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1.
城市化对地下水补给的影响已严重干扰了区域地下水均衡,引发了各种生态环境问题。在呼和浩特市自然地理及水文地质调查的基础上,运用GIS并结合地下水均衡计算的方法,探究城区扩张下以呼和浩特市为中心的研究区潜水补给量的变化。结果表明:从1986—2014年,研究区城镇面积扩大了约358倍。在城市化引起的地下水开采量增大、土地利用方式改变、景观河改造等因素影响下,研究区潜水疏干面积从119 1 km2扩大到10476 km2,年侧向补给量减少9 06115×104 m3;降水入渗补给量减少84385×104 m3;农灌水回渗补给量减少27944×104m3;河道渗漏补给量减少8638×104m3;城市供水管网漏失入渗量增加1 752×104m3。对比1986年和2014年,研究区潜水补给量从13 22501×104 m3减少至4 70703×104 m3,减少了644%,其中减少比例最大的是侧向补给量和降水入渗补给量。城市化使呼和浩特市潜水补给量大大缩减,迫切需要合理规划城市发展和地下水资源开采。  相似文献   

2.
影响大气降水入渗补给量的因素较为复杂,主要有土地利用类型、降水量、包气带厚度及岩性等。随着遥感影像解译技术的发展,人们能更精确地识别空间土地利用类型,从而更精确地计算大气降水入渗补给量,并了解其空间分布。综合考虑这些影响因素,本文提出了一种基于土地利用类型,并结合地理信息系统(GIS)和VBA(visual basic for applications)编程技术的大气降水入渗补给量计算方法(PIRCL)。以广州市广花盆地为例,利用PIRCL法计算得到该地多年平均大气降水入渗补给量为14 369万m3,该结果与水量平衡法计算得到的大气降水入渗补给量结果相近,相对误差约为2.4%;并且,计算得到的大气降水入渗补给量空间分布基本合理。与水量平衡法相比,PIRCL法计算大气降水入渗补给量只需区域遥感数据、区域降水量数据、对应时段地下水位动态变化及区域水文地质参数,不需要计算地下水其他的补给、排泄项,可以省略大量的工作量,且方便编程实现。  相似文献   

3.
李鹏  许海丽  潘云  孙颖  王新娟 《水文》2017,37(2):31-35
大气降水入渗是北京市地下水补给的主要来源。为丰富地下水补给量计算方法,以基于遥感数据的水量均衡法对比传统的地下水位动态法评价求取降水入渗量。水位动态法计算北京市平原区2011年地下水垂向入渗补给量为17.39×10~8m~3,遥感水量均衡法计算北京市平原区补给量为13.13×10~8m~3,同面积区两种计算结果相关性R~2=0.9631。两种计算方法各有其优缺点及适用条件。  相似文献   

4.
平原地区的降雨入渗补给系数,是计算大气降水补给平原地下水的主要参数,它的估算精度直接关系到平原地区水资源的精度。关于降雨入渗补给系数的分析,目前尚无一致的计算方法,各家提出的计算数值有时相差很大,这就给平原地下水资源的定量估算带来很大困难。本文建议用平均次降雨入渗补给系数和年有效雨量计算年降雨入渗补给量的方法,既可求得多年平均年补给量,又能计算出各种保证  相似文献   

5.
《地下水》2020,(4)
基于河北唐山1986-2016年降水和地下水监测资料,结合平原区地下水形成的自然条件及地下水动态影响因素,从年内地下水动态特征、年际地下水动态特征等方面对唐山市平原区地下水动态特征进行分析,并确定了唐山市冲洪积倾斜平原区和滨海平原区地下水动态的成因类型。结果可知:唐山市冲洪积倾斜平原区地下水呈逐年下降趋势,地下水下降速率由1996-2006年的0. 42 m/a减小到2006-2016年的0. 05 m/a,但近年来地下水位有小幅回升;该市冲洪积倾斜平原区地下水动态类型属降水入渗-开采型,滨海平原区西部地下水动态类型属降水入渗-蒸发型,东部属降水入渗-蒸型。研究成果对制订合理可行的地下水开采技术和保障措施,促进国民经济可持续发展具有重要意义。  相似文献   

