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1.
口泉沟南水源地环境同位素研究和水资源评价   总被引:3,自引:0,他引:3  
分析了大同矿区口泉沟南区的水文地质条件,利用氢,氧,铀,硫,碳等环境同位素研究了口泉南与相邻的泉域和三层洞泉域的关系及地下水的补给来源;用有限元法进行了地下水资源评价和水位预报,证明在该区建立供水10^4m^3的水源地是可能的。  相似文献   

2.
对山西大同口泉沟南寒武-奥陶系碳酸盐岩地下水(岩溶水)资源的开发研究中,利用不同价态硫富集34S的不同以及硫同位素分馏,主要是硫酸盐和硫化物中δ34S(SO42-)、δ34S(HS-)的变化,分析了岩溶水的来源,区分出表征循环交替和补给条件的三种地下水类型和环境,识别出口泉南水文地质区内各个地下水子系统及其相互关系。对岩溶水开发中泉域划分问题,使用硫同位素之间的关系,并结合硫酸盐中氧同位素δ18O(SO42-)以及14C关系,表明本区与相邻的两泉域相互独立。岩溶水中δ34S(SO42-)、δ34S(HS-)和δ18O(SO42-)有很大变幅,神头泉Z1岩溶水有罕见的异常值。  相似文献   

3.
夏塞地区处于活动岛弧带。1∶5 万区调将该区原图姆沟组分解为党恩组、列依组、曲嘎寺组和勉戈组。以曲嘎寺组底部的Ⅰ型不整合面及勉戈组底部的Ⅱ型不整合面为基准,结合内部沉积组合特征,尝试划分出三套三级层序地区,即下部层序( 未见底) 、中部Ⅰ型碳酸盐层序、上部Ⅱ型层序(包括喇嘛垭组) ;在这些层序内各体系域发育齐全,特征明显。  相似文献   

4.
古堆泉是汾河流域内唯一的中低温地热泉,研究其水文地质特征、划定岩溶地下水系统边界是进行岩溶地下水资源评价和地热水成因研究的基础。通过对古堆泉岩溶地下水系统的地质结构特征、水文地质结构特征和岩溶地下水循环演化规律分析,初步圈划了古堆泉岩溶地下水系统及其子系统。研究结果表明:系统内地质结构复杂、火成岩侵入和隐伏断裂发育,总体上可以将其概括为南北和东西向均"三隆三陷"的地质格局;古堆泉岩溶地下水主要接受塔儿山、二峰山及中条山碳酸盐岩裸露区的降水入渗补给,南梁泉和海头泉是系统内2个岩溶地下水的局部排泄点,古堆泉是最终排泄点。根据水文地质结构特征和岩溶地下水循环特征确定了古堆泉岩溶地下水系统边界及其水文地质性质,圈定的古堆泉岩溶地下水系统面积为2 942 km2,并进一步将其划分为4个相对独立的岩溶地下水子系统:塔儿山-九原山古堆泉岩溶水子系统、佛岭山-高显海头泉岩溶水子系统、中条山南梁泉岩溶水子系统、侯马盆地深循环岩溶水子系统。  相似文献   

5.
韩冬梅  徐恒力  梁杏 《地球科学》2006,31(6):885-890
运用地下水系统分析理论, 以山西省太原盆地东西山地区为实例, 利用GIS技术对区内岩溶大泉地下水系统进行了圈划.运用岩相古地理、地质构造和水文地质分析方法, 首次提取了研究区岩溶含水系统的区域隔水底板等高线、边山断裂两壁投影图及岩溶水系统图等定量或半定量水文地质信息, 圈划出了东西山岩溶水系统的局部饱水带、饱水带和碳酸盐岩非饱水带.研究结果表明, 西山地区兰村泉、晋祠泉属于同一个岩溶子系统; 西冶泉岩溶子系统是相对独立的岩溶水系统; 东山基岩山区大部分属于娘子关泉岩溶子系统, 且东山岩溶水子系统与盆地地下水有密切水力联系而与兰村泉-晋祠泉岩溶子系统无直接关系.这些为模拟盆地地下水系统和评价北方岩溶地下水资源提供重要的科学依据, 对前人就太原盆地边山岩溶水系统边界的确定和内部结构的划分提法有了新的认识.   相似文献   

