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1.
朱沱、寸滩水文站是三峡水库主要入库控制站。通过对朱沱站1975~2001年、寸滩站1966~2001年实测卵石推移质资料分析,结果表明,朱沱站从1991起、寸滩站从1981年起,卵石推移量系统减少,粒径细化,起动流速增加,水沙关系明显变化。河道采砂、水利工程拦沙、水土流失治理是三峡水库入库推移质输沙特性发生变化的主要原因。  相似文献   

2.
中国江河水沙变化趋势与主要影响因素   总被引:10,自引:0,他引:10       下载免费PDF全文
通过选定中国主要河流的代表水文站,分析了中国主要河流代表站总径流量和总输沙量的变化趋势。结果表明,全国主要河流代表站总径流量随时间没有明显的趋势性增加或减小,多年平均径流量为14090亿m3;年总输沙量在1960年前变化不大,1960年后逐渐减小,从20世纪50年代的26.43亿t减小至2001~2008年间的5.95亿t;平均含沙量则从50年代的1.74kg/m3减至2001~2008年间的0.46kg/m3。中国南方主要河流和主要内陆河流的代表站径流量没有明显的增加或减少趋势,北方河流代表站径流量除淮河、松花江外,具有明显的减少趋势;中国各主要河流代表站年输沙量除塔里木河外,都有不同程度的减少,其中北方河流的减小幅度较大。影响中国主要河流水沙变化的主要因素分为自然和人类活动因素,其中自然因素包括流域降雨量变化和流域下垫面条件;人类活动因素包括水土保持措施、水库工程、流域调水调沙及引水引沙、河道采砂等。  相似文献   

3.
徐玉 《地下水》2011,33(2):159-161
河沙是一种有价值的资源,并且是建筑工业上的主要原料.随着快速的城市化,许多地区的的砂石需求不断增加.以典型城市济南为例估算该城市需砂量;分析河道内数十年的来沙和近几年大汶河的采砂量;将河流划分成侵蚀区、过渡区和沉积区;根据野外调查,指出河道采砂对防洪工程及生态环境的破坏.  相似文献   

4.
水沙动态图法分析中国主要江河水沙变化   总被引:1,自引:0,他引:1       下载免费PDF全文
刘成  何耘  张红亚 《水科学进展》2008,19(3):317-324
利用《中国河流泥沙公报》数据,采用水沙动态图方法并按平衡水沙比相对应,分析中国主要河流2006年前实测水沙的变化。根据河流下游站历年水沙变化趋势,将中国主要河流大致分为4类:水量不变沙量降低、水量和沙量均降低、水量和沙量同步略降低、几近断流断沙。按地域看,中国淮河及其以南大多数河流年径流量无明显改变,而年沙量呈明显下降趋势;淮河以北地区河流水沙量均呈明显下降趋势,特别是黄河年径流量的近10年平均值仅为多年平均值的1/3,输沙量10年平均值仅为多年平均值的1/4,而海河水系的河流下游几乎是断流断沙。总体上,中国大多数河流的沙量明显下降。大多数河流入海水沙量的明显降低主要是人类活动造成的,淮河及其以南河流沙量的降低多与水库兴建、河道采砂和水土保持工程等有关;北方河流水沙量的降低主要是引水量的大幅增加、水库建设及其运行方式的改变以及水土保持工程的发挥效益等造成的。分析也表明,利用水沙动态图法分析河流的水沙长期变化具有一定的优越性。  相似文献   

