(水均衡法),平均值49.3 mm/a,变化幅度大.其中2004年入渗补给量(63mm/a)比采用通量法计算结果(28.2mm/a)大一倍,表明土壤优先流对入渗补给作用显著.年入渗补给量总体上随有效降雨量增加、地下水位下降速率减少、作物实际蒸发蒸腾量减少而增加,但与有效灌溉量和灌溉量之和的相关性不显著.通过长序列地下水位与灌溉量等数据估算得到研究区侧向净补给量为125.2 mm/a,约占地下水总补给量的71.7%(175.4 mm/a),说明地下水主要以侧向补给为主.同时计算了入渗补给与侧向补给地下水的延迟时间,分别为60 a和1个月.  相似文献   

7.
非饱和土本构模型在预测地表沉降中的应用   总被引:1,自引:0,他引:1  
汪东林  栾茂田  杨庆 《岩土力学》2008,29(12):3311-3317
地下水位降低将导致非饱和土体中净平均应力和基质吸力发生变化,从而引起土体体积变化。利用GDS非饱和土三轴仪,研究了重塑非饱和黏土在干燥过程中试样含水率变化和总体积变化。针对某一典型基坑,运用大型有限元软件ABAQUS模拟了井点降水而形成的二维饱和-非饱和稳态渗流。饱和土区域和非饱和土区域沉降变形有着本质的区别,基于试验和数值模拟结果,根据Fredlund非饱和土弹性体变本构模型和饱和土有效应力原理,分别估算了饱和土区和非饱和土区沉降变形量。结果表明,在总沉降量中非饱和土区的沉降量是不可忽略的。随着降水深度的增大,非饱和土区域沉降量在总沉降量中所占比例将逐渐增大。  相似文献   

8.
灌溉的地下水系统响应是黑方台地区灌溉诱发地质灾害研究的基础.黑方台台塬自上而下由黄土、砂砾石和基岩3个含水岩组构成.以对斜坡稳定性影响最大的黄土含水系统为研究对象,分析了灌溉前后水均衡变化,采用数值模拟的方法恢复了引水灌溉引起的地下水流系统演化过程,对不同灌溉量下地下水流系统发展趋势进行了预测.结果表明,黑方台地区长期大量引水灌溉打破了地下水均衡,改变了地下水系统的天然状态,使地下水的分布及其水流系统发生了很大变化,中心部位地下水位44年间上升了至少20m,减少灌溉量至350× 104m3/a地下水位将呈下降趋势.研究成果可为黑方台滑坡地质灾害综合治理提供科学依据.  相似文献   

9.
蒸发是重要的水循环过程,在野外试验和室内分析的基础上,建立了黄河三角洲地下水浅埋区观测试验场土壤水分运移数值模拟模型,模型中对上边界条件处理采用了考虑气象因素、地表覆盖条件和表层土壤含水量的Penman Wilson公式。利用模型对试验点1999年、2000年、2002年的蒸发量进行了数值模拟计算,计算并分析了裸地、棉花地、芦苇地不同地表植被条件下,地表蒸发量(包括棵间裸地蒸发量和植物蒸腾量)的变化规律。从时间上看,黄河三角洲7、8月是蒸发量较高的时期, 1、2月是蒸发量最低时期,一般日蒸发量在0~8 mm/d。影响地面蒸发的主要因素除气象因素外,还有植被类型和覆盖程度、地下水位埋深等因素。植被覆盖程度越高、地下水位埋深越浅,则蒸发量越大,从而导致裸地蒸发量相对较小,农田年蒸发量稍大,而芦苇地蒸发量最大。研究表明,土壤水分运移模型是估算各种复杂条件下蒸发量的有效工具。  相似文献   

10.
新疆焉耆盆地绿洲水盐双梯度下天然植被多样性分异特征   总被引:2,自引:1,他引:1  
通过对焉耆盆地河畔带、荒漠带、湖畔带土壤水盐及地下水位和天然植被关系的分析,研究了干旱绿洲水盐过程与分异天然植被生长和绿洲生态的影响.结果表明:绿洲天然植被生物多样性取决水盐双梯度影响,盐分不断向湖畔积聚是引起焉耆盆地湖畔生态系统生境恶化的主导因子.绿洲内部河畔带物种多样性与地下水埋深关系表明,在埋深1.5m区域,随着地下水埋深的加大,物种多样性减少;在埋深1.5~3m区域内,随着地下水埋深加大,其物种多样性在增加;而当埋深在3~4m之间时,随着地下水埋深的加大,植物多样性呈明显减少趋势;而在埋深4m区域内,多样性指数波动不大.调查表明,随着埋深的变化,地表的天然植被草本、灌木、乔木也呈现明显的分异,地下水水盐条件制约植被分布、生存和演替,各种植被类型适应不同的地下水位和盐分特征.  相似文献   

