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1.
鉴于包气带蒸发的水分是从地表散失,故查明裸土蒸发规律对研究包气带水分蒸发、潜水蒸发问题具有重要意义。为了查明西北干旱内陆盆地区裸土蒸发强度规律,通过开展裸土含水率观测、包气带负压观测等野外原位试验,结合气象资料,对包气带剖面流场特征进行分析,采用有限差分法对裸土蒸发强度进行计算。结果表明:依据包气带水分在垂向上迁移的不同状态,将裸土区包气带剖面划分为水分向上传输带和水分向下迁移带2个带;西北内陆干旱盆地裸土包气带极限蒸发深度为1.2 m;受外界蒸发能力和包气带向上输水能力交替控制作用,盆地内裸土蒸发出现在4月下半月至9月下半月,其中4月下半月至5月裸土蒸发强度最大,平均蒸发强度达0.56 mm/d;裸土蒸发强度平均仅占水面蒸发强度的3.5%,最大达6.7%。  相似文献   

2.
以陕北侏罗纪煤田凉水井煤矿为例,研究了浅埋煤层开采涌水量规律,根据煤矿井下水样的氢氧同位素构成,计算了矿井水的来源。该区矿井水接受风化基岩裂隙承压水和萨拉乌苏组潜水的补给,矿井水δD为-70‰,裂隙水δD为-80‰,萨拉乌苏组潜水δD为-67.46‰,由此可以计算出矿井水的补给来源主要是萨拉乌苏组地下水,萨拉乌苏组潜水补给占79.74%,基岩裂隙水补给占20.26%,据此提出该区保水采煤重点是保护萨拉乌苏组地下水含水结构的稳定性。  相似文献   

3.
为了确定巴丹吉林沙漠潜水蒸发强度与地下水埋深的关系,基于巴丹吉林沙漠的气候背景、砂土特征和不同地下水埋深时的典型植被特点设计了54种情景,利用Hydrus-1D建立不同情景下的SPAC水分运移模型,对周期性气象条件驱动下的潜水蒸发开展数值模拟。模拟结果表明:多年平均潜水蒸发量有着随地下水埋深增大而非线性减小的趋势;不同情景的极限埋深都大于3m,在埋深等于3m时潜水蒸发量都小于最大值的5%;当地下水埋深为0.5~1.5m时,潜水蒸发量对地下水埋深的变化最为敏感;当地下水埋深为1m时,潜水蒸发量对包气带岩性的变化也很敏感;在地下水埋深小于0.5m和大于1.5m的区间,气候、岩性、地下水埋深的变化对潜水蒸发量的影响变得微弱。另外,多年平均潜水蒸发量和地下水埋深的这种非线性关系可以用一个新提出的经验公式进行较为准确的拟合,将这个研究结果用于评价巴丹吉林沙漠湖泊集中区地下水的蒸发消耗,发现潜水蒸发总量显著大于湖面蒸发总量,前者约为后者的2.5~2.6倍,必须在沙漠水分平衡的分析中加以考虑。  相似文献   

4.
闫自仁 《地下水》2012,34(5):40-41
利用地下水均衡试验观测资料对比分析建立了月平均饱和差与水面蒸发的关系,潜水蒸发的年内分配规律及垂向分布规律;用相同时段内的潜水蒸发量和水面蒸发量做相关分析,提出不用时间的相关性;用φ20cm实测年蒸发量值和彭曼公式计算结果对比,确定计算误差。  相似文献   

5.
干旱区高盐度潜水蒸发规律初步分析   总被引:8,自引:0,他引:8       下载免费PDF全文
为分析干旱区高盐度潜水蒸发规律,于2012年4月1日~2014年3月31日在新疆昌吉地下水均衡试验站开展了不同总溶解固体 (0.8 g/L、30 g/L和100 g/L)、不同包气带岩性(细砂和粉质黏土)和不同潜水埋深(0 m、0.5 m、1.0 m、2.0 m和3.0 m)潜水蒸发量的监测工作。结果表明:当潜水埋深大于0.5 m时,包气带岩性对高总溶解固体(Total Dissolved Solids, TDS)潜水蒸发量的影响与淡水基本一致;潜水埋深0.5 m、TDS为30 g/L时,包气带岩性的差异对潜水蒸发量的影响远小于由于潜水的TDS和外界大气蒸发能力对潜水蒸发共同造成的影响;潜水位埋深为0 m、TDS为100 g/L、包气带为粉质黏土时,年内潜水蒸发趋势与大气蒸发能力EΦ20的趋势相反;潜水埋深0.5~1.0 m时,在非冻结期随着TDS的升高,潜水蒸发量逐渐减小;当潜水埋深为3.0 m时,TDS的变化对潜水蒸发抑制作用存在滞后性。  相似文献   

