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1.
The purpose of this paper is to identify areas with high flash-flood potential based on an evaluation of physiographic factors controlling the formation of surface runoff. The research method relies on the use of the Flash Flood Potential Index (FFPI), which incorporates physiographic characteristics from the catchment (terrain slope, profile curvature, land use and soil texture). The spatial distribution of the physiographic factors (which contribute to the creation, control and concentration within the drainage network of the overland flow) and the classified zoning of areas according to their hydrological response were achieved with GIS techniques. The results obtained show that physiographic factors on 227 sq km (29%) favor surface runoff on slopes and its localization towards the drainage network. Notably, the highest values of FFPI belong to the lower part of the catchment, where high human population density can be found, reflecting an increased vulnerability to floods and inundations of this area.  相似文献   

2.
The Himalayan arc is one of the prominent sites on Earth, for ongoing research on active tectonics because of the frequent occurrence of earthquakes of low-moderate intensity that occur in various sectors of the region. The present study is an attempt to decipher the active uplift and relative tectonic activity in Kosi River basin, a part of the southern Kumaun Himalayas. Several morphotectonic parameters such as asymmetry factor (AF), hypsometric integral (HI), mountain front sinuosity (Smf), channel sinuosity (S), and basin elongation ratio (Re) have been calculated with an objective to compare different sub-basins in the Kosi watershed that may prove useful in deciphering of relative tectonic activity. The watershed delineation of the Kosi River basin as well as its sub-basins, and detailed drainage network has been accomplished by using the CARTOSAT-1 DEM with the help of ArcGIS 10.3 software, using TauDEM tool and Global Mapper 18. Analysis of these morphotectonic parameters reveals that although the whole of the Kosi River basin lies in the seismically active zone, but the northern part along North Almora Thrust (NAT), central part around South Almora Thrust (SAT), Ramgarh Thrust (RT), and southern part along Himalayan Frontal Thrust (HFT) are tectonically more active and undergoing neotectonic rejuvenation. The information derived would prove beneficial in identification of hazard prone areas and in planning of socio-economic development in mountainous terrain.  相似文献   

3.
Flash floods are the most common type of natural hazards that cause loss of life and massive damage to economic activities. During the last few decades, their impact increased due to rapid urbanization and settlement in downstream areas, which are desirable place for development. Wadi Asyuti, much like other wadis in the Eastern Desert of Egypt, is prone to flash flood problems. Analysis and interpretation of microwave remotely sensed data obtained from the Shuttle Radar Topography Mission (SRTM) and Tropical Rainfall Measuring Mission (TRMM) data using GIS techniques provided information on physical characteristics of catchments and rainfall zones. These data play a crucial role in mapping flash flood potentials and predicting hydrologic conditions in space and time. In order to delineate flash flood potentials in Wadi Asyuti basin, several morphometric parameters that tend to promote higher flood peak and runoff, including drainage characteristics, basin relief, texture, and geometry were computed, ranked, and combined using several approaches. The resulting flash flood potential maps, categorized the sub-basins into five classes, ranging from very low to very high flood potentials. In addition, integrating the spatially distributed drainage density, rainfall intensity, and slope gradient further highlighted areas of potential flooding within the Wadi Asyuti basin. Processing of recent Landsat-8 imagery acquired on March 15, 2014, validated the flood potential maps and offered an opportunity to measure the extent (200–900 m in width) of the flooding zone within the flash flood event on March 9, 2014, as well as revealed vulnerable areas of social and economic activities. These results demonstrated that excessive rainfall intensity in areas of higher topographic relief, steep slope, and drainage density are the major causes of flash floods. Furthermore, integration of remote sensing data and GIS techniques allowed mapping flood-prone areas in a fast and cost-effective to help decision makers in preventing flood hazards in the future.  相似文献   

4.
黄河上游龙羊峡水库春季入库流量预报模型研究   总被引:2,自引:2,他引:0  
蓝永超  康尔泗 《冰川冻土》1999,21(4):391-395
The catchment above Longyangxia Gorge in the upper Yellow River basin is situated in the northeast of the Tibetan Plateau. Meltwater from snow is the main water supply to the rivers in this region during spring (late March to early June). In this paper, the study target is the inflow to the Longyangxia Reservoir, the largest reservoir in the upper Yellow River basin, during late March to early June. Then a mid-term operational runoff prediction model based on snow cover data from AVHRR images of NORR meteorological satellite and ground surface hydro-meteorological data, called double sifting and stepwise regression model, is presented to forecast the inflow during this period. Examining at the reservoir shows that the forecast accuracy is satisfying.  相似文献   

