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1.
城市化水文效应研究进展   总被引:13,自引:1,他引:12  
受人类活动特别是城市化的影响,天然水文过程发生了显著变化。目前城市化的水文效应研究已经成为国际上的热点问题和前沿领域。文章回顾了国内外城市化过程所引起的水文效应研究现状,述评了现有研究方法和主要研究内容:①城市化对降水的影响具有地区差异和季节差异,其影响程度还存在争议,城市化降水效应机理有待研究;②城市化地区河网结构趋于简单,目前平原河网地区水系分级方法不明确;③不透水面变化改变长期径流量、水质以及暴雨洪水洪峰流量、洪峰过程,其定量关系的阈值需要确立;④变化下垫面条件下流域生态系统结构和功能,水文过程与生态过程耦合需要进一步研究。最后提出了存在问题和进一步研究的思路,以便作为城市水文学研究的参考。  相似文献   

2.
借助Mann-Kendall趋势检验和突变检验对气象水文序列进行一致性分析,划分基准期(1961—1979年)和影响期(① 1980—1989年、② 1990—1999年、③ 2000—2016年),利用基准期校准的可变下渗容量(VIC)模型,采用步进式方法,探究气候变化和人类活动对伊逊河流域径流变化的波动影响过程。结果表明:研究区近56年年均气温显著升高,年降水量无明显变化趋势,流域年径流量下降趋势明显,季节尺度上流域非汛期降水量增加显著。气候变化和人类活动均会对径流产生显著影响且作用机理复杂,步进式方法对影响机理的研究较传统方法更能体现其变化过程;在降水丰沛的影响 ② 期,冬季降水量增加会显著增加流域径流量,而在降水略少的影响 ① 期和 ③ 期,蒸发量增加以及土壤含水量降低使得流域径流减少;人类活动耗水在影响 ① 期和 ③ 期引起流域径流减少并且影响作用逐渐增强,影响 ② 期由于城镇化和耕地扩张使得流域产流能力增强导致径流增加。深入研究气候变化和人类活动对径流的影响机制,可为流域水资源管理和规划提供理论依据。  相似文献   

3.
This study uses an integrative approach to study the water-quality impacts of future global climate and land-use changes. In this study, changing land-use types was used as a mitigation strategy to reduce the adverse impacts of global climate change on water resources. The climate scenarios were based on projections made by the Intergovernmental Panel on Climate Change (IPCC) and the United Kingdom Hadley Centre's climate model (HadCM2). The Thornthwaite water-balance model was coupled with a land-use model (L-THIA) to investigate the hydrologic effects of future climate and land-use changes in the Ohio River Basin. The land-use model is based on the Soil Conservation Service's curve-number method. It uses the curve number, an index of land use and soil type, to calculate runoff volume and depth. The ArcView programming language, Avenue, was used to integrate the two models into a geographic information system (GIS). An output of the water-balance model, daily precipitation values adjusted for potential evapotranspiration, served as one of the inputs into the land-use model. Two watersheds were used in the present study: one containing the city of Cincinnati on the main stem of the Ohio River, and one containing the city of Columbus on a tributary of the Ohio River. These cities represent two major metropolitan areas in the Ohio River Basin with different land uses experiencing different rates of population growth. The projected hypothetical land-use changes were based on linear extrapolations of current population data. Results of the analyses indicate that conversion from agricultural land use to low-density residential land use may decrease the amount of surface runoff. The land-use practices which generate the least amount of runoff are forest, low-density residential, and agriculture; whereas high-density residential and commercial land-use types produce the highest runoff. The hydrologic soil type present was also an important factor in determining the amount of runoff and non-point-source pollution. A runoff-depth matrix and total nitrogen matrix were created for Cincinnati and Columbus to describe possible land-use mitigation measures in response to global climate change. The differences in Cincinnati and Columbus were due to differences in geographic location, air temperature, and total runoff. The results of this study may be useful to planners and policy makers for defining the possible impacts of future global climate and land-use changes on water resources.  相似文献   

