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1.
三峡水库运行下洞庭湖盆冲淤过程响应与水沙调控阈值   总被引:4,自引:0,他引:4  
以1951-2011 年洞庭湖区及荆江段干流主要控制站实测径流输沙量资料为依据,分析三峡水库不同蓄水阶段及不同调度方式下洞庭湖盆冲/淤响应,并提出上游来水来沙调控阈值。结果表明:① 荆南三(四)口流量与枝城站流量、荆南三(四)口输沙率存在极显著正相关(p < 0.0001),决定系数r2分别为0.859 及0.895。② 与三峡水库蓄水运用前(1999-2002)相比,一、二期蓄水阶段及全面试验性蓄水阶段(2008.10-2011.12)洞庭湖盆年均冲淤量由+4796.4×104 t 依次递减为+684.1×104 t、+449.8×104 t 及-559.6×104 t,湖盆冲淤率由+70.25%分别降至+31.13%、+23.56%及-42.64%。③ 预泄调度及蓄水调度期,湖盆泥沙均由以淤积为主转变为以冲刷为主,防洪补偿调度期湖盆泥沙表现为淤积,而在补水调度运用期则表现为冲刷。④ 洞庭湖盆处于冲/淤临界平衡状态时的荆南三口平均流量、输沙率及含沙量分别为970.81 m3/s、466.82 kg/s 及0.481 kg/m3。并认为,为增强湖泊调蓄功能,必须进一步优化三峡水库调度方式,合理调控下泄水沙量。  相似文献   

2.
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   

3.
根据对近10 年来长江入海泥沙量和河口冲淤的对比分析, 探讨水下三角洲冲淤对长江入海泥沙锐减以及三峡工程运行的响应。结果表明: (1) 三峡水库蓄水导致长江入海泥沙减少1×108 t/a 量级; (2) 1995-2000 年、2000-2004 年和2004-2005 年研究区淤积(冲刷) 面积分别占75.5% (24.5%)、30.5% (69.5%) 和14% (86%), 垂向冲淤速率(负为冲刷) 分别为6.4 cm/a、-3.8 cm/a 和-21 cm/a。(3) 由于地形和水动力的变化以及工程的影响, 研究区内冲淤对河流来沙减少的响应存在显著空间差异。结论包括: 三峡水库蓄水加剧了长江入海泥沙的减少; 入海泥沙的锐减是水下三角洲从淤积为主向侵蚀为主转变的主要原因。随着水库拦沙能力的增强等流域人类活动的影响, 长江入海泥沙将进一步下降, 河口口门区的冲刷可能加剧, 值得有关部门重视。  相似文献   

4.
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   

5.
焦伟  刘新平  张琳  梁玲霞 《干旱区地理》2018,41(6):1396-1404
60 a来塔里木河流域耕地面积净增100×104 hm2,在流域内部形成众多生态环境安全问题。通过选取水资源生态环境指数、社会生态环境指数和生态环境压力指数,运用ESDA空间分析方法和GWR模型对塔里木河流域35 a间土地开发与生态时空演变特征和空间响应关系进行研究,构建"土地开发-生态风险预警"模型,得出以下结论:1980-2015年克孜勒苏州和喀什地区生态等级正向转移比例较大,有84.86%的比例由较低等级(I)正向转移为低等级(Ⅱ);和田地区的克里雅河流域,阿克苏北部区域以及塔里木河末端且末县等级退化严重,负向转移比例23.46%。和田、阿克苏、喀什地区每增加1.0×104 hm2未利用地开垦规模,综合生态环境分值下降0.60到0.35,而克孜勒苏州则上升1.3~2.1;上游喀什与中游阿克苏两地区每1.0×104 hm2生态退耕,每年将分别化解32.06×104 t和15.60×104 t化肥污染压力。阿克苏地区与巴音郭楞州土地开发生态风险达到环境资源承载力指数的75%以上,预警程度超过Ⅱ级,而克孜勒苏州土地开发处于生态安全范围。每1.0×104 hm2未利用土地开发,全流域风险指数增长均值为0.003 4,下游巴音郭楞州在增加15×104~20×104 hm2耕地后,生态风险将逼近并超过环境预警界限,上游克孜勒苏州将在15 a之后进入中度警告阶段。  相似文献   

