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1.
Groundwater is a very important resource across Ismailia area as it is used in domestic, agricultural, and industrial purposes. This makes it absolutely necessary that the effects of land use change on groundwater resources are considered when making land use decisions. Careful monitoring of groundwater resource helps minimize the contamination of this resource. This study developed a GIS-based model to assess groundwater contamination in the West Ismailia area based on its hydrochemical characteristics. The model incorporated five different factors which are standardized to a common evaluation scale. The produced factor maps include the depth to the water table, the potential recharge, the soil type, the topography, and the thickness of saturation. These maps are combined in ERDAS Imagine, ARC INFO, and ARC GIS software using geostatistics and a weighted overlay process to produce the final groundwater potential risk map. The model output is then used to determine the vulnerability of groundwater to contamination by domestic, agricultural, and industrial sources. The produced risk maps are then combined with the groundwater contamination potentiality map using an arithmetic overlay in order to identify areas which were vulnerable to contamination. The results of this study revealed that the groundwater is highly vulnerable to contamination that may result from the inappropriate application of agrichemicals and domestic and industrial activities. The produced integrated potential contamination maps are very useful tools for a decision maker concerned with groundwater protection and development.  相似文献   

2.
About 40% of the water supply of Cairo, Egypt, is drawn from a groundwater reservoir located southeast of the Nile Delta. Several thousand shallow wells supply drinking water to the farmers from the same groundwater reservoir, which is recharged by seepage from Ismailia canal, the irrigation canal network, and other wastewater lagoons in the same areas. Sewage water lagoons were located at the high ground of the area, recharging contaminated water into the aquifer. Since the groundwater in this area is used for drinking purposes, it was decided to treat the sewage water recharging the aquifer for health reasons. In this paper a solution to the problem is presented using an injection well recharging good quality water into the aquifer. A pumping well located at a distance downstream is used to pump the contaminated water out of the aquifer. A three-dimensional solute transport model was developed to study the concentration distribution with remediation time in the contaminated zone.  相似文献   

3.
Feng Qi  Liu Wei  Xi Haiyang 《Natural Hazards》2013,65(3):1573-1588
Two landscape evaluation approaches, an integrated model and an ecological analysis method, based on landscape elements and environmental quality, respectively, were used to describe land desertification in the Heihe River Basin of northwestern China, by evaluating the current state of the local ecosystems and environment. Based on national water-quality criteria and fuzzy cluster analysis methods, surface water quality was divided into 5 grades with corresponding evaluation scores (evaluation rating threshold of water pollution), while groundwater quality was divided into 5 grades based on salinity and solute chemistry. For grassland ecosystems, grass yield (biomass) and types were the main indicators used. The soil component was described according to factors including its nutrient content, thickness, texture and degree of desertification, for a total of 11 evaluation indicators. Total vegetation cover is one of the 5 indicators chosen to describe the plant ecosystem. Based on conditions currently prevailing in the study region, evaluation factors such as total output value of agricultural, industrial, forestry and animal husbandry activities, the ratio of irrigation area to farmland area, the mean output return per unit area farmland, the level of education and per capital income were selected among others to characterize the social and economic situation. In total, 32 typical environment evaluation factors were selected, classifying land desertification in the region into four zones.  相似文献   

4.
以国家扶贫攻坚重点地区——贵州乌蒙山七星关区为例,参考"全国地质资源环境承载能力评价与监测预警"形成的评价理论和方法,结合岩溶石山区地下水资源水文地质条件及开发利用实际,探索构建岩溶石山区县域范围内地下水资源承载能力评价方法。通过系统评价七星关区地下水资源承载能力,认为该区地下水资源承载能力较大,但资源、开采强度、劣质水分布不均,降低了部分区域地下水资源承载能力。评价结果为区域国土空间规划及"三区三线"划定提供了依据。同时,该评价方法亦为岩溶地区地下水资源承载能力评价提供了借鉴。  相似文献   

