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1.
平度北部山区位于胶北隆起西南与胶莱盆地的西北部,属鲁东低山丘陵松散岩、碎屑岩、变质岩类为主水文地质大区,胶莱盆地和胶北低山丘陵两个水文地质亚区。开展1∶5万水文地质调查,综合运用物探、水文地质钻探、抽水试验等工作手段,分析了研究区气象水文、地层构造、水文地质条件,划分了松散岩类孔隙水、碎屑岩类孔隙水、碳酸岩类孔隙水和基岩孔隙水4种地下水类型。分别从地形地貌、地层构造、含水层岩性、补径排条件等因素研究地下水富集规律,新发现东柳圈基岩裂隙水富水地段,可作为小型水源地,为城市应急供水。总结了研究区两种蓄水构造,分别为断裂破碎带型和岩性接触带型。通过分析研究区地下水富集规律和不同蓄水构造类型地下水的补径排特征及赋存情况,分析了地下水开采条件,为平度北部山区的找水打井提供技术支持。  相似文献   

2.
基于在黄河流域长孝岩溶水系统开展的1:5万水文地质调查工作,系统总结了该水文地质单元的边界条件、含水岩组分布及富水性空间分布特征,分析了区内地下水补给、径流、排泄条件与地下水动态变化特征,探讨了黄河长孝单元与周边地下水的相互作用。黄河向北侧补给孔隙水,向南侧补给孔隙水及岩溶水,其中对孔隙水侧渗补给带范围至王营村-庞道口-太平庄-姚河门村一带,对岩溶水补给主要发生在望口山村至柳河圈村一带、孝里镇胜利村附近。圈定了以朱砂洞组为含水岩组的双泉镇段店村裂隙岩溶水富水地段、以三山子组-马家沟群为含水岩组的归德-孝里-马集裂隙岩溶水富水地段,分析其富水机理,总结了层间岩溶-断层阻水型及单斜-断裂型两种基岩蓄水构造模式,可为该区域找水定井提供参考。  相似文献   

3.
中生代白垩纪砖红色、紫红色砂岩、砂页岩致密、较坚硬,一直被水文地质工作者视为弱富水岩层。该文以诸城西北部中生界白垩纪红砂岩碎屑岩类孔隙、裂隙水为研究对象,在现场调查、取样化验、水文地质钻探、抽水试验的基础上,对区内碎屑岩类孔隙、裂隙水水环境进行了初步研究。结果显示,区内碎屑岩类孔隙、裂隙水总体富水性较差,孟疃-贾悦断裂北侧受构造及阻水地层影响,形成一个带状富水区;景芝-贾悦断裂和吴家楼断裂组交会地带,受多条断裂多次强烈活动,形成断裂破碎带,形成构造富水区。地下水质量较原来趋于变差,NO_3~-呈面状污染。  相似文献   

4.
基于新汶盆地开展的1∶5万区域水文地质调查工作,运用水文地质测绘、地球物理勘探、水文地质钻探等工作手段,查明区内主要含水岩组及其水文地质特征,总结地下水蓄水构造模式。研究结果表明:盆地内主要富水岩组为古近纪朱家沟组,奥陶纪马家沟群,寒武纪三山子组、张夏组、朱砂洞组地层;地下水蓄水模式分为岩层阻水型蓄水构造、断裂型蓄水构造和层间岩溶蓄水构造三类,其中断裂型蓄水构造根据含水层岩性不同又可划分为断裂型灰质砾岩裂隙岩溶蓄水构造、断裂破碎带型裂隙蓄水构造、断裂破碎带型裂隙岩溶蓄水构造。  相似文献   

5.
在前人取得的水文地质资料的基础上,以水文地质调查、物探勘查、综合分析研究为手段,对烟台市水文地质条件进行了详细的分析研究,根据含水层岩性及地下水类型将研究区划分为松散岩类孔隙含水岩组、碎屑岩类孔隙裂隙含水岩组、碳酸盐岩类岩溶含水岩组、喷出岩类孔洞裂隙含水岩组和岩浆岩、变质岩类裂隙含水岩组。依据地形地貌及岩性构造差异,将研究区划分为山地丘陵和滨海平原2个典型区,分别描述地下水的补给、径流、排泄条件。含水岩组的电性特征与地下水的赋存介质有关,根据赋存介质的不同将研究区地下水类型分为孔隙水、裂隙水和岩溶水三类,并分别总结其电性特征。该文对烟台市含水岩组进行划分,总结不同含水层电性特征,为水资源的进一步开发利用提供科学依据。  相似文献   