5.
Remote Sensing and GIS techniques have been proved to be efficient tools in the delineation, updating and morphometric analysis of drainage basin. The present study incorporates a morphometric analysis of three sub-basins of Fatehabad area of Agra district using remote sensing and GIS techniques. The morphometric parameters of the sub-basins are classified under linear, areal and relief aspects. The drainage pattern exhibited by the main river Yamuna and its tributaries shows a dendritic pattern indicating homogenously underlain material while the mean bifurcation ratio values suggest that the geological structures are not disturbing the drainage pattern. The form factor value of sub-basins suggests that the main basin is more or less elongated. Circularity ratio values of the three sub-basins fall within range of elongated basin and low discharge. The area has low density indicating that the region has high permeable sub-soil material and dense vegetation. The values of drainage texture, drainage density and infiltration number indicate that sub-basin-III has the highest infiltration rate and low runoff, hence contributing most to the underground water resources. This study also indicates porous and permeable sub-soil condition in sub-basin-III. The values of sub-basin-I indicate low permeable subsoil material owning to high infiltration number value, hence low infiltration and high runoff.  相似文献   

6.
以承德市伊逊河红旗钒钛磁铁矿小流域为例,通过参比元素标准化法、垂向剖面似背景值法确定小流域矿集区土壤12种重金属的地球化学基线,并与不同空间尺度流域的重金属地球化学基线进行对比;采用确定的基线值结合地累积指数法、地统计学、生态风险指数法和GIS叠加法对流域土壤重金属潜在生态风险和累积程度进行了评价。结果表明:钒钛磁铁矿矿致异常元素地球化学基线值具有明显的流域尺度效应,其值随着流域空间尺度的缩小而升高;在已开采矿集区小流域土壤重金属污染生态风险评价时,可选取其上一级流域地球化学基线值作为标准。伊逊河红旗矿集区小流域V、Ti、Co、Ni和Cr元素基线值高于滦河流域,As、Pb、Zn和Cd元素基线值与滦河流域相近,Mn和Hg元素基线值略低于滦河流域,Cu元素基线值略高于滦河流域。表层土壤重金属污染累积程度由强至弱为:Cu>Cr>Ti>Cd>Co>V>Ni>Zn>As>Hg>Mn>Pb;表层土壤重金属综合潜在生态风险指数RI范围为65.89~237.70,总体生态风险水平属低风险水平。深层土壤重金属总体污染累积程度和综合潜在生态风险总体弱于浅层土壤。流域土壤重金属综合潜在生态风险累积程度空间分布与流域地貌特征具有明显的耦合关系,重金属空间迁移主要受水力作用驱动控制,土壤重金属污染来源主要为矿业活动,同时受岩石风化和土壤侵蚀等自然因素影响。  相似文献   

7.
1975-2011年渭河上游径流演变规律及对气候驱动因子的响应   总被引:3,自引:1,他引:2  
孙悦  李栋梁 《冰川冻土》2014,36(2):413-423
为探讨渭河上游径流的变化特征及其对气候变化的响应,选取1975-2011年河流实测径流量进行计算和分析. 结果表明:近40 a来,渭河上游径流总体呈明显下降趋势,其中,20世纪90年代前处于丰水期,90年代后进入枯水期,进入21世纪有明显增多趋势. 径流年际丰枯变化激烈,枯水年的发生概率高、持续性强,最长的连枯年份达8 a. 径流量集中在汛期,各年代的分配峰型有所不同,在70、80年代为7、9月双峰,之后变为单峰型分布. 流域内气候增暖明显,降水减少,蒸发加剧;90年代为明显的暖干型气候,21世纪初期气候向暖湿型转变的过程对径流的增加十分有利. 径流对气候变化有较强响应,但响应程度随时间变化而变化. 通过定量分析气候因子对径流变化的贡献值,发现由于气候增暖导致潜在蒸散量的加剧对径流变化的负贡献达60%以上,绝对值高于降水量的正贡献.  相似文献   

