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1.
淮北平原降雨入渗补给系数随地下水埋深变化特征   总被引:1,自引:0,他引:1  
谢永玉 《地下水》2012,(1):9-11
水文地质参数对地下水资源评价起着至关重要的作用。其中,降雨入渗补给系数是影响浅层地下水水量、水质的重要参数。它对研究区域水量转化和水量平衡也十分重要。但是由于受降雨量、土壤类型、植被、地下水埋深等诸多因素的影响,准确判断降雨入渗补给系数存在很大困难。如果没有考虑这些因素的影响,尤其是降雨量和地下水埋深的影响,所推求的降雨入渗补给系数就会存在较大误差。结合安徽省淮北平原区五道沟水文实验站观测的降雨量、地下水补给量、地下水水位资料,利用两种不同的方法推求了不同降雨量等级的次降雨入渗补给系数。根据统计学理论研究了不同降雨量条件下,次降雨入渗补给系数随地下水埋深变化的分布规律,建立了次降雨入渗补给系数与地下水埋深的回归模型,并进行了相应的检验。研究表明,在控制地下水埋深的条件下,次降雨入渗补给系数随地下水埋深的变化符合指数分布;在地下水位自由变动的条件下符合伽玛分布。  相似文献   

2.
同位素指示的巴丹吉林沙漠南缘地下水补给来源   总被引:14,自引:0,他引:14  
通过恢复巴丹吉林沙漠及其周边地区大气降水氚值,并结合区域稳定同位素组合特征,揭示了区域地下水氚年龄的多解性与地下水稳定同位素的温度效应。恢复的1963年核试验期氚高峰值达到2 100 TU,进入90年代平均为60 TU。1960年以来降水补给的地下水氚值都应大于15 TU,而1963年的高峰氚衰变至今应在200 TU左右。地下水实测氚值较低,表明由现代少量降水补给的地下水与大量的古水进行了混合。影响降水中δ18O和δ2H分布的主要影响因子是月平均空气温度,对δ18O与δ2H的影响权重分别占到59.9%和57.0%。巴丹吉林沙漠及其周边地区地下水较低的稳定同位素组成表明,其补给主要是晚更新世较冷环境下形成的,来源于东南部的雅布赖山区,部分浅层地下水接受现代降水与河流的补给。   相似文献   

3.
在大同口泉沟南寒武-奥陶系碳酸盐岩地下水资源勘探研究中,应用了铀放射系不平衡方法.由地下水中234U与238U放射性活度比的不平衡对相邻泉域作出区别,划分出岩溶地下水的3种类型,相应于强、中、弱径流条件和不同的含水层环境.利用234U盈亏指标识别了本区各岩溶地下水子系统、相互关系、补给源和混合比及其与侧向补给和侧向排泄的关系.地下水中铀含量和活度比有较大变幅,神头泉有罕见的小于久期平衡的铀放射性活度比.  相似文献   

4.
森林植被对地下水补给作用分析   总被引:8,自引:0,他引:8  
尹佃忠 《地下水》2003,25(1):9-10
通过调查实例分析了森林植被对调节气候、增加降雨量、增加河川径流量的作用和山西地下水补给的水源条件,指出地下水可持续利用的重要途径,是通过增加森林植被面积增加地下水的补给量。  相似文献   

5.
针对川北山丘区地下水资源和污染防护研究中地下水补给难以定量等问题,以川北典型山丘区平溪河北岸的山丘区子流域为研究对象,布设监测孔并对其地下水的水位和水温开展动态监测,并基于大气压监测数据校正地下水监测水位,分析了山丘区地下水水位及水温的年内动态变化特征;采用渗水试验和分段双栓塞水文地质试验获取含水层空间渗透系数;基于达西断面法定量计算了研究区内观测断面的地下水径流补给量,并建立了月降雨量与降水入渗系数的函数关系,结果显示:研究区多年平均大气降水入渗补给量为16.61mm,多年平均降水入渗系数为0.0182;月降雨量与降水入渗系数呈幂函数关系;此成果可为研究区地下水资源、地下水防污性能评价及地下水数值模拟等研究提供重要依据。  相似文献   