6.
在对汶泗河冲洪积平原水文地质条件和污染源现状进行阐述的基础上,对不同含水岩组无机组分指标进行了分析,表明浅层孔隙水和部分地区岩溶裂隙水无机组分含量大幅增高,深层孔隙水无机物含量则变化不大。在有机污染方面,浅层孔隙水有机物检出率26.8%,但含量很低,远未达到饮用水标准限值;岩溶裂隙水有机物检出率46.7%,检出率相对较高,局部地段有机物超标;深层孔隙水有机物基本未检出。该区地下水污染评价结果表明,浅层孔隙水和岩溶裂隙水无机污染呈面状污染特征,且污染程度较重,而有机污染则呈现点状污染特征,且污染程度总体较轻。对研究区地下水污染现状,提出了地下水安全供水对策。  相似文献   

7.
近年来,由于地下水污染问题加剧,山东省烟台市观水镇生活用水矛盾日益突出,急需寻找优质地下水缓解当地居民用水问题。通过水文地质调查、地球物理勘探、实施探采结合井、抽水试验和水质化验等手段,初步查明了观水镇及附近区域的蓄水构造类型及赋存规律,圈定了优质地下水的富水地段,论证了白垩纪基岩裂隙水供水可行性,为政府相关部门决策、解决村民吃水问题提供科学建议。  相似文献   

8.
沂水县富锶(Sr)地下水分布广泛,白垩纪沂南序列侵入岩的锶(Sr)含量最高,平均含量1013.64×10^-6,其次为白垩纪火山岩,锶(Sr)平均含量为739.18×10^-6,太古代侵入岩、变质岩中的锶(Sr)平均含量为398.99×10^-6,寒武-奥陶纪灰岩、页岩中的锶(Sr)平均含量为201.54×10^-6;碎屑岩类孔隙裂隙水含水岩组地下水锶(Sr)平均含量为0.99mg/L,喷出岩孔洞裂隙水含水岩组地下水锶(Sr)平均含量为0.95mg/L,碳酸盐岩裂隙岩溶水含水岩组地下水锶(Sr)平均含量为0.76mg/L,块状岩类(侵入岩)裂隙水含水岩组地下水锶(Sr)平均含量为0.48mg/L。碎屑岩类孔隙裂隙水含水岩组、喷出岩孔洞裂隙水含水岩组、块状岩类(侵入岩)裂隙水含水岩组地下水中锶(Sr)主要来源为围岩的风化溶解;碳酸盐岩裂隙岩溶水含水岩组地下水中锶(Sr)主要来源于沂南序列构造破碎带和风化带的风化溶解,其次为寒武-奥陶纪灰岩的风化溶解,锶(Sr)强变异性与不同含水层地下水的混合比例有关。  相似文献   

9.
延安城市供水二期工程水源地选区方略   总被引:3,自引:0,他引:3  
通过对延安市城区及临近地区水资源与水文地质条件分析,排除了就近在这些地区再新建水源地的可能性,接着从延安市所辖县区范围内的水文地质条件出发,在原有1∶20万水文地质普查资料的基础上,确定了未来供水含水层选用白垩系洛河组潜水、承压水及第四系潜水。在分析比较区内的白垩系、第四系富水地段之后,概略计算了这些地段的地下水补给量,并从中选出3个富水地段,拟在此3个富水地段开展水文地质详查工作,作为寻找地下水源的重点工作区。  相似文献   

10.
近年来,由于降水偏少,山东省莱西市水资源供需矛盾加剧。为解决群众饮水困难、支撑服务区域经济社会发展,山东省自然资源厅启动了多幅1∶5万区域水文地质调查项目。本文依托山东省1∶5万区域水文地质调查项目(夏甸、日庄幅),在水文地质调查和探采结合井实例的基础上,初步查明并汇总了莱西市基岩裂隙水的主要蓄水构造类型以及赋存规律,从地下水数量、质量、开发利用成本3个方面,提出了莱西市地下水的合理开发利用方向,并提出了优质地下水、富水地段的圈定等惠民成果,为政府相关部门决策、村民创收提供有力依据。  相似文献   

11.
华北平原水资源紧缺情势与因源   总被引:15,自引:0,他引:15  
基于水资源可持续利用理念,从水资源承载能力演化周期性、经济社会需用水规模难变性和未来水资源供需关系入手,介绍近60年以来华北平原水资源情势,特别是该平原水资源量、实际用水量和地下水开采量变化特征,并结合未来10到30年区域经济社会发展需用水量趋势,识别和诊断华北平原水资源紧缺因源.结果表明:由于降水量减少导致华北平原缺...  相似文献   

12.
在威海市环翠区地下水调查研究的基础上,选取10项因子,采用单项组分评价和综合评价相结合的方法对区内浅层地下水进行分析评价。结果显示,区内大部分地区水质较好,部分地区由于受人类活动等的影响,导致水质变差,其主要超标因子有硫酸盐、硝酸盐、氯化物、总硬度等。  相似文献   