6.
采集2个不同深度包气带土壤水2 H、18 O同位素剖面ZK1,ZK2,应用天然稳定同位素2 H、18 O示踪的方法,研究了华北山前冲积平原石家庄地区包气带土壤水入渗补给的历史演化特征。结果显示,研究区内,以0.05m为取样间隔,δ2 H、δ18 O值可以明显指示出大气降水及灌溉水入渗补给时间—剖面深度位置的年际对应关系。ZK2的δ2 H、δ18 O值随着埋深的增大出现周期性的波动,具有分层现象的岩性差异并不明显,说明ZK2剖面以活塞流的入渗方式补给地下水。在0~3.90m深度,δ2 H、δ18 O值显示降水和灌溉水的入渗补给时间为2011年10月至2001年11月。18 O峰值位移法计算补给量的结果显示,降水、灌溉水通过包气带补给地下水的垂向运移速度为38.5~65.0cm/a,年均入渗补给量为131.3~185.3mm。同时,对比2003年及2005-2007年降水量数据,说明少雨年份农业灌溉用水量的大小对当地地下水的入渗补给量起着关键性作用。  相似文献   

7.
浅层地下水补给对人类活动影响的响应特征研究   总被引:3,自引:1,他引:2  
本文通过数据整理分析, 查明滹沱河流域平原区1976-2005年以开采量、灌区引水量和河道过水量为代表的人类活动逐渐增强, 分析了浅层地下水补给在大气降水减少和人类活动逐渐增强背景下大幅减少的响应特征: 综合补给量所占比率由1976-1980年的21.6%下降到2000-2005年的11.3%。随后, 从开采量、河道过水量和灌区引水量三个方面分析了浅层地下水补给响应人类活动的变化特征: 地下水补给量与开采量呈y=65.412x-0.2576模式随降水量增减而负相关变化; 河道渗漏补给量和渠水入渗量在地下水位不同埋深条件下表现出随来水量、引水量增加而增大的态势, 但在不同埋深条件下, 河道渗漏补给量与来水量之间、渠水入渗量和引水量之间关系不同。  相似文献   

8.
赵雪梅 《地下水》2011,33(2):9-10
大气降水入渗补给是地下水的主要补给源.在分析大气降水入渗机理,以及影响降雨入渗诸多因素的基础上,以山西省第二次水资源评价为例,采用相关图解法、回归分析分别对降雨入渗补给量进行计算研究.结果表明,作为大气降水对地下水补给因素影响,综合反映的降水入渗补给系数是计算降水入渗补给量最关键参数,直接表达了降水对地下水垂直入渗补给...  相似文献   

9.
针对常用的利用降水入渗系数法确定的降水入渗补给量不随降水频率等因素而变化的弊端,利用郑州市地下水均衡试验场地中渗透仪长时间观测的系列资料,通过对降水—降水入渗补给量进行系统响应分析,建立了4种岩性、5个水位埋深的年际和月际的降水—降水入渗补给响应函数.研究结果表明,根据当期及前期的年、月降水量数据,利用系统响应分析法建立的降水入渗补给函数能比较准确地计算相应地区的降水入渗补给量.  相似文献   

10.
徐州市城市供水主要是地下水据计算,规划区917.86km~2范围内地下水可采资源总量为2.48×10~8m~3/a,其中大气降水入渗补给量约占70%,可见降水入渗补给量对地下水补给保证程度起决定性作用,亦是城市供水规划制订的重要参考依据。徐州市城市供水主要是地下水据计算,规划区917.86km~2范围内地下水可采资源总量为2.48×10~8m~3/a,其中大气降水入渗补给量约占70%,可见降水入渗补给量对地下水补给保证程度起决定性作用,亦是城市供水规划制订的重要参考依据。  相似文献   

11.
Long-term groundwater recharge from rainfall in the Nile Delta is needed as an input for integrated groundwater modelling in the Nile Delta aquifer for more accurate simulation. The main objective is to estimate the spatial and temporal variation of groundwater recharge from rainfall in the Nile Delta aquifer. Water and Energy Transfer between Soil, Plants and Atmosphere under quasi-Steady State (WetSpass) model parameters were identified for the Nile Delta based on the available meteorological data for the area collected in 1991 and 2000. The collected data were rainfall, temperature, wind speed and evapotranspiration. Geomorphological characteristics, such as soil type, topography, groundwater depth and slope, were also collected as input data for the WetSpass model. ENVI software was used to come up with land use classification based on available land cover images of the Nile Delta for 1972, 1984, 1990, 2000 and 2009. The WetSpass model was calibrated by comparing the simulated groundwater recharge with the calculated one by using the water balance equation model. The results indicated close agreement in groundwater recharge between the two model outputs with R 2 of 0.99 and 0.94, while the root-mean-square errors (RMSEs) were 4.86 and 9.39 mm for 1991 and 2000, respectively. The WetSpass model was then applied in respect of 1970, 1980, 1990 and 2010 for the purpose of validation. The overall RMSE and R 2 for the 6 years were 8.83 mm and 0.88, respectively. The results of the WetSpass calibrated model provide information to support integrated groundwater modelling. The results reveal that WetSpass works well in simulating the components of the hydrological balance in the Nile Delta.  相似文献   