6.
近50年来我国北方典型区域地下水演化特征   总被引:3,自引:0,他引:3       下载免费PDF全文
陈宗宇  王莹  刘君  卫文 《第四纪研究》2010,30(1):115-126
文章在总结中国北方地下水最新调查成果的基础上,选择西北内陆盆地、华北平原和松嫩平原为典型区,对近50年来区域地下水系统的演变特征及其影响因素进行探讨。研究发现: 我国北方盆地和平原地下水系统演化具有渐变性和突变性特征,但在不同地区存在着差异,区域地下水系统已经变得脆弱,地下水资源可持续利用向不利的方向发展。地下水补给演变表现为山前平原地带的补给能力减弱,河道补给减弱或消失,中下游农业区地下水补给强度增大,总补给量呈现减小的趋势;  其中,西北内陆盆地下水补给的减少与上游水资源利用过度、渠系防渗程度提高有关;  而华北平原和松嫩平原地下水总补给量的减少与降雨量的减少和山区河流拦蓄水量的增加有关。伴随着补给模式的改变,地下水流场演变表现为普遍出现持续性的区域地下水位下降,西北干旱区表现为山前平原地下水位快速下降、泉流量减少、溢出带下移;  华北平原和松嫩平原表现为溢出带消失、水位降落漏斗形成并发展,区域地下水流被截断,形成以降落漏斗为中心的局部水流系统。地下水化学场变化主要表现为水化学类型变化、矿化度增大,污染组分增加。自西北内陆盆地至华北平原、松嫩平原,水化学变化强度明显增加,以华北平原和松嫩平原最为明显。本文在这些认识的基础上提出了应对气候变化与人类活动双重影响下地下水演变的适应性对策,为地下水资源可持续利用提供了理论依据。  相似文献   

7.
在矿区长期疏干条件下,不仅地下水流场发生了重大改变,地下水的温度场也发生了明显变化,仔细研究这种地下水的温度变化特征可以深化矿区水文地质条件及其变化的认识。在利用福建马坑铁矿长期监测的地下水温度数据的基础上,分析了疏干条件下地下水温度场的平面分布以及变化特征,探讨了影响地下水温度平面分布以及动态变化的因素。结果表明,矿区地下水的运动特征决定了矿区地下水温度的平面分布呈现西高东低的整体趋势,以及南侧南西高北东低,北侧北西高南东低的局部趋势,受地下水循环深度的影响,副井附近出现高温异常;由于矿区接受温度较低的补给水源逐渐增大,近几年来矿区地下水温呈现整体下降的趋势,且下降速率逐年增大,反映了矿区地下水的补给还在逐渐增加。  相似文献   

8.
鄂尔多斯自流盆地地下水来源争议问题讨论   总被引:12,自引:0,他引:12  
陈建生  王婷  刘晓艳 《地质论评》2013,59(5):900-908
本文讨论了鄂尔多斯自流盆地地下水来源存在争议的两种学术观点,指出了前人关于鄂尔多斯地下水补给、径流、排泄模型所存在的问题:①在四水转化过程中缺少了最重要的研究内容——土壤水的运动,通过概念模型得到的地下水循环模型不能解释地下水分水岭与基底断裂带重合的事实.②部分学者在进行地球化学反向模拟的的研究中,没有对白云石、方解石中的同位素进行对比分析,碳同位素不支持模拟分析结果.③采用14C测定地下水年龄中受到深部CO2的干扰,在中国北方地区不适合采用14C测定地下水的年龄.笔者等通过黄土剖面土壤水中的氘—氧同位素与Cl-分布特征,指出鄂尔多斯盆地的降水非但不能补给到地下水中,而且土壤水的主要来源是地下水.鄂尔多斯自流盆地的主要补给源是外源水,深大断裂带是导水的主要通道.  相似文献   

9.
利用环境同位素示踪地下水循环,结合实际工程中的群孔抽水试验,具体分析某矿区供水水源地地下水系统中,地下水的补给来源、径流通道以及排泄途径,得出地下水系统的补给、径流与排泄关系,对认识地下水系统科学合理开采地下水打下基础。  相似文献   

