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1.
黑河流域水循环过程中地下水同位素特征及补给效应   总被引:26,自引:2,他引:24  
通过环境同位素及其Tamers、IAEA模型应用研究表明,黑河流域水循环过程中地下水同位素特征与补给源属性和数量密切相关,具有非均一性;东部以山区降水通过出山地表径流补给为主,西部冰川雪融水和山区基岩裂隙水是主要补给源,下游区依赖中游区河水下泄状况,蒸发特征明显。东部同位素较新且地下水更新较快,西部同位素较老且地下水更新较慢;祁连山前戈壁带地下水同位素与山区河水相近,细土平原带地下水补给河水;高台一带受酒泉低氚值地下水补给影响而河水和地下水氚值都偏低;近河道带地下水年龄较新,远离河道则较老。因此,充分利用地下水与地表水之间转化规律,联合优化调控,有利于该区地下水资源可持续利用。  相似文献   

2.
中国西北部银川盆地干旱少雨,大量的黄河水用于灌溉,灌溉入渗水对地下水循环的参与程度、参与深度研究是进一步解决灌区水环境问题和确定地下水污染来源的关键,需要深入研究。笔者通过氢氧稳定同位素特征分析和氚同位素年龄分析,构建了银川盆地不同水体同位素特征分布关系。结果表明:银川盆地降水和流经的黄河水的氢氧稳定同位素丰度均值都分布在全球雨水线上,降水和黄河水符合全球大气降水来源;深层地下水、浅层地下水及由地下水排泄汇集的排水沟水的氢氧稳定同位素都分布在地下水拟合线上(δD=8.24δ18O+1.08)。这条地下水拟合线与全球雨水线近似平行分布。两线之间的差异指向2种不同水循环的主导过程,即蒸发-混合主导过程和水岩交互-混合主导过程。两种解释对应的灌溉循环量分别占地下水排泄量的44.07%和89.76%,初步认为水岩交互-混合是地下水拟合线分布于全球雨水线下方的主导过程。  相似文献   

3.
刘峰  崔亚莉  张戈  耿付强  刘洁 《现代地质》2014,28(6):1322-1328
以柴达木盆地的诺木洪为研究区,利用氚与14C方法计算了当地各水体的年龄,分析地下水年龄分布特征及其可更新能力。结果表明:山区至冲洪积扇中部地下水年龄为15~18 a,为1952年之后补给的现代水,更新能力较强;冲洪积扇前缘地下水年龄不超过2 ka,具有现代水与古水混合的特征,更新能力较差;溢出带到盆地中心地下水年龄急剧变老,变化范围为5~28 ka,据此推测研究区溢出带位置的隐伏断层具阻水性质,该位置的地下水基本无更新能力。  相似文献   

4.
松嫩平原地下水流动模式的环境同位素标记   总被引:2,自引:0,他引:2  
陈宗宇  刘君  杨湘奎  陈江  王莹  卫文 《地学前缘》2010,17(6):94-101
采用同位素水文学方法并结合传统水文地质方法,识别松嫩平原地下水流动模式。氢氧稳定同位素和地下水年龄分布表明该区地下水流动系统流动模式呈现出局部流、中间流和区域流系统。地下水中氚分布深度指示局部水流系统为现代水循环系统,以垂向运动为主要特征,循环深度一般小于50 m,山前区可达100m以下;区域流系统存在于深部承压含水层,以侧向水平径流为主要运动特征。松辽边界附近的环境同位素特征存在明显的差别,指示天然状态下可视为零通量边界。同位素示踪剂也反映出嫩江和地下水的相互作用关系,在齐齐哈尔以北,江水补给地下水;在齐齐哈尔以南,地下水向嫩江排泄。  相似文献   

5.
陶芸  陈锁忠  都娥娥 《水文》2011,31(3):76-81
在分析研究区浅层地下水空间分布特征的基础上,采用同位素与化学分析相结合的方法研究苏锡常浅层地下水的补径排条件。利用氢氧同位素的分析结果,建立潜水与微承压水的δD-δ18O关系曲线,分析潜水含水层与河流、湖泊等地表水体关系以及微承水的蒸发程度;利用放射性同位素氚与14C研究微承水与现代水的补给关系;利用常规的水化学分析方法研究浅层地下水补给源的变化问题。结合研究区地下水水位、地层岩性、地形、地貌等多方面因素综合分析了浅层地下水的补径排条件,从而指导苏锡常地区浅层地下水合理开发利用。  相似文献   