5.
对于雨洪河流,河流年输沙量主要来源于1场或几场高强度暴雨洪水过程,开展流域次洪输沙规律研究对认识流域水沙变化特性、提升流域产输沙的预测能力具有重要意义。利用嘉陵江流域小河坝站、罗渡溪站、武胜站及北碚站的历年场次洪量与输沙量资料,基于径流侵蚀功率理论和M-K分析等方法,系统分析了嘉陵江不同区域的次洪输沙特性。结果表明:嘉陵江流域汛期洪量和输沙量主要来自于嘉陵江干流;嘉陵江不同区域场次洪量均呈不显著减少趋势,次洪输沙模数(输沙量)总体呈显著减少趋势,但小河坝站2013—2020年次洪输沙模数(输沙量)呈显著增加趋势;随着径流侵蚀功率的逐渐增加,各区域不同时段的次洪输沙模数(输沙量)的变幅逐渐减小;嘉陵江干流区武胜站场次洪水输沙过程受人类活动影响最大、渠江罗渡溪站次之、涪江小河坝站最小;受汶川地震及强降雨等影响,小河坝站和北碚站2013—2020年次洪输沙量较1999—2012年有一定程度增加,但北碚站增幅小于小河坝站。  相似文献   

6.
白涛  慕鹏飞  张明 《水科学进展》1990,31(2):194-202
黄河是世界上含沙量最高的河流,其上游沙漠宽谷河段的冲沙输沙效应受来水来沙和地形条件变化等影响。为研究高含沙河流在低温条件下的输沙效应,通过引入水温因子,建立了黄河上游沙漠宽谷河段巴彦高勒站的输沙率模型。基于First Optimization平台的通用全局优化算法率定参数,验证了输沙率模型,量化了高含沙河流的低温输沙效应。结果表明:① 水温越低(1~7 ℃),河道输沙率越大,表明水温对河道输沙率的影响主要表现在低水温时期;② 任意一种工况下,水温1 ℃时河道输沙率约为25 ℃时的2.5倍;③ 低水温(5 ℃)较常温(16.6 ℃)下的河道输沙率提高了40.7%,在黄河上游开河低温期进行大流量冲沙输沙是水沙调控的最佳时机。研究成果以期为黄河上游沙漠宽谷河段低水温高效冲沙输沙和其他寒区高含沙河流的治理提供技术支撑。  相似文献   

7.
白涛  慕鹏飞  张明 《水科学进展》2020,31(2):194-202
黄河是世界上含沙量最高的河流,其上游沙漠宽谷河段的冲沙输沙效应受来水来沙和地形条件变化等影响。为研究高含沙河流在低温条件下的输沙效应,通过引入水温因子,建立了黄河上游沙漠宽谷河段巴彦高勒站的输沙率模型。基于First Optimization平台的通用全局优化算法率定参数,验证了输沙率模型,量化了高含沙河流的低温输沙效应。结果表明:①水温越低(1~7℃),河道输沙率越大,表明水温对河道输沙率的影响主要表现在低水温时期;②任意一种工况下,水温1℃时河道输沙率约为25℃时的2.5倍;③低水温(5℃)较常温(16.6℃)下的河道输沙率提高了40.7%,在黄河上游开河低温期进行大流量冲沙输沙是水沙调控的最佳时机。研究成果以期为黄河上游沙漠宽谷河段低水温高效冲沙输沙和其他寒区高含沙河流的治理提供技术支撑。  相似文献   

8.
《地下水》2015,(5)
河流断面的变化是研究河道冲淤情况及河流河床冲淤情况及河流河床演变最直观、最简洁的办法。在分析辽河下游河流输沙量变化特征的基础上,利用辽河干流具有代表性水文站的实测大断面,对河床泥沙冲淤及动态演变进行初步分析。结果表明辽河干流典型站径流输沙呈线性相关,关系相对稳定,2010-2013年显著减少,不同年代中冲淤基本交替进行,辽河干流整体是淤积的。  相似文献   