10.
黑河流域地下水循环演化规律研究   总被引:13,自引:3,他引:13       下载免费PDF全文
大量野外调查研究表明,气候变化和人类活动对黑河流域地下水循环和更新演变具有重要影响;平原区浅层地下水主要是现代水补给,35%来自祁连山区基岩裂隙水通过地表径流转化补给,其他是降水和冰雪融水在山前戈壁带入渗补给,具有较强的更新能力;深层承压水主要形成于地质历史时期区域性补给,与现代水循环有联系;中游区人类活动是造成下游区地下水补给能力减弱、地下水水位持续下降和生态环境退化的重要因素。因此强化中游区人类活动的科学调控,是实现黑河流域地下水可持续利用和下游区生态环境有效保护的关键。  相似文献   

11.
Shallow groundwater collected in Chaozhou,Huizhou,and Guangzhou allowed testing of concentrations and the isotope ratios of noble gases.Based on the calculated noble gas temperature(NGT)and the ratio of noble gas isotopes,the recharge temperature,recharge source,and residence time of groundwater can be calculated.In addition,the contribution of noble gas components from different sources to the sample components can be assessed.In the Huizhou area,according to the 1/Xe vs.Ne/Xe and NGT data,the shallow sandstone-confined water samples in the Shiba area and the unconfined water samples of the Huangshadong are in different temperature ranges,indicating that they have different recharge sources,both in time or space.The He components in the samples are calculated to obtain the content of radiogenic 4He in the crust and to simulate the groundwater ages.The noble gas isotope ratios show the addition of mantle components into the basalt aquifers and sandstone aquifers in Chaozhou and Huizhou.Except for atmospheric and crustal sources,there is a certain proportion of mantle-derived components in the shallow underground cold water in Huizhou and Chaozhou.The noble gases in the Chaozhou groundwater have an obvious mantle signature,allowing speculation that there is a deep fluid carrying mantle characteristics.This upwelling of mantle-derived material might be caused by the India-Eurasia collision or that between the Philippine Sea Plate and the Eurasian Plate.  相似文献   

12.
Shale gas exploration and development carry the risk of causing groundwater contamination and enhancing the greenhouse effect through methane leakage. Identifying the source of abnormal methane in groundwater of shale gas development areas is becoming a research hotspot in the fields of groundwater and climate change. This paper reviews the traditional methodology in identifying sources of methane and its deficiency in groundwater application. Then potential and advantages of using noble gases were discussed on how to overcome these limitations of the traditional method. Finally, based on noble gas, the current application status and future challenges of methane source identification in groundwater were analyzed. It can be summarized as:(1) due to chemical and/or microbial processes in the aquifer system, the traditional methodology for methane source identification, which utilizes molecular and isotopic compositions of hydrocarbon gas, has multiple interpretationsand large uncertainties;(2) the non-reactive nature and well-characterized isotopic compositions of noble gases in the atmosphere, hydrosphere, and crust, make noble gases ideal indicators of the sources of methane in groundwater. Moreover, the mechanism of formation and release of crustal noble gas prevent shale gas signatures from being interfered with by natural gas;(3) the key scientific tasks surrounding the use of noble gases for methane source identification include quantitatively separating the components of atmosphere-derived, mantle-derived, and crust-derived noble gases from the bulk noble gases in groundwater. It quantifies the solubility fractionation of noble gases induced by water-gas interaction during methane migration to the aquifer. The application of noble gases can bring a new perspective to tracing the source of methane in groundwater and is of great significance to the protection of groundwater quality in shale gas development areas and mitigation of climate change.  相似文献   