6.
鄂尔多斯白垩系地下水盆地中深层地下水可更新速率   总被引:1,自引:0,他引:1  
为了缓解鄂尔多斯能源基地的供水压力和为当地水资源评价、地下水合理开发利用提供依据,研究该区主要供水水源地的白垩系盆地地下水可更新能力。地下水中溶解无机碳的动力行为可以近似认为与地下水相同,因此,地下水系统中14C的输入、输出浓度可以提供地下水系统可更新能力的重要信息。利用鄂尔多斯白垩系地下水盆地中、深层地下水14C数据,以地下水更新速率为指标,通过同位素数学物理模型定量评价了盆地中、深层地下水的可更新能力。结果表明:研究区地下水可更新能力随埋藏深度的增大而减弱,中层地下水更新速率多为0.1%/a~1%/a,可更新能力较强;深层地下水更新速率绝大多数都小于0.1%/a,可更新能力较弱;盆地北区地下水可更新能力整体高于盆地南区。  相似文献   

7.
本文研究了四川绵竹三箭水及其邻区水体的同位素组成特征,以氚过量参数(d=δD-8δ^18O)在地热勘探中的示踪作用,再通过对研究区地下水氚过量参数和水笨氰含量(T)的相关性分析,综合运用于查明区内温泉地下水的成因,包括地下热储层内地下水的来源、补给源区、运移途径等等;确定水体均来源于大气降水,山前盆地深部地下水的补给源区在西、西北部高山区,径流方向由西北向东南,径流途径和在地下滞留时间都很长,并由此圈定了几个地热勘查的重点靶区。  相似文献   

8.
金华地区位于金衢盆地东段,对其地下水同位素特征及更新能力研究对于整个盆地地下水资源研究具有重要意义,通过分析研究区内稳定同位素氘(D)和氧(~(18)O)以及放射性同位素氚(~3H)和碳(~(14)C)的空间分布特征,建立了金华地区降水线方程为:δD=8.29δ~(18)O+15.9,讨论了地表水、潜水、红层地下水的环境同位素的组成特征,对潜水及红层地下水的更新能力进行了评价。结果表明,金华地区降水线方程斜率及截距均大于全球大气降水;潜水、红层地下水及地表水三者联系密切;潜水、红层地下水在接受降水的补给后经历了不同程度的蒸发作用;红层地下水D和~(18)O同位素明显向下游富集;潜水~3H值介于6.6~19.0TU,~(14)C年龄显示为现代水,因此其可更新能力较强,红层地下水放射性~(14)C年龄为3020~5360BP,可更新能力较弱,红层地下水3H值介于4.4~12.3TU,表明红层地下水中有现代水的混入,δ~(18)O随着地下水的年龄的增加而偏负。  相似文献   

9.
我国西南某地位于汶川地震影响区域,为评价汶川地震对该区水文地质条件的影响,开展了该地区水文地球化学及同位素水文地质研究。地下水化学及同位素测试数据分析表明:研究区地下水pH值在7.9~9.48,偏碱性,TDS多小于500mg·L-1;水化学组分在垂向上有明显变化,水化学类型以HCO3-Na型为主;地下水氢、氧稳定同位素分析表明,该区地下水主要源自当地大气降水补给,氚含量随地下水埋深增大而减小,反映了深部地下水循环交替强度明显小于浅部地下水,也说明区内地下水以垂向交替为主。  相似文献   

10.
降水模拟实验证明,鄂尔多斯北部沙土层单次降水入渗最大深度小于1 m,降水在土壤中受到蒸发后排泄到大气中。实验证实,只有当土壤含水率达到最大田间持水率,吸附在土颗粒表面的薄膜水才能克服电磁引力转化为重力水,在重力的作用下继续下渗。鄂尔多斯北部的年降水量小而蒸发量大,降水入渗土壤不能形成累积效应,无法形成连续下渗的重力水流。同位素示踪分析表明,土壤水主要来源于地下潜水,结合土壤含水率与TDS分析证实,地下水是通过薄膜水与蒸发-凝结方式补给到土壤水中,薄膜水从高温区向低温区流动,对于等温的薄膜水而言,薄膜水从厚层向薄层流动。同位素分析表明,都思兔河流域的河水、泉水、井水、湖泊、土壤水接受相同的外源水补给。鄂尔多斯盆地降水比地表水与地下水明显富集重同位素,不符合补给区降水同位素特征。鄂尔多斯盆地地下水分水岭与基底断裂带重合,据此推断,外源水以深循环方式通过基底断裂带补给鄂尔多斯盆地,在干旱地区形成自流井群。  相似文献   