6.
田富强 《干旱区地理》2017,40(3):640-646
基于实际粮食产量与抛荒耕地种植粮食作物条件下粮食总产量关系的分析方法有助于促进耕地红线制度改进。依据全国粮食总产量、种植面积与耕地面积数据,构造2016-2033 年粮食产量与耕地面积红线耦合的基本、法定、过渡、新型与理想耦合红线标准;分析阶段性耦合与可持续耦合两种升级路径。研究表明:2001-2015 年,全国耕地面积与粮食产量耦合不足。据此,提出以新增建设用地指标与抛荒治理面积挂钩的政策建议;在抛荒比例11.12%的条件下,新增单位面积建设用地,治理28.85 倍抛荒耕地;2017、2021、2025、2029、2033 年分别实现有效利用1.200×108 hm2、1.243×108 hm2、1.279×108 hm2、1.314×108 hm2、1.349×108 hm2 耕地,粮食总产量分别比基期增加4.838×106、2.4190×107、4.354 2×107、5.321 8×107、8.824 6×107 t;红线耦合系数分别达到0.882 471、0.909 740、0.937 008、0.950 643与1;有效利用耕地增加12.5%,粮食总产量提升14.2%。  相似文献   

7.
利用ArcGIS对1977—2004年不同时段的长江口崇明岛向海侧水下地形测量资料进行处理,并结合该区的潮滩历史遥感图片、现场高程测量以及同期大通站输沙率资料,探讨三角洲前缘岸滩冲淤演变对河流来沙减少响应的敏感性。结果表明:研究区岸滩的淤涨速率总体上在年代以上时间尺度随着长江来沙减少而下降,但由于局部滩—槽演变和海洋动力条件的影响,某些年代内和某些部位可能出现相反的趋势,使岸滩演变对河流来沙减少的响应变得复杂化。在此基础上预测今后几十年研究区的冲淤趋势。  相似文献   

8.
长江三角洲前缘近十余年的冲淤演变及工程影响研究   总被引:1,自引:0,他引:1  
根据1994-2008年国家专业部门测量的长江口口门区水下地形图及相关数据资料,分析了长江河口三角洲近十余年的冲淤过程:1)在长江来沙显著减少的背景下,三角洲出现了由淤到冲的转换,1994-2000年、2000-2008年,长江口门研究区(1 500 km2)净淤积量分别为7.25亿m3(1.21亿m3/a)和-1.23亿m3(-0.15亿m3/a),冲淤转换的临界输沙率约为2.97亿t(大通站).冲淤转换的时间大约发生在2000-2002年;2)三峡水库蓄水加速了长江来沙的减少,近几年入海泥沙减少和河口口门区出现的冲刷有一半左右归因于三峡工程的运行;3)2000年以来,河口口门外水深超过7 m的大部分区域处于蚀退,尤以10~20m区域侵蚀最为强烈,但0m以上潮间带滩地较前一时段淤积加强,1994-2008年,四大滩地的面积平均增长了约34.2%.研究结果表明:入海泥沙减少是长江三角洲由淤积转为侵蚀的主要原因,三峡水库蓄水加剧了长江入海泥沙的减少及三角洲的侵蚀,河口滩地的逆势淤积是近年一系列的河口重大工程影响的结果.  相似文献   

9.
洪水资源化是解决喀斯特地区水资源严重缺乏的有效途径。文章在贵州省喀斯特地区选取40个流域作为研究样区,利用面向对象技术的监督分类型方法,提取典型喀斯特地貌类型;分析流域样区特征,利用系统聚类法,将其划分为6种流域类型,即是:喀斯特低中山型(Ⅰ)、峰丛谷地型(Ⅱ)、混合型(Ⅲ)、峰林盆地(溶原)型(Ⅳ)、峰丛洼地型(Ⅴ)和峰林地貌型(Ⅵ);利用相关分析方法,分析不同地貌空间配置对洪水径流特征的影响,探索地貌空间配置对洪水的分配与承载规律,从流域结构角度研究地貌空间配置对洪水资源化的实现。研究表明:1)洪水径流模数、径流系数及其Cv值曲线呈现“双峰型”分布,且分别在峰丛谷地型流域(Ⅱ)和峰丛洼地型流域(Ⅴ)达极大值;2)不同流域类型实现洪水资源利用总量,从大到小排序为:Ⅴ(6.22×108 m3)>Ⅰ(2.88×108 m3)>Ⅵ(1.49×108 m3)>Ⅱ(1.34×108 m3)>Ⅳ(1.25×108 m3)>Ⅲ(0.55×108 m3);3)除峰丛谷地型(Ⅱ)和混合型(Ⅲ)流域外,所有流域类型的地下洪水资源总量大于地表洪水资源总量。喀斯特流域的洪水资源化,深受喀斯特地表的起伏及其流域侵蚀基准面和溶蚀基准面的控制。  相似文献   