9.
大凌河是辽宁省的重要河流,流域沿岸的采砂活动频繁兴盛,每年年产砂石总量可观。在进行河道采砂的过程中存在着诸如砂石采补不平衡,环保意识较差,对环境产生明显不利影响,甚至存在排洪隐患等问题。在阐述大凌河水文条件、采砂条件的基础上,针对河道采砂过程中存在的问题进行分析和探讨,并提出具有针对性的优化采砂对策措施,以期对大凌河采砂业的可持续发展有所裨益,更为水利部门河道采砂管理提供参考和借鉴。  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.
It is generally accepted that a gravel-bed river will aggrade if the supply of sediment to the river is increased. In a series of flume experiments using constant discharge and gravel feed rate, sand feed rates were increased to 6.1 times that of gravel. The slope of the bed decreased with increasing sand supply, indicating that the increased sediment load could be transported at the same rate due to a decrease in shear stresses. These results extend previous experiments to a wider range of boundary conditions. A recent surface transport model is used to predict the changes in bed composition and transport using the same sediment supply composition and feed rates as in the laboratory experiments. This model reasonably predicts a decrease in the reference shear stresses of the sand and gravel fractions as the sand supply is increased. An increase in sand supply can increase the mobility of gravel fractions in the stream bed, which can lead to bed degradation and preferential evacuation of these sediments from the river.  相似文献   

12.
Bankfull discharge is a comprehensive factor reflecting the channel-forming capability of water flow and the flood and sediment transport capacity of a river channel. It is based on the interaction of the flow, sediment, and river channel, of which flow and sediment conditions play crucial roles. Using data recorded since the 1950s, this paper analyses statistically, the characteristics and variations of bankfull discharge at two stations on the Inner Mongolian reaches of the upper Yellow River. Results indicate that flood season variations in bankfull discharge are nonlinear and are governed by flood peak discharge, mean discharge, and the mean incoming sediment coefficients. Variation in bankfull discharge is related not only to the flow and sediment conditions of the current year but also to those of previous years. The 10-year moving average of flow and sediment conditions can be representative of present and previous years. By considering flood season peak discharge and incoming sediment coefficients as independent impact factors, a formula is derived to determine bankfull discharge. The results can be used to predict the bankfull discharge of the Yellow River channel in Inner Mongolia under specific flow and sediment conditions and provide reference for the purpose of further study related to restoring and maintaining the basic functions of the river channel regarding flood discharge and sediments.  相似文献   

13.
近年来长江中下游来沙量持续减少,河道面临长距离、长历时的冲淤调整,河道蓄泄关系发生变化,对防洪造成影响。在长江中下游河道冲淤及其蓄泄能力变化预测成果的基础上,对比计算了现状和未来河道蓄泄能力条件下,遇1954年洪水,长江上游水库防洪调度和中下游地区超额洪量的变化情况。结果表明,未来随着长江中下游河道进一步冲刷,河道槽蓄容积增加,相同防洪控制水位下的河道安全泄量增大,三峡水库在进行防洪调度时可下泄流量增大,总拦蓄洪量减小,长江中下游地区总超额洪量减小,但超额洪量在地区分布上存在从上游向下游转移的情况。  相似文献   

14.
长江中下游河道冲淤演变的防洪效应   总被引:3,自引:0,他引:3       下载免费PDF全文
近年来长江中下游来沙量持续减少,河道面临长距离、长历时的冲淤调整,河道蓄泄关系发生变化,对防洪造成影响。在长江中下游河道冲淤及其蓄泄能力变化预测成果的基础上,对比计算了现状和未来河道蓄泄能力条件下,遇1954年洪水,长江上游水库防洪调度和中下游地区超额洪量的变化情况。结果表明,未来随着长江中下游河道进一步冲刷,河道槽蓄容积增加,相同防洪控制水位下的河道安全泄量增大,三峡水库在进行防洪调度时可下泄流量增大,总拦蓄洪量减小,长江中下游地区总超额洪量减小,但超额洪量在地区分布上存在从上游向下游转移的情况。  相似文献   

