首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 359 毫秒
1.
季节冻土对包气带水分迁移的影响   总被引:2,自引:0,他引:2       下载免费PDF全文
采用智能化土壤墒情监测仪,对东北吉林集安季节冻土带进行地温和含水率观测,历时一个水文年。通过分析不同深度地温、含水率随时间的变化,研究地温场变化、降水入渗等因素对水分迁移的影响。寒季,气温急剧下降,地温随深度增加而增高,气态水在包气带上部的低温带凝结,当凝结速率大于渗透速率时,含水率不断增加,水分蓄积。季节冻土形成后,孔隙水以固态水的形式储存,是包气带上部水分主要的聚集期。暖季,地温随深度增加而降低,气态水向下运移凝结,即使降水入渗量很大也不会引起水分蓄积。因此,温度场控制着气态水凝结方向,是引起包气带内水分运移的重要影响因素之一。  相似文献   

2.
干旱区包气带土壤水分运移及其对地下水补给研究进展   总被引:2,自引:0,他引:2  
包气带是指地表到地下水之间垂直剖面中土壤孔隙没有被水充满、水分处于非饱和状态的区域,是地表水进入地下水的通道。包气带土壤水分运移过程不仅影响到地下水补给,而且与相邻景观之间存在水力联系。评述了干旱区包气带土壤水分运移模拟、地球化学示踪技术、地球物理技术在包气带土壤水分运移研究中的应用、影响包气带土壤水分运移及对地下水补给的因素、包气带水分运移对景观间水分交换的影响等方面的研究进展,提出在未来的研究中,应加强包气带土壤水分运移参数的试验观测及数据库建立、加强包气带土壤水分运移及其对地下水补给的研究,应借鉴地球关键带研究的思路,开展包气带土壤水分运移、溶质运移、地下水补给耦合研究。  相似文献   

3.
沙漠包气带水分运移机理研究   总被引:2,自引:0,他引:2  
针对沙漠包气带的特点,运用中子仪—负压计—地温计联合观测法,对试验场典型地段水位埋深分别为lm,2m,3m的包气带含水量、水分势能和温度场进行了长期野外实地观测,并总结出相应的日变化、季节变化规律,分析了降水、蒸发等气象因素对包气带水分的影响过程,从而得出沙漠包气带水分运移机理及运移规律。为红砂岗矿区水源地水资源评价提供了科学依据。   相似文献   

4.
以张家湾包气带水盐运移试验场灌溉试验资料为依据,运用土壤水分能量观点,分析了灌溉条件下包气带水分运移特征。试验结果表明,在一定灌溉量下包气带水分运移具有明显的分带特征以及灌溉水明显运移到达的深度;在一定灌溉量条件下,灌溉后地下水位上升微小,灌溉补给地下水量较小,并通过非饱和水流达西定律计算了向下入渗补给量。  相似文献   

5.
在我国西北黄土高原的黄土塬、黄土台塬区赋存有较丰富的黄土潜水,大气降水垂直入渗是其主要补给来源,但对水分赋存和运移的空间通道认识尚有不足。文章基于董志塬、渭北黄土台塬的地貌、地层结构等水文地质条件、地下水利用动态和相关试验资料,结合黄土扫描电镜图像处理与统计分析,对黄土塬区黄土潜水和包气带水分运移的孔隙特征、过程进行了探讨并分带。研究认为孔隙是黄土地下水的主要赋存、运移的空间通道,其最小渗透等效孔径约为12μm。由孔隙发育的马兰黄土构成的黄土包气带垂向结构组合有利于大气降水的入渗,包气带孔隙中的水分运移非常微弱缓慢,但较为连续均匀。黄土包气带可划分为气候影响带、储存调节带、缓慢运移带和毛细接收带4个带,除上部气候影响带外,其余三带处于基本稳定的水分运移动平衡状态。研究成果可为全面系统地认识黄土塬区包气带水分运移特征提供参考和借鉴。  相似文献   

6.
包气带增厚条件下地下水补给规律研究   总被引:1,自引:0,他引:1  
伴随人类活动影响的不断增大,地下水位持续下降,包气带厚度增大,改变了地下水的补给条件.为阐明在巨厚包气带中水分运移规律,在河北栾城实验站进行了包气带水分运移监测试验.通过对监测数据的计算和分析,揭示了大水漫灌条件下,灌溉水在包气带中湿润峰和零通量面(ZFP)的运移和形成规律,计算了灌溉水回归补给地下水的水量,并利用达西公式进行验证.试验结果客观准确地反映了在当前人类剧烈活动影响下,包气带中水分运移规律及灌溉水补给地下水的情况,同时通过对包气带水分运移情况进行监测,取得了包气带水分运移的翔实资料和灌溉参数,对于促进农业节水灌溉有重大的现实意义.  相似文献   

