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1.
选择长江南京下关-栖霞山段作为研究河段,根据南京长江大桥、四桥附近的地质钻孔资料,运用Mapinfo软件,绘制南京长江大桥、四桥附近长江古河槽地质剖面示意图.在拟建南京长江四桥附近的6个钻孔采集了年代样品,在-59.33 m深度上河床相圆砾石层中沉积物样品中有机质的14C年代为14 682±110 aBP,据此判断,位于该沉积层下部的上一期沉积旋回应在15 000 aBP之前.结论认为,该研究河段约-65~-90 m的深槽为末次盛冰期时的长江河槽.古河槽相对狭窄陡峭,形成局部深切.槽中充填了一次从粗到细的沉积旋回.  相似文献   

2.
长江中游马口-田家镇河段40 年来河道演变   总被引:2,自引:0,他引:2  
运用地理信息系统(GIS) 与数字高程模型(DEM) 分析了马口-田家镇河段1963 年、1972 年与2002 年河道地形数据, 较为系统地研究了该河段过去40 年冲淤时空变化。研究结 果认为, 1972 年与1963 相比冲刷量达到789.9 hm3, 冲刷面积为39.7×104 m2; 2002 年与1963 年相比冲刷量达到1196.5 hm3, 冲刷面积为59.4×104 m2; 2002 年与1972 年相比冲刷量 达到960 hm3, 冲刷面积为54.3×104 m2。由以上结果认为, 马口-田家镇河段近40 年来以冲刷为主; 河道冲淤变化以马口卡口与田家镇卡口等窄深河段最为剧烈, 宽浅河段与顺直河 段冲淤变化较为和缓, 冲淤变化幅度不大; 卡口上、下端以淤积过程为主, 而卡口顶冲水流的顶弯部位以冲刷过程为主。研究河段冲淤变化受上游来水来沙条件影响很大, 对未来三峡工程建成后, 三峡大坝下游来水来沙以及研究河段冲淤变化的影响研究提供借鉴。  相似文献   

3.
建立了西江干流磨刀门水道1962年、1977年、1999年的DEM,研究珠江三角洲磨刀门水道近40年的河床演变.结果表明:1962-1999年磨刀门水道总体表现为冲刷状态,净冲刷量约576万m3/a,年均冲刷率16万m3/a,单位河长冲刷率约13万m3/km,断面面积减小,河床深槽范围扩大,平均水深、河宽均增大,宽深比减小,断面向窄深发展;但不同时段冲淤特性表现不同,1962-1977年表现为淤积,淤积量2033万m3;1977-1999年处于冲刷状态,冲刷量2 617万m3.磨刀门水道不同阶段河床冲淤演变与流域人类活动引起的来水来沙变化、三角洲网河联围筑闸、河床采砂以及由此引起的三角洲网河水沙分配变化等因素密切相关.整体看,磨刀门水道近期演变趋势仍将表现为以冲刷为主的自适应调整.  相似文献   

4.
末次盛冰期长江南京段河槽特征及古流量   总被引:3,自引:0,他引:3  
根据南京长江大桥、三桥、四桥的地质钻孔资料,绘制南京段长江古河槽地质剖面示意图.对拟建南京长江四桥附近的四个钻孔进行了采样分析,从钻孔沉积物样品的14C年代及阶地形成时间,可以判断,南京段约-60m~-90m的深槽为末次盛冰期时的长江河槽.钻孔揭示,南京段长江古河槽狭窄陡峭,呈V型,在南京长江大桥附近形成局部深切.根据长江三桥、长江大桥附近古深槽断面形态及底部沉积物颗粒级配,选用沙莫夫公式、河海大学公式等,计算了末次盛冰期时河槽底部的泥沙起动流速及断面平均流速.根据流量-流速-过水断面之间的关系式,计算得出末次盛冰期时长江的流量约为12000~16000m3/s.  相似文献   