15.
高弯度曲流河砂体规模定量表征研究   总被引:2,自引:0,他引:2  
曲流河砂体储层是重要的陆相碎屑岩储层类型,采用“将今论古”的思路,以一系列现代高弯度曲流河的基础数据分级构建定量知识库,实现对地下砂体规模的定量表征。从曲流河成因和形态方面对定量表征开展可行性分析,在相对平坦的地形条件下,当河流通过增加河道弯度和加长流路来减小河道坡降比以趋于输沙平衡且做功最少,同时堤岸主要由细粒物质组成时,河型向曲流河转化,河道平面几何形态呈正弦派生曲线,在演化过程中河道形态和砂体规模保持良好的规律性;结合储层构型理论的分级表征思路,基于砂体规模的不确定性,通过现代沉积数据选取恰当的置信水平,分级构建多组经验公式,形成高弯度曲流河定量知识库;压实减孔量是沉积物埋藏后体积减小的主要因素,通过去压实校正,建立现代沉积与地下砂体的定量联系,对地下曲流河砂体规模进行原始沉积状态下的定量表征。经实际资料验证,结果客观准确。  相似文献   

16.
 The morphological evolution, hydrodynamics and sediment dynamics of the lower Ebro are studied from historical and current data in order to determine the main changes that have governed the evolution of the Ebro channel near the river mouth during the last few centuries. The evolution of the mouth of this river during the last 2000-years, from an estuary to a delta, is interpreted as a process that has been accelerated by human land management. However, an inverse trend has been observed during recent decades: (1) the river mouth has been affected by erosion due to a drastic decrease in the river sediment discharge, and (2) the lower Ebro tends to evolve towards a quasi-permanent salt-wedge estuary as a consequence of the decrease in the river water discharge. Freshwater and sediment discharge decreases are mainly related to intense river water management during this century. The salt wedge favours erosion in the river banks, widening the river channel and causing an aggradational trend in the lower Ebro. Accretion-erosion rates and the sediment budget in the river mouth are estimated for different conditions. Received: 13 November 1995 · Accepted: 17 June 1996  相似文献   

17.
The Tinto and Odiel rivers drain 100 km from the Rio Tinto sulphide mining district, and join at a 20-km long estuary entering the Atlantic Ocean. A reconnaissance study of heavy metal anomalies in channel sand and overbank mud of the river and estuary by semi-quantitative emission dc-arc spectrographic analysis shows the following upstream to downstream ranges in ppm (μg g?1): As 3,000 to <200, Cd 30 to <0.1, Cu 1,500 to 10, Pb 2,000 to <10, Sb 3000 to <150, and Zn 3,000 to <200. Organic-rich (1.3–2.6% total organic carbon, TOC), sandysilty overbank clay has been analyzed to represent suspended load materials. The high content of heavy metals in the overbank clay throughout the river and estuary systems indicates the importance of suspended sediment transport for dispersing heavy metals from natural erosion and anthropogenic mining activities of the sulfide deposit. The organic-poor (0.21–0.37% TOC) river bed sand has been analyzed to represent bedload transport of naturally-occurring sulfide minerals. The sand has high concentrations of metals upstream but these decrease an order of magnitude in the lower estuary. Although heavy metal contamination of estuary mouth beach sand has been diluted to background levels estuary mud exhibits increased contamination apparently related to finer grain size, higher organic carbon content, precipitation of river-borne dissolved solids, and input of anthropogenic heavy metals from industrial sources. The contaminated estuary mud disperses to the inner shelf mud belt and offshore suspended sediment, which exhibit metal anomalies from natural erosion and mining of upstream Rio Tinto sulphide lode sources (Pb, Cu, Zn) and industrial activities within the estuary (Fe, Cr, Ti). Because heavy metal contamination of Tinto-Odiel river sediment reaches or exceeds the highest levels encountered in other river sediments of Spain and Europe, a detailed analysis of metals in water and suspended sediment throughout the system, and epidemiological analysis of heavy metal effects in humans is appropriate.  相似文献   

