首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 609 毫秒
1.
针对不同深度含水层,揭示其富水性,探讨地下水资源可恢复性、可利用性和浅层劣质水改造利用可能性。以国土资源部衡水地下水试验场为依托,在详细调查试验场影响区地下水开发利用状况、监测地下水年动态基础上,开展分层抽水试验和水化学同位素采样。通过对大量抽水水位动态数据过程、局部流场特征和水化学同位素的分析,得出结论:该区农业为影响地下水水位的主控因素;含水层系统承压性、补给强度从下到上分别呈减弱、增强趋势,除浅层外各含水层渗透性较强;各含水层渗流强度及方向不同等。提出实现地下水可持续开发利用建议:对浅层地下咸水适时进行抽咸换淡、混灌轮灌改造利用;170m、300m强含水层作为工农业用水主要开采层,深层地下水主要用于生活用水;按照水量平衡、分质用水原则开发地下水。  相似文献   

2.
贾金生  刘昌明 《地理学报》2002,57(2):201-209
自从20世纪60年代大规模开采地下水以来,栾城县的地下水位以每年大约0.65 m的速度下降.降雨量的减少、农业产量的大幅度提高、种植结构的变化以及上游水利工程的修建,都与地下水位的下降有着密切联系.利用Visual Modflow软件,在分析该县水文地质条件与水资源利用的前提下,运用三维地下水流模型,通过有限差分方法对栾城县的地下水系统进行了模拟,结果表明:5个观测孔的地下水位计算值与实测值拟合程度很好,模拟出的地下水流场与实际情况基本一致.利用掌握的水文地质资料,进行参数分区,通过实测资料的校正、调参,模拟出各分区参数值.利用校正后的数学模型,对栾城县地下水对不同开采量的响应进行了计算,结果如下:在现状农业开采量1.01×108m3基础上分别减少14%(0.14×108m3)、29%(0.29×108m3)和增加29%(0.29×108m3)的情况下,到12月份5个观测孔的平均地下水位分别比现状地下水位上升了0.33 m,0.64 m和下降了0.45 m.  相似文献   

3.
准确预测干旱区地下水埋深,对区域地下水资源的合理开发利用与生态环境保护具有十分重要的意义。以额济纳盆地3个地下水埋深观测井为对象,运用小波变换与支持向量机耦合模型(WA-SVM)对观测井未来1个月的地下水埋深进行了短期预测。为检验WA-SVM的有效性,将模拟结果与未经小波变换的SVM模型进行了对比。结果表明:在对干旱区地下水埋深进行短期预测时,相较于SVM模型,WA-SVM模型的预测精度显著提高。WA-SVM模型在干旱区地下水埋深预测中有更好的适用性,可以为干旱地区地下水埋深动态预测提供新的方法和思路,是资料有限的条件下地下水埋深预测的有效方法。  相似文献   

4.
Nitrate-nitrogen (nitrate-N) in groundwater is a potential problem in many parts of Kansas.From 1990 to 1998, 747 water samples were collected from domestic, irrigation, monitoring,and public water supply wells primarily from the western two-thirds of the state, and analyzedfor nitrate-N by the Kansas Geological Survey. Nitrate-N concentrations of the 747 samplesanalyzed range from 29% with less than or equal to 3 mg/L, 51% between 3 and 10 mg/L,and 20% greater than or equal to 10 mg/L. Factors that show a statistically significantrelationship with the occurrence of nitrate-N in Kansas groundwater in this assessment includegeographic area of the state, depth of well, and age of well. Nitrate-N levels of wells screenedin the High Plains aquifer in south-central Kansas showed a statistically higher concentrationthan samples collected from the High Plains aquifer in the western portion of the state.Comparison of nitrate-N with depth of well indicated that shallower wells throughout the stategenerally have higher nitrate-N values than deeper wells. Irrigation wells older than 1975showed statistically higher nitrate-N concentration than wells installed during and since 1975,possibly related to changes in well-construction practices and regulations that occurred in 1975.  相似文献   