6.
干旱区高盐度潜水蒸发溶解性总固体折算系数分析   总被引:1,自引:1,他引:0  
为分析干旱区高盐度潜水蒸发与淡潜水蒸发间的关系,提出了干旱区潜水蒸发溶解性总固体(TDS)折算系数(KM)。2012年4月1日—2014年3月31日在新疆昌吉地下水均衡试验站开展了不同TDS(30和100 g/L)、不同包气带岩性(细砂和粉质黏土)和不同潜水水位埋深(0.5、1.0、2.0、3.0 m)的蒸渗仪潜水蒸发试验,利用实测的高盐度潜水蒸发数据计算不同条件下的KM。对潜水蒸发系数和KM进行分析,初步得出了以下结论:高TDS潜水蒸发系数冻结期大于非冻结期,在其他条件一定的情况下,潜水TDS越高,潜水蒸发系数越小;非冻结期高盐度潜水蒸发量小于淡潜水蒸发量,且随着观测时间的延续高盐度潜水蒸发量有减少趋势;冻结期高盐度潜水蒸发量大于淡潜水蒸发量,潜水埋深越大,两者的差值越大,且随着观测时间延续,高盐度潜水蒸发量与淡潜水蒸发量间的差值有变大的趋势;在其他条件一定的情况下,潜水TDS为100 g/L的全年潜水蒸发量小于潜水TDS为30 g/L的全年潜水蒸发量。  相似文献   

7.
西北内陆盆地潜水与土壤水转化关系研究   总被引:6,自引:0,他引:6  
在天山北麓昌吉地下水均衡试验场,选择天山北麓平原的三种代表性岩性(粘土、细砂、砂砾石)进行天然条件下的潜水入渗补给和潜水蒸发模拟试验研究。观测不同岩性的潜水入渗补给量和潜水蒸发量,计算潜水补耗差,分析岩性和潜水埋深对潜水补耗差的影响。研究成果对于认识西北内陆干旱平原区土壤水与潜水的转化关系、涵养和保护地下水资源具有重要意义。  相似文献   

8.
针对在地下水资源评价中入渗补给量采用经验估算存在较大误差的问题,以神东矿区为例,在广泛调查矿区包气带岩性结构并结合野外取样、室内参数测定的基础上,采用数值模拟的方法建立包气带水分运移数值模拟模型,定量模拟矿区内不同地段降雨入渗强度,探讨影响降雨入渗强度的主要因素,计算得出研究区降雨入渗系数大致在0.18~0.27,分析认为影响降雨入渗强度的因素有降雨量、潜水埋深、包气带岩性等。其中在研究区广泛分布的风积沙对地下水资源起到了一定的保护作用。  相似文献   

9.
零通量面法在沈阳地区地下水资源评价中的应用   总被引:1,自引:1,他引:1  
降水对地下水的入渗补给和大气蒸发作用下地下水的消耗是地下水资源的重要组成部分。降水入渗和地下水蒸发这两种作用均是通过包气带进行的。从包气带着手,运用零通量法确定这些量已在实际中得到应用。以沈阳地区为例,针对该区集中频繁降水与蒸发排泄交替进行导致零通量紊乱易变的特点,在对有关问题深入探讨的基础上,对浅层潜水入渗补给量(包括蒸发量)和非饱和渗透系数进行了计算,取得了较好的效果。  相似文献   

10.
潜水蒸发是干旱内陆盆地区地下水的主要排泄方式,但其定量评价存在很大的不确定性,是水均衡分析和水资源评价的难点.在新疆玛纳斯河流域平原区,以溴离子为示踪剂于2017年5月在不同土地利用类型区试验点投溴化钠,分别于2017年8月和2018年8月采样测定溴离子垂向分布,根据溴离子垂向运移速率确定潜水蒸发速率.试验点溴离子的浓度在垂向剖面上的分布呈现单峰形态且峰值上移,根据其峰值上移距离计算得出非沙漠区年平均潜水蒸发量为33.59 mm;不同土地利用类型潜水蒸发由强至弱依次为棉田、荒地、林地和沙漠,年平均蒸发量分别为41.71 mm、34.01 mm、11.28 mm、8.58 mm.溴离子示踪法评价潜水蒸发量的结果与前人相符;潜水蒸发速率与土地利用类型、包气带岩性、土壤体积含水量和潜水埋深有关,岩层粘粒含量越高、含水量越高、越靠近细土平原低地势区,潜水蒸发作用越强.   相似文献   