5.
Gridded population distribution data are finding increasing use in a wide range of fields, including resource allocation, disease burden estimation and climate change impact assessment. Land cover information can be used in combination with detailed settlement extents to redistribute aggregated census counts to improve the accuracy of national-scale gridded population data. In East Africa, such analyses have been done using regional land cover data, thus restricting application of the approach to this region. If gridded population data are to be improved across Africa, an alternative, consistent and comparable source of land cover data is required. Here these analyses were repeated for Kenya using four continent-wide land cover datasets combined with detailed settlement extents and accuracies were assessed against detailed census data. The aim was to identify the large area land cover dataset that, combined with detailed settlement extents, produce the most accurate population distribution data. The effectiveness of the population distribution modelling procedures in the absence of high resolution census data was evaluated, as was the extrapolation ability of population densities between different regions. Results showed that the use of the GlobCover dataset refined with detailed settlement extents provided significantly more accurate gridded population data compared to the use of refined AVHRR-derived, MODIS-derived and GLC2000 land cover datasets. This study supports the hypothesis that land cover information is important for improving population distribution model accuracies, particularly in countries where only coarse resolution census data are available. Obtaining high resolution census data must however remain the priority. With its higher spatial resolution and its more recent data acquisition, the GlobCover dataset was found as the most valuable resource to use in combination with detailed settlement extents for the production of gridded population datasets across large areas.  相似文献   

6.
海河流域地下水资源保护   总被引:8,自引:2,他引:8  
地下水资源在海河流域至关重要的资源。海河平原的浅层和深层含水层大面积处于严重超采状态。地下水资源的的过量开采造成了严重环境问题。为了保护地下水资源,评价了可行的技术。利用洪水和废水进行人工回灌已进行了试验。在很多地区可以应用地表回灌系统,城市地区实施深层含水层的回灌。更好地策略是减少地下水的抽取量,特别是为了减缓地面沉降和海水入侵。应该联合运用减少地下水抽水量和人工回灌,以解决地下水位持续下降和含水层恢复的问题。  相似文献   

7.
准格尔矿区地下水开采资源量为16760t/d,而开采量为74973t/d,长期开采将引起一系列环境水文地质问题,如泥沙充填带运移和水质恶化,所以应合理开采地下水资源;开拓新的供水水源;建立新的供水水源地;减少集中开采;建立地面污水处理系统,避免污水排入地下   相似文献   

8.
闵望  陆华  杨琦 《江苏地质》2023,47(4):438-446
江苏如东北部水产养殖区自规模化运营以来,长期对区内浅部地下水进行集中式开采,区内地下水水位持续下降形成水位漏斗,继而导致地面沉降的发生,是苏北地区典型水产养殖引起的地面沉降区,为全省地面沉降研究新的拓展区和实践区。根据2017—2020年度高精度InSAR监测数据,圈定研究区地面沉降重点沉降区及影响范围,通过39个开采井水位统测数据对比研究,证实区内地下水水位漏斗与地面沉降展布形态和特征具有较好的一致性,科学佐证了地下水开采是研究区地面沉降形成的主要诱因。  相似文献   

9.
More than 75% of all rice is produced on irrigated land. Although the green revolution was driven by both an expansion of irrigated rice area and increased yield per unit land area, the next quantum leap must come exclusively from increasing yields on existing crop land. We review the structural changes that have accompanied the intensification process, and examine the major biophysical and economic challenges that confront Asian farmers who must further intensify irrigated rice systems to achieve a yield increase of more than 60% by the year 2025.  相似文献   

10.
为了满足区域性松散沉积层地区地面沉降的防控要求,规划评价地下水的可采资源量,根据渗流理论和土力学理论,建立了地下水三维非稳定渗流与地面沉降耦合数学模型,并考虑了含水层孔隙度、渗透系数、储水率随含水层发生固结沉降的变化特征。采用三维有限元数值分析方法,以江苏省南通市地下水开采为例,基于地面沉降的控制要求,规划评价出了各乡镇各含水层的地下水可采资源量。结果表明:地下水开采布局科学规划后,总的可采资源量为17 870.56×104 m3/a,较现状开采量10 902.32×104 m3/a有较大幅度的增加。地下水三维变参数非稳定流与地面沉降耦合模型可以更加精确地刻画三维水文地质体的特征,更加符合实际情况。  相似文献   

