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1.
开展河流和地下水转换关系研究对于区域水资源合理开发利用具有重要意义。文章以大西沟河水与地下水转换关系为目标,在分析地下水动力场的基础上,通过水化学类型、溶解性总固体(TDS)、氯离子(Cl-)等水化学以及环境同位素18O、D、T等指标作为示踪剂,分析大西沟河和地下水的转换关系和转化强度。结果表明:研究区河流和地下水化学类型主要为HCO3—Ca,水化学类型空间分布特征相似;TDS和Cl-浓度表现为先增加后下降,但地下水的变化幅度大于河水。通过对大西沟河水和地下水中的水化学和环境同位素指标对比分析,发现研究区河流与地下水之间补给排泄关系具有明显的分段性;从河流出山口到下游地区,河水和地下水之间发生了三次转化关系:在山前倾斜砾质平原区以河水入渗补给地下水为主,补给量占该段潜水径流量的56%;到了细土平原区出现地下水补给河水地段,补给源为承压水越流补给潜水后的混合水体,潜水和承压水补给比例占该段河水径流量的20.4%与58.4%;风成沙漠区河水沿途渗漏补给地下水直至河流断流。本次研究结果为建立研究区水循环演化模式和水资源合理开发利用提供了理论和技术支持。  相似文献   

2.
模糊聚类方法研究堤坝渗漏   总被引:6,自引:0,他引:6  
樊哲超  陈建生  董海洲  赵霞 《岩土力学》2006,27(7):1214-1218
稳定同位素、水化学的方法是研究堤防渗漏是一种十分有效的方法,以往人们大多只是定性的分析判断。结合北江大堤工程实例,尝试应用模糊聚类方法,选取22个水样稳定同位素和水化学值作为指标特征值,并赋与不同的权重,进行模糊聚类分析,聚类结果表明,T12孔和T9孔北5 m处涌水、江水和T9孔北排水沟出水在稳定同位素和水化学成分的Cl-及TDS上表现出了较大的相关性,可能为同一补给来源,为堤坝渗漏通道的判断提供了佐证。  相似文献   

3.
地表水与地下水相互作用是水循环研究的重要组成部分,是研究区域水资源量的基础。通过实地水文地质调查和采样,在对水体氢氧稳定同位素和水化学组成测定的基础上,分析了盆地内枯水期河水和地下水的水化学和氢氧同位素组成特征及空间变化规律,旨在揭示河水与地下水的相互转化关系。研究表明:盆地内地下水主要为HCO3-Ca和HCO3-Ca·Mg类型低矿化度水,各区域地下水具有统一联系性,经历了相同或相似的水化学形成作用;河水水化学类型与地下水相同,且水化学成分来源一致。地下水和河水氢氧同位素组成相接近,最终来源主要为大气降水补给。其中河水在径流过程中受蒸发浓缩作用影响,重同位素略富集。受地形地貌、地质及水文地质条件影响,盆地内地下水与河水之间的补给—排泄相互作用关系具有明显的分段性,相互转化频繁。大石河上游区域和东宫河流域总体上表现为河水受两侧地下水补给;大石河下游区域,表现为河水补给两侧地下水。  相似文献   

4.
文章系统地分析了济南泉域浅层地下水(第四系孔隙水)和地表水的水化学成分和氢氧稳定同位素,并结合当地地形和水文条件,研究了不同地段浅层地下水和地表水的不同补给来源,揭示了浅层地下水与岩溶水的水力联系,得出浅层地下水在市区和东郊以降水入渗补给为主;在西郊和平安店则以岩溶水顶托补给和地表水(河水和水库水)入渗补给为主、当地降水入渗为辅的结论。为保护泉水、优化泉域内地下水开采方案提供了重要依据。  相似文献   

5.
汾河中游干流河水与大气降水和浅层地下水的转化关系   总被引:1,自引:0,他引:1  
文章通过分析太原盆地汾河中游干流河水和浅层地下水的水化学和同位素资料,研究汾河干流河水与浅层地下水和大气降水之间的转化关系。结果表明:总体而言,汾河中游干流河水的补给来源以浅层地下水为主,其次为大气降水;河水在向下游径流过程中,大气降水的补给比例逐渐增大,在河流流出太原盆地附近河水主要由大气降水补给。  相似文献   

