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1.
防止河道泥沙淤积的最小生态环境需水量   总被引:4,自引:0,他引:4  
刘凌  董增川  崔广柏 《湖泊科学》2003,15(4):313-318
水土流失问题是生态系统面临的重要问题. 对于多沙河道来说,必须维持一定的生态环境需水量用于输沙,以保证河道生态平衡. 本文以多沙河流为研究对象,以输沙动力学理论为基础,分析了河流输沙能力和水流挟沙能力,在此基础上提出了河道在不冲不淤的临界状态下河流最小流量的计算方法,此为防止河道泥沙淤积的最小生态环境需水量. 通过实际算例,本文还说明了所提出的计算方法的应用,以期为多沙河道水资源合理配置及生态平衡维护提供科学依据.  相似文献   

2.
太湖河湖水系连通需求评价初探   总被引:3,自引:2,他引:1  
水系连通需求分析是河湖水系连通战略研究的重要内容.水系连通需求指人类社会经济发展对水资源调配、防洪排涝、改善生态环境等方面的需求及对河湖水系健康的维护,它源于水系能够提供各种水生态系统服务功能的生态学特性.通过分析水系连通需求、水生态系统服务功能和水系连通工程之间的内在关系,认为水系连通需求评价可转化为对水生态系统服务功能的评价.运用水当量评价方法,建立了河湖水系连通需求评价的方法体系,并以河网地区的典型代表——太湖为例,定量评价了太湖在水资源调配、调蓄洪水、水环境净化和维持生境等方面的连通需求.结果表明,太湖水系年均连通需求最大的是净化入湖废污水需水量,其次为水资源调配需水量,而太湖调蓄洪水的需求减少;湖水自身净化需水量较大,且为一次性需水.水环境净化的需求需要通过降低污染物入湖量,进行湖泊生态修复等主要措施以及引清水增加环境容量这一辅助连通措施共同完成.水系连通需求的定量评价可为水系连通战略及工程的规划设计提供理论基础.  相似文献   

3.
格尔木河流域属干旱区,干旱的自然环境决定了水资源在促进社会经济发展和生态环境保护方面起着十分重要的作用,水资源既是社会经济发展必需的宝贵资源,也是维持绿洲生态环境的重要因素。因此,合理开发利用水资源,制定中、远期流域用水规划,调整农业种植结构,发展节水农业,加强水资源统一管理,提高工业水资源重复利用率,是格尔木河流域今后发展的主要方向。探索适合于流域水资源可持续开发利用模式,确保水资源长期可持续开发利用,对格尔木河流域的社会效益、经济效益和环境效益可持续发展具有重要意义。  相似文献   

4.
扎龙湿地生态系统需水量   总被引:5,自引:0,他引:5  
王建群  韩丽  马铁民 《湖泊科学》2006,18(2):115-119
对扎龙湿地生态系统需水量计算方法进行了研究,提出了适宜生态环境需水量和最小生态环境需水量计算方法; 对扎龙湿地湖泊水库、明水沼泽和芦苇沼泽面积上的生态环境需水量、扎龙湿地适宜生态环境需水量及最小生态环境需水量进行了计算和分析:1986-2002年扎龙自然保护区生态环境需水量的变化范围为5.22×108m3-5.92×108m3;扎龙湿地自然保护区的适宜生态环境需水量为5.55×108m3、保证率为75%的最小生态环境需水量为2.89×108m3,保证率为95%的最小生态环境需水量3.54×108m3.  相似文献   

5.
生态环境需水量评估方法与例证   总被引:13,自引:0,他引:13  
首先评价了生态环境需水量概念内涵, 包括概念的界定、生态环境水的组成结构和需水特点. 在此基础上, 提出了生态环境需水量分级和计算方法. 以黄淮海地区为研究实例, 估算了研究区生态环境现状用水量、最小需水量、适宜需水量, 并计算了相应的缺水量. 然后根据相关的规划, 对未来的水平年2010年, 2030年和2050年生态环境需水量进行了预测. 结果显示, 随着功能设定的不同, 水资源参照平台的差异, 最小和适宜生态环境需水量不同, 相应的缺水量也会产生差异. 研究表明, 黄淮海地区最小生态环境需水范围在2.84×1010~1.02×1011 m3, 适宜需水量范围在6.45×1010~1.78×1011 m3, 最小需水时的缺水量范围为9.1×109~2.16×1010 m3之间, 适宜需水时的缺水量范围为3.07×1010~7.53×1010 m3之间. 通过不同的缺水量数值, 可以安排配水的优先性. 三个预测年的生态环境需水量范围分别为4.49×1010~1.73×1011 m3, 5.99×1010~2.09×1011 m3和7.44×1010~2.52×1011 m3.  相似文献   