4.
地表径流的变化受气候变化和人类活动的双重驱动力作用,定量评估气候变化及人类活动对地表径流变化的影响对水资源管理具有重大意义。论文以水文循环过程为主线,分过程阐述气候变化及人类活动影响地表径流发生变化的机制机理,对各种量化二者对地表径流变化贡献率的方法进行比较,然后分析全球部分流域气候变化和人类活动对地表径流变化影响的差异。研究结果表明:1)气候变化和人类活动参与水文循环的各个过程之中,不同水文过程中气候变化和人类活动影响地表径流变化的途径不同;2)不同量化方法的适用范围和条件不同,不同方法对同一流域的研究结果可能不一致;3)全球不同流域间气候变化和人类活动对地表径流变化贡献率存在明显区域差异。现阶段,综合多种突变检验方法有利于提高识别地表径流突变点的准确率;消除干扰因素(如气象水文等数据选取、模型方法参数设置和方法本身不确定性)有利于提高同一流域不同量化方法评估结果的一致性;如何更好地耦合基于物理的水文模型方法和基于数学的经验统计方法来量化二者对地表径流变化的贡献率是未来研究的重点。  相似文献   

5.
Adaptation to changing water resources in the Ganges basin, northern India   总被引:1,自引:0,他引:1  
An ensemble of regional climate model (RCM) runs from the EU HighNoon project are used to project future air temperatures and precipitation on a 25 km grid for the Ganges basin in northern India, with a view to assessing impact of climate change on water resources and determining what multi-sector adaptation measures and policies might be adopted at different spatial scales.The RCM results suggest an increase in mean annual temperature, averaged over the Ganges basin, in the range 1–4 °C over the period from 2000 to 2050, using the SRES A1B forcing scenario. Projections of precipitation indicate that natural variability dominates the climate change signal and there is considerable uncertainty concerning change in regional annual mean precipitation by 2050. The RCMs do suggest an increase in annual mean precipitation in this region to 2050, but lack significant trend. Glaciers in headwater tributary basins of the Ganges appear to be continuing to decline but it is not clear whether meltwater runoff continues to increase. The predicted changes in precipitation and temperature will probably not lead to significant increase in water availability to 2050, but the timing of runoff from snowmelt will likely occur earlier in spring and summer. Water availability is subject to decadal variability, with much uncertainty in the contribution from climate change.Although global social-economic scenarios show trends to urbanization, locally these trends are less evident and in some districts rural population is increasing. Falling groundwater levels in the Ganges plain may prevent expansion of irrigated areas for food supply. Changes in socio-economic development in combination with projected changes in timing of runoff outside the monsoon period will make difficult choices for water managers.Because of the uncertainty in future water availability trends, decreasing vulnerability by augmenting resilience is the preferred way to adapt to climate change. Adaptive policies are required to increase society's capacity to adapt to both anticipated and unanticipated conditions. Integrated solutions are needed, consistent at various spatial scales, to assure robust and sustainable future use of resources. For water resources this is at the river basin scale. At present adaptation measures in India are planned at national and state level, not taking into account the physical boundaries of water systems. To increase resilience adaptation plans should be made locally specific. However, as it is expected that the partitioning of water over the different sectors and regions will be the biggest constraint, a consistent water use plan at catchment and river basin scale may be the best solution. A policy enabling such river basin planning is essential.  相似文献   

6.
Unmitigated anthropogenic climate change is set to exacerbate current stresses on water resources management and creates the need to develop strategies to face climate change impacts on water resources, especially in the long term. Insufficient information on possible impacts on water availability limits the organization and promotion of efforts to adapt and improve the resilience and efficiency of water systems. To document the potential impacts of climate change in the region of Mendoza, Argentina, we perform a hydrological modeling of the Mendoza River watershed using a SWAT model and project climate change scenarios to observe hydrological changes. The results show the impact of higher temperature on glaciers as river flow increases due to glacier melting; at the same time, runoff decreases as precipitation is reduced. Furthermore, the runoff timing is shifted and an earlier melting becomes more important in more pronounced climate change scenarios. Scenarios show a reduction in water availability that ranges between 1 and 10%. An additional scenario under stronger climate change conditions without glaciers data shows a reduction of the river flow by up to 11.8%. This scenario would correspond to a future situation in which glaciers have completely melted. These situations would imply a reduction in the water availability and the possibility of future unsatisfied water uses, in particular for irrigation, which received most of the available water in Mendoza, on which agricultural activities and regional economy depends.  相似文献   