10.
近50 a博斯腾湖逐年水量收支估算与水平衡分析   总被引:2,自引:0,他引:2       下载免费PDF全文
据博斯腾湖流域1958-2010年期间主要河流开都河、黄水沟、清水河、孔雀河的逐年流量资料,结合焉耆盆地降水、蒸发要素的同期观测资料,对大湖区的逐年水量收支进行计算,并依据水量平衡原理对博湖大湖区残差水量进行了逐年分析。结果表明:(1)1958-2010年期间年均入湖水量14.34×108 m3/a,其中入湖河水约占95%;年均输出水量13.96×108 m3/a,其中大湖区输入孔雀河水量约占43%,湖面蒸发耗水量占57%;湖区年均蓄水量71.57±3.92×108 m3108 m3/a,湖水年均水位为1 047.01±0.94 m;(2)极端水文年度水量平衡分析指出:1986年为最枯年份,入湖河水是多年平均值的62%,而出湖河水量是多年平均值的153%,导致年内湖区水位下降0.94 m;2002年最丰年份入湖河水是多年平均值的2.6倍,致使年内水位上升0.80 m;(3)残差水量逐年“正负”变化指出,湖水与地下水之间存在互补关系,过去53 a间湖水补给地下水的年均水量为0.87×108 m3/a。  相似文献   

11.
51 年来珠江流域输沙量的变化   总被引:11,自引:0,他引:11  
根据1955~2005 年珠江流域主要水文站的径流量和输沙量数据以及流域降水量数据, 对珠江流域输沙量的变化进行了研究, 结果发现: (1) 石角站(北江)、博罗站(东江)、迁江站 (红水河) 以及高要站(西江干流) 输沙量呈下降趋势, 而柳州站(柳江)、南宁站(郁江) 的输沙量则呈上升趋势。(2) 1955~2005 年珠江入海泥沙(石角站、博罗站、高要站输沙量之和) 均 值为7529×104 t/yr, 并在总体上也呈下降趋势。珠江入海泥沙还存在着年际变化上的波动性和阶段性特征, 即从1950 年代到1980 年代呈显著的上升趋势, 而此后呈显著下降趋势。通过分析认为: (1) 气候变化是造成珠江流域输沙量年际波动性变化的主要因素, 但不是造成珠江入海泥沙下降的主要影响因素; (2) 珠江流域入海泥沙的阶段性变化特征与水土流失和水土保持相关; (3) 水库建设是造成1955~2005 年珠江流域入海泥沙减少的主要因素。(4) 珠江流域入海泥沙将可能进一步减少, 这将对未来珠江河口环境和三角洲的演变产生影响, 加强进一步的研究非常必要。  相似文献   

12.
近60年黄河水沙变化及其对三角洲沉积的影响   总被引:1,自引:1,他引:0  
In order to find out the variation process of water-sediment and its effect on the Yellow River Delta, the water discharge and sediment load at Lijin from 1950 to 2007 and the decrease of water discharge and sediment load in the Yellow River Basin caused by human disturbances were analyzed by means of statistics. It was shown that the water discharge and sediment load into the sea were decreasing from 1950 to 2007 with serious fluctuation. The human activities were the main cause for decrease of water discharge and sediment load into the sea. From 1950 to 2005, the average annual reduction of water discharge and sediment load by means of water-soil conservation practices were 2.02×109 m3 and 3.41×108 t respectively, and the average annual volume by water abstraction for industry and agriculture were 2.52×1010 m3 and 2.42×108 t respectively. The average sediment trapped by Sanmenxia Reservoir was 1.45×108 t from 1960 to 2007, and the average sediment retention of Xiaolangdi Reservoir was 2.398×108 t from 1997 to 2007. Compared to the data records at Huanyuankou, the water discharge and sediment load into the sea decreased with siltation in the lower reaches and increased with scouring in the lower reaches. The coastline near river mouth extended and the delta area increased when the ratio of accumulative sediment load and accumulative water discharge into the sea (SSCT) is 25.4–26.0 kg/m3 in different time periods. However, the sharp decrease of water discharge and sediment load into the sea in recent years, especially the Yellow River into the sea at Qing 8, the entire Yellow River Delta has turned into erosion from siltation, and the time for a reversal of the state was about 1997.  相似文献   