6.
鄱阳湖区水资源综合开发与治理   总被引:5,自引:1,他引:4  
以鄱阳湖区自然条件为基础,分析了湖区水资源开发利用现状,水体污染现状以及水旱灾害,并对湖区2000年与2010年的需水量及水质污染进行了预测,最后,对整个湖区水资源的综合开发治理作了较全面的规划。  相似文献   

7.
随着水资源短缺程度的加剧,可交易水权制度逐渐成为当今世界水资源管理制度发展的新方向.水资源初始产权是水资源管理的基础和前提.在干旱区内陆河流域,产权初始配置要在生态环境可持续的前提下,坚持公平、效益相结合的分配目标和配置原则.通过建立初始水权配置指标体系,对黑河流域进行实地问卷调查,在此基础上对用户调查结果进行专家判断修正,应用层次分析法研究了各分配指标的权重分布.以黑河流域张掖地区为例的界定结果表明,除上游的肃南县和山丹县外,其余各县市的实际用水量都超过了各自界定的初始水权,这种差别为水资源产权交易管理提供了现实依据,为开展流域上游的生态保护补偿提供了理论基础.  相似文献   

8.
《地球》2016,(11)
正每年9月的最后一个星期日,是世界河流日。这是世界上的河流保护先驱者们,为生命的起源——河流,专门设立的节日。2005年联合国启动了"生命之水"的十年项目,以让人们意识到需要更好地保护身边的水资源。在此之后,为了响应国际知名河流捍卫者马克·安杰罗发起的一项提议,世界河流日应运而生。世界河流日旨在强调河流的多重价值,努力增强公众保护河流的意识,并鼓励世界各地改进河流的管理方式。几乎每个国家的河流都面临着一系  相似文献   

9.
长江中游城市群是实施生态优先绿色发展战略的重点区域,从水资源承载系统内的水资源、社会、经济、生态环境4个子系统中选取24项指标构建水资源承载力评价体系,综合运用改进熵权TOPSIS模型、空间自相关分析和耦合协调发展模型定量评价2012-2018年长江中游城市群水资源承载力时空变化过程及子系统间的耦合协调性.结果表明,(1)长江中游城市群整体水资源承载力水平表现为:缓慢上升(2012-2015年)、下降(2015-2017年)、再上升的趋势(2017-2018年);(2)水资源承载力的空间差异不明显(仅2016年差异显著),武汉城市圈水资源承载力的空间差异相对较大且呈现低值包围高值的空间分布特征;(3)各城市生态环境子系统承载力得分较为均衡,但其他子系统的承载力均差异较大;(4)影响水资源承载力的主要因素依次为城市污水处理厂日处理能力、人均GDP、城镇化率、第三产业比重和人均水资源量;(5)长江中游城市群水资源承载系统的耦合协调度总体处于中等水平,且水资源承载力与耦合协调度有极强的正相关关系.研究结果可为长江中游城市群水资源承载力改善及水资源优化配置提供依据.  相似文献   

10.
李健  郭宏业  黄勇  王永贵 《高原地震》2006,18(3):58-64,68
根据柴达木盆地水资源的形成与分布,结合盆地水资源时空分布不均匀性,分析了盆地水资源开发利用现状,探讨了地表水、地下水开发利用模式,对盆地的生态环境现状和人类对水资源的开发利用不当而引起的一系列环境问题,提出了进一步加强对水资源的保护,调整农业种植结构,提高人们节约用水意识,加强对现有荒漠沙生植被的保护,科学合理利用有限的水资源,使人与自然和谐发展,促进盆地经济建设和生态环境可持续发展。  相似文献   

11.
Rapid urbanization coupled with increase in population growth rate in recent years has accelerated economic pressure on the ecological environment leading to a gradual deterioration of global and regional environment. This has particularly resulted into water contamination and shortage of water resources thus posing a great threat to human survival. How to guaranteeing sustainable use of basin water resources has attracted more and more attentions. The Heihe River Basin is the secondary longest river inland China and the significantly water source of Hexi Corridor, the problem of water pollution, ecological environment deterioration and the shortage of water has seriously threatened the ecological system of the Heihe River Basin. In this study, through depicting the characteristics of natural environment, human activities, water ecosystem services and other factors in Heihe River Basin we delineated the water ecological function in Heihe River using the principal components analysis and the K-means clustering method. In the study, Heihe River Basin is divided into 3 primary level areas and 8 secondary level sub-areas. Water ecological characteristics analysis showed that the spatial distribution of the water ecological function of Heihe River Basin was not uniform, which are mainly showed in three aspects, function of windproof and sand fixation, function of soil erosion prevention and function of water sources conservation. The results of this study can provide effective and scientific theoretical references for the integrated water sources management and the ecological function optimization of the Heihe River Basin.  相似文献   