7.
包气带水分入渗过程受多种因素的影响。定量研究层状非均质岩性结构和入渗速率对其影响,有助于解决根据不同条件选择单相流模型或水气二相流模型模拟包气带水分入渗过程的问题。结合填埋场等场地地层条件及污废水入渗特征,分别建立了“上细下粗”和“上粗下细”包气带层状非均质岩性结构水分入渗单相流和水气二相流模型,探讨不同层状非均质岩性结构条件下模型的适用性。在“上粗下细”岩性结构模型基础上,进一步探究入渗速率对水气两相运移结果的影响。基于论文模型研究表明:(1)在包气带岩性结构为“上细下粗”的条件下,气相的影响基本可以忽略,可直接采用单相流模型对包气带水分运移进行模拟;在“上粗下细”岩性结构和本次模型设定的底部压力保持不变及污废水泄漏前场地未接受降水入渗补给等条件下,当包气带上下层介质渗透率比值大于16倍时,气相会对水相运移产生明显影响,且下层介质渗透率越小、上下层介质渗透率比值越大,单相流与两相流的运移结果差别越大,需要采用水气二相流模型模拟包气带水分运移。(2)在包气带“上粗下细”岩性结构条件下,入渗速率越大,气相对水流入渗的阻滞作用越明显,此时包气带水分运移模拟应采用水气二相流模型。  相似文献   

8.
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   

9.
黄土高原丘陵沟壑区包气带土壤水运移过程   总被引:1,自引:0,他引:1       下载免费PDF全文
包气带土壤水运移过程是黄土高原生态修复中亟需回答的关键科学问题。环境同位素方法可获取其他方法难以获取的水文过程信息。通过对黄土高原丘陵沟壑区羊圈沟小流域降水、包气带0~150 cm土壤水和绣线菊(Spiraea salicifolia)木质部水等样品的同位素δD和δ18O进行测定。结果表明:羊圈沟小流域降水同位素组成受蒸发作用影响较大,呈现明显分馏效应。包气带土壤水、降水与木质部水同位素组成存在明显月份变化特征。降水是土壤水的主要补给来源,灌丛的水分利用来源主要为降水和土壤水,符合降水-土壤水-植被水的运移特征。灌丛木质部水和20~40 cm土壤水δD和δ18O最为接近,20~40 cm土壤水是灌丛水分利用的主要来源。研究揭示了包气带土壤水运移过程及植物水分利用来源,为土壤水运移过程、模型结构与参数识别等提供科学依据。  相似文献   

10.
毛乌素沙地冻融期气态水迁移机理及影响因素   总被引:1,自引:0,他引:1       下载免费PDF全文
受冰-水间相变影响, 冻融期内土壤水、热传输过程变得复杂, 研究气态水分布特征与运移规律, 可为厘清冻融过程中沙地包气带水文循环机理提供关键信息。通过在毛乌素沙地建立原位监测点, 并利用修改后的Hydrus-1D冻融程序建立包气带水-汽-冰-热耦合数值模型, 对冻融期包气带气态水迁移过程展开研究。结果表明: 模拟与实测土壤水分及温度变化拟合较好, 证实所建立的模型具有良好的精度以及适用性; 对比典型未冻结、初始冻结、向下冻结以及融化时段结果可知, 冻融过程会改变剖面土壤水分、含冰量以及水汽密度分布, 其中水汽密度变化与温度联系紧密; 冻结后, 由温度梯度驱动的非等温气态水通量在总水分通量中的占比超过90%, 表明气态水占据主导地位, 其运移过程对于剖面土壤水分分布以及高含水量带出现有重要影响。  相似文献   

11.
In this paper, the plexiglass experimental column was used to analyze the capillary fringe thickness of three kinds of lithologies-silty sand, silt and silty clay-providing a basis for defining the interface in the study of hydrodynamics at the water table between vandose water and groundwater. The capillary fringe generally refers to the subsurface layer in which the groundwater seeps up to the air-entry suction value due to capillary action, and is nearly saturated with water. The thickness of the capillary fringe varies with different lithologies. In this experiment, self-made stable water supply devices were used to study the height of capillary rise, capillary water volume and capillary fringe thickness of the three lithologies through capillary experiment and numerical simulation. Experimental results show as follows:(1) Rising height of capillary water is related to time, particle radius, volume, etc., and the relationship between height and time is in line with the Hill model.(2) The smaller the particle radius, the more water the pores contain, and the ratio of the unsaturated portion of capillary water to the total water content gradually rises. Experimental results obtained by numerical simulation, segmentation and actual measurement are consistent.(3) The thickness of the capillary zone is related to the lithology. The larger the particle size, the smaller the thickness of the capillary fringe, and vice versa. In silty sand, the thickness measures about 13 cm. The figure rises to 16 cm in silt, and 37 cm in silty clay. This work studies the law of soil water transport at saturated-unsaturated interface. Experimental results are of great significance to the study of soil water and salt transport and soil salinization control in unsaturated zone.  相似文献   