6.
太原东山岩溶地下水系统的边界用地质构造结合水位及水化学资料以及水的稳定同位素含量进行了详细研究。北部以系舟山断褶带为界。沿该边界北边松散层中排出的三个泉群是东山岩溶地下水深部循环的结果。东山局部系统的地下水可以排入地表河流并以总的向东方向流入滹沱河。由大威山—杨坪望背斜组成的南部边界是不透水的,这就得出结论在榆次附近三叠系中溢出的沅涡泉排除了来自东山岩溶地下水的补给可能。西部边界以三个断裂带作为边界。东山岩溶地下水在该边界北部可以流入太原盆地,在谷旦附近可以补给第四系含水层,而在边界南部东山煤矿附近处在滞流带。   相似文献   

7.
北京西山泉域岩溶水系统特征探讨   总被引:4,自引:2,他引:2  
北京西山地区岩溶地下水主要以相对独立的岩溶地下水系统进行循环,其水文地质条件、系统结构模式及其水资源的重要性等,在北方具有代表性。文章主要以北京西山鱼谷洞泉域岩溶水系统、黑龙关泉域岩溶水系统、玉泉山泉域岩溶水系统为研究对象,从岩溶含水层结构、地下水循环、地质构造等方面,总结出北京西山泉域岩溶水系统特征主要为:双层含水层结构、多个子系统构成且多点排泄、系统内岩溶水转化关系复杂多样、岩溶水富集带及系统边界集中在逆冲断层处。   相似文献   

8.
王广才  段琦等 《地质论评》2001,47(6):653-657
矿井防治水的理论和工程实践表明,水文地球化学方法是矿井水害预防和治理工作中较为有效的一种方法,以平顶山矿区、肥城矿区为例,阐述了水文地球化学方法在水害研究中的某些应用,在平顶山矿区、环境同位素(氢、氧)和统计分析(聚类分析)技术的研究结果,进一步证实和校正了以往对该区水流系统的概念模型,即局部水流系统和过渡水流系统(或西南部和东北部子系统)的划分仅适于寒武系灰岩含水系统;砂岩含水层在矿区中、北部低山区接受大气降水补给,并有可能补给薄层灰岩含水层。在肥城矿区,地下水示踪试验结果表明,该区的GF9,F7-1、F7-3断层在试验段内具有较强的导水性,奥灰水可通过上述断层并以不同特征的通道和速度继续径流并补给各井下出水点,因而是该区煤矿安全的主要威胁。  相似文献   

9.
太原市兰村泉域保护刻不容缓尹宝福,孙中惠(太原市水利局)太原市兰村泉域是山西省Ⅰ级泉域保护区。泉域位于太原市北郊及阳曲县境内,泉域保护区内有地下水资源约54.7万m ̄3/d,现已超采,为62万m ̄3/山其中,供应城市居民生活用水的枣沟、兰村、西张三大...  相似文献   

10.
渭北中部筛珠洞泉补给来源的再认识   总被引:1,自引:0,他引:1  
筛珠洞泉位于中低山区与渭北黄土台塬区衔接地带。筛珠洞泉区地势整体趋势为西北高东南低,北部以中低山为主,海拔在1 200-1 600 m之间,多由裸露和隐伏碳酸盐岩组成;西南地势逐渐降低,海拔在800-1 000 m之间,为以唐王陵向斜为主的一系列褶皱构造,由奥陶系碎屑岩和碳酸盐岩组成;东南部地势呈阶梯状下降,山前地带海拔多在400-500 m之间,为裸露碳酸盐岩区与山前冲洪积扇区的接触地带。筛珠洞泉作为渭北中部最大的岩溶泉,对于其补给来源前人已做了大量的研究,较为一致的认识是泾河渗漏是筛珠洞泉最主要补给来源,且筛珠洞泉是渭北中部筛珠洞泉域隐伏岩溶系统的集中排泄点。本文根据氢、氧和锶同位素的研究成果,结合水文地球化学及岩溶水文地质条件,对筛珠洞泉的补给来源提出了与前人研究不同的认识,即筛珠洞泉的补给以筛珠洞泉域外西南部岩溶地下水为主;在所有的补给来源中,大气降水、河水及岩溶水所占比例分别为11%、37%和52%;在岩溶水补给中,西南部、西北部及坝址区岩溶水所占比例分别为77.9%、19.7%和2.4%。在此基础上,本文还根据氚同位素资料估算筛珠洞主泉岩溶水的平均滞留时间为62-64年。  相似文献   