8.
以平治河岩溶流域为研究对象,分析其地下退水规律,将其划分为9个子流域,在传统新安江模型基础上,将地下径流划分为慢速和快速地下径流,分别采用两个线性水库进行模拟,构建降雨-径流模拟方案,并选取2011-2015年期间的7场洪水作为率定期洪水,以确定性系数(DC)最大为优化目标,应用遗传算法率定模型参数,而以8场洪水作为验证期洪水进行验证分析,获得率定期合格率为85.71%,平均确定性系数为0.846,验证期合格率为75%,平均确定性系数为0.893,达到乙级精度。其结果表明所构建的模拟方案能够较好地模拟该流域的径流规律。   相似文献   

9.
This study reports the nature and timing of Quaternary fluvial activity in the Fitzroy River basin, which drains a diverse 143,000 km2 area in northeastern Queensland, before discharging into the Great Barrier Reef Marine Park. The catchment consists of an extensive array of channel and floodplain types that we show have undergone large-scale fluvial adjustment in-channel planform, geometry and sinuosity. Optically stimulated luminescence (OSL) dating of quartz sediments from fifteen (3–18 m) floodplain cores throughout the basin indicates several discrete phases of active bedload activity: at ~105–85 ka in Marine Isotope Stage (MIS) 5, at ~50–40 ka (MIS 3), and at ~30–10 ka (MIS 3/2). The overall timing of late Quaternary fluvial activity correlates well with previous accounts from across Australia with rivers being primarily active during interstadials. Fluvial activity, however, does not appear to have been synchronous throughout the basin’s major sub-catchments. Fluvial activity throughout MIS 2 (i.e. across the Last Glacial Maximum) in the meandering channels of the Fitzroy correlates well with regional data in tropical northeastern Queensland, and casts new light on the river response to reduced rainfall and vegetation cover suggested by regional palaeoclimate indicators. Moreover, the absence of a strong Holocene signal is at odds with previous accounts from elsewhere throughout Australia. The latitudinal position of the Fitzroy across the Tropic of Capricorn places this catchment at a key location for elucidating the main hydrological drivers of Quaternary fluvial activity in northeastern Australia, and especially for determining tropical moisture sources feeding into the headwaters of Cooper Creek, a major river system of the continental interior.  相似文献   

10.
长江流域水沙周期特征及可能影响原因   总被引:9,自引:2,他引:7       下载免费PDF全文
运用小波变换的方法研究了长江流域干流站(屏山站、宜昌站、大通站与汉口站)以及位于支流嘉陵江流域的北碚站近40年来月均流量与输沙率,研究认为:(1)水利工程(本文主要指水库)对下游河道输沙率的影响远远大于对流量的影响;(2)葛洲坝是低水头径流式发电站,对下游流量变化影响不大,虽然在建库初期对输沙率有一定影响,导致下游河床下切,但远未达到使输沙率固有的1年周期受到影响的程度;(3)三峡大坝的建设已经对下游输沙率产生严重影响,使其固有的1年周期消失,但三峡大坝下游河道输沙率对这种影响的响应与距三峡大坝的距离成反比,即愈往下游,输沙率受三峡大坝的影响愈小;(4)输沙率变化对水利工程影响的敏感程度受流域尺度的影响,流域尺度越大,其反应就愈迟钝,反之亦然。  相似文献   

11.
The Orange River, with an average annual runoff of 11 500 million m3, is the largest among South Africa's rivers, drains 48% of the total area of the country and provides for 22% of the total South African downflow. Not only does the average annual precipitation of the drainage basin vary from 2 000 mm in the upper reaches to 40 mm at the river's mouth in the Atlantic, but large deviations from the average are the rule rather than the exception over most of the area. The correspondingly low reliability in the discharge of the Orange master stream is demonstrated by a 0,6 coefficient of variability. For utilising the river's water efficiently, periodic and seasonal runoff deficits may be overcome by building large storage dams. This is the purpose of the H.F. Verwoerd Dam, near the confluence of the Caledon and the Orange Rivers, and the P.K. le Roux Dam 130 km lower downstream. They form part of the R490 million (1974 estimate) Orange River Project by which water is stored and distributed in canals and tunnels (one 82 km long) reaching beyond the basin boundaries to Bloemfontein in the north and Port Elizabeth in the south. The implementation of the Orange River and Tugela-Vaal Schemes shifted the spatial focus of water development upstream along the Orange, Caledon and Vaal Rivers towards the plateau blocks of Lesotho.  相似文献   