12.
Instream flows are essential determinants of channel morphology, riparian and aquatic flora and fauna, water quality estuarine inflow and stream load transport. The ecological and environmental instream flow requirements (EEIFR) should be estimated to make the exploitation and utilization of water resources in a highly efficient and sustainable way and maintain the river ecosystem good health. As the largest tributary of the Yellow River, the Wei River is the ‘Mother River’ of Guanzhong region in Shaanxi province. It plays a great role in the development of West China and the health of the ecosystem of the Yellow River. The objective of this study is to estimate the EEIFR for improving the Wei River's ecological and environmental condition and develop the river healthily. Concerning the main ecological and environmental functions of the Wei River in Shaanxi Province, the EEIFR for each section of the Wei River including minimum instream flow requirements (IFR) for aquicolous biotopes maintenance, IFR for channel seepage, channel evaporation, stream self‐purification and sediment transportation were estimated in this paper. The methods to estimate the instream flow requirements for stream self‐purification and instream flow requirements for sediment transportation were proposed. The temporal scale of typical years include the year with the probability 25% of occurrence (high‐flow year), the year with the probability 50% (normal‐flow year) and the year with the probability 75% (low‐flow year). The results show that the EEIFR for the Wei River mainly include instream flow requirements for self‐purification and sediment transportation in each typical year. From high‐flow year to low‐flow year, the annual EEIFR for each reach decrease, except those for the reach from Linjiacun to Weijiabao, and from Linjiacun at the upper reaches to Huaxian at the lower reaches, and the annual reach EEIFR decrease in a sequence. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

13.
珠江干流梯级开发对鱼类的影响与减缓对策   总被引:1,自引:0,他引:1  
2013年6—7月对珠江龙滩库尾至长洲坝下江段干支流鱼类进行了调查,共采集到鱼类6418尾,隶属于10目23科82属122种.分析了渔获物的种类组成与分布、生态类型、珍稀濒危特有鱼类采样情况、各江段群落相似度和鱼类多样性等,并与该区域鱼类历史记录进行了对比分析.总体来看,珠江干流梯级开发后,由于大坝阻隔、水文情势改变等,鱼类资源发生了较大变化,河海洄游性鱼类和河口鱼类受大坝阻隔影响分布范围变窄;珍稀濒危特有鱼类由于生境破坏,种群规模变小,濒危程度加剧;库中江段流水性鱼类种类数和资源量显著下降,静缓流鱼类成为优势种;外来鱼类种类多、分布广.对导致珠江干流鱼类资源衰退的其他原因进行了分析,主要包括过度捕捞、生境破坏、水污染和外来鱼类入侵等.针对珠江干流梯级开发及鱼类资源现状,提出了栖息地保护、河流连通性恢复、鱼类增殖放流站建设、生态调度、渔政管理和生态补偿等措施建议.  相似文献   

14.
Environmental and ecological issues caused by water resources crisis have brought enormous challenges to the sustainable development of water-deficient area. Water resources allocation management balancing the relationship between the social-economic development and the ecological environment has become a hot topic in recent years. In this paper, an inexact fuzzy chance-constrained programming (IFCCP) approach is proposed for regional water resource allocation optimization with the aim of promoting the harmonious development of the social economic and the ecological environment, improving water utilization efficiency, and realizing water resources consumption control under uncertainties. The method is incorporated with interval parameter programming, fuzzy programming, and chance-constrained programming, for handling system uncertainties and balancing the optimal objectives with the risk of violating system constraints. Under this framework, an IFCCP model for water resources allocation management was successfully formulated and applied to a typical water-deficit area, Tianjin, China, for obtaining a better water resources plan among multiple users under resources and environmental limitation. Different total water consumption control policies are designed for assessing regional water allocation schemes. The results indicated that the gap of supply and demand will only be solved by foreign water, the transferred water from Luan River and Changjiang River would still be the main supplier in planning horizon. Moreover, the strict total water consumption control policy would guarantee the water requirement of ecological environment, lead to changes in the structure of water supply, actively guide on water conservation, and promote the large-scale utilization of desalted water and recycle water.  相似文献   