13.
Identification of the source of CO2 in natural reservoirs and development of physical models to account for the migration and interaction of this CO2 with the groundwater is essential for developing a quantitative understanding of the long term storage potential of CO2 in the subsurface. We present the results of 57 noble gas determinations in CO2 rich fields (>82%) from three natural reservoirs to the east of the Colorado Plateau uplift province, USA (Bravo Dome, NM., Sheep Mountain, CO. and McCallum Dome, CO.), and from two reservoirs from within the uplift area (St. John’s Dome, AZ., and McElmo Dome, CO.). We demonstrate that all fields have CO2/3He ratios consistent with a dominantly magmatic source. The most recent volcanics in the province date from 8 to 10 ka and are associated with the Bravo Dome field. The oldest magmatic activity dates from 42 to 70 Ma and is associated with the McElmo Dome field, located in the tectonically stable centre of the Colorado Plateau: CO2 can be stored within the subsurface on a millennia timescale.The manner and extent of contact of the CO2 phase with the groundwater system is a critical parameter in using these systems as natural analogues for geological storage of anthropogenic CO2. We show that coherent fractionation of groundwater 20Ne/36Ar with crustal radiogenic noble gases (4He, 21Ne, 40Ar) is explained by a two stage re-dissolution model: Stage 1: Magmatic CO2 injection into the groundwater system strips dissolved air-derived noble gases (ASW) and accumulated crustal/radiogenic noble gas by CO2/water phase partitioning. The CO2 containing the groundwater stripped gases provides the first reservoir fluid charge. Subsequent charges of CO2 provide no more ASW or crustal noble gases, and serve only to dilute the original ASW and crustal noble gas rich CO2. Reservoir scale preservation of concentration gradients in ASW-derived noble gases thus provide CO2 filling direction. This is seen in the Bravo Dome and St. John’s Dome fields. Stage 2: The noble gases re-dissolve into any available gas stripped groundwater. This is modeled as a Rayleigh distillation process and enables us to quantify for each sample: (1) the volume of groundwater originally ‘stripped’ on reservoir filling; and (2) the volume of groundwater involved in subsequent interaction. The original water volume that is gas stripped varies from as low as 0.0005 cm3 groundwater/cm3 gas (STP) in one Bravo Dome sample, to 2.56 cm3 groundwater/cm3 gas (STP) in a St. John’s Dome sample. Subsequent gas/groundwater equilibration varies within all fields, each showing a similar range, from zero to ∼100 cm3 water/cm3 gas (at reservoir pressure and temperature).  相似文献   

14.
Gas exchange between seepage water and soil air within the unsaturated and quasi-saturated zones is fundamentally different from gas exchange between water and gas across a free boundary layer, e.g., in lakes or rivers. In addition to the atmospheric equilibrium fraction, most groundwater samples contain an excess of dissolved atmospheric gases which is called “excess air”. Excess air in groundwater is not only of crucial importance for the interpretation of gaseous environmental tracer data, but also for other aspects of groundwater hydrology, e.g., for oxygen availability in bio-remediation and in connection with changes in transport dynamics caused by the presence of entrapped air bubbles. Whereas atmospheric solubility equilibrium is controlled mainly by local soil temperature, the excess air component is characterized by the (hydrostatic) pressure acting on entrapped air bubbles within the quasi-saturated zone. Here we present the results of preliminary field experiments in which we investigated gas exchange and excess air formation in natural porous media. The experimental data suggest that the formation of excess air depends significantly on soil properties and on infiltration mechanisms. Excess air was produced by the partial dissolution of entrapped air bubbles during a sprinkling experiment in fine-grained sediments, whereas similar experiments conducted in coarse sand and gravel did not lead to the formation of excess air in the infiltrating water. Furthermore, the experiments revealed that the noble gas temperatures determined from noble gases dissolved in seepage water at different depths are identical to the corresponding in situ soil temperatures. This finding is important for all applications of noble gases as a paleotemperature indicator in groundwater since these applications are always based on the assumption that the noble gas temperature is identical to the (past) soil temperature.  相似文献   

15.
The San Juan Basin natural gas field, located in northwestern New Mexico and southwestern Colorado in the USA, is a case-type coalbed methane system. Groundwater is thought to play a key role in both biogenic methane generation and the CO2 sequestration potential of coalbed systems. We show here how noble gases can be used to construct a physical model that describes the interaction between the groundwater system and the produced gas. We collected 28 gas samples from producing wells in the artesian overpressured high production region of the basin together with 8 gas samples from the underpressured low production zone as a control. Stable isotope and major species determination clearly characterize the gas in the high production region as dominantly biogenic in origin, and the underpressured low producing region as having a significant admix of thermogenic coal gas. 3He/4He ratios increase from 0.0836Ra at the basin margin to 0.318Ra towards the center, indicating a clear but small mantle He signature in all gases. Coherent fractionation of water-derived 20Ne/36Ar and crustal 4He/40Ar* are explained by a simple Rayleigh fractionation model of open system groundwater degassing. Low 20Ne concentrations compared to the model predicted values are accounted for by dilution of the groundwater-associated gas by desorbed coalbed methane. This Rayleigh fractionation and dilution model together with the gas production history allows us to quantify the amount of water involved in gas production at each well. The quantified water volumes in both underpressured and overpressured zones range from 1.7 × 103 m3 to 4.2 × 105 m3, with no clear distinction between over- and underpressured production zones. These results conclusively show that the volume of groundwater seen by coal does not play a role in determining the volume of methane produced by secondary biodegradation of these coalbeds. There is no requirement of continuous groundwater flow for renewing the microbes or nutrient components. We furthermore observe strong mass related isotopic fractionation of 20Ne/22Ne and 38Ar/36Ar isotopic ratios. This can be explained by a noble gas concentration gradient in the groundwater during gas production, which causes diffusive partial re-equilibration of the noble gas isotopes. It is important for the study of other systems in which extensive groundwater degassing may have occurred to recognize that severe isotopic fractionation of air-derived noble gases can occur when such concentration gradients are established during gas production. Excess air-derived Xe and Kr in our samples are shown to be related to the diluting coalbed methane and can only be accounted for if Xe and Kr are preferentially and volumetrically trapped within the coal matrix and released during biodegradation to form CH4.  相似文献   