5.
东北漫岗黑土区春季冻融期浅沟侵蚀   总被引:7,自引:0,他引:7  
浅沟侵蚀是东北漫岗黑土区农耕地上常见的水蚀类型,往往对坡耕地造成严重的破坏。2005年春季,通过对两个小流域浅沟侵蚀的调查测量,发现该区浅沟侵蚀相当严重,两流域分别形成浅沟14条、16条,浅沟总长度分别达3 269 m、2 146 m,浅沟密度分别为908 m/km2、766 m/km2,侵蚀深度分别为0.17 mm、0.16 mm,侵蚀模数分别达181.8 t/km2、173.6 t/km2。2005年春季两流域浅沟侵蚀期的径流深分别是6.8 mm、7.7 mm。分析表明,研究区在春季表层土壤解冻、地表裸露和存在季节性冻土层的条件下,春季融雪及强降水易造成强烈的浅沟侵蚀。在分布上,浅沟一般位于坡面的中下部,而且多发育在瓦背状坡面的集流水路上。另外,耕作措施对浅沟的形成和发展也有重要影响。  相似文献   

6.
长江南京段历史洪水位追溯   总被引:14,自引:0,他引:14  
何华春  王颖  李书恒 《地理学报》2004,59(6):938-947
沿长江南岸幕府山、燕子矶岸段的石灰岩崖壁上,保留着数道受江水浸淹形成的色深且具有溶蚀孔隙的水平印痕,沿江一线分布。在采石矶岸段的岩壁上也存在着高程大致相当的水位痕迹,反映出是保存在长江南岸岩壁上的区域性洪水位遗迹。经查阅现代水文记录与历史文献,分析对比区域地貌与沉积地层,初步论定:高出长江江面5~6 m,高程分别为8.5 m和9.5 m的第一道和第二道水位遗迹是与现代长江洪水位相当的古洪水位遗迹,目前虽然已脱离长江江面,但现代长江洪水仍可达到此高度,其重现期为10~50年;高程为10.5 m的第三道水位遗迹较南京有文字记载的百年一遇特大洪水位仍高出0.3 m,相当于南京地区100~200年一遇的大洪水水位,由此印证长江南京段防洪堤高度合适;而最高的一道古水位遗迹高程为12.8 m,可能相当于全新世高海面时的洪水位。  相似文献   

7.
徐晓君  杨世伦  张珍 《地理科学》2010,30(1):103-107
于2008年在宜昌至徐六径之间的1 600 km干流河道进行30个横断面取样和分析,与前人于三峡水库蓄水前的取样分析资料进行对比。结果表明:①三峡水库蓄水以来坝下游约400 km的干流河床(宜昌至城陵矶)沉积物出现全程粗化,越近大坝粗化越明显,这种沉积物粗化与水库蓄水后坝下游河床出现的强烈侵蚀密切相关;②蓄水前后城陵矶以下的1 200 km干流河床沉积物粒度的沿程趋势基本一致;③蓄水后河床沉积物仍保持沿程向下游变细且越近河口变化越缓慢的格局。  相似文献   

8.
鄱阳湖水文特征动态变化遥感监测   总被引:5,自引:0,他引:5  
孙芳蒂  马荣华 《地理学报》2020,75(3):544-557
鄱阳湖是中国第一大淡水湖,对鄱阳湖的水文变化进行持续监测可以为流域内生态环境变化提供基础数据,有利于研究其与长江和流域内河流的交互关系,更好地服务于陆面过程模式和水资源管理。本文利用卫星测高数据反演的鄱阳湖水位数据与MODIS数据结合,对鄱阳湖2000—2015年的水位、水域面积和水量变化进行研究,并通过水量平衡模型,推导出了同期长江—鄱阳湖的水量交互。研究发现,2000—2015年鄱阳湖面积呈现波动性变化,最大水域面积为3600 km 2,是最小水域面积482 km 2的7.5倍。2004年、2007年、2009年和2011年水域面积比较低,2012年后形势好转。每年1月、2月、12月份是鄱阳湖干季,水域面积低至500 km 2,湖口处水位可低至4.71 m,湖面从南往北倾斜,南北水位差异达2.59 m。相对于2000—2015年最低水量,干季时湖泊水量平均增加量为3 km 3。每年6—9月份是鄱阳湖的湿季,水域面积一般大于2670 km 2,水位高于15 m,南北水位差异不大,相对于2000—2015年最低水量,湿季时湖泊水量平均增加量为12 km 3。2000—2015年鄱阳湖流入长江的水量范围为-7~40.66 km 3,每年有93.33%的时间水流从鄱阳湖流入长江。流入长江的水量多少具有明显的季节性,通常5月、6月流入长江的水量高于7月、8月,主要因为7月、8月长江中上游降水增加,长江干流来水增多,对鄱阳湖湖水倒灌有一定的顶托作用。  相似文献   