12.
The single-ring aromatic hydrocarbons benzene, toluene, ethylbenzene and m-xylene (BTEX) are common and dangerous pollutants in subsurface environments. The diffusive transport of BTEX vapours through the unsaturated zone of the ground is a potential health hazard to humans, living in the vicinity of petroleum fuel contaminated sites. Past studies have shown that gas transport through the vadose zone can be influenced by moisture content due to variations in gaseous permeability, phase partitioning and aerobic biodegradation. In this particular study laboratory soil column experiments were employed to compare the diffusive transport of BTEX vapours through a sand layer of high moisture content, where biodegradation of BTEX compounds occurred, with diffusion through air-dried sand. The presence of a thin soil layer of high moisture content reduced the gaseous concentrations of benzene and toluene and stopped the migration of ethylbenzene and m-xylene vapours, demonstrating its efficiency as a barrier on the diffusive transport of BTEX vapours in unsaturated soil.  相似文献   

13.
浅层包气带地温与含水量昼夜动态的实验研究   总被引:7,自引:1,他引:7  
西北荒漠化地区,包气带中的水分除来自大气降水外,还来自凝结水。凝结水对维持荒漠地区的植被生态环境起到至关重要的作用,而凝结水的形成机制又反映在包气带地温与含水量的昼夜动态过程中。文中报告了室外沙坑浅层包气带地温与含水量观测的实验结果。土壤含水量变化采用原位测试的方法观测,避免了传统称重法产生的干扰和不确定性。实验中对深度0~30cm范围的土壤温度进行了高密度观测。结果表明,温度梯度对水汽的运移起到主控作用,温度梯度方向向下,土壤含水量增加,反之,含水量减少。通过热传导方程对土壤中的传热过程进行分析,得到傅立叶级数表示的温度波方程,用于预测不同深度土壤响应地表条件而产生的温度变化。实验中还对近地表微气象以及土壤负压等因素进行了观测。  相似文献   

14.
The nucleation and propagation of polygonal cracks in hydrous sulphate dunes at White Sands National Monument, New Mexico, are affected by water availability, transport through the sand and exchange with the atmosphere. These gypsum sands are cohesive enough to crack due to capillary forces and gypsum cements formed during evaporation. Surface cracks form five‐sided polygons with a variety of triple‐junction angles. Cracks extend down to variable depths and polygons increase in size with depth, showing a maturation similar to experimentally produced polygonal columns in drying corn starch. Results from two years of monitoring crack geometries, temperature and humidity demonstrate that cracks form when water is lost to the atmosphere through the transport of water vapour. Subsurface relative humidity below 5 to 10 cm is almost always maintained at 100% by the evaporation and condensation of water in thin films on grains. The amplitude of daily temperature and thus absolute humidity changes decreases with depth, consistent with lower evaporation and condensation rates with increasing depth. Changes in absolute humidity and the contrast between humidity in pore spaces versus the overlying atmosphere result in significant water loss from the dunes except during times of precipitation and frost/dew condensation. This water loss allows cracks to nucleate and propagate into the dunes. This study hypothesizes that crack tips propagate into sand to the depth at which thin films of water on grains are drying, and that this depth varies from the surface of the dune during precipitation events to depths greater than 45 cm when dunes are drier.  相似文献   

15.
地下水蒸发是旱区地下水均衡计算中重要的排泄项之一。由于包气带水分运移高度非线性且大气—地表界面动力学过程复杂,估算潜水蒸发量一直是地下水资源评价的难题之一。利用内蒙古乌审旗河南乡均衡试验场E601型蒸渗仪,建立了毛乌素沙地水面蒸发及4种典型岩性(风化砂岩K1、萨拉乌苏组砂Qpal+l、砂质壤土Qhl、风积沙Qheol)的饱和土蒸发原位试验,结合长期观测获取的大量数据,开展了地下水蒸发与水面蒸发、埋深的关系和地下水蒸发量计算方法研究。结果表明:(1)4种典型岩性(风化砂岩、萨拉乌苏组砂、砂质壤土、风积沙)饱和蒸发量与水面蒸发量比值分别为0.60,0.77,0.47,0.88,表明不同岩性的饱和裸土的蒸发强度不等于自由水面的蒸发强度;实际计算裸土蒸发强度时,不能以自由水面蒸发强度作为参考点,如果运用,必须校正。(2)利用蒸渗仪观测数据和土壤水运动方程稳态解析解,获得4种典型岩性(风化砂岩、萨拉乌苏组砂、砂质壤土、风积沙)潜水稳定蒸发计算的关键经验系数c,分别为628932.63,165058.71,48948.21,1525104.031 m?2。(3)利用稳定蒸发公式确定鄂尔多斯盆地风沙滩区四种典型包气带岩性(风化砂岩、萨拉乌苏组砂、砂质壤土、风积沙)潜水极限蒸发深度约为60 cm,结果得到了室内非稳态蒸发试验的佐证,为研究区水资源评价提供了重要的参数依据。  相似文献   