11.
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   

12.
通过对比采煤前和采煤塌陷过程中及稳定后包气带结构的变化,详细研究了神府—东胜矿区采煤塌陷对包气带结构的影响。研究结果表明:在采煤塌陷前,包气带组成岩性主要为风积砂岩和萨拉乌苏组粗砂岩,相对较薄,包气带组成介质层序较清晰,各岩性介质颗粒排列有序、均一,包气带内部结构以孔隙为主;在采煤发生后的塌陷非稳定阶段,塌陷裂隙贯通含水层,使地下水大量渗漏,同时产生大量贯穿地表的裂隙,引起岩土孔隙性发生变化,使得塌陷区包气带变厚,在一定深度上结构不均,浅部包气带结构转化为以裂隙为主;到塌陷稳定阶段,包气带结构变化趋于稳定,厚度增加,但在地表以下仍存在一些断续的裂缝(隙),使塌陷区包气带形成以孔隙为主,间夹断续裂隙的特殊包气带结构。  相似文献   

13.
地表-地下水系统水、热迁移转化与裸土蒸发机理研究对于水量平衡以及地表能量转化具有重要意义。以鄂尔多斯盆地风沙滩地区为研究区,基于原位蒸渗仪长期观测,结合数值模拟,选择2种地下水位初始埋深分别为80 cm(浅埋深)和290 cm(深埋深)的情景,研究了变饱和带水热迁移转化的动力学过程以及对裸土蒸发的影响。结果表明:变饱和带土壤水的运动规律受水头梯度和温度梯度的共同驱动,且在不同水位埋深条件下呈现不同的运动方式;浅埋深条件下,受水头梯度的作用,土壤的毛细上升高度能够到达地表,蒸发条件下土壤水在毛细力驱动下向上运移,土壤内部不存在零通量面,温度对水分运动的影响较小,发现当地下水位埋深小于毛细上升高度时,地下水在毛细力作用下直接贡献土壤蒸发;深埋深条件下,水头和温度是土壤水运动过程的关键因素,位于地表以下18 cm以浅土壤内部出现孤立的零通量面,阻止了土壤水的向上运移,导致蒸发量减小。当地下水位埋深大于毛细上升高度的1.6倍时,地下水不再直接参与土壤蒸发,但会间接地影响包气带的水分转化;因此模拟期间浅埋深的裸土累积蒸发量约为深埋深累积蒸发量的4倍。  相似文献   

14.
Geological transition zones are noted to be problematic in groundwater potential and development, due to their erratic and complex nature as well as characteristic of the subsurface lithologies. There were several occurrences of reported borehole failures and dry wells in these zones in Nigeria as a result of very scanty information that could serve as database for studying its groundwater potential. This study was therefore designed to generate hydrogeophysical data that could serve as baseline information on the groundwater potential in the study. In addition, to also delineate various subsurface lithologies present. Electrical resistivity survey for geophysical investigation was carried out using vertical electrical sounding (VES) technique. A total of 150 VES stations were purposively probed using Schlumberger electrode array. The interpreted data were used to produce geoelectric subsurface lithologies and to draw the geological section across the entire area. Various subsurface lithologies with their resistivities (Ωm) were delineated for basement complex (BC), transition zone (TZ), and sedimentary terrain (ST). In BC were topsoil, weathered zone, and fresh bedrock and in TZ were topsoil, sandy, laterite/clay, dry sand, sandstone, and fresh bedrock delineated while in the ST, topsoil, lateritic and sandy clay, dry sand, and the sandstone were delineated. In conclusion, the groundwater potential of the study area is largely been affected by the topography and the nature/composition of the Abeokuta Group that underlie the sedimentary part of the study area and the presence of thick laterite/clay unit of the basement complex portion of the study area.  相似文献   

15.
西北内陆流域下游区天然植被对地下水生态功能具有强烈依赖性,而包气带岩性结构对地下水生态功能具有明显影响,但是在目前的研究中,缺乏定量分析评判。以甘肃石羊河流域下游天然绿洲区为研究区,基于包气带岩性结构野外调查、室内土柱试验和Hydrus1-D数值模拟,研究包气带岩性结构与地下水耦合作用的生态效应,分析不同岩性结构包气带...  相似文献   