5.
《The Journal of geography》2012,111(6):558-569
Abstract

This report addresses the question of groundwater quality in a context of economic development and heterogeneous land use. Seven wells, each actively producing for the public water supply, and together providing 37 percent of the total aquifer production of four municipios, were tested in three topographic basins. Major land use categories, including agriculture, urbanization, and industry, were identified throughout the basins. Well samples were drawn three times during a six-month period and analyzed for a set of 15 water quality parameters including biological indicators. The most common pollutants detected were heavy metals, nitrate, arsenic, and semivolatile organic compounds. Wells surrounded by agricultural and commercial activities were contaminated by nitrate, mercury, lead, and phthalates. Wells in mixed residential and industrial settings had concentrations of semivolatile organic compounds and lead. The presence of noxious chemicals in the public water supply, even in relatively small amounts, threatens the viability of the groundwater reservoir. Both operational and policy aspects of water quality should be discussed in the context of urban and economic development.  相似文献   

6.
Sediment cores from Chappice Lake, a hypersaline, groundwater-fed lake in southeastern Alberta, have been used in previous studies to reconstruct Holocene climate using lake levels as a source for proxy climate data. This assumes that the lake is fed by a shallow groundwater system sensitive to changes in climate. In this study we use the dynamics and chemistry of groundwater entering the lake to test this hypothesis.Groundwater inputs calculated from historical records using a simple water budget were highest during periods when the precipitation deficit was high. Over specific time intervals, the expected relationship between lake volumes and climate were not always found. Feedback loops between lake levels and groundwater input, and time lags within the system are the mechanisms proposed to explain these discrepancies.Field measurements suggest discharge of a local surficial groundwater system. Slug tests reveal a high conductivity system (K = 10-5 m/s) surrounding the lake. Hydraulic heads measured in standpipe, multilevel and minipiezometers installed around Chappice Lake show that the lake is situated in a closed hydraulic head contour. Hydraulic heads and water table elevations show strong annual fluctuations corresponding to seasonal changes in recharge. Horizontal hydraulic gradients measured in areas of groundwater springs indicate a strong horizontal component of flow towards the lake. Vertical hydraulic gradients are low and indicate the upward flow of water consistent with the discharge of a shallow, surfical groundwater system.Groundwater sampled from deposits surrounding Chappice Lake and springs feeding the lake have compositions similar to both shallow surficial aquifers and bedrock aquifers suggesting that the lake may be receiving inputs from both sources. However, evaporation simulations using PHRQPITZ, show that the evaporation of water typical of bedrock aquifers result in a mineral assemblage and brine composition different from that found at Chappice Lake. This suggests that discharge of a regional groundwater system can be eliminated as a dominant source over the lake's history. Evaporation simulations suggest that evaporation of groundwater from shallow surficial deposits can best explain the present mineral assemblage and brine chemistry and were likely the dominant source of water to the lake.Bedrock and shallow surficial groundwater sources have different chemistries and isotopic compositions. In hydrogeological settings such as Chappice Lake where more than one source may contribute to the lake, the relative importance of the different sources may change with changes in climate. If the source water composition to the lake changes, identifying changes in climate or hydrology based on changes in the composition of the lake preserved in sediment core will be made more difficult. This may complicate paleoclimate and paleohydrological reconstructions that rely on mineralogical and isotopic data.  相似文献   

7.
科尔沁沙地典型区地下水、降水变化特征分析   总被引:1,自引:0,他引:1  
地下水资源作为科尔沁沙地典型区的重要供水来源,研究地下水及其影响因素的变化特征对水资源合理开发利用、生态环境保护有重要的现实意义。以研究区周围左中、通辽和后旗3个典型气象站与7个地下水观测井数据为基础,应用灰色系统理论、线性回归、M-K突变检验、累积距平分析和小波周期分析等研究方法,对科尔沁沙地典型区1951-2015年降水量与地下水埋深进行研究,定性描述降水量变化与地下水埋深变化的响应关系。结果表明:(1)夏季气候倾向率为-18.6 mm·(10 a)-1和年降水量气候倾向率为-11.7 mm·(10 a)-1,都呈下降趋势,春、秋和冬三季降水量变化呈上升趋势,其气候倾向率分别为1.45 mm·(10 a)-1、1.79 mm·(10 a)-1和0.67 mm·(10 a)-1。(2)近65 a来,研究区年降水存在2~5 a、7~12 a和18~31 a三个明显特征时间尺度的周期,对应小波方差图存在26 a和10 a两个周期峰值;四季降水量同样存在不同时间尺度的周期。(3)四季和年地下水埋深先呈线性再呈波动式变化,上升趋势显著,增幅分别为0.48 m·(10 a)-1、0.50 m·(10 a)-1、0.51 m·(10 a)-1、0.48 m·(10 a)-1和0.49 m·(10 a)-1。(4)地下水埋深时间序列基准期和变异期的分界点为1994年。(5)1994年前,地下水埋深与滞后4 a降水量相关系数为-0.514;1994年后,地下水埋深与滞后8 a降水量相关系数为-0.527。  相似文献   