6.
玛曲高原区地下水是黄河的重要补给水源,然而其水化学特征及形成机理认识还十分有限。通过采集玛曲潜水、河水和黄河河道沉积物,系统研究了玛曲高原区地下水水化学、同位素特征以及水文地球化学过程。结果表明:河水和潜水的溶解性总固体含量低,分别为72~195 mg/L和207~459 mg/L,水化学成分以Ca2+和HCO3-为主,水样中砷浓度为0.46~17.7μg/L。氢氧同位素结果表明,地下水和河水补给来源为当地大气降水,河水相对潜水富集δ18O和δD。河水水化学组成主要受蒸发浓缩作用的影响,而潜水主要受碳酸盐岩溶解作用的影响。潜水水样SI白云石小于0的占68%,表明潜水中白云石处于不饱和状态。某些潜水砷含量超标的原因可能是沉积物铁锰氧化物矿物的还原性溶解,而砷的来源可能是玛曲河道和浅层松散沉积物中吸附态砷。研究成果有助于揭示黄河上游玛曲段地下水的来源及地下水化学成分的形成机理。  相似文献   

7.
梁彬 《中国岩溶》1997,16(3):235-243
本文从水文地球化学综合分析方法出发,并利用灰色关联度分析方法和稳定同位素分析方法,分析最具有渗漏可能性的Z41孔、UP8孔两地的水温、水化学、同位素等信息与库水、帷幕后(帷幕下游)岩溶水的贴近程度,确定其地下水补给的主要来源,以判断灌浆帷幕是否存在渗漏  相似文献   

8.
河水入渗补给是傍河水源地的主要补给来源,确定河水补给强度对于促进水源地长期安全的开采具有十分重要的意义。以沈阳黄家水源地为研究区,通过对比研究区河水、地下水的水化学及氢氧稳定同位素特征,分析了水源地地下水的补给来源及强度。结果表明:傍河水源地地下水主要接受河水的入渗补给和区域地下水的侧向补给;受河床沉积物和含水介质的岩性及结构在空间上的差异影响,河水入渗补给后在向地下水位漏斗中心流动的过程中具有浅层和深层两条地下水流路径,深层地下水与河水的水力联系更为紧密;河水对地下水的补给强度具有明显的时空变化特点,表现为雨季河水入渗强度明显大于旱季,并且随着与辽河距离的增加,水源地地下水获得的河水补给量呈逐渐减小的趋势。  相似文献   

9.
地下水是孔雀河流域农业灌溉的主要水源之一,其对本地区经济发展的支撑作用日益增强.为实现孔雀河流域水资源合理开发和生态保护,采用环境同位素和水化学方法,研究了孔雀河流域地下水与地表水关系.结果表明:地下水的主要补给来源为河水.含水层成因类型和现代河道分布共同控制着孔雀河流域地下咸淡水的空间分布格局;氢氧稳定同位素对不同水...  相似文献   

10.
利用环境同位素信息识别鲁北平原地下水的补给特征   总被引:2,自引:1,他引:1  
在野外采样的基础上,通过测试分析不同层位地下水中同位素2H 、18O、3H的特征和水化学组成,利用同位素2H、18O和3H及水化学方法识别鲁北平原地下水的补给来源,估算黄河水与地下水的转化数量,揭示黄河下游平原区的水文循环特征。研究结果表明,鲁北平原浅层地下水的主要补给源为当地的大气降水和黄河水(包括引黄灌溉和黄河水渗漏),大气降水与黄河水所占的比例随距黄河的远近而变化。总补给量中,大气降水和黄河水的补给比例分别为86%和14%;深层地下水主要起源于古代大气降水,是在比现在寒冷的气候条件下大气降水入渗形成的。  相似文献   