11.
A sound understanding of groundwater recharged from various sources occurring at different time scales is crucial for water management in arid and semi-arid river basins. Groundwater recharge sources and their geochemical evolution are investigated for the Heihe River Basin(HRB) in northwest China on the basis of a comprehensive compilation of geochemical and isotopic data. Geochemical massbalance modeling indicates that mountain-block recharge accounts for a small fraction(generally less than 5%) of the shallow and deep groundwater sustaining the oasis, whereas infiltration of rivers and irrigation water contribute most of the groundwater recharge. Dedolomitization is the primary process responsible for the changes in groundwater chemical and carbon isotope compositions from the piedmont to the groundwater discharge zone, where the dedolomitization is very likely enhanced by modern agricultural activities affecting the shallow groundwater quality. Analysis of radioactive isotopes suggests that these primary recharge sources occur at two different time scales. Radiocarbon-derived groundwater age profiles indicate a recharge rate of approximately 12 mm/year, which probably occurred during 2000–7000 years B.P., corresponding to the mid-Holocene humid period. The recharge of young groundwater on the tritium-dated time scale is much higher, about 360 mm/year in the oasis region. Infiltration from irrigation canals and irrigation return flow are the primary contributors to the increased young groundwater recharge. This study suggests that groundwater chemistry in the HRB has been influenced by the complex interaction between natural and human-induced geochemical processes and that anthropogenic effects have played a more significant role in terms of both groundwater quantity and quality.  相似文献   

12.
忻州盆地边山岩溶水与盆地孔隙水存在密切的水力联系,岩溶水系统的圈划与分析对盆地孔隙水资源评价十分重要。文章运用地下水系统分析理论,基于地理信息系统技术,定量提取区域地质(岩相古地理、地层与构造)和水文地质信息,绘制了基于区域隔水底板等高线图、典型剖面图、盆地-山区两壁投影图等信息的岩溶水系统图;运用岩溶水系统图分析得出下马圈泉岩溶水系统与盆地孔隙水存在间接汇水、潜流和河流(泉)渗漏等补给关系,并给出了补给量的计算方法,为忻州盆地地下水资源评价与定量模拟提供了新的水文地质依据与基础。  相似文献   

13.
In this work, we present results of the hydrogeochemical and isotopic studies on groundwater samples from the El Ma El Abiod Sandstone aquifer, in Tébessa, Algeria. Chemical and environmental isotope data are presented and discussed in order to identify the geochemical processes and their relation with groundwater quality as well as to get an insight into the hydrochemical evaluation, in space and time, of groundwater and of the origin of dissolved species. A combined hydrogeologic and isotopic investigation have been carried out using chemical and isotopic data to deduce a hydrochemical evaluation of the aquifer system based on the ionic constituents, water types, hydrochemical facies, and factors controlling groundwater quality. All of the investigated groundwaters are categorized into two chemical types: low mineralized water type and relatively high mineralized water type. Interpretation of chemical data, based on thermodynamic calculations and geochemical reaction models of selected water groups constructed using PHREEQC, suggest that the chemical evolution of groundwater is primarily controlled by water–rock interactions, involving (1) acidic weathering of aluminosilicates, (2) dissolution of secondary carbonate minerals, and (3) cation exchange of Na+ for Ca2+. However, the original composition of groundwater may have been modified by further secondary processes such as mixing of chemically different water masses. The combined use of SI and mass-balance modeling has shown to be a useful approach in interpreting groundwater hydrochemistry in an area where large uncertainties exist in the understanding of the groundwater flow system. Interpretation of 18O and 2H, suggest that the recharge of the investigated groundwaters may result from different mechanisms.  相似文献   