12.
Appropriate quantification and identification of the groundwater distribution in a hydrological basin may provide necessary information for effective management, planning and development of groundwater resources. Groundwater potential assessment and delineation in a highly heterogeneous environment with limited Spatiotemporal data derived from Gelana watershed of Abaya Chamo lake basin is performed, using integrated multi-criteria decision analysis (MCDA), water and energy transfer between soil and plant and atmosphere under quasi-steady state (WetSpass) models. The outputs of the WetSpass model reveal a favorable structure of water balance in the basin studied, mainly using surface runoff. The simulated total flow and groundwater recharge are validated using river measurements and estimated baseflow at two gauging stations located in the study area, which yields a good agreement. The WetSpass model effectively integrates a water balance assessment in a geographical information system (GIS) environment. The WetSpass model is shown to be computationally reputable for such a remote complex setting as the African rift, with a correlation coefficient of 0.99 and 0.99 for total flow and baseflow at a significant level of p-value<0.05, respectively. The simulated annual water budget reveals that 77.22% of annual precipitation loses through evapotranspiration, of which 16.54% is lost via surface runoff while 6.24% is recharged to the groundwater. The calibrated groundwater recharge from the WetSpass model is then considered when determining the controlling factors of groundwater occurrence and formation, together with other multi-thematic layers such as lithology, geomorphology, lineament density and drainage density. The selected five thematic layers through MCDA are incorporated by employing the analytical hierarchy process (AHP) method to identify the relative dominance in groundwater potential zoning. The weighted factors in the AHP are procedurally aggregated, based on weighted linear combinations to provide the groundwater potential index. Based on the potential indexes, the area then is demarcated into low, moderate, and high groundwater potential zones (GWPZ). The identified GWPZs are finally examined using the existing groundwater inventory data (static water level and springs) in the region. About 70.7% of groundwater inventory points are coinciding with the delineated GWPZs. The weighting comparison shows that lithology, geomorphology, and groundwater recharge appear to be the dominant factors influence on the resources potential. The assessment of groundwater potential index values identify 45.88% as high, 39.38% moderate, and 14.73% as low groundwater potential zones. WetSpass model analysis is more preferable in the area like Gelana watershed when the topography is rugged, inaccessible and having limited gauging stations.  相似文献   

13.
The effects of climate change on the groundwater systems in the Grote-Nete catchment, Belgium, covering an area of 525 km2, is modeled using wet (greenhouse), cold or NATCC (North Atlantic Thermohaline Circulation Change) and dry climate scenarios. Low, central and high estimates of temperature changes are adopted for wet scenarios. Seasonal and annual water balance components including groundwater recharge are simulated using the WetSpass model, while mean annual groundwater elevations and discharge are simulated with a steady-state MODFLOW groundwater model. WetSpass results for the wet scenarios show that wet winters and drier summers are expected relative to the present situation. MODFLOW results for wet high scenario show groundwater levels increase by as much as 79 cm, which could affect the distribution and species richness of meadows. Results obtained for cold scenarios depict drier winters and wetter summers relative to the present. The dry scenarios predict dry conditions for the whole year. There is no recharge during the summer, which is mainly attributed to high evapotranspiration rates by forests and low precipitation. Average annual groundwater levels drop by 0.5 m, with maximum of 3.1 m on the eastern part of the Campine Plateau. This could endanger aquatic ecosystem, shrubs, and crop production.  相似文献   