11.
Despite its extreme aridity, the Badain Jaran Desert is rich in groundwater. In the southeastern part of the desert, it is characterized by coexistence of high megadunes and a great number of lakes. Deuterium and oxygen 18 isotope compositions as well as hydrochemistry of groundwater, lake water, soil water and river water were investigated in detail to gain an insight into their relationships and the origin of the ground-water. The results show that the groundwater and the lake water are genetically related, but unrelated to local precipitation and the leakage of Heine River at northern slope of Qilian mountain. δD and δ18O values of deep soil water (lower than 40 cm) and groundwater plot on the same evaporation line E11, which shows that they have the same recharge source. The point of intersection between E11 and LMWL suggests that the groundwater originates from the water resource which has a weighted mean value that is lighter by some 6‰ δ18O than the local precipitation in Badain Jaran Desert. 3H data of water samples shows that the groundwater in Badain Jaran Desert originates from the water recharged after the nuclear test. The deep fault zone underground maybe the water circulation channel based on Helium analysis of groundwater. The result has guiding significance to rational exploitation and utilization of the local groundwater.  相似文献   

12.
Yushugou River basin of East Tianshan Mountains receives water from melting glaciers. In recent years, the glaciers retreated strongly due to global warming which intensified the water cycle in the river basin. For this reason, the relation of water bodies based on hydrochemistry and isotope in the summer flood was carried out. Hydrochemistry research showed that there was frequent hydraulic interaction between river water and groundwater. Studying the isotopes and \(\hbox {Cl}^{-}\) of river water, glacier meltwater, groundwater and precipitation, indicated that Yushugou River was recharged by the glacier meltwater, groundwater and precipitation during the summer flood period. The analysis result based on the three-component mixing model showed that Yushugou River was recharged by 54.9% of glacier meltwater, 37.6% of the run-off came from groundwater, while less than 8% was contributed by precipitation. The study suggests that the role of glacier meltwater and groundwater, especially glacier meltwater, should be specially concerned in water resource protection and reasonable utilization, and the injection of glacier meltwater is the main reason for run-off variation in this alpine basin during the summer flood period.  相似文献   

13.
Hydrogeochemistry and environmental tracers (2H, 18O, 87Sr/86Sr) in precipitation, river and reservoir water, and groundwater have been used to determine groundwater recharge sources, and to identify mixing characteristics and mineralization processes in the Manas River Basin (MRB), which is a typical mountain–oasis–desert ecosystem in arid northwest China. The oasis component is artificial (irrigation). Groundwater with enriched stable isotope content originates from local precipitation and surface-water leakage in the piedmont alluvial–oasis plain. Groundwater with more depleted isotopes in the north oasis plain and desert is recharged by lateral flow from the adjacent mountains, for which recharge is associated with high altitude and/or paleo-water infiltrating during a period of much colder climate. Little evaporation and isotope exchange between groundwater and rock and soil minerals occurred in the mountain, piedmont and oasis plain. Groundwater δ2H and δ18O values show more homogeneous values along the groundwater flow direction and with well depths, indicating inter-aquifer mixing processes. A regional contrast of groundwater allows the 87Sr/86Sr ratios and δ18O values to be useful in a combination with Cl, Na, Mg, Ca and Sr concentrations to distinguish the groundwater mixing characteristics. Two main processes are identified: groundwater lateral-flow mixing and river leakage in the piedmont alluvial–oasis plain, and vertical mixing in the north oasis plain and the desert. The 87Sr/86Sr ratios and selected ion ratios reveal that carbonate dissolution and mixing with silicate from the southern mountain area are primarily controlling the strontium isotope hydrogeochemistry.  相似文献   

14.
环境同位素方法在平凉市岩溶地下水研究中的应用   总被引:4,自引:2,他引:2  
马致远 《地质论评》2004,50(4):433-439
应用环境同位素方法对平凉隐伏岩溶水的研究结果表明 ,研究区隐伏岩溶水形成较早 ,且有大量现代水的混入 ,平均混入量为 5 4 %。说明研究区隐伏岩溶水的补给和更新能力较好。环境同位素分析结果还显示 ,大岔河隐伏岩溶水为一相对独立、半开放的水文地质单元。其补给来源部分为流域内大气降水、地表水的补给 ,部分为东南部三道沟岩溶地下水的补给。根据环境同位素 EPM与 EM两种模型计算 ,地下水的滞留时间为 36 a。地下水储存量为 1.314× 10 8m3;储水系数为 7.2 9× 10 - 3。这一结果与传统勘探方法的计算结果基本吻合 ,说明环境同位素方法的实用性 ,可在地下水资源调查中作为传统方法的补充和对比。  相似文献   

