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 672 毫秒
1.
松花江佳木斯段潜水脆弱性评价   总被引:3,自引:0,他引:3  
鉴于松花江流域地下水的重要性和当前污染,运用改进的DRASTIC模型,对松花江佳木斯段5~10 km范围内潜水进行了脆弱性评价。选取净补给量、包气带介质、含水层厚度、地下水水位埋深、土地利用类型、污染源影响和地下水开采模数建成评价指标体系;采用层次分析法确定各指标权重,结合GIS技术实现了脆弱性分区,并将结果与地下水质评价结果进行对比;最后通过敏感度分析讨论了所选指标的合理性。结果表明:地下水脆弱性相对较低和低脆弱区共占研究区面积的82.76%;较高和高的区域仅占8.13%,主要分布在七水厂、江北水源地以及污染强度较大的点源污染周围。地下水埋深、包气带岩性和地下水开采模数是对潜水脆弱性影响最大的因素。评价结果比较真实地反映了松花江佳木斯段潜水脆弱性状况,对城市规划建设和地下水资源的可持续利用具有指导意义。  相似文献   

2.
云南丽江盆地地下水脆弱性评价   总被引:12,自引:0,他引:12  
应用美国环保署EPA的地下水脆弱性DRASTIC评价方法,考虑地下水位埋深、含水层净补给量、含水层介质、土壤包气带、地形地貌、包气带介质和水力传导系数等7个评价因子,结合GIS技术,对云南丽江古城所在的丽江盆地地下水脆弱性从自然和人类影响两方面进行评价。研究表明,丽江盆地地下水脆弱性高,污染严重,水资源保障率低,已危及丽江世界遗产地下水生态安全。加强对水资源环境的综合研究和保护,是进一步推动丽江社会、经济、环境协调发展的重要工作。  相似文献   

3.
在地下水资源评价或地下水动态研究过程中,降水入渗系数α,是一个经常要用到的重要水文地质参数,影响它的因素很多,除降水本身的因素外,主要还有地形地貌、包气带岩性及地下水位埋深(即包气带厚度)。   相似文献   

4.
灰色关联度法在地下水脆弱性评价与分区中的应用   总被引:1,自引:0,他引:1  
采用灰色系统理论中的灰色关联度分析方法对地下水脆弱性进行研究,选取地下水位埋深、包气带岩性、含水层砂层厚度等6个因子建立了脆弱性评价指标体系,采用离差最大化方法确定评价指标的权重,使权重的分配有了一定的理论依据。并以MATLAB为平台编制了常用计算程序,应用于抚州市地下水脆弱性评价与分区,取得良好结果。  相似文献   

5.
石家庄城市区地下水脆弱性评价研究   总被引:2,自引:1,他引:2  
本文通过系统分析石家庄城市区水文地质条件,采用DRASTIC法,选取了地下水位埋深、净补给量、含水层介质、土壤介质、地形、包气带介质和渗透系数共七项影响因子对石家庄城市区地下水脆弱性进行了评价。结果表明,石家庄市地下水最脆弱的地带位于滹沱河河道及其一、二级阶地范围内,符合实际。本研究还提出了在进行地下水脆弱性评价过程中应重视脆弱性的相对性,要根据研究区的实际情况对影响因子进行分级和量化。  相似文献   

6.
孙丰英  许光泉  唐文锋 《地下水》2009,31(4):15-17,64
提出采用灰色系统理论中的灰色关联度分析方法对地下水脆弱性进行研究,选取地下水位埋深、包气带岩性、含水层砂层厚度等6个因子建立脆弱性评价指标体系,采用离差最大化方法确定评价指标的权重,使得权重的分配有了一定的理论依据。并以MATLAB为平台编制了常用计算程序,将其应用于抚州市地下水脆弱性评价与分区,取得良好结果。  相似文献   