18.
Interactions between catchment variables and sediment transport processes in rivers are complex, and sediment transport behaviour during high‐flow events is not well documented. This paper presents an investigation into sediment transport processes in a short‐duration, high‐discharge event in the Burdekin River, a large sand‐ and gravel‐bed river in the monsoon‐ and cyclone‐influenced, semi‐arid tropics of north Queensland. The Burdekin's discharge is highly variable and strongly seasonal, with a recorded maximum of 40 400 m3 s?1. Sediment was sampled systematically across an 800 m wide, 12 m deep and straight reach using Helley‐Smith bedload and US P‐61 suspended sediment samplers over 16 days of a 29‐day discharge event in February and March 2000 (peak 11 155 m3 s?1). About 3·7 × 106 tonnes of suspended sediment and 3 × 105 tonnes of bedload are estimated to have been transported past the sample site during the flow event. The sediment load was predominantly supply limited. Wash load included clay, silt and very fine sand. The concentration of suspended bed material (including very coarse sand) varied with bedload transport rate, discharge and height above the bed. Bedload transport rate and changes in channel shape were greatest several days after peak discharge. Comparison between these data and sparse published data from other events on this river shows that the control on sediment load varies between supply limited and hydraulically limited transport, and that antecedent weather is an important control on suspended sediment concentration. Neither the empirical relationships widely used to estimate suspended sediment concentrations and bedload (e.g. Ackers & White, 1973) nor observations of sediment transport characteristics in ephemeral streams (e.g. Reid & Frostick, 1987) are directly applicable to this river.  相似文献   

19.
《Sedimentology》2018,65(5):1590-1610
Downstream variation in grain size associated with changes in river pattern is a topic that interests multiple disciplines. How grain size varies between adjacent reaches with strongly contrasting river pattern is an outstanding question. This study presents a combined field and numerical modelling investigation of a river with a downstream planform change from single channel to anabranching, where the planform is controlled by a change in underlying lithology. This approach enabled exploration of the controls on sedimentology in a river for which there is very limited opportunity to collect flow and sediment transport data. This study shows that the surficial grain size decreases as a result of the downstream change in planform. This is because of a decrease in flow velocity and shear stress associated with a decrease in channel depth related to the planform change. Channel geometries in both the field and modelling data fit into distinct groups based on channel depth, the deepest being the single channel reach and the shallowest being the anabranching. This downstream reduction in channel dimension (depth) is caused because the total discharge is split from one channel into multiple channels. The coarsest grain sizes (cobble) are deposited at the terminus of the single channel and in the distributary channels; anabranching channels contain sand‐size sediments. This study shows that, in a transition from single channel to anabranching, the channel dimensions decrease as the number of channels increases, resulting in a decrease in bed shear stress and the fining of bed material downstream.  相似文献   

20.
The geochronology of a gravity core collected from an anoxic, high sedimentation rate (>2.5 cm/yr) setting near the head of the Saguenay Fjord in Quebec has been established for the period 1900–1979 to a resolution of better than 1 yr using a constant flux 21Pb model. Interannual variations of the sedimentation rate of between 28 and 50% are caused by rapid inputs of coarse silt and fine sand during spring freshet events. A significant correlation between sand percentage and sediment accumulation rate reflects the increase in stream competence during the spring freshet; the sand percentage parameter can be used in conjunction with sediment size parameters to estimate temporal variations in river discharge intensity. Between 1914 and 1979 sediment accumulation rates were about 60% higher during the spring and summer compared to fall and winter seasons. Both the magnitude of the Saguenay River spring discharge and the quantity of precipitation stored as snow decrease through the 20th century suggesting that the freshet intensity was governed largely by natural rather than anthropogenic (e.g., dam construction) factors. A direct correlation between sand flux, peak river discharge, and a snow storage parameter provides a link between sediment texture and climate. Detailed analyses of the grain-size distributions for dated core intervals offer a method for the reconstruction of a proxy record of paleodischarge for the Saguenay River spring freshets.  相似文献   

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