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1.
泾河流域上游景观尺度植被类型对水文过程的影响   总被引:1,自引:1,他引:0  
选择具有土石山区的泾河流域上游为研究对象,应用生态水文模型SWIM对上游景观尺度下各植被类型水文效应进行了模拟,并针对上游土石山区和黄土区分海拔段进行了植被分布的水文格局影响分析。结果表明:泾河流域上游的森林、农田、草地各植被类型的蒸散及组分、径流深和土壤深层渗漏各水文过程具有显著差异,不同区域(土石山区和黄土区)的同一植被类型的各水文过程明显不同;同时,植被景观格局存在区域和海拔差异,这使得不同区域和海拔段的各水文过程有所不同。如在土石山区,以森林为主的海拔段2 250-2 922 m降水量和蒸散量均最大(分别为641 mm和484 mm),以农田、草地和森林均有分布的海拔段1 750-2 250 m降水量较大(590 mm),但蒸散量最低(仅为434 mm);而在较为干旱的黄土区(降水量为514 mm)以农田和草地为主两个海拔段(1 026-1 350 m和1 350-1 750 m)的蒸散量较高(分别为458 mm和440 mm)。另外,从各水文过程要素与降水的比值看,两个区域之间差异比较明显,但同一区域不同海拔段间差异不明显。  相似文献   

2.
水文要素与高程的关系   总被引:2,自引:0,他引:2  
金栋梁 《地理研究》1987,6(2):40-47
本文阐明水文要素的垂直变化按不同的尺度范围而各有其规律,并指出这些规律的应用。  相似文献   

3.
 在分布式水文模型中,探索产生分布式降水数据的方法是该领域研究的热点之一,发展基于水文物理过程的模型校准方法是实践PUB的热点与难点。基于SWAT分布式水文模型,以资料稀缺的伊犁河上游为研究区域,针对流域的水资源评价关键问题,首先准确描述区域的降水空间分布特征,并基于流域水文过程采用综合流域特征、多时间尺度、多变量和多站点的适宜性模型校准新方法,取得了满意的模拟结果,表明模型较好地再现了流域的水文过程。另外,完善水文机理研究,提高降水及下垫面相关参数的观测水平是改善模型模拟的有效途径。  相似文献   

4.
土地覆盖与气候变化对黄河源区径流的影响   总被引:1,自引:1,他引:0  
After dividing the source regions of the Yellow River into 38 sub-basins, the paper made use of the SWAT model to simulate streamflow with validation and calibration of the observed yearly and monthly runoff data from the Tangnag hydrological station, and simulation results are satisfactory.Five land-cover scenario models and 24 sets of temperature and precipitation combinations were established to simulate annual runoff and runoff depth under different scenarios. The simulation shows that with the increasing of vegetation coverage annual runoff increases and evapotranspiration decreases in the basin. When temperature decreases by 2℃ and precipitation increases by 20%,catchment runoff will increase by 39.69%, which is the largest situation among all scenarios.  相似文献   

5.
在西北荒漠-绿洲生态系统中,山区水循环对下游水资源管理具有重要作用。为了准确地理解高寒山区水文过程,以降水、温度和潜在蒸散发的遥感数据为模型输入,建立叶尔羌河流域的MIKE SHE模型。根据模型输出,从径流、积雪和蒸散发三方面探讨了流域的水文过程。结果表明:经校正后的遥感产品在叶尔羌河流域的水文模拟中取得了良好的应用效果,出山口卡群站日径流的效率系数达0.71,相关系数达0.85。河道的年平均径流深为146.66 mm,其中稳定的基流补给占21.3%。流域的年平均降雪231 mm,占总降水的74%左右;73.9%的融雪发生在7-9月,积雪主要分布于5000 m以上区域。蒸散发以7-9月中低山区植被覆盖良好的针叶林和草地为主。选用合适的方法对遥感数据进行验证和率定,有助于提高对资料缺失的高寒山区流域水文过程的认识。对不同水文要素进行分析验证,可更准确地理解水资源的转化、储存方式及其时空分布,以便为下游水资源管理提供依据。  相似文献   

6.
After dividing the source regions of the Yellow River into 38 sub-basins, the paper made use of the SWAT model to simulate streamflow with validation and calibration of the observed yearly and monthly runoff data from the Tangnag hydrological station, and simulation results are satisfactory. Five land-cover scenario models and 24 sets of temperature and precipitation combinations were established to simulate annual runoff and runoff depth under different scenarios. The simulation shows that with the increasing of vegetation coverage annual runoff increases and evapotranspiration decreases in the basin. When temperature decreases by 2oC and precipitation increases by 20%, catchment runoff will increase by 39.69%, which is the largest situation among all scenarios.  相似文献   