11.
为探明淮河下游地区地表水与地下水稳定同位素的组成特征,于2020年11月对该区域进行代表性采样,共采集地表水样13个,地下水样82个.结合全球大气降水同位素监测网(GNIP)公布的南京降水同位素数据,根据最小二乘法得出当地大气降水线(LMWL)方程为:δD=8.49δ18O+17.71,其斜率和截距高于全球大气降水线(...  相似文献   

12.
This study was based on the analysis of isotopic compositions of hydrogen and oxygen in samples from precipitation, groundwater and stream water. In addition, parts of groundwater samples were dated by carbon-14 and tritium. These data are integrated to provide other views of the hydrologic cycle in the Hsinchu-Miaoli groundwater district. The groundwater district is principally composed of Pleistocene and Holocene aquifers. The Pleistocene aquifers are highly deformed by folding and faults into small sub-districts with areas of only tens of square kilometers. These aquifers are exclusively recharged by local precipitation. The Holocene aquifers cover narrow creek valleys, only tens of meters in thickness. The local meteoric water line (LMWL), constructed from rainfall samples in the Hsinchu Science Park, is described by the equation δD=8.02δ18O+10.16, which agrees with the global meteoric water line. In addition, the precipitation isotopic compositions can be categorized into two distinct end members: typhoon type and monsoon type. The groundwater isotopic compositions are perfectly located on an LMWL and can be considered a mixture of precipitations. Based on the mass balance of isotopic compositions of oxygen and hydrogen, infiltration is more active in the rainy season with depleted isotopic compositions. The amount of infiltration during May–September is roughly estimated to comprise at least 55% of the whole year’s recharge. The isotopic compositions of stream water are expressed by a regression equation: δD=7.61δ18O+9.62, which is similar to the LMWL. Although precipitation isotopic compositions are depleted during summer time, the isotopic compositions contrarily show an enriched trend in the upstream area. This is explained by the opposite altitude effect on isotopic compositions for typhoon-related precipitations.  相似文献   

13.
Groundwater is typically the only water source in arid regions, and its circulation processes should be better understood for rational resource exploitation. Stable isotopes and major ions were investigated in the northeastern Tengger Desert, northern China, to gain insights into groundwater recharge and evolution. In the northern mountains, Quaternary unconsolidated sediments, exposed only in valleys between hills, form the main aquifer, which is mainly made of aeolian sand and gravel. Most of the mountain groundwater samples plot along the local meteoric water line (LMWL), with a more depleted signature compared to summer precipitation, suggesting that mountain groundwater was recharged by local precipitation during winter. Most of the groundwater was fresh, with total dissolved solids less than 1 g/L; dominant ions are Na+, SO4 2? and Cl?, and all mineral saturation indices are less than zero. Evaporation, dissolution and cation exchange are the major hydrogeochemical processes. In the southern plains, however, the main aquifers are sandstone. The linear regression line of δD and δ 18O of groundwater parallels the LMWL but the intercept is lower, indicating that groundwater in the plains has been recharged by ancient precipitation rather than modern. Both calcite and dolomite phases in the plains groundwater are close to saturation, while gypsum and halite can still be dissolved into the groundwater. Different recharge mechanisms occur in the northern mountains and the southern plains, and the hydraulic connection between them is weak. Because of the limited recharge, groundwater exploitation should be limited as much as possible.  相似文献   