11.
陈伟涛  孙自永  王焰新  马瑞 《地球科学》2014,39(9):1340-1348
地下水资源在内陆干旱区具有重要的植被生态功能, 依赖地下水的植被生态系统的需水量是目前流域水资源综合管理的重要组成部分.在分析地下水资源生态功能研究进展的同时, 系统阐述了内陆干旱区依赖地下水的植被生态需水量研究的几个关键科学问题: ①依赖地下水的植被生态系统的识别方法; ②地下水对植被生态系统作用机制的分析; ③地下水关键属性安全界限的确定; ④地下水系统结构分析; ⑤生态用水配置方案的确定; ⑥区域尺度地下水-天然植被系统关系的概念模型.并逐一提出了这些问题的解决方案, 能够为干旱区植被生态系统保护和恢复提供思路, 也能够为水资源开发利用与以植被生态系统保护为中心的干旱区生态文明建设提供地学支撑.   相似文献   

12.
以生态输水为代表的湿地修复工程在西北内陆流域得到了广泛应用,生态输水情形下地下水与湿地植被的交互作用决定着湿地生态系统的演化过程。以西北典型内陆流域—石羊河流域青土湖湿地为研究区,基于地下水-湿地生态系统多要素一体化动态监测网络,结合稳定同位素和卫星遥感技术手段,分析生态输水情形下的地下水动态变化与湿地植被恢复情况,从...  相似文献   

13.
Identification and quantification of groundwater and surface-water interactions provide important scientific insights for managing groundwater and surface-water conjunctively. This is especially relevant in semi-arid areas where groundwater is often the main source to feed river discharge and to maintain groundwater dependent ecosystems. Multiple field measurements were taken in the semi-arid Bulang sub-catchment, part of the Hailiutu River basin in northwest China, to identify and quantify groundwater and surface-water interactions. Measurements of groundwater levels and stream stages for a 1-year investigation period indicate continuous groundwater discharge to the river. Temperature measurements of stream water, streambed deposits at different depths, and groundwater confirm the upward flow of groundwater to the stream during all seasons. Results of a tracer-based hydrograph separation exercise reveal that, even during heavy rainfall events, groundwater contributes much more to the increased stream discharge than direct surface runoff. Spatially distributed groundwater seepage along the stream was estimated using mass balance equations with electrical conductivity measurements during a constant salt injection experiment. Calculated groundwater seepage rates showed surprisingly large spatial variations for a relatively homogeneous sandy aquifer.  相似文献   

14.
Healthy aquifers deliver important ecosystem services, e.g. the purification of infiltrating water and the storage of high-quality water over decades in significant quantities. The functioning of terrestrial and surface aquatic ecosystems directly depends on groundwater and vice versa. Nowadays, legislation has started to consider groundwater not only as a resource but as a living ecosystem. The assessment of ecosystems requires consideration of ecological criteria, which, so far, are not available for groundwater systems. In the framework of a project supported by the German Federal Environment Agency (UBA), a first concept for the ecological assessment of groundwater ecosystems is developed. Steps to be taken are introduced, with a strong focus on microbes as potential bioindicators. These include (1) the typology of groundwater ecosystems, (2) the derivation of natural background values, (3) the identification of potential bioindicators, and (4) the development of an assessment model. First successes and difficulties associated with these challenges, e.g. the lack of simple correlations between abiotic and biotic variables, are discussed on the basis of a data set from a local and regional aquifer in NE Germany. The need for collaboration between ecologists, hydrogeologists and geochemists, as well as the application of modern approaches such as multivariate statistics, is emphasized.  相似文献   

15.
The Portuguese National Ecological Reserve (NER) was created in 1983, with the aim of preserving, in certain areas, the biophysical structure necessary to maintain exploitation of natural resources and land use without jeopardizing their sustainability. For the first time, issues related to groundwater resources were addressed. Since then, this legal tool has been revised for a better integration of the new national and European legislation and new scientific and technical knowledge. In the latest NER, the concept of “strategic areas of protection and aquifer recharge (SAPAR)” was created, being now necessary to define which are the methodologies and criteria to be applied for its delimitation. This paper summarizes the strategic guidelines that were established from debates held in several meetings with land-use planners, water resources managers, specialists and other stakeholders concerning the development of harmonized definitions and criteria of NER. As a result of those contributions a report was elaborated where guidelines and criteria for the NER delimitation were defined at national level, in accordance with national legislation and other relevant sector plans. In this work, the articulation and integration of SAPAR-protected areas in Portuguese Water Act and the expected difficulties of its application at operative level are evaluated since the SAPAR are important for the control of urban sprawl and therefore to preserve groundwater resources and dependent ecosystems. A brief explanation about the Portuguese main hydrogeological features is given for a better understanding of the groundwater resources and dependent ecosystems. Finally, the key guidelines for a good NER delimitation are compiled.  相似文献   