12.
1960—2010年中国主要流域径流量减小原因探讨分析   总被引:1,自引:0,他引:1       下载免费PDF全文
针对1960—2010年径流量显著减少的中国主要流域,包括松花江、辽河、海河、黄河和汉江等,选择其上游地区受人类直接取用水影响较少的山区小流域,分析径流变化及其原因.采用基于Budyko假设的流域水热耦合平衡方程,估计了流域年径流量变化的气候弹性系数和下垫面弹性系数,并对各流域径流变化进行了归因分析.结果表明,在气候较为湿润的地区,径流对气候和下垫面变化均不敏感;在气候较为干燥的地区,径流对气候和下垫面变化都更为敏感,且区域差异性明显.潜在蒸散发的变化对径流减少的影响微弱,降水减少和下垫面变化是径流减少的主导因素,其中人类活动导致的下垫面变化对径流减少的影响尤为显著.对比两个阶段的径流变化归因分析结果,近10年间流域下垫面变化对年径流量的影响程度较前20年有显著增加.通过分析近30年的归一化植被指数(NDVI)数据发现,植被覆盖改善是下垫面变化的重要原因,说明中国水土保持工程发挥了显著生态效益的同时也导致了流域径流减小.  相似文献   

13.
塔里木河流域水文特性分析   总被引:3,自引:0,他引:3  
塔里木河是我国最大的内陆河,历史上是九大水系144条河流的总称.由于气候变化和人类活动影响生态环境急剧恶化,目前形成了"四源一干"的格局.根据水文气象监测资料,从50 a来流域内的降水、蒸发、径流、洪水、泥沙、水质等方面对塔里木河流域生态环境恶化的成因进行分析.  相似文献   

14.
1990年以来天山乌鲁木齐河上游水资源研究进展   总被引:2,自引:2,他引:0  
乌鲁木齐河是我国西北地区典型的降水、冰川和地下水综合补给的内陆河,对其水资源的研究不仅是西北寒区旱区水环境和水资源研究的热点,而且对区域生态环境改善和经济可持续发展具有重要意义。乌鲁木齐河水文水资源的研究内容十分广泛,并取得了很多高水平的学术成果。从高山区气候变化与冰冻圈的相互影响,山区降水变化与径流的相互影响,出山口径流对气候变化的响应以及洪灾、致灾因子分析,流域内同位素、树轮气候和水环境研究等四个方面总结了相关研究。结果表明:(1)乌鲁木齐河上游气候趋于暖湿。气温的升高很大程度上受冬季气温大幅度升高影响,气温对高山区冰川积雪的影响要大于降水;冬季负积温也加快了冻土的消融;气温和降水的变化导致乌鲁木齐河上游河段冰川后退加速,积雪融化、雪线上升,冻土活动层增厚。(2)乌鲁木齐河流域降水量和降水变化速率具有明显的垂直特征,在中高山地区降水量和降水变率较大;山区降水还具有年代际特征,20世纪90年代以来,山区降水量呈现增加趋势并促进了山区径流量的增加。(3)降水量和冰川融雪量的增加,很大程度上加大了乌鲁木齐河流域山区的径流量,使得出山口区域洪水灾害的发生频率增加。(4)同位素分析的运用对探索径流形成和转化的机理具有重要意义。树轮研究为乌鲁木齐河流域气候变化序列的重建提供了技术手段。今后,乌鲁木齐河水资源承载力、水循环过程和水污染问题,是区域实现生态环境建设和可持续发展的重要研究内容。  相似文献   

15.
河西走廊疏勒河流域出山径流变化规律及趋势预测   总被引:6,自引:3,他引:3  
依据甘肃省河西走廊疏勒河流域1956-2013年水文站实测及水文调查资料, 对流域出山径流的年内、年际变化进行统计分析, 并用坎德尔秩次相关法等检验流域径流变化趋势. 结果表明: 1956-2013年多年平均出山径流量为11.6679×108 m3; 汛期集中在6-9月, 各河流来水量占年来水量的35.9%~78.7%; 地下水补给平均占径流量的40.46%; 出山径流年际变化相对稳定, 趋势表现为持续性上升的特点. 未来2014-2018年疏勒河干流出山径流为偏丰, 年平均径流量预计为13.01×108 m3.  相似文献   