14.
Ayadi  Rahma  Trabelsi  Rim  Zouari  Kamel  Saibi  Hakim  Itoi  Ryuichi  Khanfir  Hafedh 《Hydrogeology Journal》2018,26(4):983-1007

Major element concentrations and stable (δ18O and δ2H) and radiogenic (3H and 14C) isotopes in groundwater have proved useful tracers for understanding the geochemical processes that control groundwater mineralization and for identifying recharge sources in the semi-arid region of Sfax (southeastern Tunisia). Major-ion chemical data indicate that the origins of the salinity in the groundwater are the water–rock interactions, mainly the dissolution of evaporitic minerals, as well as the cation exchange with clay minerals. The δ18O and δ2H relationships suggest variations in groundwater recharge mechanisms. Strong evaporation during recharge with limited rapid water infiltration is evident in the groundwater of the intermediate aquifer. The mixing with old groundwater in some areas explains the low stable isotope values of some groundwater samples. Groundwaters from the intermediate aquifer are classified into two main water types: Ca-Na-SO4 and Ca-Na-Cl-SO4. The high nitrate concentrations suggest an anthropogenic source of nitrogen contamination caused by intensive agricultural activities in the area. The stable isotopic signatures reveal three water groups: non-evaporated waters that indicate recharge by recent infiltrated water; evaporated waters that are characterized by relatively enriched δ18O and δ2H contents; and mixed groundwater (old/recent) or ancient groundwater, characterized by their depleted isotopic composition. Tritium data support the existence of recent limited recharge; however, other low tritium values are indicative of pre-nuclear recharge and/or mixing between pre-nuclear and contemporaneous recharge. The carbon-14 activities indicate that the groundwaters were mostly recharged under different climatic conditions during the cooler periods of the late Pleistocene and Holocene.

  相似文献   

15.
洞庭湖湖区降水-地表水-地下水同位素特征   总被引:8,自引:0,他引:8  
为探明洞庭湖湖区水体稳定同位素时间和空间上的变化规律,弄清各水体间的相互关系,分别在2012年4月和8月对区域内具有代表性的采样点进行了地表水和地下水的采样。通过对样品进行D、18O同位素分析,结合全球大气降水同位素监测网(GNIP)公布的1988—1992年间长沙降水同位素数据,发现湖区年内受不同盛行风影响,降水及地表水的同位素存在较大的季节性差异,4月份同位素富集,8月份贫化。此外,河水、湖水同位素也呈现明显的空间差异。两个时期地表水的水线斜率均小于当地降水线,地表水在两个时期均存在蒸发作用。虽然地表水和地下水的来源均为大气降水,但与地表水相比,地下水同位素季节变化较小,地下水接受地表水补给是一个较为长期的过程。  相似文献   

16.
Analyses of environmental isotopes (18O, 2H, and 87Sr/86Sr) are applied to groundwater studies with emphasis on saline groundwater in aquifers in the Keta Basin, Ghana. The 87Sr/86Sr ratios of groundwater and surface water of the Keta Basin primarily reflect the geology and the mineralogical composition of the formations in the catchments and recharge areas. The isotopic compositions of 18O and 2H of deep groundwater have small variations and plot close to the global meteoric water line. Shallow groundwater and surface water have considerably larger variations in isotopic compositions, which reflect evaporation and preservation of seasonal fluctuations. A significant excess of chloride in shallow groundwater in comparison to the calculated evaporation loss is the result of a combination of evaporation and marine sources. Groundwaters from deep wells and dug wells in near-coastal aquifers are characterized by relatively high chloride contents, and the significance of marine influence is evidenced by well-defined mixing lines for strontium isotopes, and hydrogen and oxygen stable isotopes, with isotopic compositions of seawater as one end member. The results derived from environmental isotopes in this study demonstrate that a multi-isotope approach is a useful tool to identify the origin and sources of saline groundwater. Electronic Publication  相似文献   

