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1.
自2007年太湖无锡水危机事件后,太湖流域内各项水污染防治工作进入快车道,近年来浙江省持续开展水环境治理,针对不同污染源进行分类施策、精准治理,整体水环境质量得到了显著改善.本文根据2007-2019年浙江省环太湖水文巡测资料及主要出入太湖河道水质监测成果,全面分析了出入湖河道的水量、水质及污染物通量的时空变化趋势.结果表明,2007-2019年浙江省年均入湖水量为27.39亿m3,年均出湖水量为26.42亿m3,环湖河道进出水量在2007-2014年以出湖为主,2015-2019年以入湖为主,2015-2019年入湖水量增加受该时段地区降水量较丰的影响.2007-2019年浙江省环湖河道CODMn、NH3-N和TP浓度呈明显下降趋势,TN浓度有所下降,除TN仍处于Ⅴ~劣Ⅴ类水外,其余指标已处于Ⅱ~Ⅲ类水标准,当前环湖河道的CODMn和NH3-N指标已达到《太湖流域水环境综合治理总体方案(2013年修编)》提出的目标值,但TN和TP浓度仍存在较大差距.浙江省环湖河道年平均CODMn、NH3-N、TP和TN入湖通量分别为1.12万、0.18万、0.03万和0.90万t,出湖通量分别为1.13万、0.10万、0.03万和0.62万t,环湖河道除CODMn以净出湖通量为主外,其余指标均以净入湖通量为主,存在一定入湖滞留,其中水量是影响入湖通量的关键因子.  相似文献   

2.
针对太湖水体交换周期近十余年发生的变化,本文收集整理了1986—2018年太湖水文巡测、汛期水文巡测数据以及太湖流域沿江城市引水量、流域降雨量变化数据,基于太湖出入湖水量的变化研究了太湖水体交换周期的变化及原因,并对交换周期变化对水质空间格局的影响进行分析.结果表明:太湖入湖水量有显著上升,2007年以来平均每年入湖水量增长30.8亿m3/a.水体交换周期显著下降,2007年以后约为184 d,相比2007年前下降了26 d.太湖流域及各水利分区近70年来,除去2015和2016年,降雨量无显著变化,主要入湖区下垫面变化造成的入湖水量增加估算在每年2.0 m3左右.太湖入湖水量增加主要集中在湖西区,与沿江口门引水量明显相关.相比2007年前,沿江口门引水量年均增长28.9亿m3/a,而这期间太湖入湖水量增量与这一引水有关.入湖水量的增加开始影响太湖存在的“西浊东清”水质结构,水体交换周期缩短会使东西太湖水质出现均化的现象,东部太湖水质会出现下降的趋势.  相似文献   

3.
王文种  黄对  刘九夫  刘宏伟  王欢 《湖泊科学》2020,32(5):1552-1563
湖泊变化是气候变化的指示器.为探索利用单一短时间尺度的卫星水位数据源估算长时间序列的湖泊水量变化的可行性,本文利用短时间尺度(2016—2018年) Sentinel-3A合成孔径雷达高度计(SRAL)作为唯一卫星水位数据源,以藏北高原内陆湖泊当惹雍错为例,结合基于Landsat光学遥感数据提取的1988—2018年的湖泊面积,综合分析2016—2018年间的非结冰期遥感湖泊面积与遥感湖泊水位变化,基于该时段范围的水位变化-面积变化关系和水量估算公式,估算1988—2018年湖泊水位水量变化与2001—2018年的年内变化,并结合GLDAS产品数据与雪线变化情况初步探讨湖泊变化的可能原因.结果表明:当惹雍错近30年湖泊面积扩张明显,湖泊水位、水量增加显著,相比1988年,2018年的湖泊面积、水位、水量分别增加21.1 km2、5.29 m、44.75亿m3.其中1988—1998年湖泊面积-水位-水量有所减少,2000—2018年间湖泊变化总体呈增加趋势.2001—2018年内湖泊面积、水位、水量变化呈现干湿季特征.1996—2014/2015年湖泊水量变化为38.3亿/35.5亿m3,水量变化趋势、变化量与以往对应时间段的研究结果具有较强的一致性.湖泊面积扩张主要发生在水下地形平缓的东南部和中西部区域.结合气候因素与雪线变化的分析表明,湖泊水量变化受降雨、气温影响复杂,长时间年际尺度上的湖泊水量增长与气温的一致性较降水量强,湖泊湿季受降水量与气温的影响都较大,其中2008—2018年的湿季降水量、气温与水量变化散点拟合的确定性系数R2分别为0.613、0.845.该研究表明Sentinel-3A合成孔径雷达数据在湖泊水量变化估算上的潜力,为利用单一且只具有短时段数据的卫星雷达数据估算长时间序列湖泊水量变化提供依据.  相似文献   