7.
土地利用/覆被变化的水文效应研究进展   总被引:35,自引:3,他引:32  
随着社会的不断进步和人口的迅速膨胀,土地利用/覆被变化对水文过程产生了重大影响,其研究已经成为国际热点问题和前沿领域。论文首先分析了LUCC水文效应的研究方法,然后从土地利用/覆被变化的驱动力方面:造林与毁林、城市化过程与农业开发活动以及水土保持等,概述了LUCC水文效应的研究进展。综合分析表明:关于城市化过程的水文影响研究,一般认为,在城市化快速发展的驱动下,不透水面积大量增加,改变了水量平衡状况,造成入渗减少,洪峰流量增大,但不同地区城市化发展程度的不同使得水文效应的表现也不相同;水土保持水文效应的研究一般认为,水土保持通过植树造林、种草、修建梯田、淤地坝等措施,使得区域/流域下垫面覆盖状况发生了很大的改变,造成年径流和洪峰流量减少,而使入渗和枯季径流增加,但因地理位置和气象条件等方面的差异,不同地区水土保持产生的水文影响也有所差别;造林与毁林、农业开发活动对水文过程的影响则因研究尺度、区域位置、气象条件、研究对象等因素的影响出现了较大的差异。因此,需考虑多方面因素的影响,正确评价土地利用/覆被变化的水文效应,为水土资源的合理配置和可持续利用提供科学依据。  相似文献   

8.
土地利用/覆盖变化对气候的反馈作用   总被引:40,自引:3,他引:40  
土地利用与土地覆盖的变化直接反映了引起全球变化的主导因子---人类活动,关于土地利用与土地覆盖变化的研究将有助于加深对全球变化与陆地生态系统相互作用的理解。文中基于地球表面的能量与水分平衡方程,从理论上探讨了土地利用和土地覆盖对于气候的反馈作用,研究表明:①植被对于降水的作用不大,植被的存在有助于减少径流,增加保水能力,对于全球气候变化有减缓作用;②植被对于气候变化的作用是增温还是降温须视具体地点的情况而定;③对于中纬度地区,当下垫面反射率的变化与径流量的变化满足以下关系时:Δf=5Δα×10g/cm·min下垫面变化对于地表温度无影响。这表明在制定全球变化对策时必须因地制宜。  相似文献   

9.
气候波动和人类活动对滦河流域径流变化的定量影响分析   总被引:2,自引:0,他引:2  
气候波动和人类活动对流域水文循环过程产生了重大的影响,定量评估它们的影响是水科学研究中的热点问题.论文以滦河流域为研究对象,利用基于SWAT水文模型的径流变化定量分离方法评估了气候波动、人类活动和土地利用变化三者分别对滦河流域径流变化的影响.结果表明:在1960—2010 年期间,滦河流域的径流深呈现显著的下降趋势.在变异Ⅰ期(1980—1994 年)和Ⅱ期(1995—2010 年)内,气候波动和人类活动对径流减少的影响量都在增加,且人类活动一直是径流减少的主要影响因素.土地利用对径流变化的影响,在变异Ⅰ期为负的影响,在变异Ⅱ期为正的影响.  相似文献   

10.
降水和人类活动对松花江径流量变化的贡献率   总被引:5,自引:1,他引:4  
为了估算自然因素和人类活动对松花江流域径流量变化的相对影响程度,采用累积距平、有序聚类等方法,对松花江干流6 个水文站1955-2010 年径流量序列进行了分析,揭示了径流量变化过程中各站都存在3 个突变点及被其分割的4 个变化阶段。应用累积量斜率变化率比较方法,在不考虑蒸散影响时定量估算了不同阶段降水和人类活动对径流量的贡献率。结果表明:与基准期相比,之后三个时期降水对径流量的贡献率约为26%~35%、0.1%~10%和25%~43%,而人类活动对径流量的贡献率分别约为65%~74%、90%~99.9%和57%~75%。可见人类活动是松花江流域径流量变化最主要的影响因素。虽然在国内大多数流域仍在增强,但在松花江流域自1999年以来已明显小于之前两个时期,却仍然高于降水量的影响程度。  相似文献   