8.
地下水稳定同位素组成的时空变化特征可以反映不同时期、不同区域地下水补给来源的差异。通过青海湖沙柳河流域浅层地下水氢氧稳定同位素组成的时空变化特征以及地下水、河水与降雨之间的补给关系的分析,结果显示:季风时期,地下水主要受降雨入渗和河流侧向补给为主,在补给过程中蒸发作用是影响地下水稳定同位素值的主要因素;非季风期,冰雪融水对低值区的地下水影响显著,同时降水的快速入渗则是该时期高值区地下水的主要补给方式之一。地下水同位素高值区,地下水与河水间补给作用较弱,补给时间超过5个月;地下水同位素低值区,地下水与河水补给关系较为密切,补给时间在1~4个月间。本文所得结论可初步反映干旱半干旱内陆流域地下水稳定同位素特征以及补给方式的基本规律,在一定程度上可为流域地下水及其他水体间的转换研究提供科学依据,并为地下水资源管理和水环境治理提供一定理论指导。  相似文献   

9.
The groundwater table has been declining at a rate of 0.65 m/yr in Luancheng County since large scale groundwater extraction carried out in the 1960s. The drop of precipitation, substantial increase in agricultural output, variations of crop planting structure and construction of water conservancy projects in the headwater area all tie up with the decline of the groundwater table. On the basis of analyzing the hydrogeological conditions and the water resources utilization of Luancheng County, a three-dimensional groundwater flow model was developed to simulate the county’s groundwater flow through finite-difference method using Visual Modflow software. We divide the research field into four parts after analyzing the hydrogeological condition. Based on parameter calibration and adjustment using measured data, the hydraulic conductivity and specific yield were simulated. Using the calibrated model, we analyze the agricultural water saving potentiality and its influence on the groundwater. The results are as follows: (1) if we decrease the amount of water extracted by 0.14×108 m3, the average groundwater table of the five observation wells in December will rise by 0.33 m; (2) if we decrease the water by 0.29× 108 m3, the average groundwater table of the five observation wells in December will rise by 0.64 m; and (3) if we increase the water by 0.29×108 m3, the average groundwater table of the five observation wells in December will decline by 0.45 m. So we can draw a conclusion that controlling the agricultural water use is an important way to prevent the decline of groundwater table.  相似文献   

10.
党河流域敦煌盆地地下水补给与演化研究   总被引:3,自引:0,他引:3  
赵玮  马金珠  何建华 《干旱区地理》2015,38(6):1133-1141
综合应用水文地球化学指标和稳定同位素技术研究了党河流域敦煌盆地地下水补给和演化规律。岩盐、石膏及芒硝等矿物的溶解对Na+、Ca2+、Cl-及SO42-离子浓度影响较大。阳离子交换作用明显,地下水中Mg2+和Ca2+浓度增加,并与碳酸盐发生沉淀,导致HCO3-减少。地下水的δ18O值介于-12.1‰~-7.5‰,δ2H值变化范围为-84.3‰~-61.5‰,指示了盆地不同地带地下水补给来源不同。潜水δ18O和δ2H数值随着地下水径流路径方自西南到东北越来越富集,反映了蒸发浓缩效应,南湖、盆地南部潜水同位素与河水相近,体现了现代补给。相比之下,承压水稳定同位素相对贫乏,指示过去寒冷时期的补给。该研究可以为敦煌区域地下水资源规划和管理提供一定的借鉴意义。  相似文献   

11.
The groundwater table has been declining at a rate of 0.65 m/yr in Luancheng County since large scale groundwater extraction carried out in the 1960s. The drop of precipitation, substantial increase in agricultural output, variations of crop planting structure and construction of water conservancy projects in the headwater area all tie up with the decline of the groundwater table. On the basis of analyzing the hydrogeological conditions and the water resources utilization of Luancheng County, a three-dimensional groundwater flow model was developed to simulate the county’s groundwater flow through finite-difference method using Visual Modflow software. We divide the research field into four parts after analyzing the hydrogeological condition. Based on parameter calibration and adjustment using measured data, the hydraulic conductivity and specific yield were simulated. Using the calibrated model, we analyze the agricultural water saving potentiality and its influence on the groundwater. The results are as follows: (1) if we decrease the amount of water extracted by 0.14xl08 m3, the average groundwater table of the five observation wells in December will rise by 0.33 m; (2) if we decrease the water by 0.29x 108m3, the average groundwater table of the five observation wells in December will rise by 0.64 m; and (3) if we increase the water by 0.29 x 108m3, the average groundwater table of the five observation wells in December will decline by 0.45 m. So we can draw a conclusion that controlling the agricultural water use is an important way to prevent the decline of groundwater table.  相似文献   