14.
赤水林区旱季雾水对地表径流的水量贡献   总被引:2,自引:0,他引:2       下载免费PDF全文
为探明赤水林区旱季地表径流补给来源组成以及雾水对该地区的水量贡献,于2014年12月对区域内水量大、易进入的3条瀑布径流进行了采样,样品包括雾水、泉水和溪水。通过对水样进行D、18O同位素分析,并与遵义的降水同位素数据对比,发现赤水林区旱季雾水的D、18O明显比降水富集;泉水和溪水具有相似的氢氧同位素组成,都落在11月与12月的降水同位素之间,且都分布于遵义地区降水线附近。赤水林区旱季地表径流主要受地下水补给,地下水是前期间断性的降水与持续不断的雾水的混合。雾水间接补给地表径流,是旱季地表径流重要的水量来源。在四洞沟、十丈洞和燕子岩这几个区域的平均补给量达到了24.1%(D同位素的计算结果),18O同位素的计算结果为20.0%。  相似文献   

15.
重点分析了研究区潜水、浅层承压水、泉水及地表水δD、δ18O的分布特征,并对5组水文钻探井地下水样品进行分析.潜水δD变化范围为-97.32‰~-67.51‰,平均值为-80.34‰;δ18O为-15.85‰~-10.66‰,平均值为-12.08‰.浅层承压水δD为-111.93‰~-68.38‰,平均值为-84.79‰;δ18O为-16.01‰~-10.52‰,平均值为-12.30‰.泉水δD为-102.06‰~-71.63‰,平均值为-84.10‰;δ18O为-14.21‰~-9.70‰,平均值为-12.24‰.地表水δD为-90.53‰~-60.99‰,平均值为-72.58‰;δ18O在-13.20‰~-9.54‰,平均值为-11.21‰.地下水δ13C为-9.4‰~-5.6‰,平均值为-8.3‰,极差为3.8‰.结果表明:地下水与地表水均起源于当地大气降水.潜水与浅层承压水水力联系较强,潜水与浅层承压水属于同一含水系统.与浅层承压水相比,深层承压水年龄较大,在20 ka左右,属于沉积埋藏水.深层承压水与浅层承压水的水力联系较弱.潜水与浅层承压水的δ13C值较为接近,且接近大气CO2的δ13C值-7‰.研究区地下水中碳的主要来源为大气CO2.  相似文献   

16.
The characteristics of δD and δ18O in precipitation, groundwater and surface water have been used to understand the groundwater flow system in the Ordos Plateau, north-central China. The slope of the local meteoric water line (LMWL) is smaller than that of the global meteoric water line (GMWL), which signifies secondary evaporation during rainfall. The distribution of stable isotopes of precipitation is influenced by temperature and the amount of precipitation. The lake water is enriched isotopically due to evaporation and its isotopic composition is closely related to the source of recharge and location in the groundwater flow systems. River water is enriched isotopically, indicating that it suffers evaporation. The deep groundwater (more than 150?m) is depleted in heavy isotopes relative to the shallow groundwater (less than 150?m), suggesting that deep groundwater may have been recharged during the late Pleistocene and early Holocene, when the climate was wetter and colder than at present. All groundwater samples plot around the LMWL, implying groundwater is of meteoric origin. Shallow groundwater has undergone evaporation and the average evaporation loss is 53%. There are two recharge mechanisms: preferential flow, and the mixture of evaporated soil moisture and subsequent rain.  相似文献   

17.
环境同位素特征对滨海岩溶地区海水入侵过程的指示意义   总被引:1,自引:0,他引:1  
大连大魏家水源地位于中国北方典型滨海岩溶地区。近30年来,地下淡水的不合理开采造成的地下水位降落漏斗引发了严重的海水入侵。以大魏家水源地为研究对象,通过大量的水文地质调查和水化学及同位素采样测试分析,探讨海水入侵形成的水动力条件,通过分析滨海岩溶含水层中地下水主要水化学和多种同位素(δ2H-δ18O,δ34S,δ13C)组成特征,识别了海水入侵过程中发生的主要水文地球化学作用,并对其进行了定量模拟,从而阐明了岩溶含水层中的海水入侵机理。研究结果表明:大连大魏家海水入侵主要通道为大魏家地区存在的导水断裂、岩溶裂隙以及第四系松散地层。对δ2H-δ18O同位素的组成分析表明,研究区地下水主要来自大气降水补给,结合Cl-浓度分布,认为除海水入侵淡水含水层后增加了地下水中的盐分外,浅层地下水的蒸发也对地下水中盐分的累积起到了重要作用。根据不同水体中δ34SSO4,δ13CHCO3等同位素特征,结合水化学成分(如SO2-4,Cl-)分析认为,研究区微咸水和咸水并不是地下水淡水和海水简单混合而成。利用反向水文地球化学模拟揭示了控制滨海岩溶含水层中水化学演化的主要水文地球化学反应有方解石、蒙脱石和石膏的溶解作用,伊利石的沉淀作用以及Ca-Na离子交换作用,伴随着CO2的释放。  相似文献   