7.
地下水脆弱性评价是地下水保护工作的核心内容之一,针对泰安市的特点和区域特色,利用DRASTIC方法,选取地下水位埋深、净补给量、含水层介质类型、土壤介质类型、地形坡度、包气带介质类型以及含水层渗透系数7个参数为评价指标,对该地区的地下水脆弱性进行了定量评价,将泰安市地下水的脆弱性分为脆弱性高、较高、中等和低4个等级,并绘制了地下水脆弱性分区图,对该地区今后制订地下水资源管理、土地利用、环境保护及城市规划等政策措施具有较重要的参考指导作用。  相似文献   

8.
松花江松原段沿岸浅层地下水脆弱性评价   总被引:1,自引:0,他引:1  
为给松花江流域地下水污染防治与控制提供理论依据,基于DRASTIC模型,选取净补给量、包气带介质、含水层富水性、地下水水位埋深、土地利用类型、污染源影响和地下水开采模数建成评价指标体系,结合GIS技术对松花江松原段沿江两侧5~10 km范围内的浅层地下水脆弱性进行了分区,并将结果与地下水质污染评价结果进行了对比,最后通...  相似文献   

9.
贺斌英  巴建文  张雁  张彦莉 《地下水》2011,(4):61-62,126
通过系统分析张掖城市湿地水文地质条件,采用DRASTIC法,选取了地下水位埋深、净补给量、含水层介质、土壤介质、地形、包气带介质和渗透系数共七项影响因子对张掖城市湿地城市区地下水防污性进行了评价。结果表明,张掖城市湿地地下水防污性较好地带主要分布在研究区南部新墩镇——二十里铺一带地下水深埋区,水位埋深一般大于10 m,...  相似文献   

10.
马振民  陈鸿汉 《地球科学》2000,25(5):472-476
通过对泰安市第四系水文地质结构研究发现, 浅层地下水的污染受地层结构的控制, 在包气带岩性及含水层岩性相同的条件下, 包气带的厚度越大, 其防污性能越高, 含水层遭受污染的程度越小; 在地面环境质量及包气带岩性和厚度相近的条件下, 粗砂含水层较粉质粘土含水层更易遭受污染   相似文献   

11.
Based on the special hydrogeological conditions of the Dahei River Plain in the Inner Mongolia area, assessment of shallow groundwater vulnerability is conducted based on DRASTIC model. Each evaluation indicator weight is determined by using analytic hierarchy process (AHP). The most important indicators are lithology in soil media and vadose zone. Assessment model of shallow groundwater vulnerability of the Dahei River plain is constructed. Distribution map of vulnerability index in this area is made with the spatial analysis function of ARCGIS. The results show that the particularly sensitive area is the piedmont of the Daqing Mountain, where the upstream place of the groundwater and the south-central place of the plain has the lowest vulnerability. The assessment results are more in accordance with the actual vulnerability conditions of this area by using analytic hierarchy process, and is helpful for groundwater protection.  相似文献   

12.
The existing different human activities and planned land uses put the groundwater resources in Jordan at considerable risk. There are evidences suggesting that the quality of groundwater supplies in north Jordan is under threat from a wide variety of point and non-point sources including agricultural, domestic, and industrial. Vulnerability maps are designed to show areas of greatest potential for groundwater contamination on the basis of hydrogeological conditions and human impacts. DRASTIC method incorporates the major geological and hydrogeological factors that affect and control groundwater movement: depth to groundwater (D), net recharge (R), lithology of the aquifer (A), soil texture (S), topography (T), lithology of vadose zone (I), and hydraulic conductivity (C). The main goal of this study is to produce vulnerability maps of groundwater resources in the Yarmouk River basin by applying the DRASTIC method to determine areas where groundwater protection or monitoring is critical. ArcGIS 9.2 was used to create the groundwater vulnerability maps by overlaying the available hydrogeological data. The resulting vulnerability maps were then integrated with lineament and land use maps as additional parameters in the DRASTIC model to assess more accurately the potential risk of groundwater to pollution. The general DRASTIC index indicates that the potential for polluting groundwater is low in the whole basin, whereas the resulting pesticide DRASTIC vulnerability map indicates that about 31% of the basin is classified as having moderate vulnerability, which may be attributed to agricultural activities in the area. Although high nitrate concentrations were found in areas of moderate vulnerability, DRASTIC method did not depict accurately the nitrate distribution in the area.  相似文献   