4.
2016-2018年长江下游安庆江段四大家鱼仔稚鱼资源调查分析   总被引:1,自引:0,他引:1  
为探究长江安庆江段四大家鱼仔稚鱼资源现状及其丰度变化与水文因子之间的关系,于2016-2018年4-8月对该江段进行早期资源调查.调查期间共采集到四大家鱼仔稚鱼3178尾,其中以鲢(Hypophthalmichthys molitrix)和草鱼(Ctenopharyngodon idellus)为主,分别占家鱼捕捞总数的67.97%和23.03%.估算2016-2018年通过安庆江段的四大家鱼仔稚鱼径流量分别为21.70×108、14.62×108、12.05×108尾,呈现出逐年减少的趋势.家鱼仔稚鱼丰度自4月中旬呈波动性上升趋势,在7月中上旬达到高峰期.Kruskal-Wallis检验表明采样断面空间分布存在显著性差异,平均漂流密度为北岸(16.09 ind./100 m3) > 南岸(5.40 ind./100 m3) > 江心(3.43 ind./100 m3).GAM模型结果显示,对四大家鱼仔稚鱼丰度影响显著的水文因子为水温、透明度、水位日上涨率和径流量日上涨率,各因子相对重要性依次为水位日上涨率 > 透明度 > 水温 > 径流量日上涨率.其丰度与透明度呈负相关,与水温(24.0~27.3℃)、水位日上涨率和径流量日上涨率均呈正相关关系.本研究中GAM模型累积偏差解释率达到69.8%,较高程度上揭示了水文条件对家鱼仔稚鱼资源丰度的影响,为长江下游四大家鱼的苗汛预测及资源保护策略的制定提供科学依据.  相似文献   

5.
鄱阳湖自然保护区植被生物量时空变化及水位影响   总被引:2,自引:2,他引:0  
基于时间序列Moderate Resolution Imaging Spectroradiometer(MODIS)植被指数,结合野外实测生物量及水文气象等数据,分析了2001 2010年退水期鄱阳湖国家自然保护区湿地植被生物量的空间格局及其时间变化规律,并在此基础上探讨了水位变化的影响.研究结果表明:(1)湿地植被生物量密度多年均值处于0~1402 g/m2之间,除蚌湖四周生物量沿湖心向四周逐渐升高外,其他区域呈现南高北低的分布格局,且其分布与研究区高程密切相关;(2)湿地植被生物量密度多年均值在退水初期为901 g/m2,随时间变化先上升后降低;植被分布面积则随着滩地出露而逐渐增大,随后基本稳定;总生物量呈现单峰变化,在11月初达到最高值.2001 2010年研究区年均生物量变化呈现波动状态,多年均值为18.3×107kg;最高出现在2006年,达到28.2×107kg,2010年最低,仅有8.37×107kg;(3)年均生物量与洲滩出露天数以及植被分布面积呈显著正相关,相关系数分别为0.719和0.865.水位变化为湿地生物量变化的重要影响因素.  相似文献   

6.
《湖泊科学》2022,34(5)
抚仙湖,位于云南省中部,为构造断陷湖. 面积214.7 km2, 平均水深89m, 最大水深155m,蓄水量204×1088 m3(水位1722.5m时), 是我国第二深水湖泊和蓄水量最大的淡水湖.  相似文献   

7.
青海湖水量平衡分析与水资源优化配置研究   总被引:18,自引:4,他引:14  
在充分收集有关资料的基础上研究青海湖1959-2000年间降水径流蒸发湖泊水位地下水补给量的动态变化建立水量平衡分析方程.青海湖水位在波动中持续下降42年来年平均水位累计下降了 3.32 m平均每年下降了0.079 m近年来下降的幅度减小. 同时青海湖储水量不断减少而湖区降水呈增加的趋势河川径流量地下水的入湖补给量 蒸发量呈现下降的趋势. 根据青海湖水平衡分析计算结果预测2010年青海湖流域耗水量将达1.27108m3为维护生态平衡和社会经济持续发展需要跨流域调水量引大济湖4.1108m3.  相似文献   