13.
In order to find out the variation process of water-sediment and its effect on the Yellow River Delta, the water discharge and sediment load at Lijin from 1950 to 2007 and the decrease of water discharge and sediment load in the Yellow River Basin caused by human disturbances were analyzed by means of statistics. It was shown that the water discharge and sediment load into the sea were decreasing from 1950 to 2007 with serious fluctuation. The human activities were the main cause for decrease of water discharge and sediment load into the sea. From 1950 to 2005, the average annual reduction of water discharge and sediment load by means of water-soil conservation practices were 2.02×109 m3 and 3.41×108 t respectively, and the average annual volume by water abstraction for industry and agriculture were 2.52×1010 m3 and 2.42×108 t respectively. The average sediment trapped by Sanmenxia Reservoir was 1.45×108 t from 1960 to 2007, and the average sediment retention of Xiaolangdi Reservoir was 2.398×108 t from 1997 to 2007. Compared to the data records at Huanyuankou, the water discharge and sediment load into the sea decreased with siltation in the lower reaches and increased with scouring in the lower reaches. The coastline near river mouth extended and the delta area increased when the ratio of accumulative sediment load and accumulative water discharge into the sea (SSCT) is 25.4–26.0 kg/m3 in different time periods. However, the sharp decrease of water discharge and sediment load into the sea in recent years, especially the Yellow River into the sea at Qing 8, the entire Yellow River Delta has turned into erosion from siltation, and the time for a reversal of the state was about 1997.  相似文献   

14.
Knowledge of fluvial sediment supply to the coastal sediment budget is important for the assessment of the impacts on coastal stability. Such knowledge is valuable for designing coastal engineering schemes and the development of shoreline management planning policies. It also facilitates understanding of the connection between rivers in the hinterland and adjoining coastal systems. Ghana's coast has many fluvial sediment sources and this paper provides the first quantitative assessments of their contributions to the coastal sediment budget. The methods use largely existing data and attempt to cover all of Ghana's significant coastal rivers. Initially work was hindered by insufficient direct measured data. However, the problem was overcome by the application of a regression approach, which provides an estimated sediment yield for non-gauged rivers based on data from gauged rivers with similar characteristics. The regression approach was effective because a regional coherence in behaviour was determined between those rivers, where direct measured data were available. The results of the assessment revealed that Ghana's coast is dissected by many south-draining rivers, stream and lagoons. These rivers, streams and lagoons supply significant amounts of sediment to coastal lowlands and therefore contribute importantly to beaches. Anthropogenic impoundment of fluvial sediment, especially the Akosombo dam on the Volta River, has reduced the total fluvial sediment input to the coast from about 71 × 106 m3/a before 1964 (pre-Akosombo dam) to about 7 × 106 m3/a at present (post-Akosombo dam). This sharp reduction threatened the stability of the east coast and prompted an expensive ($83 million) defence scheme to be implemented to protect 8.4 km-long coastline at Keta. Sections of Ghana's coast are closely connected to the hinterland through the fluvial sediment input from local rivers. Therefore, development in the hinterland that alters the fluvial sediment input from those local rivers could have significant effects on the coast. There is the need, therefore, to ensure that catchment management plans and coastal management plans are integrated or interconnected.  相似文献   

15.
Over the past decades, > 50,000 dams and reforestation on the Yangtze River (Changjiang) have had little impact on water discharge but have drastically altered annual and particularly seasonal sediment discharge. Before impoundment of the Three Gorges Dam (TGD) in June 2003, annual sediment discharge had decreased by 60%, and the hysteresis of seasonal rating curves in the upper reaches at Yichang station had shifted from clockwise to counterclockwise. In addition, the river channel in middle-lower reaches had changed from depositional to erosional in 2002.During the four years (2003–2006) after TGD impoundment, ~ 60% of sediment entering the Three Gorges Reservoir was trapped, primarily during the high-discharge months (June–September). Although periodic sediment deposition continues downstream of the TGD, during most months substantial erosion has occurred, supplying ~ 70 million tons per year (Mt/y) of channel-derived sediment to the lower reaches of the river. If sand extraction (~ 40 Mt/y) is taken into consideration, the river channel loses a total of 110 Mt/y. During the extreme drought year 2006, sediment discharge in the upper reaches drastically decreased to 9 Mt (only 2% of its 1950–1960s level) because of decreased water discharge and TGD trapping. In addition, Dongting Lake in the middle reaches, for the first time, changed from trapping net sediment from the mainstem to supplying 14 Mt net sediment to the mainstem. Severe channel erosion and drastic sediment decline have put considerable pressure on the Yangtze coastal areas and East China Sea.  相似文献   