16.
Spheres of discharge of springs   总被引:3,自引:0,他引:3  
Although springs have been recognized as important, rare, and globally threatened ecosystems, there is as yet no consistent and comprehensive classification system or common lexicon for springs. In this paper, 12 spheres of discharge of springs are defined, sketched, displayed with photographs, and described relative to their hydrogeology of occurrence, and the microhabitats and ecosystems they support. A few of the spheres of discharge have been previously recognized and used by hydrogeologists for over 80 years, but others have only recently been defined geomorphologically. A comparison of these spheres of discharge to classification systems for wetlands, groundwater dependent ecosystems, karst hydrogeology, running waters, and other systems is provided. With a common lexicon for springs, hydrogeologists can provide more consistent guidance for springs ecosystem conservation, management, and restoration. As additional comprehensive inventories of the physical, biological, and cultural characteristics are conducted and analyzed, it will eventually be possible to associate spheres of discharge with discrete vegetation and aquatic invertebrate assemblages, and better understand the habitat requirements of rare or unique springs species. Given the elevated productivity and biodiversity of springs, and their highly threatened status, identification of geomorphic similarities among spring types is essential for conservation of these important ecosystems.  相似文献   

17.
A proposal for an extended typology of groundwater habitats   总被引:1,自引:1,他引:0  
Many governments now require the ecological condition of groundwater ecosystems to be considered when making policy decisions. However, groundwater habitats and communities occur at different spatial scales to those at which aquifers are managed, making their inclusion in policy decisions difficult. A system of classifying groundwater ecosystems is needed to aid this, yet such a typology is currently not available. Here, a hierarchical model for a typology of groundwater habitats is suggested, which considers three spatial scales: macro, meso, and local. On a macroscale, communities are influenced by biogeographic characteristics; at a mesoscale they are influenced by the hydrogeological type of the aquifer; and on local scale by the hydrological exchange with surface water and hence the oxygen and nutrient supply. Consequently, groundwater habitats are assumed to be defined by biogeographic particularities, the hydrogeological aquifer type and by localized hydrological exchange with surface water. By adopting a ‘groundwater habitat typology’, groundwater biologists may be able to work with hydrogeologists to assist in the sustainable management of groundwater by predicting groundwater biodiversity and the distribution of important or endangered species. The typology proposed here is a first step towards achieving this goal.  相似文献   

18.
The protection of groundwater dependent ecosystems in Otago, New Zealand   总被引:1,自引:0,他引:1  
Surface waters (streams, rivers, and wetlands) are the most important groundwater dependent ecosystems (GDEs) in Otago, New Zealand. Pumping wells in the vicinity can deplete water in the GDE. In Otago, most of the surface water resources are allocated and a method, which would assist in the implementation of water management policy, is needed to acknowledge the strong hydraulic link between surface and shallow groundwater. A simplified method has been developed which derives a numerical relationship between the bore pumping rate and the distance between the bore and surface water body beyond which depletion is considered insignificant. A range of GDE depletion scenarios are examined at various combinations of hydraulic parameters to find a minimum distance for a given pumping rate, at which 90% of the modelled surface water depletion scenarios become less than a threshold GDE depletion after a specified time. A buffer zone, based on the minimum distance is placed around GDEs, and groundwater abstraction rights within the buffer are subject to stricter rules. Applicants wishing to abstract from bores within the buffer zone will need to address the environmental impact of the proposed activity on the GDE.  相似文献   

19.
陶正平  黄金廷  崔旭东 《地下水》2007,29(6):54-55,68
风积沙覆基岩型包气带结构在鄂尔多斯盆地北部分布面积最广.在其结构及其属性特征分析基础上,重点解析了结构内垂向上土壤水分的富集规律;以沙蒿为例,对喜沙耐旱植被的生长与风积沙厚度、地下水水位埋深间的关系进行了探讨.认识到风积沙覆基岩型包气带结构有利于土壤水富集,是鄂尔多斯盆地北部沙蒿、沙柳等耐旱喜沙植被分布与生长的决定性因素,对维系盆地北部生态系统有重要作用;而地下水位埋深与沙蒿等耐旱植被生长间的关系并不密切.在进行盆地北部地下水资源评价及开发方案制定过程中,应对风积沙覆基岩型包气带的生态意义给予重视.  相似文献   

20.
With an arid climate and shortage of water resources, the groundwater dependent ecosystems in the oasis–desert ecotone of the Shiyang River Watershed has been extremely damaged, and the water crisis in the oasis has become a major concern in the social and the scientific community. In this study, the degeneration characteristics of the groundwater ecological function was identified and comprehensive evaluated, based on groundwater depth data, vegetation quadrat and normalized difference vegetation index (NDVI) from Landsat program. The results showed that (1) the suitable groundwater depth for sustainable ecology in the Shiyang River Watershed is about 2-4 m; (2) the terms of degenerative, qualitative and disastrous stages of the groundwater ecological function are defined with the groundwater depths of about 5 m, 7 m and 10 m; (3) generally, the groundwater ecological function in the oasis-desert ecotone of the lower reaches of Shiyang River Watershed is weak with an area of 1 397.9 km2 identified as the severe deterioration region, which accounted 74.7% of the total area. In the meantime, the percentages of the good, mild and moderate deterioration areas of groundwater ecological function are 3.5%, 5.5% and 16.3%, respectively, which were mainly distributed in the Qingtu lake area and the southeastern area of the Shoucheng town; (4) the degradation and shrinkage of natural oasis could be attributed to the dramatic groundwater decline, which is generally caused by irrational use of water and soil resources. This study could provide theoretical basis and scientific support for the decision-making in environmental management and ecological restoration of the Shiyang River Watershed.  相似文献   

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