12.
塔克拉玛干沙漠腹地潜水水位对单井抽水的响应   总被引:1,自引:1,他引:0  
塔里木沙漠公路防护林生态工程以地下水为灌溉水源,全线采用节水滴灌方式灌溉。全线共有108口水源井,水源井间距约4 km。以第69号水源井(38°41′12″N、83°22′16″E)为例,在距水源井120 m范围内设置了7个地下水监测井,利用潜水水位的动态观测数据,分析了抽水过程中水位的时空变化规律。研究结果表明:持续抽水过程中潜水水位变化可分为快下降和慢速下降两个阶段;潜水水位恢复过程可分为快速上升和慢速上升两个阶段。水位下降和上升的速度变化形成水位的空间差异,即降落漏斗的形成和消失。利用稳定流抽水试验计算得出含水层渗透系数为12.85 m/d。  相似文献   

13.
额济纳盆地地下水补给机理研究   总被引:16,自引:9,他引:7  
黑河下游的额济纳盆地,气候干旱,降雨稀少,盆地内分布着复杂的地下水含水层,濒临崩溃的生态系统靠其有限的地下水资源维持着,如何有效的评价地下水资源量,怎样合理的开发利用地下水资源,以及近期黑河治理规划工程实施后,对地下水资源产生何种影响,成为亟待解决的问题。对此,应用皮帕尔(Piper)图解法分析地下水的水化学特征类型,结合区域构造水文地质、地下水流场和环境同位素,分析盆地内不同地区的地下水补给机理:发现自流井区为一小区域的沉积中心,其来源不同于其他以黑河河水为补给源的地下水,而是来自中蒙边境山区的补给;古日乃草原地下水主要依靠黑河河水通过古河道渗漏的补给,而不是巴丹吉林沙漠的补给;赛汗桃来沉积中心的深层承压水来自其邻近上游地区潜水的侧向渗流补给。利用放射性同位素氚含量,初步估算出不同地区地下水的更新期,其地下水年龄均低于35 a。为评价黑河干流规划对地下水资源所产生的影响、合理开发利用地下水资源、保护脆弱的生态环境提供科学依据。  相似文献   

14.
塔里木盆地南缘地下水脆弱性评价   总被引:22,自引:8,他引:14  
马金珠 《中国沙漠》2001,21(2):170-174
干旱区地下水脆弱性是地下水系统本身固有的不稳定属性,是系统结构、功能状态在人类活动干扰及气候变化等自然因素作用下具有的敏感性、易变性和弹性的综合反映。可以以河川径流中冰雪融水比重、地表径流入渗占地下水补给比例、地下水补给强度、地表水的引用率等十项指标(IRRUDQELTS)进行定量评价。通过对塔里木盆地南缘地下水脆弱性评价,表明该区属地下水严重脆弱区,其脆弱程度远大于地下水开发利用程度较高的河西走廊,其中又以民丰县、皮山县为极端脆弱。  相似文献   

15.
Development of a conceptualization of a hydrogeologic system serves as the basis of groundwater modeling. While existing groundwater data models are designed to store groundwater system information, none is designed to capture its conceptual view. This study addresses this need by presenting a new object-oriented Conceptualization Groundwater Data Model that represents a groundwater system as a series of aquifer layers with defined aquifer properties and water boundary conditions. A case study is presented that develops the conceptual view of the groundwater system beneath Konza Prairie. This single conceptualization is used to support groundwater models across existing technologies of finite difference, finite element, and analytical element methods. While the models each employ different mathematics, data input files, and formats, all models are founded on the same conceptualization process that is represented using this new data model. The case study illustrates the data model's promise as an effective mechanism for groundwater system conceptualization and data storage, and utility for various groundwater computational models. This conceptualization of a groundwater data model suggests a new focus on incorporating system conceptualization into data model design.  相似文献   