14.
对北京潮白河冲洪积扇分布区30年来降水量、地表径流量、地下水水位和地下水储存量进行了时间序列分析。结果表明: 过去30年中,区域地下水动态发生了明显变化,特点是1998年以来,地下水位和地下水储存量迅速下降与减少。1998年以来,年降水量为以往多年平均值的76%左右。在储存量变化的影响因素中,降水量减少导致的补给量减少约占24%,人类活动,如工农业地下水开采、应急水源地地下水开采和地表水体入渗减少等因素约占76%。由于未来气候变化的不确定性,在南水北调的水进京后仍可能出现连续枯水年,因此,以丰水年降水进行水源涵养存在较大风险。对于已经处于严重超采状况的潮白河冲洪积扇来说,为了满足未来供水的需要,应急水源地从现在起应减少开采量或停采以逐步恢复地下水储存量。  相似文献   

15.
Sustainable groundwater management requires knowledge of recharge. Recharge is also an important parameter in groundwater flow and transport models. Spatial variation in recharge due to distributed land-us.e, soil texture, topography, groundwater level, and hydrometeorological conditions should be accounted for in recharge estimation. However, conventional point-estimates of recharge are not easily extrapolated or regionalized. In this study, a spatially distributed water balance model WetSpass was used to simulate long-term average recharge using land-use, soil texture, topography, and hydrometeorological parameters in Dire Dawa, a semiarid region of Ethiopia. WetSpass is a physically based methodology for estimation of the long-term average spatial distribution of surface runoff, actual evapotranspiration, and groundwater recharge. The long-term temporal and spatial average annual rainfall of 626 mm was distributed as: surface runoff of 126 mm (20%), evapotranspiration of 468 mm (75%), and recharge of 28 mm (5%). This recharge corresponds to 817 l/s for the 920.12 km2 study area, which is less than the often-assumed 1,000 l/s recharge for the Dire Dawa groundwater catchment.  相似文献   

16.
Models are the only tools capable of predicting the evolution of groundwater systems at a regional scale, by taking into account a large amount of information. This study presents the association of a water balance model (WetSpass) with a groundwater flow and solute transport model (SUFT3D, saturated and unsaturated flow and transport in 3D) in order to simulate the present and future groundwater quality in terms of nitrate in the Upper Dyle basin (439 km2) Belgium. The HFEMC (hybrid finite element mixing cell) method implemented in the SUFT3D code is used to model groundwater flow and nitrate transport. Spatially distributed recharge, modelled with WetSpass, is considered for prescribing the recharge to the groundwater flow model. The feasibility of linking the WetSpass model with the finite-elements SUFT3D code is demonstrated. Time evolution and distribution of nitrate concentration are then simulated using the calibrated model. Nitrate inputs are spatially distributed according to land use. The spatial simulations and temporal trends are compared with previously published data on this aquifer and show good results.  相似文献   

17.
Groundwater recharge is affected by land use in (semi)arid areas. A new application of the chloride-mass-balance approach has been developed to estimate the reduction in groundwater recharge following land-use change by comparing chloride concentrations below the root zone and above the base of the chloride accumulation zone, before and after the land-use conversion. Two sites in the Loess Plateau of central China have been selected for study. Results from the Guyuan terrace region show that groundwater recharge beneath natural sparse small-grass was 100?mm/year, but the conversion to winter wheat about 100?years ago has reduced groundwater recharge to 55?mm/year. At the Xifeng Loess Plain the conversion from winter wheat, with groundwater recharge at 33?mm/year, to apple orchard 7?years ago has led to chloride accumulation to 5?m below land surface, suggesting the recharge rate has been reduced. This is in agreement with previous studies in these areas which have shown that the regional afforestation and other land-use conversions have resulted in deep soil desiccation and have caused an upper boundary to form with low matrix potential, thus preventing the soil moisture from actually recharging the aquifer.  相似文献   

18.
It is important to understand how groundwater recharge responds to precipitation variability in space and time, especially in those areas such as Yanqing Basin (China), where groundwater represents the sole water resource. A simple soil-water balance method is applied for spatio-temporal simulation of groundwater recharge in Yanqing Basin from 1981 to 2000. It was implemented on a monthly time step considering the effects of land use and soil texture. The area-average recharge associated with various land uses and soil textures was then compared with zonal analysis using a geographic information system (GIS). The main findings include: (1) the variation of groundwater recharge follows precipitation changes, either at yearly or seasonal intervals, (2) land use plays a more influential role in groundwater recharge than soil texture in this area, and (3) the water table quickly rises in response to recharge in the shallow parts of the aquifer, while there is a delay of 0.5–1.0?years where the groundwater level is at depth 4–10?m. The application demonstrates how spatio-temporal analysis can be utilized for groundwater-recharge estimation through distributed modeling and GIS.  相似文献   

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