16.
Wang  Qiong  Wang  Shanyong  Su  Wei  Pan  Dongyue  Zhang  Zhen  Ye  Weimin 《Acta Geotechnica》2022,17(7):2943-2954

The design of grouting engineering in practice is either based on conventional soil mechanics or empirical procedures ignoring the effect of degree of saturation (water content). In this study, a series of laboratory-pressurized grouting tests were conducted on unsaturated sand to reveal the influence of soil water content on the grouting characteristics. With combination of direct shear tests at constant water content, water retention tests as well as microscopy observations, the mechanisms that controlling the strength and in turn the grouting characteristics in unsaturated sand were interpreted from the perspective of water–air interface. It was found that the non-monotonic phenomena of grouting characteristics (injectability and diffusion characteristics) with increasing water content were strongly dependent on the shear strength, which is influenced by the apparent cohesion induced by capillary mechanisms relating to the water–air interface. The threshold value of the injectability and diffusion pattern is corresponding to the boundary of the two transition zones (two different desaturation mechanisms) in the water retention curve. In the primary transition zone, the water phase is interconnected with air bulbs entrapped. With the drainage of bulk water in the large pores, the amount of water menisci increases, generating larger and larger surface tension force between particles. Therefore, less and less grout was injected as the bearing capacity and shear strength increase. However, in the second transition zone, with the drainage of menisci water, the menisci area of each pores decreases, inducing less and less surface tension force. Thus, more and more grout was injected as the bearing capacity and shear strength decrease. It is hoped that the work in this study will facilitate researching the grouting mechanisms in unsaturated soil, thus optimizing the grouting parameters in engineering practice.

  相似文献   

17.
浅层包气带水汽昼夜运移规律及其数值模拟研究   总被引:3,自引:0,他引:3  
西北干旱、半干旱地区,浅层包气带水分通量主要由水汽组成,而水汽在运移过程中产生的能量转换和质量迁移是地表质能平衡计算不可缺少的重要源汇项。在野外进行一个沙坑实验,发现土壤水在中午(12:00—15:00)达到最大值(10cm深度,5.9~6.1cm3/cm3;30cm深度,11.9~13.1cm3/cm3),而在凌晨(02:00—05:00)出现最小值(10cm深度,4.4~4.5cm3/cm3;30cm深度,10.4~10.8cm3/cm3)。为进一步验证该实验条件下的土壤水运移及分布规律,考虑了土壤水、汽、热耦合运移的HYDRUS-1D模型被用来对实验过程进行模拟,模拟结果与实测结果吻合较好。为描述土壤水分昼夜运移模式,笔者将土壤水耦合运移的时间信息和空间信息进行同步分析;并根据土壤水运移的不同驱动力,分别对温度梯度、基质势梯度作用下的液态水及汽态水通量进行了分析。  相似文献   

18.
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   

19.
Weathering processes affecting pyritic wastes may generate huge amounts of acid waters with high concentrations of potentially toxic contaminants (acid mine drainage). Acid mine drainage is mainly produced in the vadose zone. In the present study, a coupled non-isothermal multiphase flow and reactive transport model of the vadose zone of sulfide mine tailings was developed. The geochemical model included kinetically controlled reactions for Fe(II)-oxidation and for the dissolution of sulfide and aluminosilicate phases and the Pitzer ion-interaction model to describe the behavior of the pore-water solutions. Model results were compared with experimental observations in unsaturated column experiments under strongly evaporative conditions similar to arid or semiarid climates. Evolution trends for temperature, water saturation, evaporation rates, pore-water hydrochemistry and mineral phases observed during the drying experiment were adequately reproduced. The coupled model reproduced the increase of solute concentrations in the column top and the precipitation of a crust of secondary mineral phases. This crust became a barrier for water vapour diffusion to the atmosphere and modified the thermohydraulic behavior of the tailings. Enhanced downward migration of water vapour and its condensation in this colder end of the column were correctly taken into account by the model, which reproduced the dilution observed in the lower part of the column during the experiments.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号