11.
松花江—辽河流域(简称松辽流域)是中国重要的商品粮基地,地下水资源对维护中国粮食安全具有重要作用。2019年松辽流域地下水资源量为797.31×10~8m~3/a,地下水开发利用量为276.4×10~8m~3。松辽流域地下水面临着水资源局部短缺,局部水位持续下降,"三氮"污染加剧,以及湿地萎缩、土地荒漠化、盐渍化等资源、环境与生态问题。本文对这些问题进行驱动因素分析,主要是气温升高导致水稻适宜区扩大,土地利用方式改变,耕地面积特别是水田面积大幅增加,造成地下水过量开采、地下水面源污染加剧;水库的大量修建加剧干旱缺水地区河道径流减少,地下水补给来源不足,造成地下水供水能力下降,地下水位下降。针对这些问题,提出了加强水资源调查监测,开展水资源合理配置研究,实行地表水和地下水联合调度;加强水资源管理制度建设,强化制度刚性约束;调整农业种植结构,推进节水灌溉,提高水资源利用效率等建议措施。  相似文献   

12.
The Indian Ocean Tsunami of December 26, 2004 devastated coastal ecosystems across South Asia. Along the coastal regions of South India, increased groundwater levels (GWL), largely caused by saltwater intrusion, infiltration from inundated land, and disturbance of freshwater lenses, were reported. Many agencies allocated funding for restoration and rehabilitation projects. However, to streamline funding allocation efforts, district-level groundwater inundation/recession data would have been a useful tool for planners. Thus, to ensure better preparedness for future disaster relief operations, it is crucial to quantify pre- and post-tsunami groundwater levels across coastal districts in India. Since regional scale GWL field observations are not often available, this study instead used space gravimetry data from NASA’s Gravity Recovery and Climate Experiment (GRACE), along with soil moisture data from the Global Land Data Assimilation Systems (GLDAS), to quantify GWL fluctuations caused by the tsunami. A time-series analysis of equivalent groundwater thickness was developed for February 2004–December 2005 and the results indicated a net increase of 274 % in GWLs along coastal regions in Tamil Nadu following the tsunami. The net recharge volume of groundwater due to the tsunami was 16.8 km3, just 15 % lower than the total annual groundwater recharge (19.8 km3) for the state of Tamil Nadu. Additionally, GWLs returned to average within 3 months following the tsunami. The analysis demonstrated the utility of remotely sensed data in predicting and assessing the impacts of natural disasters.  相似文献   

13.
新疆奇台绿洲地下水与生态景观关系研究   总被引:3,自引:0,他引:3  
文章应用3S技术完成对研究区各种生态景观面积数据的统计、地下水位空间动态模拟、野外实地调查及图片库的构建.结合灰色系统模型及多项式回归法,拟合出各种地表生态景观与平均地下潜水位之间的数学模型,将地下水与地表生态景观在时间与空间上予以结合.通过模型计算得出:自1983年起奇台县平均地下潜水位不断下降,24年间共降低了13.42m.随着地下潜水位的下降,奇台县的低草、中草和高草呈下降趋势,面积分别下降了32016.84hm2,8169.04hm2和8854.89hm2,下降的面积分别占区域总面积的27.44%,7.00%和7.59%,其中低草面积下降最多,从模型预测结果看除中草外,低草、高草面积还将进一步下降.荒漠及盐碱地面积波动中上升,面积分别上升了13651.19hm2和3878.52hm2,上升的面积分别占区域总面积的11.70%和3.32%,预测结果进一步证明其面积还将增加.农田面积共增加9112.04hm2,占区域总面积的7.81%,但预测结果表明,2006年和2007年农田面积出现下降趋势,如果不解决地下潜水位持续下降的问题,未来农田面积将会减少.计算结果表明该区域地下水位下降使得区域生态总体趋于退化.  相似文献   