16.
利用MODFLOW-CFP建立湖南省香花岭渗流-管道流耦合模型,并使用降雨量系数法实现非线性入渗过程,以探讨此方法在模型中的适用性。通过人工试错反演参数,得出6个不同降雨强度区间的降雨量系数;非线性入渗处理后,地下河流量模拟结果的纳什系数提高至0.91。结果表明:降雨量系数法可使该模型更好地模拟地下河流量变化,此方法也适用于一些岩溶小流域的数值模拟工作。   相似文献   

17.
Rainfall is the main source of groundwater recharge in the Gaza Strip area in Palestine. The area is located in the semi-arid zone and there is no source of recharge other than rainfall. Estimation of groundwater recharge from rainfall is not an easy task since it depends on many uncertain parameters. The cumulative rainfall departure (CRD) method, which depends on the water balance principle, was used in this study to estimate the net groundwater recharge from rainfall. This method does not require much data as is the case with other classical recharge estimation methods. The CRD method was carried out using optimisation approach to minimise the root mean square error (RMSE) between the measured and the simulated groundwater head. The results of this method were compared with the results of other recharge estimation methods from literature. It was found that the results of the CRD method are very close to the results of the other methods, but with less data requirements and greater ease of application. Based on the CRD method, the annual amount of groundwater recharge from rainfall in the Gaza Strip is about 43 million m3. An erratum to this article can be found at  相似文献   

18.
傅卫东 《福建地质》2005,24(2):90-96
稀有气体有4个源区,包括大气、地下水、地壳和地幔;其中地幔稀有气体又可分为上地幔和下地幔2个源区。不同源区的稀有气体在同位素组成上截然不同,因而可以利用稀有气体同位素进行有关地质和地球化学过程的示踪。稀有气体同位素组成不仅对查明成矿流体的性质和来源及矿床成因具有重要作用,而且还可以为正确理解大规模成矿作用的地球动力学背景和全面弄清大型一超大型矿集区的时空分布规律提供重要线索。  相似文献   

19.
浅层滑坡在我国广泛分布,但在区域范围内分布规律性较差,且具有突发性、隐蔽性和破坏性强等特点。湘西武陵山区地质条件复杂、降雨丰沛、人类工程活动强烈,突发性地质灾害频发,尤以降雨诱发的浅层滑坡为主。文章以湘西地区慈利县陈溪峪滑坡为例,开展了降雨量、基质吸力、地下水位和地表变形等的监测;结合滑坡的现场调查及监测成果,分析滑坡的形成条件和变形机理;在此基础上,考虑基质吸力对边坡稳定性的贡献,将强度折减有限元法推广到非饱和土边坡,计算得到了不同降雨工况下滑坡稳定性。结果表明:当强降雨降落到滑坡体上时,坡内基质吸力值均迅速减小,直至一定值后(9.5 kPa左右)不再变化;坡内地下水位受季节性降雨影响显著,短时强降雨引起地下水变化幅度不如长时间降雨对地下水位造成的影响大;陈溪峪滑坡的地质力学成因为蠕滑推移式土质滑坡,运动形式为沿基覆界面的浅层滑坡;短时强降雨是诱发滑坡变形的最关键因素。陈溪峪滑坡在持续降雨条件下的降雨量预警值约为280 mm,在短时强降雨条件下的降雨强度预警值约为240 mm/d。  相似文献   

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