9.
基于WaTEM/SEDEM模型的沂河流域土壤侵蚀产沙模拟   总被引:1,自引:0,他引:1  
基于WaTEM/SEDEM模型,结合临沂水文站和角沂水文站的输沙数据对模型进行校正和验证,分析模拟1975—2015年沂河流域侵蚀产沙的时空变化特征,并进一步研究降水、地形位和土地利用变化对流域侵蚀产沙的影响。结果表明:① 沂河流域输沙能力系数Ktc-low和Ktc-high在40 m和150 m组合下效果最优,模型在沂河流域具有较好的适用性。② 1975—2015年,沂河流域主要以侵蚀为主,微度侵蚀所占面积最大,其次是剧烈侵蚀,沉积主要分布在河谷处;流域侵蚀强度呈现先增加后减少的趋势,侵蚀模数由1975年的30.92 t·hm-2·a-1增加至1995年的49.32 t·hm-2·a-1再下降至2015年的29.60 t·hm-2·a-1;各县(区)平均侵蚀模数为沂水县>费县>沂南县>沂源县>蒙阴县>平邑县>兰山区。③ 沂河流域土壤侵蚀产沙强度的变化是降水、地形、土地利用等综合作用的结果。1975—2015年,流域降雨侵蚀力呈现先降低后升高又降低的变化趋势,各县(区)平均降雨侵蚀力为费县>兰山区>沂南县>蒙阴县>平邑县>沂水县>沂源县,降雨侵蚀力时空变化与流域侵蚀产沙强度时空变化并不完全一致;地形位等级空间分布与流域侵蚀产沙强度空间分布基本一致,侵蚀产沙的优势地形位区间是4~6级,即高程75~428 m,坡度5°~39°;耕地和林地的转化是土壤侵蚀强度转化最主要的原因,林地转化为耕地使侵蚀强度面积升高3389.97 hm2·a-1,耕地转林地则使侵蚀强度面积降低2216.65 hm2·a-1,草地与其他土地利用类型的转化对流域侵蚀强度影响较小。该研究可为区域土地利用方式调整和水土流失调控提供参考。  相似文献   

10.
黄河内蒙古不同河型段对洪水过程的响应特征   总被引:7,自引:0,他引:7  
黄河内蒙古河段的河道淤积近年来有所加重,一些人寄望于人造洪峰冲沙来降低河床。本文根据典型年份的最大洪水的流量—水位过程线变化特征,揭示黄河内蒙古不同河型段对这些洪水的响应机制,得出黄河内蒙古河段洪水的流量—水位过程线类型有线形、顺时针环线、逆时针环线3类单一关系和线形+逆时针环线、逆时针环线+线形、"8"字形+线形、嵌套状逆时针环线以及交叉线形5类复合关系。这些关系总体上可以反映洪水过程中河床是侵蚀还是沉积、何时侵蚀何时沉积、以及冲淤是否具有反复性。黄河内蒙古冲积性河段的河道对同一次洪水过程的响应沿程表现出分化现象,其中辫状河段以河床侵蚀下降为特征,弯曲河段以河床明显沉积升高为特征,而顺直河段以少量沉积或冲淤平衡为特征。不同河型段的河道对洪水的响应趋势与洪水动能的沿程减小相适应,洪峰含沙量沿程减小是该趋势的具体体现。人造洪峰冲沙难以逆转上述淤积趋势,对防治洪灾帮助有限。  相似文献   