16.
This study reviews the distribution of groundwater salinity in an arid desert transition zone. By combining field experiments and computer simulation models we make a comprehensive analysis of the formation mechanism of fresh groundwater in relation to the paleogeographic conditions of lithofacies, the geochemical characteristics of the aquifer media, salt deliverability in the vadose zone and prevailing hydrodynamic conditions. The results demonstrate that (1) the lacustrine facies deposition stratum of the Huanhe formation in the Cretaceous system provides a brackish-salt groundwater environment; (2) the average salinity of parent rocks are approximately 440 mg/kg and 4 371 mg/kg in the Quaternary eolian sand and the Cretaceous Huanhe formation respectively, suggesting that parent rocks are the principal controlling factor in the distribution of groundwater quality given that mineral and chemical composition of the eolian sand is simpler than that of the Huanhe formation; (3) average groundwater flow rates are approximately 0.25 m/d and 0.1 m/d in eolian sand and Huanhe formation aquifers respectively, indicating that hydrodynamic conditions play an important role in driving in the formation and evolution of fresh groundwater; (4) The salinity deliverability in the vadose zone overlying the aeolian sand and Huanhe formation aquifers are approximately 15.97 mg/L and 220.42 mg/L respectively, signifying that the combination of lithology and salt content of vadose zone, rainfall infiltration, evapotranspiration and concentration heavily influence the formation, distribution and evolution of groundwater quality. This study can provide a scientific basis for the sustainable development and utilization of groundwater resources in arid areas.  相似文献   

17.
Based on three typical mediums (sandy loam, loam and sandy clay loam) in Hebei Plain, this paper designs phreatic evaporation experiments under different lithology and phreatic depth. Based on the analysis of experimental data, the phreatic evaporation law and influencing factors of three mediums were studied. The results showed that: (1) The shallower the phreatic depth, the larger the phreatic evaporation. (2) Sandy clay loam has the biggest response to the increase of the phreatic depth, sandy loam is the second and loam is the smallest. (3) The limit depth of phreatic evaporation of sandy clay loam is about 3 m and that of loam and sandy loam is about 2 m and 3 m, seperately. (4) By fitting the daily evaporation of phreatic water and phreatic depth, the results showed that sandy loam and sandy clay loam are exponential functions and loam is power functions.  相似文献   

18.
洛河冲积平原包气带对入渗水污染物净化能力研究   总被引:2,自引:0,他引:2       下载免费PDF全文
包气带是地下水补给和地下水污染的主要通道,包气带的性质直接控制了地下水的污染化速度和程度。文章以洛阳市区洛河河床岩性(以砂砾石为主)以及由亚粘土、亚砂土、中细砂等介质构成的包气带为研究对象,分析河床和包气带对污染物的自净能力,并对其天然的自净机制进行了简要分析,结论如下:洛河河床岩性对各种污染物(NO3-除外)的净化能力均达到90%以上;亚粘土、亚砂土、中细砂等包气带介质层对重金属(Cu2+等)有很强的净化能力,而对Cl-、Cr6+的净化能力则较弱,在短时间内介质中就达到饱和而失去净化能力;在环境条件相近及水文地质条件基本相同的条件下,包气带厚度与地下水的污染程度呈负相关关系;污水经过包气带,能有效地去除污水中的有害物质,防止地下水污染。 更多还原  相似文献   

19.
The vadose zone is the zone in between the land surface and above the groundwater table at vertical profile with partial water saturation and under the unsaturation condition, which constitutes the connections among atmospheric water, surface water and groundwater. Soil moisture migration in the vadose zone is a rather complicate process, which controls the rates of groundwater depletion and recharge, and has close hydraulic connections with highly frequent water transfers on the interfaces among the irrigation farmland, sand dunes, wetlands, lakes, and other landscape types. Recent development on soil moisture migration simulations and the application of tracer techniques, geophysical techniques and other geological methods in the vadose zone research, the factors affecting soil moisture migration and groundwater recharge,and soil moisture migration effects on moisture exchange between different landscapes were reviewed in this paper. Several suggestions on the future research were presented here: ① An intense field observation and research database should be initiated and constructed to determine the soil hydraulic parameters, and quantify the influence of moisture migration in vadose zone on the groundwater recharge; ② The proposed observations and researches should learn from the “Critical Zone Observatory”, and focus on the coupling of the soil moisture migration, solute transport and groundwater recharge.  相似文献   

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