14.
研究目的】中国南方岩溶地区干旱缺水等问题异常突出,岩溶地下水赋存和分布的复杂,开发利用率低,基于多年调查研究工作为基础,系统总结南方岩溶区地下水资源特征,研讨水资源保障对策。【研究方法】基于南方岩溶区地下水资源特点、地下水系统类型、地下水系统空间结构的叠置性和时空分布不均性分析,提出南方岩溶区水资源保障对策。【研究结果】南方岩溶区可从以下三方面充分发挥地下水资源安全保障作用,一是掌握地下水赋存分布规律,发挥分散供水和应急供水作用;二是加强调蓄工程建设,解决水资源时空分布不均问题;三是建立与生态重建和经济发展相结合的地下水资源可持续利用模式。【结论】南方岩溶区地下水赋存条件复杂,具有表层带岩溶水系统、岩溶地下河与管道流系统、岩溶大泉系统以及分散排泄地下水系统多种类型,规模大小不一,开发利用形式多样;在垂向上具有叠置性,水空分布严重不均;开发利用潜力较大。在地球科学系统论的指导下,查明岩溶水资源赋存分布规律,科学评价地下水资源量,因地制宜制定水资源开发利用和保护方案,为脱贫攻坚、生态文明建设和乡村振兴提供技术支撑。创新点:以系统水文地质环境地质综合调查和地下水开发利用示范工作为基础,系统总结南方岩溶区地下水资源特点;针对岩溶区水资源安全保障问题,分析其主要原因,提出了水资源保障对策。  相似文献   

15.
The temporal and spatial distributions of precipitation are extremely uneven; so, careful management of water resources in Taiwan is crucial. The long-term overexploitation of groundwater resources poses a challenge to water resource management in Taiwan. However, assessing groundwater resources in mountainous basins is challenging due to limited information. In this study, a geographic information system (GIS) and stable base-flow (SBF) techniques were used to assess the characteristics of groundwater recharge considering the Wu River watershed in central Taiwan as a study area. First, a GIS approach was used to integrate five contributing factors: lithology, land cover/land use, lineaments, drainage, and slope. The weights of factors contributing to the groundwater recharge were obtained from aerial photos, geological maps, a land use database, and field verification. Second, the SBF was used to estimate the groundwater recharge in a mountainous basin scale. The concept of the SBF technique was to separate the base-flow from the total streamflow discharge in order to obtain a measure of groundwater recharge. The SBF technique has the advantage of integrating groundwater recharge across an entire basin without complex hydro-geologic modelling and detailed knowledge of the soil characteristics. In this study, our approach for estimating recharge provides not only an estimate of how much water becomes groundwater, but also explains the characteristics of a potential groundwater recharge zone.  相似文献   

16.
Asia, and in particular the Mekong Delta region, is under increasing water use pressure. Food production and quality is one element of these growing pressures, as is water management. The authors have first-hand knowledge and experience in groundwater use and management in rural Thailand. Through the adoption of a micro-management, demand-driven approach, with its ultimate objective of sustainability and the betterment of the quality of human life, the Mekong delta and other similar rural areas in Asia offer considerable opportunity for more optimal sustainable exploitation of groundwater. This water source should be prioritized for village usage, which if properly allocated and managed, will lift a significant human population from poverty, into a more sustainable existence. This readily available, reliable groundwater resource exists and has both the capacity for abundant storage as well as the potential for commercial and household supply. The focus has been on understanding the distribution of the delta’s relatively shallow, well sustained, and consistently recharged groundwater resource, and its potential symbiotic linkage to low-volume household demand. Water has been employed in a variety of ways from improving quality of life and sanitation to generating income through the cultivation of cash crops and other similar productive uses. The fundamental aims of the initial model and subsequent trials have been to harness this robust water source and deliver otherwise unattainable income to households. As the following, more detailed study of rural Thailand demonstrates, the benefits of such an approach deliver sustainable enhancements to the quality of constituents’ lives, are environmentally sensitive and sustainable, and harmonize with governmental efforts to alleviate poverty through the enablement of income generation from groundwater utilization.  相似文献   