8.
湖泊水资源持续损失已经成为影响半干旱地区经济社会发展的主要问题之一.然而,由于缺少长期连续的湖泊动态监测数据,该地区湖泊水资源损失过程及其与气候变化和经济社会发展之间的关系没有得到详细的评估.针对此问题,本文以位于半干旱地区的岱海为研究对象,利用改进型归一化差异水体指数从1986—2020年258景Landsat遥感影像中提取湖泊水体边界,结合湖泊水位数据,重建了近60 a岱海水资源量动态变化过程.结果表明:1961—2019年期间,岱海急剧萎缩,湖泊水量共减少9.88×108 m3.同时水量变化趋势分段函数拟合结果表明,岱海水量变化可分为3个阶段:1961—1978年,水量损失速率为0.726×107 m3/a的缓慢损失阶段;1979—2004年,水量损失速率为2.10×107 m3/a的快速损失阶段;2005—2019年,水量损失速率为3.39×107 m3/a的加速损失阶段.相关分析表明:岱海水量损失与流域经济社会发展密切相关.其中,改革开放后流域农业开发利用规模和强度的提高是导致岱海水量损失的主要原因;“西部大开发”战略实施后工业经济的兴起则加速了岱海水量的损失.据此,本研究建议干旱半干旱地区湖泊流域经济社会的发展应与其水资源承载力相协调.  相似文献   

9.
白洋淀是雄安新区的核心生态功能区,近几十年来面临水源不足、湿地萎缩等生态环境问题.选取白洋淀流域上游王快、西大洋及拒马河3个子流域开展河川径流演变研究,结合1969年以来18期白洋淀湿地遥感影像,揭示白洋淀流域河川径流驱动湿地演变的过程机制.结果表明:近60年来白洋淀流域山区径流量呈持续衰减趋势,从P1阶段(1961—1979年)至P3阶段(1997—2019年),典型子流域年径流系数均值由0.29降至0.12,山区年径流总量由30.84×108 m3/a降至11.37×108 m3/a,降幅达63.1%,梯田修建、地下水开采等人类活动是导致径流衰减的主要原因;不同子流域产流和基流减少对径流衰减的贡献率存在差异,以变质岩为主的王快子流域径流衰减的主要原因是地表产流减少,碳酸盐岩分布较广的拒马河子流域径流衰减的主要原因是基流减少;白洋淀湿地面积变化受控于地表水位波动,近60年来白洋淀湿地退化的直接原因是入淀流量减少,根本原因是人类活动影响导致的山区径流衰减.  相似文献   

10.
悬浮颗粒物和沉积物是湖泊有机污染物的主要承载物质,其稳定同位素研究对有效识别有机质污染导致的湖泊富营养化具有重要意义.本研究选取乌梁素海为研究区,于2019年4月(融冰期)、7月(夏灌期)和10月(秋灌期)对湖区及入湖渠道的表层沉积物和悬浮颗粒物中有机碳的δ13C、C/N比及总有机碳(TOC、POC)和总氮(TON、PON)含量进行测定分析,联合采用δ13C、C/N及同位素多元混合模型研究湖泊有机碳来源及其贡献率.结果表明,乌梁素海悬浮颗粒物有机碳δ13CPOC的变化范围为-23.29‰~-29.75‰,呈现10月>4月>7月、入湖渠道>湖区的趋势,悬浮颗粒物POC/PON比变化范围为4.10~21.35,呈现出4月<7月<10月的时间变化,悬浮颗粒有机质主要来源于浮游植物(51.59%)、入湖渠道泥沙(34.60%)和大型水生植物(13.76%).沉积物有机碳δ13CTOC变化范围为-27.58‰~-22.68‰,呈现4月<10月<7月的变化,沉积物TOC/TON比变化范围为3.06~23.77,时空变化明显,沉积物有机质则主要源于入湖渠道挟带的泥沙,贡献达72.79%以上,而浮游植物与大型水生植物的贡献率相差较小,分别为11.85%和15.36%.本研究可以初步判定受入湖渠道影响的富营养化湖泊中悬浮颗粒物和沉积物有机碳来源,为改善湖泊有机污染和研究有机碳来源提供更多理解.  相似文献   

11.
Space monitoring of Aral Sea degradation   总被引:1,自引:0,他引:1  
The results of remote sensing survey of the Aral Sea in its degradation period are given. Satellite images are used to map shoreline retreat from 1961 to 2008 and to measure the decrease in the area. Seasonal variations in shoreline and water area are identified, suggesting seasonal level variations and correlating well with data of satellite altimetry surveys of sea level. Observations covered surge phenomena, seasonal dynamics of landscapes, and the seasonal salinization rhythm in coastal territories with the subsequent formation and weathering of salt crusts. The character of river runoff input into the Great Sea resulting from overbank flooding in artificial water bodies in the Amu Darya delta is identified.  相似文献   