11.
The Tianjiazhen reach of the middle Yangtze is about 8 km long, and characterized by a narrow river width of 650 m and local water depth of > 90 m in deep inner troughs, of which about 60 m is below the mean sea level. The troughs in the channel of such a large river are associated with regional tectonics and local lithology. The channel configuration plays a critical role in modifying the height and duration of river floods and erosion of the riverbed. The formation of the troughs in the bed of the Yangtze is considered to be controlled by sets of NW–SE-oriented neotectonic fault zones, in which some segments consist of highly folded thick Triassic limestone crossed by the Yangtze River. Several limestone hills, currently located next to the river channel, serve as nodes that create large vortices in the river, thereby accelerating downcutting on the riverbed composed of limestone highly susceptible to physical corrosion and chemical dissolution. Hydrological records indicate that the nodal hills and channel configuration at Tianjiazhen do not impact on normal flow discharges but discharges > 50,000 m3s− 1 are slowed down for 2–3 days. Catastrophic floods are held up for even longer periods. These inevitably result in elevated flood stages upstream of prolonged duration, affecting large cities such as Wuhan and a very large number of people.  相似文献   

12.
长江中游马口-田家镇河段40年来河道演变   总被引:2,自引:1,他引:1  
Quantitative analysis was performed on the filling-scouring process for the river reach within Makou and Tianjiazhen, the middle Yangtze River with the help of GIS and DEM techniques. The research results indicate that the river reach between Makou and Tianjiazhen was dominated by the scouring process, and the magnitude of scouring is increasing over time. The intensity of scouring process is more in the deep and narrower river reach than shallower and wider ones. The river reach in the Makou and Tianjiazhen river knot is in fre-quent scouring and filling process, however the river reach upper to the Makou and lower to the Tianjiazhen river knot is in moderate scouring and filling process. The river reach just upstream or downstream to the river knot (e.g. Makou and Tianjiazhen river knot in this research) is dominated by filling process and the river reach in the river knot is dominated by the scouring process. Research results indicate no changes in the boundary of the river but the scouring and the filling magnitude in specific river channel is strong. The filling and the scouring process of the study river reach is greatly impacted by the sediments and water from the upstream of the study river reach. The construction of the Three Gorges Dam just upstream to Yichang will cause further decrease of the release of the sediment load to the middle and the lower Yangtze River basin, which will further intensify the scouring process of the river channel in the study river reach.  相似文献   

13.
Based on measured hydrological data by using ship-mounted Acoustic Doppler Current Profiler (ADCP) instrument, we analyzed shapes of river cross sections of the middle Yangtze River basin (mainly focusing on Makou and Tianjiazhen river reach). Hydrodynamic properties of river channels were also discussed. The research results indicate that nonlinear relationships can be identified between river-width/river-depth ratio (W/D ratio), sizes of cross section and mean flow velocity. Positive relations are detected between W/D ratio and mean flow velocity when W/D<1; and negative relations are observed when W/D>1. Adverse relationships can be obtained between W/D ratio and cross-section area. Geomorphologic and geologic survey indicates different components of river banks in the wider and narrower river reaches respectively. These may be the main driving factors causing unique hydrological properties of river channels in the middle Yangtze River basin. Narrower river cross sections tend to raise water level in the upstream river reach near narrower river channel, giving rise to backwater effects. River knots can cause serious backwater effects, which is harmful for flood mitigation. However river knots will also stabilize river channel and this will be beneficial for river channel management. The results of this paper may be helpful for flood mitigation and river channel management in the middle Yangtze River basin.  相似文献   