11.
基于SWAT-WEAP联合模型的西辽河支流水资源脆弱性研究   总被引:2,自引:0,他引:2  
气候变化与人类活动对水循环及水资源安全的影响是近代水科学面临的主要科学问题。以西辽河支流老哈河流域为研究区,探索了一种水文模型耦合方法(SWAT-WEAP),以水短缺量为指标,同等考虑水资源供给端与需求端,对气候变化与不同人类利用情景下水资源系统脆弱性进行定量分析,结果表明:①暖干化气候情景比暖湿化气候情景明显加剧了老哈河流域水资源系统的脆弱性,降水减少10%导致的水短缺量比降水导致10%所缓解的短缺量要多31.17%;②气候变化对流域农业灌溉用水影响最大,对城乡生活用水和工业用水影响相对很小;③老哈河流域水资源系统脆弱性的主要驱动力之一源自农业不合理灌溉,发展畜牧业、 改变种植结构与高效节水灌溉是缓解水短缺、 降低水资源系统脆弱性最为有效的措施,也是应对气候变化最为有效的方式;④基于供水端的措施(如水库)在暖干化气候时由于水资源供给来源受限,其缓解作用有所减弱。  相似文献   

12.
北方干旱化和土地利用变化对泾河流域径流的影响   总被引:4,自引:0,他引:4  
论文以在黄土高原上发育,流经中国北方干旱、半干旱地区的黄河二级支流--泾河为研究对象,基于20世纪八九十年代的土地利用影像资料,以及泾河流域1970~2002年的气候、水文资料,采用美国农业部开发的分布式流域水文模型SWAT,分析了20世纪80~90年代泾河流域的降雨量和径流量的变化。从80到90年代,流域年降雨量呈逐年递减趋势,80年代多年平均月降雨量明显大于90年代多年平均月降雨量,尤其在7~9月,平均降雨量明显减少。受气候干旱化和土地利用/覆被变化的共同作用,80~90年代,流域多年平均年径流减少了8.92m3s-1。为了区分气候变化和土地利用变化对流域径流的影响,采取分别固定气候因子与土地利用/覆被变化因子的方法,将模拟情景输入模型,定量区分气候和土地利用/覆被变化对流域径流的影响方式和程度。结果表明,气候干旱化趋势使流域多年平均年径流减少28.08m3s-1,为气候、土地利用/覆被变化共同影响径流变化量的314.80%;土地利用/覆被变化使流域多年平均年径流增加26.57m3s-1,为气候、土地利用/覆被变化共同影响径流变化量的297.87%。  相似文献   

13.
西苕溪流域径流对土地利用变化的空间响应分析   总被引:4,自引:2,他引:2  
针对流域土地利用变化所引起的径流空间变异问题,论文以太湖上游西苕溪流域为例,基于SWAT模型(Soil and Water Assessment Tool)模拟的不同土地利用情景下月尺度径流过程,通过GWR模型(Geographically weighted regression)在空间上定量评估了土地利用/覆被变化对流域径流过程的影响。结果表明:径流变化在流域空间分布上存在一定非平稳性,其与子流域内面积变化较大的土地利用类型相关性显著,其中城镇用地影响最大,林草地和耕地影响次之。径流变化对城镇用地的空间响应关系表现为由上游到下游逐渐增强,而对林草地和耕地的响应关系表现为从流域上游到下游逐渐减弱。对比发现,多因子GWR模型相对于单因子GWR模型更适合综合分析径流对土地利用/覆被变化的空间响应关系。  相似文献   