16.
Groundwater resource is vital to the sustainable development of socio-economics in arid and semi-arid regions of Northwest China. An estimation of the groundwater resources variation in Zhangye Basin was made during 1985–2013 based on long-term groundwater observation data and geostatistical method. The results show that from 1985 to 2013, groundwater storage exhibited tremendous dissimilarity on temporal and spatial scale for the whole Zhangye Basin, especially before and after implementation of the water diversion policy. Trend of groundwater storage varied from quick to slow decline or increase. The accumulative groundwater storage decreased nearly 47.52×10~8 m~3, and annual average depletion rate reached 1.64×10~8 m~3/a. Among which, the accumulative groundwater storage of the river and well water mixed irrigation district decreased by 37.48×10~8 m~3, accounting for about 78.87% of the total groundwater depletion of the Zhangye Basin. Accumulative depletion of groundwater storage varied in respective irrigation districts. Though groundwater resources depletion rate slowed down from 2005, the overall storage in the whole basin and respective districts during 1985–2013 was still in a severe deficit such that, the groundwater resource was in a rather negative balance, which could threaten the local aquifer. This is the joint effect of climate change and human activities, however human activities, such as water diversion policy and groundwater exploitation, became increasingly intense. Our research results could provide a reasonable estimation for the groundwater balance in Zhangye Basin, providing a scientific basis for water resources unified planning and, this method can provide a relatively reliable way of estimation for large scale groundwater resources.  相似文献   

17.
The article examines the risk of water shortages due to the climate change on Leu-Rotunda Plain, which is part of Oltenia Plain in Romania. The region has been exposed to several extreme climatic phenomena, mostly droughts, which has created several problems related to water quality and quantity. The authors defined climate change scenarios using two regional climate models. Water resources under climate change were estimated by a regional numerical groundwater model covering a deep aquifer. The water demand components were estimated for households, industries, services, and livestock, based on specific socio-economic assumptions. A non-probabilistic risk assessment, using simplified fuzzy sets mathematics, was used to estimate water supply, water demand, and the consequences of water shortages. The results of the study revealed significant vulnerability in the water supply, a limited territorial expansion of sewerage networks, an expected increase in households’ demand, an expected increase in industrial and services water demand, a relatively stable demand for water for livestock farming, and an important water shortage in the study area. The authors conclude by highlighting a set of actions to mitigate the risk of the potential crisis.  相似文献   

18.
雷州拟建电厂项目选址在雷州市西部沿海,属雷州半岛西南部干旱地区,地表水资源较缺乏.为解决电厂项目备用水源问题,在电厂厂址区域开展了地表水结瓜水库调节计算和地下水抽水试验研究,探讨了电厂项目地表、地下水联合利用取水水源方案的可行性.计算和试验结果表明:采用地表、地下水双水源分时段取水方案,即平水年以上年份及汛期地表水充裕...  相似文献   

19.
基于GIS技术的石羊河流域地下水资源时空格局分析   总被引:4,自引:3,他引:1  
胡建勋 《中国沙漠》2008,28(4):781-786
以地下水取水许可数据为主,结合社会-经济等相关要素,在石羊河流域建立地下水取水许可GIS空间数据库,并对其进行分析、统计、查询和图表输出,辅助流域的取水许可管理程序,服务于流域的水资源综合管理。通过这一过程,对石羊河流域在水资源管理中存在的问题进行分析、研究,并提出了相应的管理对策,目的在于使水资源管理政策更为科学合理,具有一定的现实意义。  相似文献   

20.
内蒙古呼伦贝尔东明露天煤矿矿坑边帮地下水渗漏的问题日益严重,矿区原有的疏干降水井排水能力及效果已不能满足生产需求,同时对矿区生态环境也造成一定程度破坏。目前,对矿区周边的水文地质条件和水力联系缺乏精准全面的认识和数据。本文通过瞬变电磁法对矿区地下水渗漏较严重的西北部进行三条勘探线(77个物理点)勘查,结果表明该区存在三处视电阻率低阻异常带,判定其主要为含水断层(裂隙)所致;结合矿区地形、地层岩性与矿区地下水矿化度,对上述异常带进行了科学合理的综合解释,并结合新施工的疏干降水井抽水验证了上述异常的可靠性,为矿区后期布置疏干降水井圈定了靶区,对当地同类型矿区地下水渗漏灾害治理起到了应用示范作用。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号