16.
杨桂山 《地理研究》1992,11(2):68-76
本文通过长江口实测氯度与流量和潮位资料的相关分析,预估了未来河口水质的变化。计算表明,当大通站下泄流量不足13×103m3/s时,未来东线调水及海平面上升,将使长江口南支河段水质严重恶化;三峡水库建成后,枯季1-3月增加下泄水量虽可抵消东线调水的影响,但在水库蓄水的10月遇枯水年分,水质将大幅度下降。  相似文献   

17.
Sediment rating parameters and their implications: Yangtze River, China   总被引:4,自引:0,他引:4  
This study examines the characteristics of sediment rating parameters recorded at various gauging stations in the Yangtze Basin in relation to their controls. Our findings indicate that the parameters are associated with river channel morphology of the selected reaches. High b-values (> 1.600) and low log(a) values (< − 4.000) occur in the upper course of the steep rock-confined river, characterizing high unit stream power flows. Low b-values (< 0.900) and high log(a) values (> − 1.000) occur in the middle and lower Yangtze River associated with meandering reaches over low gradients, and can be taken to imply aggradation in these reaches with low stream power. Higher b-values (0.900–1.600) and lower log(a)-values (− 4.000 to − 1.000) characterize the reaches between Yichang and Xinchang, immediately below the Three Gorges. These values indicate channel erosion and bed instability that result from changes in channel gradient from the upstream steep valley to downstream low slope flood plain settings. Differences in channel morphology accompany these changes. Confined, V-shaped valleys occur upstream and are replaced downstream by broad U-shaped channels. The middle and lower Yangtze shows an apparent increase in channel instability over the past 40 years. This inference is based on sediment rating parameters from various gauging stations that record increasing b-values against decreasing log(a)-values over that time. Analysis of the sediment load data also reveals a strong correlation between changes in sediment rating curve parameters and reduction of annual sediment budget (4.70 × 108 t to 3.50 × 108 t/year, from the 1950s to 1990s), largely due to the damming of the Yangtze and sediment load depletion through siltation in the Dongting Lake. Short-term deviations from the general trends in the sediment rating parameters are related to hydroclimatic events. Extreme low b-values and high log(a)-values signify the major flood years, while the reverse indicates drought events. When compared with rivers from other climate settings, it is evident that the wide range of values of the Yangtze rating parameters reflects the huge discharge driven by the monsoon precipitation regime of eastern China.  相似文献   

18.
长江口水沙入海通量的观测与分析   总被引:31,自引:0,他引:31  
在长江口用声学多普勒流速剖面仪(ADCP)进行走航式断面观测,结果表明,采集水样获取的悬沙浓度与ADCP记录的声学信号(后向散射强度)之间存在显著相关关系,因此可据ADCP声学数据获得沿观测断面的高时空分辨率的悬沙浓度剖面。分析结果表明.在徐六泾附近断面以往复流占优势.大潮期间单位时间最大水、悬沙通量值出现于涨潮期.落潮历时较长.落潮期水、悬沙通量分别大于涨潮期水、悬沙通量,净通量向海。长江口南槽拦门沙外侧主要为旋转流.涨潮期间内的水、悬沙通量均分别大于落潮期间的水、悬沙通量。2003年11月12日的观测结果表明.潮周期内通过徐六泾断面向海输运的水与悬沙通量分别为10^9m^3和10^8kg量级:径流量与悬沙输运率分别为10^4m^3/s和10^3kg/s量级。1998年以来徐六泾ADCP流量观测数据与同时间的大通径流量之间存在着显著的相关关系.故可由大通径流量估算徐六泾径流量。作为长江人海径流量.以作为历史资料整编的一种手段。结果表明,长江人海年径流总量略大于大通年径流总量:而在枯水期间人海径流量小于大通径流量。  相似文献   

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