18.
四川鲜水河-安宁河断裂带温泉氢氧稳定同位素特征   总被引:1,自引:0,他引:1  
温泉地下水同位素特征对确定断裂带地下水来源、循环过程和断裂带活动性至关重要。为了确定青藏高原东缘温泉的地下水同位素特征和流体来源本研究采集了鲜水河-安宁河断裂带上温泉水、冷泉水、河流和积雪融水等样品,进行了氢氧稳定同位素和水化学组分测定,并进行了同位素特征的对比研究。分析结果表明,温泉水体δ18O变化范围为-19.04%~-12.71‰,平均值为-16.42‰;δ2H变化范围为-144.07‰~-88.63‰,平均值为-122.37‰。河水的δ18O变化范围为-15.90‰~-10.85‰,平均值为-13.86‰;δ2H变化范围为-118.21‰~-71.12‰,平均值为-98.99‰。康定冷泉δ18O和δ2H分别为-13.66‰和-106.74‰。道孚积雪融水的δ18O和δ2H分别为-10.27‰和-65.41‰。不同类型水体样品氢氧稳定同位素组成主要分布在全球和区域大气降水线上表明了大气降水成因,缺少明显的氧同位素漂移特征。不同类型水体同位素值差异较大显示出温泉与河水、积雪融水之间补给来源的不一致性。温泉同位素值具有明显的同位素高程效应,鲜水河-安宁河断裂带上氧同位素高程效应为-0.23‰/100m,氢同位素高程效应为-1.95‰/100m。温泉氧同位素漂移与相关离子比值、Na-K-Mg三角图、Li和Sr元素等指标表明研究区域大部分温泉的水岩作用强度弱。氢氧稳定同位素特征、水岩作用特征和循环深度揭示出温泉的成因为远距离大气降水运移补给地下水,地下水在地下热储层加热后通过断裂上升到地表形成温泉,这为认识青藏高原东缘地热水循环、断裂带活动性与演化特征提供了依据。  相似文献   

19.
The recharge sources and groundwater age in the Songnen Plain, Northeast China, were confirmed using environmental isotopes. The isotopic signatures of the unconfined aquifers in the southeast elevated plain and the north and west piedmont, cluster along local meteoric water lines (LMWLs) with a slope of about 5. The signature of source water was obtained by the intersection of these LMWLs with the regional meteoric water line (RMWL). This finding provides evidence that the recharge water for these areas originate from the Changbai Mountains and the Low and High Hingan Mountains, respectively. Groundwater in the unconfined aquifer in the low plain yields a LMWL with a slope of 4.4; its nitrate concentration indicates the admixture of irrigation return flow. The δ-values of the unconfined aquifer in the east elevated plain plot along the RMWL, reflecting recharge by local precipitation. The mean residence time of groundwater in these aquifers is less than 50?years. However, the 14C age of the groundwater in the confined Quaternary aquifer ranges from modern to 19,500?years, and in the Tertiary confined aquifer from 3,100 to 24,900?years. Modern groundwater is mainly recharged to the Quaternary confined aquifer on the piedmont by local precipitation and lateral subsurface flow.  相似文献   

20.
The isotopic composition of groundwater sources of the Sinai Desert was surveyed. The results are characterized by a large spread in the oxygen-18 and deuterium abundances, compared to equivalent systems from less arid climates. The variability reflects differences in the altitude at which precipitation occurred, the evaporation from stagnant surface waters prior to their infiltration into the ground and admixtures of waters which are not of meteoric or recent origin. It is difficult to distinguish between water sources recharged by direct infiltration and others recharged through the intermediary of flood waters, on the basis of their isotope composition. The isotopio composition enables a clearcut distinction, however, between paleowaters and more recently recharged groundwaters. Among the conclusions: paleowaters play a central role in the deep aquifers of desert areas; direct rain recharge to aquifers is widespread; surface waters which have undergone extensive evaporation contribute their water to local perched aquifers which are found along their route.  相似文献   

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