14.
Quantitative analysis was performed on the filling-scouring process for the river reach within Makou and Tianjiazhen, the middle Yangtze River with the help of GIS and DEM techniques. The research results indicate that the river reach between Makou and Tianjiaz-hen was dominated by the scouring process, and the magnitude of scouring is increasing over time. The intensity of scouring process is more in the deep and narrower river reach than shallower and wider ones. The river reach in the Makou and Tianjiazhen river knot is in fre-quent scouring and filling process, however the river reach upper to the Makou and lower to the Tianjiazhen river knot is in moderate scouring and filling process. The river reach just upstream or downstream to the river knot (e.g. Makou and Tianjiazhen river knot in this re-search) is dominated by filling process and the river reach in the river knot is dominated by the scouring process. Research results indicate no changes in the boundary of the river but the scouring and the filling magnitude in specific river channel is strong. The filling and the scouring process of the study river reach is greatly impacted by the sediments and water from the upstream of the study river reach. The construction of the Three Gorges Dam just up-stream to Yichang will cause further decrease of the release of the sediment load to the mid-dle and the lower Yangtze River basin, which will further intensify the scouring process of the river channel in the study river reach.  相似文献   

15.
长江干流江苏段44年来河道冲淤变化的时空特征   总被引:3,自引:0,他引:3  
王建  刘平  高正荣  白世彪  曹光杰  屈贵贤 《地理学报》2007,62(11):1185-1193
通常认为气候变暖引起的海平面上升将导致下游河道的淤积, 流域水土保持和水库建设引起的上游来沙量的减少将导致下游河道的冲刷。然而, 长江下游河道是如何对海平面上升和上游来沙量的减少做出响应的, 至今还没有直接的确凿的证据。在地理信息技术支撑下, 对长江干流江苏段(约330 km) 5 个时期1:25000~1:60000 的河道地形图进行了数字化, 建立了1959、1970、1985、1992 和2003 年河道数字地形图, 对河道的冲淤变化进行了计算分析。 结果表明, 长江干流江苏段在1985 年前后发生过明显的河道冲淤转换: 由1959-1985 年之间的平均淤积状态转变为1985-2003 年之间的平均冲刷状态。主要原因是1985 年以后该河段的上游来沙量的减少。1959-1985 年之间长江干流江苏段河道的淤积过程, 存在着由上游向下游推进的“顺流堆积”现象。1985-2003 年之间, 下段冲刷速率大于中段和上段。  相似文献   

16.
Based on measured hydrological data by using ship-mounted Acoustic Doppler Current Profiler (ADCP) instrument, we analyzed shapes of river cross sections of the middle Yangtze River basin (mainly focusing on Makou and Tianjiazhen river reach). Hydrodynamic properties of river channels were also discussed. The research results indicate that nonlinear relationships can be identified between river-width/river-depth ratio (W/D ratio), sizes of cross section and mean flow velocity. Positive relations are detected between W/D ratio and mean flow velocity when W/D<1; and negative relations are observed when W/D>1. Adverse relationships can be obtained between W/D ratio and cross-section area. Geomorphologic and geologic survey indicates different components of river banks in the wider and narrower river reaches respectively. These may be the main driving factors causing unique hydrological properties of river channels in the middle Yangtze River basin. Narrower river cross sections tend to raise water level in the upstream river reach near narrower river channel, giving rise to backwater effects. River knots can cause serious backwater effects, which is harmful for flood mitigation. However river knots will also stabilize river channel and this will be beneficial for river channel management. The results of this paper may be helpful for flood mitigation and river channel management in the middle Yangtze River basin. Foundation: National Natural Science Foundation of China, No.40701015; Key Project of National Natural Science Foundation of China, No.40730635 Author: Zhang Qiang (1974–), Ph.D and Associate Professor, specialized in natural hazards and climatic changes, hydrologic statistics, floods and fluvial geomorphology.  相似文献   