15.
本文以石羊河流域中下游为研究区,采用考虑生态系统恢复力(latitude of ecosystem resilience, LER)的月尺度生态需水评估方法计算1982-2020年植被月适宜生态需水量、最小生态需水量以及相应的生态缺水量,并与土壤水分特征值法(characteristic value of soil water, CVSW)进行比较,分析不同类型植被生长期的水分盈亏关系。结果表明:LER法和CVSW法计算结果相近,但LER法具有更大的生态需水阈值区间;天然降水基本可以满足植被的基本生存,但无法满足正常生长需求;LER法的适宜需水条件下,各植被生长期总体处于缺水状态,缺水严重程度排序为灌木林>其他林地>疏林地>高覆盖度草地>中覆盖度草地>有林地,全部植被生长期总适宜生态需水量为3.7×108 m3,亏缺水量为1.2×108 m3,同一植被亏缺水量基本符合春秋多、夏季少的规律;最小需水条件下,只有其他林地存在生长期缺水情况,全部植被生长期总最小生态需水量为0.8×108 m3;在缺乏土壤水分数据的干旱地区,LER法具有良好的适用性。研究结果可为石羊河流域水资源高效利用和干旱区生态系统的恢复与重建提供理论参考。  相似文献   

16.
A three-phase study was initiated as a way to promote Integrated Catchment Management approaches in the Limpopo River basin. This paper presents the situational assessment, which should enable De Beers to understand how their Venetia Mine operations are located within a broader and highly dynamic socio-economic and ecohydrological landscape as it pertains to water risks. The second phase, Risk assessment, aims to develop conservation interventions in the identified areas; the third phase will develop mechanisms for implementing water stewardship schemes to mitigate the shared water risks.Analysis of the social-ecological system (hydrological, climatic, ecological, socio-economic and governance systems) of the Limpopo River basin indicates that the institutional arrangement of the Limpopo River basin is neither simple nor effective. The basin is rapidly approaching closure in the sense that almost all of the available supplies of water have already been allocated to existing water users. If the proposed ecological flow requirements were to be met for all of the tributaries, the basin would be ‘closed’. On-going and projected land use changes and water resources developments in the upper reaches of the basin, coupled with projected rainfall reductions and temperature increases, and allocation of the flows for the ecological reserve, are likely to further reduce downstream river flows. The coupled increase in temperature and decrease in rainfall is of great concern for everyone in the basin, especially the poorer communities, who rely on rain-fed agriculture for their livelihoods. Increased temperatures also lead to increased evaporation from reservoirs and therefore result in a decrease in water availability. This will lead to increased abstraction of groundwater, especially from alluvial aquifers, and consequently an increase in river transmission losses and a decrease in river flows.  相似文献   

17.
中国水库生态学研究的回顾与展望   总被引:40,自引:7,他引:33  
韩博平 《湖泊科学》2010,22(2):151-160
水库是通过人工筑坝形成的水体,其早期功能主要是防洪、发电、灌溉和航运等,但随着全球水资源供需矛盾的加剧,水库供水成为缓解供水压力的最主要途径.水坝是人类影响地球表面水体最重要的工程建筑,筑坝修建水库利用水资源对全球水环境系统产生了巨大的影响.中国是水资源短缺的国家,水库供水在国民经济发展中发挥着重要作用,大量水库的建成也对我国水环境系统产生了多方面的影响.刘建康先生在1955年发表了我国水库生态学研究的第一篇论文,揭开了我国水库生态学研究的序幕.我国水库生态学大致分为三个阶段,1955-1975年的起步阶段、1976-2000年以水库渔业生产为目标的研究阶段和2001年至今以水库水质管理为目标的研究阶段.当前,水质、水质模拟、富营养化、环境容量和生态调度等已成水库生态学研究中的关键词.我国水库研究主要集中在珠江流域和长江流域,以大型供水水库为对象.在水利学科领域,有大量有关水库水文、水动力学和调度的研究论文,这些工作还未能被以生物和化学为研究基础的生态或环境科学的学者所重视.多数以水库为对象的生态学研究还没有很好地体现水库作为人工湖泊的特殊性.近10年来,中国水库生态学经历了从任务导向到学科导向的生态学研究过渡,有不断增加学科交流的趋势.有理由相信,作为水库大国,中国水库生态学和湖沼学今后将会有一很大的发展,并对我国淡水生态学和湖沼学作出重要的贡献.  相似文献   

18.
滇池新运粮河水质季节变化及河岸带生态修复的影响   总被引:3,自引:1,他引:2  
新运粮河作为一条重要的滇池入湖河流,其水质直接影响滇池的生态健康与环境安全.运用单因子水质标识指数法探讨新运粮河下游水质季节变化规律及影响因子,并分析河岸带修复方式(护岸改造)对河流水质的影响.结果表明:铵氮,总氮,总磷,化学需氧量随时间变化明显.在5-10月的雨季,各指标浓度呈下降趋势,11月至次年4月的旱季,降水量少,各指标浓度呈上升趋势,且显著高于雨季时浓度,监测河段全年水质为劣Ⅴ类.木桩护岸河段营养盐去除率明显高于直立混凝土堤岸河段的去除率,同一护岸类型河段夏季去除率显著高于冬季.  相似文献   

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