16.
滦河流域土地利用/覆被变化的水文响应   总被引:3,自引:0,他引:3       下载免费PDF全文
以滦河流域为研究区,利用1985和2000年土地利用数据,结合SWAT分布式水文模型定量评价了流域土地利用/覆被变化的水文效应,并分析了流域地表径流变化与主要景观类型的响应关系。结果表明:SWAT(Soil and Water Assessment Tool)模型可以较好地模拟滦河流域的月流量过程,在研究区具有较好的适用性;1985—2000年流域林地向草地和耕地的转变导致流域年均地表径流和总径流量分别增加了12.6%和5.1%;并使得流域年均地表径流变化空间差异显著,整体呈增加趋势,且主要受到林地变化的影响,而在三道河子以上集水区地表径流的变化则主要受到耕地景观的影响。合理规划土地利用格局,对于流域水资源可持续利用具有重要意义。  相似文献   

17.
在构建分布式水文模型与生物地球化学模型的耦合模型(DTVGM-CASACNP)及应用元胞自动机-马尔科夫(CA-Markov)土地利用预测模型基础上,以滦河流域为例分析气候变化、土地利用/覆被变化(LUCC)及CO2浓度升高对径流的影响。研究结果表明: DTVGM-CASACNP耦合模型以及CA-Markov模型在滦河流域均具有较好的适用性;气候变化与土地利用/植被覆盖变化对滦河流域径流的影响较CO2浓度升高的影响程度大;未来不同情景下滦河流域2020—2049年径流呈减小趋势,大部分情景下年径流较基准年减少,与非汛期相比,滦河流域未来汛期径流对不同情景更敏感,总体上在汛期径流相对基准年减少,而在非汛期径流相对基准年增加。  相似文献   

18.
By analyzing the multi-year runoff and rainfall data at 15 hydrological stations from 1980 to 2007, as well as monthly runoff data from 1964 to 1984 at the Zipingpu hydrologic station, the relationship between precipitation and runoff has been established and the trend was explored. Based on the catastrophic floods of August 13 and August 18, 2010, characteristics and control factors on the post-seismic floods are summarized. Firstly, the Wenchuan earthquake and rupture zone provides the background for post-seismic floods to develop in the upper Minjiang River, which follows a post-seismic disaster-chain pattern: earthquake collapse to landslide debris flows to floods. Secondly, heavy rainfall controlled by the orographically-enhanced precipitation after the Wenchuan earthquake is the trigger factor for the development of devastating post-seismic floods. Thirdly, the post-seismic floods contain high sediment discharge, cause abrupt and severe damages, and have a large of volume and higher frequency.  相似文献   

19.
The Asna river basin is located in Hingoli and Nanded districts of Marathwada region of Maharashtra. A geomorphometric analysis is an important method for the investigation and management of natural resources of watershed. The geomorphometric analysis of Asna river basin classifies three sub-basins that have been delineated using GIS and remote sensing through measurements of linear, aerial, and relief aspects. The Asna river basin comprises an area of 1187 km2 with seventh-order drainage pattern. As per Strahler classification, the upper part of the basin shows dendritic to sub-dendritic and the lower part exhibits parallel to sub-parallel drainage pattern. The total numbers of stream segments are 2422 and length of streams is 2187.92 km. The bifurcation value ranges from 1.26 to 5.58 indicating that there are no structural disturbances. The form factor value (0.49) indicates that the shape of the basin is moderately circular. The high values of drainage density, stream frequency, and low infiltration number indicate the high runoff due to impermeable lithology. The slope of the basin varies from 1 to 32.2%, terrain elevation ranges from 333 to 551 m, and overall relief of the basin is 218 m amsl. River sub-basin prioritization has an immense importance in natural resource management, especially in semi-arid regions. The present study is an attempt to prioritize the sub-basins of Asna river based on geomorphometric parameters. The weightage is assigned to different morphometric parameters of sub-basins based on erosion potential. The Asna river sub-basins have been classified into three categories as high, medium, and low on the basis of priorities for soil and water conservation. It is confirmed that sub-basin I is characterized as highly vulnerable to erosion and has high sedimentation load; sub-basin II has low priority, i.e., very low erodibility; and sub-basin III is of moderate type. The morphometric analysis and prioritization methods can be applied to hydrological studies in surface as well as subsurface water, climatic studies, rainwater harvesting, groundwater recharging sites, and watershed management.  相似文献   

20.
魏国峰 《水文》2002,22(2):24-26,23
通过分析滏阳河岩溶山区的产流特征,探讨了该区地表水资源的计算方法,提出了在进行水资源评价时,首先依据水文地质资料,划定岩溶山区地下集水区范围,在该范围内再划分各河的地表集水区;进而分别计算出地下集水区的河川基流量及区内各河流的地表径流量,两者相加,便得到岩溶山区的地表水资源量。  相似文献   

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