12.
Abstract

Since the beginning of the 1990s, the Aral Sea is made of two separate entities: the Small Aral in the north and the Great Aral in the south. In this study, the water and salt balance of the Great Aral is analysed using newly available data: on the one hand, altimetric data of the sea level provided by the TOPEX/Poseidon satellite; and on the other, climate data provided by the ECMWF and NOAA within the framework of global climate re-analysis. These data indicate that the Great Aral received a mean groundwater inflow of about 4 km3 year-1 between 1993 and 2001. Without this contribution, the Aral Sea would disappear even faster than is being observed today. Moreover, the temporal resolution of the data shows a systematic phase difference between the model prediction and satellite measurements. This phase shift is considered to be due to the formation of temporary lakes between the last station measuring the Amu-Darya discharge and its mouth in the Great Aral.  相似文献   

13.
Abstract

The Vakhsh and Pyandj rivers, main tributaries of the Amu Darya River in the mountainous region of the Pamir Alay, play an important role in the water resources of the Aral Sea basin (Central Asia). In this region, the glaciers and snow cover significantly influence the water cycle and flow regime, which could be strongly modified by climate change. The present study, part of a project funded by the European Commission, analyses the hydrological situation in six benchmark basins covering areas of between 1800 and 8400 km2, essentially located in Tajikistan, with a variety of topographical situations, precipitation amounts and glacierized areas. Four types of parameter are discussed: temperature, glaciation, snow cover and river flows. The study is based mainly on a long-time series that ended in the 1990s (with the collapse of the Soviet Union) and on field observations and data collection. In addition, a short, more recent period (May 2000 to May 2002) was examined to better understand the role of snow cover, using scarce monitored data and satellite information. The results confirm the overall homogeneous trend of temperature increase in the mountain range and its impacts on the surface water regime. Concerning the snow cover, significant differences are noted in the location, elevation, orientation and morphology of snow cover in the respective basins. The changes in the river flow regime are regulated by the combination of the snow cover dynamics and the increasing trend of the air temperature.
Editor Z.W. Kundzewicz  相似文献   

14.
In the Aral Sea Basin, where the Central Asian countries compete for limited water resources, reliable information on the actual water use for eight million ha of irrigated land are rare. In this study, spatially distributed land use data, seasonal actual evapotranspiration, and reference evapotranspiration derived from multitemporal MODIS data were combined with in situ water flow measurements for irrigation performance assessments in the upper Amu Darya Delta. The functioning of the major irrigation and drainage which supplies an agricultural area of 270,000 ha in the Uzbek province Khorezm was analysed using water balancing and adequacy indicators of irrigation water use.An average relative evapotranspiration of 95% indicated fulfilled water demands and partly over-irrigation, whereas values below 75% disclosed inadequate water supply in distant parts of the irrigation system. On the other hand, immense water withdrawals of approximately 24,000 m3 ha−1 recorded at the system boundaries between April and September 2005 clearly exceeded the field water demands for cotton cultivation. Only 46% of the total irrigation amounts were consumed for crop production at field level. Throughout the vegetation period, approximately 58% of the total available water left the region as drainage water. Monthly observations of the depleted fraction and the drainage ratio highlighted drainage problems and rising groundwater levels at regional scale. In the most distant downstream subsystem, a high risk of groundwater and soil salinity during the main irrigation phase was found.A combination of high conveyance losses, hydraulic problems, direct linkages between irrigation and drainage, and low field application efficiencies were identified as major reasons for underperforming irrigation. The findings underlined the necessity of water saving and of reconsidering water distribution in Khorezm. The remote sensing approach was concluded as a reliable data basis for regular performance assessments for all irrigation systems in Central Asia.  相似文献   

15.
Present-day state and the functioning conditions of different-type limnic ecosystems in the Amu Darya delta are examined. The ecosystems are subjected to anthropogenic impact at an abrupt decrease in freshwater inflow and a change to another source of water feed.  相似文献   