7.
Kelan River is a branch of the Ertix River, originating in the Altay Mountains in Xinjiang, northwestern China. The upper streams of the Kelan River are located on the southern slope of the Altay Mountains; they arise from small glacial lakes at an elevation of more than 2,500 m. The total water-collection area of the studied basin, from 988 to 3,480 m, is about 1,655 km2. Almost 95 percent of the basin area is covered with snow in winter. The westerly air masses deplete nearly all the moisture that comes in the form of snow during the winter months in the upper and middle reaches of the basin. That annual flow from the basin is about 382 mm, about 45 percent of which is contributed by snowmelt. The mean annual precipitation in the basin is about 620 mm, which is primarily concentrated in the upper and middle basin. The Kelan River system could be vulnerable to climate change because of substantial contribution from snowmelt runoff. The hydrological system could be altered significantly because of a warming of the climate. The impact of climate change on the hydrological cycle and events would pose an additional threat to the Altay region. The Kelan River, a typical snow-dominated watershed, has more area at higher elevations and accumulates snow during the winter. The peak flow occurs as a result of snow-melting during the late spring or early summer. Stream flow varies strongly throughout the year because of seasonal cycles of precipitation, snowpack, temperature, and groundwater. Changes in the temperature and precipitation affect the timing and volume of stream-flow. The stream-flow consists of contributions from meltwater of snow and ice and from runoff of rainfall. Therefore, it has low flow in winter, high flow during the spring and early summer as the snowpack melts, and less flows during the late summer. Because of the warming of the current climate change, hydrology processes of the Kelan River have undergone marked changes, as evidenced by the shift of the maximum flood peak discharge from May to June  相似文献   

8.
Runoff and precipitation scaling with respect to drainage area is analyzed for large river basins of the world, those with mean annual runoff in excess of 10 k3/yr. The usefulness of the specific runoff (runoff per unit drainage area, m/yr) to categorize runoff scaling laws across the complete spectrum of climatic and hydrologic conditions is evaluated. It is found that (1) runoff scales with drainage are in those river basins with specific runoff in excess of 0.15 m/yr (r2 = 0.88); (2) runoff scaling with drainage area shows remarkably high statistical correlation (r2= 0.97) in river basins with specific runoff equal to or larger than 1.0 m/yr; (3) runoff does not Inc.rease with Inc.reasing drainage area in river basins with specific runoff below 0.15 m/yr, where no discernible statistical association was found between runoff and drainage area; and (4) precipitation depth (m/yr) is inversely proportional to drainage area raised to a fractional exponent in river basins with specific runoff in excess of 0.15 m/yr.  相似文献   

9.
选取开都河与乌鲁木齐河山区流域为研究区域,利用有关水文气象台站1960-2005年的观测资料,对研究区域的气温、降水与出山径流的变化特征及趋势进行了分析,并根据研究区域气候变化的特征与趋势及出山径流与山区降水、气温之间的关系,假定不同的气候情景组合,建立山区径流对气候变化的响应模型,以揭示天山南、北坡河流出山径流对气候变化的响应及其差异.结果表明,开都河与乌鲁木齐河山区径流与气温、降水量均呈正相关关系,受山区降水、气温持续增加和上升的影响,出山径流总体呈上升趋势,1990年代以后的升幅尤为显著;相对而言,乌鲁木齐河山区径流对降水变化更为敏感,而开都河出山径流对气温变化的敏感性略甚于气温.  相似文献   

10.
未来气候变化对淮河流域径流深的影响   总被引:19,自引:2,他引:17  
本文运用多元回归方法,建立有关气候-径流深的数学模型,并用该模型预测在未来气候变化的15种可能情景下淮河三个代表子流域径流深的变化。结果表明:年径流深随年降水量的增加而增加,随年均温度的升高而减少;不同流域对各种气候变化的响应存在着明显的差异,反映出整个淮河流域不同自然地理条件的影响;不同季节的径流深对各种气候变化的响应也存在明显的差异,体现了季风气候对径流的影响。文章还特别关注了暖干天气组合下径流深的变化,提出这种极端气候情景对工农业生产和国民经济建设有着严重的负面影响  相似文献   

11.
阿克苏河流域气候变化对潜在蒸散量影响评价(英文)   总被引:1,自引:1,他引:0  
Evapotranspiration is one of the key components of hydrological processes. Assessing the impact of climate factors on evapotranspiration is helpful in understanding the impact of climate change on hydrological processes. In this paper, based on the daily meteorological data from 1960 to 2007 within and around the Aksu River Basin, reference evapotranspiration (RET) was estimated with the FAO Penman-Monteith method. The temporal and spatial variations of RET were analyzed by using ARCGIS and Mann-Kendall method. Multiple Regression Analysis was employed to attribute the effects of the variations of air temperature, solar radiation, relative humidity, vapour pressure and wind speed on RET. The results showed that average annual RET in the eastern plain area of the Aksu River Basin was about 1100 mm, which was nearly twice as much as that in the western mountainous area. The trend of annual RET had significant spatial variability. Annual RET was reduced significantly in the southeastern oasis area and southwestern plain area and increased slightly in the mountain areas. The amplitude of the change of RET reached the highest in summer, contributing most of the annual change of RET. Except in some high elevation areas where relative humidity predominated the change of the RET, the variations of wind velocity predominated the changes of RET almost throughout the basin. Taking Kuqa and Ulugqat stations as an example, the variations of wind velocity accounted for more than 50% of the changes of RET.  相似文献   