17.
陕西渭北东部岩溶水环境同位素   总被引:6,自引:0,他引:6  
陕西渭北东部岩溶水系统是一个复杂的地下水系统,碳酸盐岩大面积隐伏与深埋。使用传统手段和方法勘查岩溶地下水和研究可持续开发利用方案遇到诸多困难,不仅费时,而且耗资大。本文通过系统分析研究陕西渭北东部地区岩溶地下水T、D、^180、^14C环境同位素特征,揭示岩溶水的补给迳流排泄条件、岩溶水系统边界性质以及岩溶水与黄河洛河地表水、黄河岩溶泉与洛河岩溶泉之间的补排关系。结果显示环境同位素方法简便有效,能够达到预期目的。  相似文献   

18.
The Central West Bank aquifer (CWB) is one of the most important resources of fresh groundwater of Palestine. The geology of the area consists mainly of karstic and permeable limestones and dolomites interbedded with argillaceous beds of late Albian–Turonian age. Exploitation of the CWB aquifer, combined with lack of information required to understand the groundwater pattern, represents a challenge for reservoir management. The present work reports hydrogeochemistry, microbiology and environmental isotope data from spring water samples, which were utilized to understand recharge mechanisms, geochemical evolution and renewability of groundwater in CWB aquifer. Besides the major chemical compositions, ionic ratios were used to delineate mineral-solution reactions and weathering processes. Interpretation of chemical data suggests that the chemical evolution of groundwater is primarily controlled by (1) water–rock interactions, involving dissolution of carbonate minerals (calcite and dolomite), and (2) cation exchange processes. The measured equation of the local meteoric water line is δD?=?5.8 δ18O?+?9.9. Stable isotopes show that precipitation is the source of recharge to the groundwater system. The evaporation line has a linear increasing trend from south to north direction in the study area. All analyzed spring waters are suitable for irrigation, but not for drinking purposes. The results from this study can serve as a basis for decision-makers and stakeholders, with the intention to increase the understanding of sustainable management of the CWBs.  相似文献   

19.
The isotopic characteristics of hydrogen and oxygen of various water bodies in the Yinchuan plain were investigated. A total of 131 water samples were collected and another 99 water samples collected by other scholars and the International Atomic Energy Agency were referred to in the study. The stable isotopic compositions of precipitation and lake waters are influenced by dry climate and strong evaporation of the area, and the slope of local meteoric water line and lake water line are smaller than that of global meteoric water line. The isotopic compositions of the Yellow River water are significantly lower than the weighted averages of local atmospheric precipitation and are controlled by the runoff of upstream areas. The isotopes of phreatic water suggest that the single phreatic water is predominantly recharged by the bedrock fissure water of Helan Mountain, while the phreatic water in multilayer structure area is recharged by multiple sources. The confined waters in the area may be recharged under cooler climate conditions than the present, which makes the heavy isotopes depleted. The 3H contents of various water bodies are in the following order: the Yellow River water > multilayer phreatic water > single phreatic water > lake water > drainage ditch water > upper confined water > lower confined water. This is in accordance with the recharge, discharge and circulation conditions of the specific water bodies. The isotope compositions of waters in the Yinchuan plain are mainly affected by external water recharge rather than local precipitation. This study is meaningful and helpful in understanding the groundwater flow systems and water cycle in the area.  相似文献   

20.
彭凯  刘文  魏善明  刘传娥  陈燕  董浩  苏动  袁炜  韩琳 《中国岩溶》2020,39(5):650-657
文章利用水化学、2H、18O同位素、87Sr/86Sr比值、13C和14C同位素对济南岩溶地下水补给来源、地热水补给来源进行研究。结果表明,岩溶冷水水化学类型以HCO3-Ca、HCO3·SO4-Ca型为主、地热水以SO4-Ca型为主。在旱季,间接补给区对泉群地下水补给比率在66.00%~73.58%之间,直接补给区仅占到26.42%~34.00%,旱季泉水的主要来源为间接补给区岩溶地下水。地热水受到了更新世以来的降水补给,是不同时期降水补给所形成的混合地下水,接受补给区域应为高程较高的张夏或者炒米店-三山子组地层,补给高程在350~550 m之间。   相似文献   

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