15.
黑河下游额济纳盆地深层地下水来源的探讨   总被引:10,自引:0,他引:10  
本文作者在额济纳盆地进行了长达3年的研究,获得了大量盆地地下水资料和水化学、同位素分析数据,在此基础上,利用水化学和环境同位素示踪技术,结合盆地水文地质条件,对盆地深层地下水的补给来源和循环特征进行了探讨.水化学和同位素结果显示,黑河流域深层地下水补给来源具有多源性,主要为核爆前形成的"老水",水循环缓慢.在进行流域水资源开发时,对深层地下水的利用一定要慎重.  相似文献   

16.
Surface water and groundwater are the main water resources used for drinking and production. Assessments of the relationship between surface water and groundwater provide information for water resource management in Sanjiang plain, Northeast China. The surface water (river, lake, and wetland) and groundwater were sampled and analyzed for stable isotopic (δD, δ 18O) composition, tritium, and chlorofluorocarbons concentrations. The local meteoric water line is δD = 7.3δ 18O–6.7. The tritium (T) and chlorofluorocarbon (CFC) contents in groundwater were analyzed to determine the groundwater ages. Most groundwater were modern water with the ages <50 years. The groundwaters in mountain area and near rivers were younger than in the central plain. The oxygen isotope (δ 18O) was used to quantify the relationship between surface water and groundwater. The Songhua, Heilongjiang, and Wusuli rivers were gaining rivers, but the shallow groundwater recharged from rivers at the confluence area of rivers. At the confluence of Songhua and Heilongjiang rivers, 88 % of the shallow groundwater recharged from Songhua river. The combination of stable isotopes, tritium, and CFCs was an effectively method to study the groundwater ages and interrelation between surface water and groundwater. Practically, the farmlands near the river and under foot of the mountain could be cultivated, but the farmlands in the central plain should be controlled.  相似文献   

17.
Huang  Xiangui  Ping  Jianhua  Leng  Wei  Yu  Yan  Zhang  Min  Zhu  Yaqiang 《Hydrogeology Journal》2021,29(6):2149-2170

Studies on groundwater recharge are essential for sustainable exploitation of groundwater resources, especially in areas of extensive groundwater exploitation such as the Anyanghe River alluvial fan (ARAF) in the North China Plain (NCP). However, the recharge sources and processes and the contribution of each recharge flow component remain unclear. This study used hydrochemistry, stable isotopes, and tritium to investigate sources and underlying processes of groundwater recharge, along with the steady flow Mixing Cell Model (MCMsf) to quantify the proportion of each source flow for the shallow confined groundwater system in the medial fan. The results showed that groundwater mainly originates from precipitation occurring on the eastern Taihang Mountain area with average elevation estimated at 700–1,000 m above sea level during the East Asia summer monsoon period since 1952. Recharge mechanisms are: (1) river water seepage for the unconfined aquifers of the proximal and medial fan; (2) lateral flow for the confined aquifers of the medial and distal fan; and (3) precipitation infiltration for the phreatic water system. The MCMsf simulation showed that the shallow confined groundwater system in the central zone of the medial fan mainly recharged by the lateral flow from the proximal fan, a constant and considerable recharge flow from the southwestern and southern hills, and river water seepage in the medial fan; the lateral recharge flow from the Zhanghe alluvial aquifer was insignificant by comparison. The results of this study can act as a valuable reference for sustainable groundwater management in the ARAF.

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18.
利用小昌马河流域上游大雪山老虎沟冰雪融水及下游昌马洪积扇区地下水的稳定同位素和水化学资料, 对流域稳定同位素和水化学的组分特征和季节变化进行了分析. 结果表明: 小昌马河流域内从上游冰雪融水区到下游昌马洪积扇地下水排泄区矿化度不断增高, 水化学类型由HCO3-Mg-Ca过渡到HCO3-SO4-Ca-Mg; 上游冰雪融水与下游地下水δ18O的季节变化基本一致, 洪积扇区地下水来源于冰雪融水的补给. 水文地球化学模型模拟显示地下水形成过程中水岩作用以析出方解石, 吸收二氧化碳, 溶解石膏、 岩盐和绿泥石等为主要特征, 溶蚀的含盐矿物使地下水中氯化物、 硫酸根和钠离子含量升高, 地下水水质恶化. 同位素和水化学证据均揭示了小昌马河流域地表水-地下水的化学环境转化关系.  相似文献   

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