12.
许炯心 《地理研究》1995,14(3):33-42
本文在分析我国东部季风区不同自然带年径流与气侯因子关系的基础上,揭示了径流深随纬度和经度变化的规律,并对不同自然带中人类活动对河川径流的干预强度进行了比较,指出半干旱区是人类活动对径流影响最严重的地区,在这里应加强水资源的保护并大力推行各种节水措施。  相似文献   

13.
Kalman滤波方法在黑河出山径流年平均流量预报中的应用   总被引:21,自引:10,他引:11  
蓝永超  康尔泗 《中国沙漠》1999,19(2):156-159
应用Kalman滤波方法,以流域平均降水量、气温、太阳黑子相对数及莺落峡站6年显著周期序列等为控制参数,对黑河出山径流年平均流量的预测问题进行了初步研究和探讨。  相似文献   

14.
黄河河源区变化环境下分布式水文模拟   总被引:33,自引:4,他引:29  
李道峰  田英  刘昌明 《地理学报》2004,59(4):565-573
将黄河河源区划分为38个自然子流域,利用分布式水文模型模拟径流量,采用唐乃亥水文站逐年、月实测径流资料进行验证,得到了较好的模拟效果。文章建立了5种土地覆被情景模型及24组不同气温和降水的情景组合,分别模拟不同情景下的年径流量。模拟结果表明,随着植被覆盖度的增加,流域年径流量减小,蒸发量增加。当气温降低2oC且降水增加20%时,流域径流量增加得最大,增加39.69%。  相似文献   

15.
基于MOD16数据的渭河流域地表实际蒸散发时空特征   总被引:4,自引:0,他引:4  
基于流域水量平衡法,利用水文数据和气象数据对渭河流域MOD16-ET(实际蒸散发)数据进行精度验证; 利用2000-2012年MOD16-ET数据和GIS技术定量分析了渭河流域(分为干流、泾河、北洛河3个子流域)地表实际蒸散发年际和年内的时空变化特征。结果表明:(1) 3个子流域的实测降水空间插值结果与MOD16-ET估算结果比较,相对误差平均值为8.36%,渭河干流误差较小,其他2个子流域误差相对较大; (2) 3个子流域上游至下游的ET剖面线变化不同,明显受地表覆盖类型影响; (3) ET值年内分布大致呈单峰型格局,季节变化特征为夏季(177.14 mm)> 秋季(105.22 mm)> 春季(92.97 mm)> 冬季(77.50 mm); (4) 基于栅格尺度的ET值年际变化特征空间分布,各子流域下游以降低趋势为主,渭河中游和上游以升高趋势为主,北洛河、泾河中游和上游以基本不变趋势为主,具体影响因素的定量分析仍需MODIS资料的时间累积。  相似文献   

16.
黄河小花间石山林区产汇流特征   总被引:2,自引:1,他引:1  
产汇流机理研究是水文模拟的基础 ,从实测水文资料出发进行深入分析是认识产汇流特性的有效手段。黄河小花间 (小浪底 -花园口间 )洛河卢氏以上流域为典型的石山林区 ,产汇流特性不同于黄河流域的一般地区。从选取的 43场暴雨洪水资料分析得出 :该地区的暴雨空间分布不均匀 ,存在着明显的暴雨中心 ,产流机制和产流模式复杂。进一步分析变化环境下的降水径流特性后 ,发现年径流量的变化主要受控于降水特性 ,下垫面的改变和人类活动对年降水径流关系影响并不显著 ;但对次洪而言 ,该区生态保护和水土保持措施在一定程度上减少了产流能力 ,提高了暴雨径流相关性。  相似文献   