17.
王伟 《贵州地质》2012,29(2):104-107
正确划分地下水含水岩组和地下水类型,对较为准确的计算地下水资源量具有重要意义。但在目前实际工作中,地下水含水岩组和地下水类型的划分存在一定误区,导致地下水资源量计算成果较为粗放,以至于还可能给地下水的开发利用带来障碍。笔者认为,间互状不纯碳酸盐岩类归属于基岩裂隙水含水岩组较恰当,其所含地下水类型归属于基岩裂隙水更合适。在计算间互状不纯碳酸盐岩类地下水资源量时,宜扣除泥岩、粉砂岩和页岩的分布面积。  相似文献   

18.
为了解决鲁北平原区农村冬季清洁供暖问题,扩大地下水地源热泵系统的应用规模,以区内广泛发育的咸水体为研究目标,在简述第四纪地层特征的基础上,阐明了第四纪含水砂层与咸水体的分布特征,总结了区内以往开展的4个浅层地热能勘查项目所施工的水文地质勘探孔抽水试验与回灌试验成果。结果表明: 研究区咸水含水层单井涌水量320~475 m3/d,单位涌水量12.76~28.3 m3/(d·m),自然回灌条件下单井回灌量30~56 m3/d,单位回灌量5.85~17.5 m3/(d·m); 单眼开采井可供暖面积为3 481.02 m2,可满足约35户农村住宅的冬季供暖需求; 研究区在进行浅层地热能开发时建议优先选择地下水地源热泵系统,对于供暖/制冷能耗需求较小的农村单户建筑,可选择地埋管地源热泵系统进行分散式供暖/制冷。  相似文献   

19.
In order to provide a way to expand clean heating energy and promote the utilization scale of groundwater heat pump system, the authors focused on the widespread saline water body in the study area, based on the stratigraphic characteristics of Quaternary strata. The distribution patterns of sand and saline water body of Quaternary were analyzed, and the pumping tests and reinjection hydrogeology tests from four previous shallowing geothermal energy exploration projects were summarized. The results show that the yield of a single well is 320-475 m3/d in saline water layers, with the unit yield of 12.76-28.3 m3/(d·m). And the natural reinjection rate is 30-56 m3/d, with the unit reinjection of 5.85-17.5 m3/(d·m). The total allowable heating floor area is 3 481.02 m2 for one well, which could satisfy the heat load of 35 rural houses in winter. The groundwater heat pump system is preferable in the shallow geothermal development in the study area, while the scatter distributed ground-coupled heat pump system is optional for single rural building with less energy need for space heating/cooling.  相似文献   

20.
在农业与生态系统用水相矛盾的干旱内陆区,地下水过度开采导致生态环境急剧恶化。以往对地下水的管理,以政府直接控制地下水使用为主,但效果并不十分理想,或管理成本较大。因此,寻求间接调控地下水使用的措施成为更好的选择。以河西走廊的石羊河、黑河和疏勒河流域为例,以农户问卷调查数据为依据,探究影响农户使用地下水的关键因素,以寻求通过制定更有针对性的政策来影响农户节约并高效利用地下水,最终达到农户自下而上自发节水的效果。分析结果发现:农户对地下水的使用在不同阶段有不同的特征,但均强烈地依赖于地表水供给,地表水供给每增加1个轮次,单位公顷耕地地表水用量会增加237.3 m3,相应会减少795.2 m3的地下水,整体上平均减少504.1 m3的总用水量,地下水占灌溉总用水的比例也会下降3.7%。此外,地下水的使用还与家庭经营规模、经营模式、地下水供给条件及经营者偏好等因素密切相关。因此,政府应根据流域内地表水与地下水的综合条件和特点,结合农业生产特征和农户偏好,因地制宜制定政府主导的管理政策与农户自我调节能力有效结合的开发治理制度和方案,切实实现区域水资源节约与高效利用双重目标。  相似文献   

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