13.
城市地下水脆弱性评价方法及应用   总被引:3,自引:0,他引:3  
刘香  王洁  邵传青  易立新 《地下水》2007,29(5):90-92
地下水脆弱性评价是合理开发利用和保护地下水的基础.以国内外广泛应用的DRASTIC模型为基础,结合我国华北平原沉降带冲洪积含水层水文地质特征,提出了一种适用于层状含水层水文地质条件的城市地下水脆弱性评价模型--DRAMIP模型,并根据廊坊市的实际状况,对廊坊市浅层地下水进行了脆弱性评价,利用GIS技术生成了廊坊市浅层地下水脆弱性分布图.  相似文献   

14.
The chemical and hydrodynamic characteristics of groundwater in deltaic regions are strongly influenced by the complex stratigraphy of these areas, caused by the continuously varying depositional environments associated with their recent hydrographic evolution. As a case study, the eastern sector of the Po River plain, northern Italy, has been investigated to understand the quality of the available groundwater resources. Based on the analysis of hydrochemical and isotopic data, the recharge characteristics, the groundwater residence time and the aquifer vulnerability are defined. The results show significant qualitative degradation of the unconfined aquifer due to the shallow depth to water, while in the underlying confined aquifer, a hydrochemical facies of Ca–HCO3 type prevails. The spatial variation and relationship between oxygen-18 and deuterium determine: firstly, hydraulic separation of the two hydrogeological units; secondly, direct infiltration of local precipitation to the unconfined aquifer; thirdly, the occurrence of waters originating in the Alps and locally from the Apennines, pervading the confined aquifer. The tritium results suggest local mixing between the superficial waters and the confined aquifer, occurring along the palaeo-river channels. This increases the pollution vulnerability of the confined hydrogeological unit within the plain, which is the only natural groundwater resource exploited for water supply.  相似文献   

15.
山区地下水对平原区的侧向径流补给量是一个长期争议且悬而未决的难题,这个量在西北内陆干旱盆地,被估算得或很小或很大。在总结前人研究的基础上,采用地质水文地质调查、物探、钻探、抽水试验、地下水动态观测、水化学测试、盆地地下水水位统测和综合研究等技术方法,查明了黑河中游盆地南部山盆交接带的地质构造接触关系、地层岩性接触关系及梨园河口白垩系风化壳含水层结构和水文地质参数。通过山区不同流域等级的地表水与地下水转化关系分析,将山区地下水对平原区侧向径流补给带划分为大中型河流河谷补给段和小微型河流或冲沟群流域构成的浅山带补给段。河谷补给段勘探资料较为丰富,多用达西断面流方法计算;针对浅山带补给段极为缺乏勘探资料的实际,以梨园河口断面径流量为参照,构建了浅山带岩性、汇水区面积、降水量等3 个变量的山区地下水对平原区侧向径流补给量的估算方法。估算出黑河中游盆地南部山区浅山带地下水对平原的侧向径流补给量为0.40×108 m3/a,河谷段基岩侧向补给量为0.07×108 m3/a;推算出河谷段第四系地下水补给量为0.30×108 m3/a;3 项补给量之和为0.77×108 m3/a,占盆地地下水资源量的3.0%。该研究为西北内陆干旱盆地山区地下水对平原区侧向径流补给量的估算提供了一个可供借鉴的实例。  相似文献   

16.
区域地下水系统防污性能评价,面临影响因子多又复杂、评价指标难以客观性选定和权重不易确定等难题,以至严重影响评价结果的可信性。本文以鲁北平原为例,在以往地下水脆弱性评价常用的DRASTIC模型基础上,采用创新的迭置指数方法,改进为"DRITCS法",选择地下水位埋深、包气带综合岩性、地表2 m内单层厚度大于0.5 m的粘土层厚、含水砂层厚度及其渗透系数、和地下水净补给量等因子,组成区域地下水系统防污性能评价模型。合理地确定了区域地下水系统防污性能评价中关键指标——包气带粘性土层变化影响,并在鲁北平原示范性应用和通过以面源污染为主的三氮污染现状验证的结果表明:本文提出的方法能够客观地反映流域性相变造成的地下水系统防污性能空间差异性和区位分布特征,具有较强的实用性。  相似文献   