17.
Taking the Chaohe River Basin above the Miyun Reservoir in North China as a study area, the characteristics and variation trends of annual runoff and annual precipitation during 1961–2005 were analyzed applying Mann-Kendall test method on the basis of the hydrologic data of the major hydrological station (Xiahui Station) located at the outlet of the drainage basin and the meteorological data of 17 rainfall stations. Human activities including water conservancy projects construction and water diversion as well as implementation of soil and water conservation from 1961 to 2005 were carefully studied using time series contrasting method. The referenced period (1961–1980) that influenced slightly by human activities and the compared period (1981–2005) that influenced significantly by water conservancy and soil conservation measures were identified according to the runoff variation process analysis and abrupt change points detection during 1961–2005 applying double accumulative curve method, mean shift t-test method and Mann-Kendall mutation test technique. Based on the establishment of a rainfall-runoff empirical statistical model, impacts and the runoff-reducing effects of water conservancy and soil conservation measures on runoff reduction were evaluated quantitatively. The major results could be summarized as follows: (1) The annual precipitation in the drainage basin tends to decrease while the runoff has declined markedly since the 1960s, the average annual runoff from 1991 to 2000 was only 90.9% in proportion to that from 1961 to 1970. (2) The annual runoff variations in the drainage basin are significantly related to human activities. (3) During 1981–1990, 1991–2000, 2001–2005 and 1981–2005, the average annual runoff reduction amounts were 1.15×108, 0.28×108, 1.10×108 and 0.79×108 m3 respectively and the average annual runoff-reducing effects were 31.99%, 7.13%, 40.71% and 23.79% accordingly. Runoff-reducing effects by water conservancy and soil conservation measures are more prominent in the low water period.  相似文献   

18.
东辽河流域坡面系统生态需水研究   总被引:11,自引:2,他引:11  
严登华  何岩  邓伟  张树文 《地理学报》2002,57(6):685-692
以东辽河流域累积46个测站52年的水文资料和1986年、1996年、2000年Landsat TM数字图像为源信息,在分析景观格局、流域降水和径流时空分布的基础上,探讨东辽河流域坡面系统生态需水的时空变化和平衡分区。东辽河流域坡面系统景观的优势度较强,斑块的形状较为规整,但分布较散,同时受到人灰活动的干预非常强。水文情势的空间分异明显。东辽河流域坡面系统全年平均生态需水量为504.72mm(324.08mm~618.89mm),5~9月份生态需水量占全年生态需水总量的88.29%,下游形成生态需水的高值区。坡面系统生态需水量的极端满足程度仅为90%,全年和生长季(5~9月)生态缺水区分别占了全流域总面积的60.47%和74.01%,从生态需水的缺水数量和缺水区域来看,缺水区域大的趋势尤为严峻,必需采取全流域用水的综合调配。  相似文献   

19.
气候变化和人类活动对信江流域径流影响模拟   总被引:1,自引:0,他引:1  
邓晓宇  张强  孙鹏  方朝阳 《热带地理》2014,34(3):293-301
以1960―1990年为基准期、1991―2005年为影响期,使用HSPF(Hydrological Simulation Program-Fortran)水文模型定量分析了影响期气候变化和人类活动对信江流域径流的影响及其各自的贡献率。结果表明:1)相对于1960―1990年,1991―1995、1996―2000年的年平均径流深分别增加了271.9和246.3 mm,2001―2005年的年平均径流深减少64.1 mm。其中,气候变化对径流的影响分量在65.6%~88.0%之间,人类活动对径流的影响分量在12.0%~34.4%之间。2)人类活动对极值流量有影响。在影响期,年最大7 d平均流量和最大15 d平均流量模拟值大于对应的实测极值流量。3)在气候变化因子中,流域降水量的增加,是引起20世纪90年代信江流域径流显著增大的主要原因,其次是蒸发量的下降;人类活动包括植树造林、城市化以及水利工程修建,是影响流域径流变化的次要原因。  相似文献   

20.
三岔河流域水文特征与化学风化碳汇效应   总被引:3,自引:1,他引:2  
焦树林  刘丽  孙婷  田青英  丁蓉  向尚  叶猛 《地理研究》2013,32(6):1025-1032
在喀斯特地区的流域产汇流过程中,由于富含碳酸的水体对可溶岩的溶蚀作用,导致河流断面输出大量溶解无机碳(DIC),反映了流域化学风化消耗大气CO2的强度,与流域水文过程密切相关。为了正确估算流域水文过程中化学径流及其碳汇效应,解析水文特征对流域地表过程中碳的生物地球化学行为的影响规律,以喀斯特地貌广布的三岔河流域三个水文站断面为例,研究了河源区河流水文特征与碳汇效应。结果表明:处于亚热带湿热环境下的喀斯特流域在观测水文年内,碳汇强度远大于非喀斯特的花岗岩流域且具有显著的季节变化,绝大部分的碳汇发生在高温多雨的6-11月。相关分析表明,流域碳汇强度与流域气温、降水和径流量呈显著的正相关关系;流域碳汇强度与河流总溶解固体物(TDS)浓度、DIC浓度呈显著的负相关关系。丰水期径流对河流TDS和DIC有明显的稀释效应。流域碳汇强度主要决定于河流TDS和DIC输出载荷而非河流TDS和DIC的浓度,与流域水文特征密切相关。  相似文献   

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