14.
Agriculture consumes more than two-thirds of global fresh water out of which 90 % is used by developing countries. Freshwater consumption worldwide is expected to rise another 25 %by 2030 due to increase in population from 6.6 billion currently to about 8 billion by 2030 and over 9 billion by 2050. Worldwide climate change and variability are affecting water resources and agricultural production and in India Ganga Plain region is one of them. Hydroclimatic changes are very prominent in all the regions of Ganga Plain. Climate change and variability impacts are further drying the semi-arid areas and may cause serious problem of water and food scarcity for about 250 million people of the area. About 80 million ha out of total 141 million ha net cultivated area of India is rainfed, which contributes approximately 44 % of total food production has been severely affected by climate change. Further changing climatic conditions are causing prominent hydrological variations like change in drainage density, river morphology (tectonic control) & geometry, water quality and precipitation. Majority of the river channels seen today in the Ganga Plain has migrated from their historic positions. Large scale changes in land use and land cover pattern, cropping pattern, drainage pattern and over exploitation of water resources are modifying the hydrological cycle in Ganga basin. The frequency of floods and drought and its intensity has increased manifold. Ganga Plain rivers has changed their course with time and the regional hydrological conditions shows full control over the rates and processes by which environments geomorphically evolve. Approximately 47 % of total irrigated area of the country is located in Ganga Plain, which is severely affected by changing climatic conditions. In long run climate change will affect the quantity and quality of the crops and the crop yield is going to be down. This will increase the already high food inflation in the country. The warmer atmospheric temperatures and drought conditions will increase soil salinization, desertification and drying-up of aquifer, while flooding conditions will escalate soil erosion, soil degradation and sedimentation. The aim of this study is to understand the impact of different hydrological changes due to climatic conditions and come up with easily and economically feasible solutions effective in addressing the problem of water and food scarcity in future.  相似文献   

15.
气候变化对海河流域水资源的影响及其对策   总被引:8,自引:1,他引:7  
将全球气候模式与分布式水文模型WEP-L耦合,在国家气候中心整理提供的多模式平均数据集基础上,利用WEP-L模拟了海河流域历史30年(1961—1990年)和未来30年(2021—2050年)降水、蒸发、径流等主要水循环要素的变化规律,分析了气候变化对海河流域水资源的影响,结果表明,未来30年:①从年际变化规律看,气温普遍升高,降雨量略有增加,蒸发量普遍加大,径流量呈减少趋势,且有丰水年洪水规模更大、平水或枯水年干旱情况更严重的趋势;②从年内变化规律看,各月蒸发量普遍增加,汛期的降雨量有所减少,非汛期的降雨量有所增加,各月径流量则有不同程度的减少。因此,未来气候变化条件下海河流域水资源管理将面临更加严峻的挑战,本研究给出了一些基本的对策。  相似文献   

16.
全球增温1.5℃和2.0℃对淮河中上游径流影响预估   总被引:1,自引:0,他引:1  
论文应用第5次耦合模式比较计划(Coupled Model Intercomparison Project Phase 5,CMIP5)中5个全球气候模式(Global Climate Models,GCMs)和3种典型浓度路径(Representative Concentration Pathways,RCPs)在全球增温1.5℃和2.0℃下的预估结果,分析了淮河中上游地区未来的气候变化特征。进一步基于SWAT(Soil and Water Assessment Tool)水文模型定量预估了气候变化对该区域径流量的影响,并量化了预估结果的不确定性。结果表明:SWAT模型在淮河中上游对月径流量具有较好的模拟能力。在全球增温1.5℃和2.0℃下,淮河中上游年平均气温分别较基准期(1986—2005年)增加1.1℃和1.7℃;年降水量较基准期分别相应增加4%和7%;基于SWAT模型预估的年径流量较基准期分别增加5%和8%。未来气候变化不会改变月径流分布特征,年内径流仍集中在盛夏和初秋(6—9月)。预估的月丰水流量明显增加,尤其当全球增温达到2.0℃后,出现洪涝的风险明显增大。未来降水量和径流量预估都存在较大的不确定性,不确定性主要来源于GCMs,在全球增温2.0℃下预估的不确定性更大。  相似文献   