17.
According to the characteristics of groundwater in arid area, this paper proposes DRAV model for groundwater vulnerability assessment, where D is groundwater depth, R is the net recharge of aquifer, A is the aquifer characteristics, and V is the lithology of vadose zone. As a case study, the paper assesses the vulnerability of pore phreatic water in Tarim Basin of Xinjiang, China by using the DRAV model. The results indicate that the areas of phreatic water with vulnerability index ranges of 2–4, 4–6, 6–8 and >8 accounting for 10.1, 80.4, 9.2 and 0.2% of the total plain area of the Tarim Basin respectively, and the areas with the latter two vulnerability ranges (6–8 and >8) are mainly located in the irrigation districts with thin soil layer (20–30 cm thick surface soil of vadose zone, mainly with underlying sandy gravel) and with silty and fine sand layer. Such vadose zone generally lacks sandy loam and clayey soil and has larger recharge by infiltration of irrigation water.  相似文献   

18.
针对华北平原水文地质条件复杂,地下水开发利用程度高,地下水位埋深和包气带岩性在时间和空间上差异大的特点,基于大量钻孔和地下水位监测资料,将华北平原划分为4个水文地质单元,以埋深7 m作为降水入渗稳定点,根据各分区的水文地质条件对钻孔岩层赋予入渗系数值,应用加权平均法求得华北平原20世纪60年代、80年代和21世纪初的降水入渗系数分布图.利用华北平原1956-2008年水资源四级区逐月降水量数据,求得华北平原20世纪60年代、80年代和21世纪初各分区单元的降水入渗量.结果表明,50多年来华北平原降水量呈减少的趋势,降水入渗系数呈增加的趋势,降水入渗量呈增加的趋势.3个年代的降水入渗量分别是118.86×108,147.91× 108和174.33×108 m3.  相似文献   

19.
We present the first systematic hydrogeological analysis to grain insights on the evolution of the Gonghe Basin in North China. Two hundred and forty seven water samples were collected from the Gonghe East Basin, Gonghe West Basin and Chaka Basin. The three groundwater systems of Gonghe Basin from west to east display different geochemical signatures. Based on Na/Cl ratios and Langelier-Ludwig diagram, it is inferred that the groundwater recharge potential of the Gonghe East Basin is much prosperous than the other areas. The renewability of the aquifers in alluvial-proluvial fan of Wahonghe and Gonghe East Basin margin is much faster than in the other basins. The groundwater quality in Chaka Salt Lake,Shazhuyu and Qiabuqia River Valley plains is low due to strong evaporation and cation exchange. The groundwater quality of the phreatic aquifers in the Qiabuqia River Valley plain is further deteriorated by mixing of high-arsenic and high-mineralization water from the deep fault structures.  相似文献   

20.
鲁西南地区高氟地下水特征及成因探讨   总被引:2,自引:2,他引:0       下载免费PDF全文
在鲁西南地区,由于饮用高氟地下水而导致的地氟病,严重影响了当地群众的身心健康。地下水中氟元素的富集是一个非常复杂的水文地球化学过程。水化学测试结果表明,氟含量为0.05~6.7 mg/L,平均1.20 mg/L,高氟分布区主要集中在嘉祥黄河冲洪积平原与山前冲洪积平原交接部位和曹县、单县、菏泽黄河冲洪积平原河间洼地;地下水中氟含量与pH、矿化度之间的相关性不明显、与K++Na+和Ca2+相对含量分别呈正相关和负相关关系、与Ca2+含量相关性显著。本文从地质环境、水文地质环境、水文地球化学角度探讨了浅层高氟地下水的水文地球化学成因,研究了黄泛平原高氟地下水的形成机理,对于确定地氟病的成因及制定地氟病的防治措施,寻找适用饮用的低氟地下水,具有重要的理论和现实意义。  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