17.
In this study, data measured from 1955-2016 were analysed to study the relationship between the water level and river channel geometry adjustment in the downstream of the Three Gorges Dam (TGD) after the impoundment of the dam. The results highlight the following facts: (1) for the same flow, the low water level decreased, flood water level changed little, lowest water level increased, and highest water level decreased at the hydrological stations in the downstream of the dam; (2) the distribution of erosion and deposition along the river channel changed from “erosion at channels and deposition at bankfulls” to “erosion at both channels and bankfulls;” the ratio of low-water channel erosion to bankfull channel erosion was 95.5% from October 2002 to October 2015, with variations between different impoundment stages; (3) the low water level decrease slowed down during the channel erosion in the Upper Jingjiang reach and reaches upstream but sped up in the Lower Jingjiang reach and reaches downstream; measures should be taken to prevent the decrease in the channel water level; (4) erosion was the basis for channel dimension upscaling in the middle reaches of the Yangtze River; the low water level decrease was smaller than the thalweg decline; both channel water depth and width increased under the combined effects of channel and waterway regulations; and (5) the geometry of the channels above bankfulls did not significantly change; however, the comprehensive channel resistance increased under the combined effects of riverbed coarsening, beach vegetation, and human activities; as a result, the flood water level increased markedly and moderate flood to high water level phenomena occurred, which should be considered. The Three Gorges Reservoir effectively enhances the flood defense capacity of the middle and lower reaches of the Yangtze River; however, the superposition effect of tributary floods cannot be ruled out.  相似文献   

18.
黄河下游河道断面形态参数变化及其水沙过程响应   总被引:1,自引:0,他引:1  
刘慰  王随继  王彦君 《地理科学》2020,40(9):1563-1572
基于1965—2015年黄河下游花园口、高村、泺口站的逐年水文和汛前河道断面的实测资料,分析了河道断面形态参数(河道断面面积,河道宽深比等)的变化,以及对河道断面形态与来水来沙间的关系做出定量化分析。结果表明:主槽断面形态参数与水沙搭配以及前期断面形态密切相关,沿程3个断面形态参数调整方式存在显著差异。河宽调整幅度沿程减小,辫状河段变幅最大,尤其在1986—1999年,辫状河段萎缩程度最为严重,其次为弯曲河段,顺直河段横向调整幅度最小。受到前期断面形态的影响,辫状河段河道断面调整方式既有横向展宽(萎缩)又有垂直加深(淤积);弯曲河段河道宽深比与流量呈较弱的正相关关系,具有横向和垂向的调整方式;而顺直河段的宽深比与流量呈负相关关系,与来沙系数呈正相关关系,河道以垂直加深(淤积)为主。  相似文献   

19.
长江干流河道对流域输沙的调节作用   总被引:1,自引:0,他引:1  
戴仕宝  杨世伦  李鹏 《地理学报》2006,61(5):461-470
利用长江干流和主要支流上测站1956~2004年的输沙量资料,对干流未测区域的来沙进行了估计。根据泥沙平衡 (Sediment budget) 概念,对长江干流河道的冲淤对来水来沙的响应以及对入海泥沙的影响进行研究发现,长江干流屏山至大通河道平均淤积速率为88.58×106 t/a,河道淤积占总的来沙量及大通站输沙量比例分别为14%与21%。由于河道淤积,大通站输沙量减少了17.5%。总体来说上游淤积较轻,宜昌至汉口区间淤积严重,汉口至大通区间为微冲。长江干流的河道冲淤与流域总的来沙具有显著的相关关系,但各段河道的冲淤对流域来沙的响应各不一样。上游的冲淤与流域的径流量和来沙量均没有很好的相关性,宜昌-汉口段河道冲淤的变化与宜昌站的来沙具有显著的相关性;影响汉口-大通间河道的冲淤变化的主要因素是流域的来水量,河道的冲淤与大通站径流量的存在显著的负相关关系。三峡水库蓄水后整个长江干流的冲淤形势发生了根本的变化。三峡水库的蓄水运用有效地减轻了洞庭湖的泥沙淤积,同时也降低了洞庭湖的对长江干流泥沙的调节作用;长江上游干流河道淤积增强,中下游河道出现冲刷,但不同的河段表现不一;中下游河道冲刷量小于预测值,三峡水库的蓄水运用直接导致了长江入海泥沙的减少。  相似文献   

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