17.
潘莹  韩瑞  张银  张劲  易齐涛  李若男 《环境工程》2022,40(6):272-279
采煤区沉陷不仅会影响地表结构,还会显著改变流域水文循环,从而影响区域水资源供给。以淮南西淝河流域为研究对象,利用SWAT-FLUS集成模型模拟流域水文过程及未来情景。结果表明:1)该集成模型能准确模拟由土地利用变化带来的水文情势演变过程,并用于情景预测。2)对未来不同塌陷速率情景模拟结果显示,各情景下流域蒸散发均呈增加趋势,其中无修复模式主要为水面蒸散增加,2种修复模式主要为陆面蒸散增加;无修复模式增加了流域入渗量,2种修复模式则相反。3)从典型水文年内径流分布来看,无修复模式显著影响了地表径流的年内分布规律及径流峰值,普通修复及生态修复模式则无明显影响。4)从年际间水文变化来看,若无修复措施,流域内水文关系将在2020-2022年发生根本性转变;至2030年,地表径流将减少27.1%,普通修复模式下地表径流将减少2.5%,而生态修复可使流域地表径流增加4.4%。  相似文献   

18.
结合阿克苏河源流山区两气象站以及出山口两水文站近50 a的气象、 水文实测资料,运用非参数Mann-Kendall单调趋势检验、 突变检验、 方差分析外推、 R/S分析及周期性叠加趋势模型等方法,分析了阿克苏河源流区气候及径流变化的趋势和周期,并予以预测,探讨了气候变化对径流的影响量。结果表明:阿克苏河源流区气温、 降水量及径流量皆呈显著增加趋势,且分别在1989、 1985和1993年发生了显著的增多跃变;气候因子与径流量的Hurst指数均大于0.5,表明其未来仍将保持增加趋势,在2010-2016年径流量的相对最大值和最小值将分别为91.822×108 m3(2014年)和83.43×108 m3(2011年);阿克苏河径流量在整个时间序列存在25 a的准周期,但在突变前以17 a周期为主;气候变化使得阿克苏河源流在1994-2007年增加了224.97×108 m3的来水量,年增加量的最大、 最小值分别出现在2003年和2004年。  相似文献   

19.
In this paper, consideration has focused mainly on the extent and usefulness of the existing literature available so far on the understanding of the impact of climate change on water resources in Africa, focusing mainly on the Olifants River basin in South Africa. Here, the existing literature on the impact of climate change on the hydrological cycle (particularly the hydrological processes like temperature, precipitation and runoff) has been reviewed. The uncertainties, constraints and limitations in climate change research have been discussed at great length. A detailed discussion has been highlighted on the remaining knowledge gaps in climate change research, especially in Africa. In addition to the research gaps highlighted here, the emphasis on the need of climate change research by African scientists is included as part of lessons learnt. Overall, the importance of conducting further research in climate change, understanding the potential impact of climate change on our lives, and taking actions to effectively meet the adaptation needs of the people, emerge as an important theme in this review.  相似文献   

20.
气候变化和高强度人类活动改变了流域的自然水文循环过程,导致水文序列出现变异,严重影响了流域水文生态系统的稳定性.目前,基于水文变异条件下的河道内生态流量计算已成为当前变化环境下生态水文学研究的热点问题之一.以江西鄱阳湖西北部的潦河为例,采用水文时间序列变异检验方法分析径流变异性及成因,应用水文模型对水文变异后的径流进行还原,以Kolmogorov-Smirnov(K-S)、Anderson Darling(A-D)和概率点据相关系数(PPCC)3种检验法确定月径流的最优概率分布函数,进而提出水文变异条件下最适宜的潦河生态流量计算方法.结果表明:①潦河万家埠站径流在1972年发生水文变异,突变点后流域年径流增加了12%,降水量的增加和蒸发量的减少是其主要驱动要素.②采用分布式时变增益模型(DTVGM)对径流进行还原,率定期和验证期的相关系数和Nash-Sutchliffe效率系数均大于0.78,径流模拟值和实测值拟合程度较高,表明基于DTVGM进行径流还原是可行的.③基于还原后的径流,对5种概率分布函数进行拟合优度综合检验,确定逐月最优分布函数,并估算月河道生态流量.与Tennant法、最枯月平均流量法、7Q10法等方法比较,基于最优分布函数的生态流量结果更具确定性与合理性.在气候变化和人类活动引起径流变异的背景下,考虑水文变异的河道内生态需水计算方法能够更科学地体现水文变异对生态需水过程的影响,研究结果可为潦河流域水生态保护和水资源管理提供数据支撑,也可为变化环境下水资源规划和配置提供科学依据.   相似文献   

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