16.
The Curonian Lagoon is the biggest fresh water basin in Lithuania influenced by the exchange of the fresh Nemunas and other smaller rivers’ water and saline water of the Baltic Sea. The lagoon ecosystem is influenced by fresh, brackish and brackish water masses. A long-term water balance of the Curonian Lagoon was calculated for the period of 1960–2009. The sum river inflow is 21.784 km3/year, precipitation—1.199 km3/year, evaporation—1.007 km3/year, inflow of brackish water from the Baltic Sea to the Curonian Lagoon—6.171 km3/year, and fresh water runoff from the Curonian Lagoon to the Baltic Sea—27.642 km3/year. The lagoon water balance elements have been influenced by climate change. The water balance forecasting has been performed for the period of 2011–2100. The climate change impact on the water balance of the Lagoon has been evaluated using Global Climate Models (ECHAM5 and HadCM3), greenhouse gas emission scenarios (A2, A1B and B1), and hydrological modelling by Hydrologiska Byrans Vattenbalansavdelning (HBV) software. One scenario was selected for the prediction of the Baltic Sea water level. Considerable changes of the Curonian Lagoon water balance are forecasted in the 21st century. Increase of weather temperature and changes in precipitation will influence the elements of water balance of the Curonian Lagoon. In the period of 2011–2100, the river inflow and outflow from the Baltic Sea into the Lagoon will decrease respectively by 20.4 and 16.6% in comparison with the baseline period (1961–1990). The amount of precipitation and evaporation will increase respectively by 3.8 and 25.1%, while inflow from the Baltic Sea into the Curonian Lagoon will increase up to 39.7% in comparison with the baseline period.  相似文献   

17.
2009年环太湖入出湖河流水量及污染负荷通量   总被引:23,自引:8,他引:15  
通过对2009年环太湖水文巡测及同步水质监测数据整理,得到2009年环太湖河流入出湖水量以及污染负荷,并将之与前期文献资料数据进行对比.结果表明,2009年环太湖河道入出湖水量分别为88.40×108 m3、93.27×108m3.入湖水量超过5×108m3的依次为陈东港、大浦港、梁溪河、太滆运河、望虞河.出湖水量最大...  相似文献   

18.
Semiarid rivers are often characterized by chains of small pools connected by riffles and wet meadows. The pools can be maintained by wet season surface runoff, groundwater discharge, or some combination thereof. Using synoptic surveys for several environmental tracers (δD and δ18O of H2O, specific electrical conductance at 25°C [EC], chloride and 222Rn), we evaluated the groundwater—surface water connectivity of the Light River (South Australia) along an 8 km section in the vicinity of a proposed mining development. In all three surveys (representing spring, summer and winter conditions), the pools were maintained by regional groundwater discharge based on an elevated surface water EC (9–12 dS m−1) similar to regional groundwater, elevated radon-222 activities (0.09–3.0 Bq L−1) and low rainfall. Most pools were perennial, either because they directly received groundwater discharge or, indirectly, had an inflow originating from upstream groundwater-fed pools. The elevated salinity of regional groundwater is a key factor for the maintenance of perennial pools in the Light River because the potential for baseflow depletion by groundwater pumping is more limited.  相似文献   

19.
As shown, drainage escape water forms a large category of surface water of the Amu Darya lower reaches, whose runoff varies from year to year and salinity varies within a year and over the period of many years. It is found that main collecting drains of the Amu Darya lower reaches are essential suppliers of salts and biogenic elements to lakes. The quality of drainage escape water is shown to be the basic factor of formation of the biological regime of limnetic ecosystems, and the migration of biogenes and large quantities of salts is shown to favor the formation of limnetic systems, which have a considerable level of pollution and are subjected to eutrophication.  相似文献   

20.
Understanding the carbon cycle of the Han River system in Korea is of prime interest in managing and preserving this valuable water resource for more than 20 million residents in the area. As a part of a comprehensive carbon cycling study for the Han River system, this report focuses on the carbon isotope compositions of dissolved inorganic carbon (DIC) in its two major tributaries, the North and the South Han Rivers. The major difference in carbonate chemistry of the tributaries originates primarily from the lithology of the catchment areas. The South Han River, draining a carbonate‐dominant terrain, has much higher alkalinities and DIC concentrations, whereas the lower concentrations in the North Han River indicate little influence of carbonate weathering. Likewise, δ13CDIC values in the South Han River indicate that the DIC input from the carbonate rocks is important in controlling carbon isotope ratios of DIC. For the North Han River, the oxidation of organic material influences the amount of riverine DIC and δ13CDIC values to a greater extent. Overall, remarkable seasonal and spatial variations of river chemistry and carbon isotope compositions of DIC reflect the variability in geo‐hydrologic characteristics, in the water regime, and in metabolic activities in the river water and/or the drainage areas. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   

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