13.
莱州湾南岸潍坊北部平原区咸水入侵动态变化分析   总被引:1,自引:0,他引:1       下载免费PDF全文
以莱州湾南岸潍坊北部平原地区为典型研究区,阐述了咸水体形成的成因背景与分布特征。通过水化学分析的方法,分析了潍北平原地下水水化学变化特征,及人工开采导致咸水入侵的变化,并分析了咸水入侵的主要成因。  相似文献   

14.
面向新时期水利行业“补短板”和“强监管”的应用需求,遥感的前沿技术高光谱遥感凭借较高的光谱分辨率和图谱合一等优势,在水生态、水环境等水利行业的应用中发挥了重要作用,同时在水灾害、水资源等层面中也存在着一定的应用潜力。本文介绍了高光谱遥感的成像原理,回顾了成像光谱仪的发展,列举了目前国内外典型的高光谱载荷。重点介绍了高光谱遥感在水利行业的应用进展,包括水华及水生植物监测、水华和水草精确区分、叶绿素浓度反演、悬浮物浓度和泥沙含量定量估算等具体工作。指出高光谱遥感在实时大范围洪涝灾害应急监测、陆表水文参数定量反演等工作存在一定的发展潜力。最后对高光谱遥感在水利行业的应用存在的瓶颈问题进行总结分析并提出展望:多平台高光谱水利要素立体监测与集成技术研发;水利典型地物要素标准波谱数据库构建;水利高光谱遥感信息智能挖掘的理论方法研究。为拓宽高光谱遥感在水利应用中的研究提供参考。  相似文献   

15.
THE CONDITIONS OF THE GLACIAL WATER RESOURCE AND WAYS OF ITS EXPLOITATION AND UTILIZATION IN CHINATHECONDITIONSOFTHEGLACIALWA...  相似文献   

16.
The research on the present situation of soil and water development and utilization in Shiyang River Basin shows that water resources and eco-environment situation in this area are near the edge of collapse. Since the water crises occurred in the 1970s, problems caused by continuous decrease of water resources have been becoming serious year by year and eco-environment crisis occurred as a consequence. Up to now, 10 380ha of irrigated lands have been abandoned due to sand coverage and water shortage in the basin. Ground water was over exploded in Wuwei and Minqin because of water shortage. Ground water table in many places dropped under 5m (which is the ecology water table level), thus about 3000ha of Elaeagnus angustifolia forest come to dead and another 5800ha become feeble, and wind-drift sand near the oasis become alive. According to the current situation, if water utilization scope was not enlarged, a water transfer volume of 600×106m3/a from other areas will be suitable to keep water resources and eco-environment safety in the basin, and also 70×106m3/a will be left as spare water. Under this condition the water resources and eco-environment of the basin can reach the critical safety line of 2.032×109m3/a; or if 180×106m3 of water can be transferred from other areas, the water resources can reach the safety warning line of 1.732×109m3/a. Foundation item: Under the auspices of the National Natural Science Foundation of China (No. 40235053) and Lanzhou Jiaotong University "Qinglan" Foundation Biography: ZHANG Ji-shi (1963-), male, a native of Tongwei of Gansu Province, senior engineer, specialized in water resources and climate change in Northwest China. E-mail: zjs1963@yahoo.com.cn; hangjs@mail.lzjtu.cn  相似文献   

17.
North China, whose total area is 420,000 km2, covers 2 provinces and 2 cities (Shanxi and Hebei provinces, Beijing and Tianjin) and the territories of Henan and Shandong provinces to the north of the Huanghe (Yellow) River, and part of the Inner Mongolia Autonomous Region and Liaoning Province. Most of this region, which is situated in the semi-humid, semi-arid continental climate temperate zone, gets an annual precipitation of 500-600 mm, whereas, the perennial average amount of total water resource is 50.99 billion m3, including 33.82 billion m3 of surface water, 32.94 billion m3 of ground water and 15.77 billion m3 of their duplication. Due to the intensive exploitation of water resource caused by the deficiency of water resource in North China, key elements of water balance was changed, runoff volume reduced, evaporation increased, vertical movement of moisture strengthened, water circulation pattern transformed from open system into regionally closed system; meanwhile, due to the incompetent water  相似文献   

18.
Riverwaterresourceisthemostimportantcom ponentofwaterresourcesinChina .ComprehensiveandspecificresearchesonriverwaterchemistryinChinahavebeencarriedoutsincethe 1950s.Theob jectiveofthispaperistoreviewtheprogressintheresearchonriverwaterchemistryinChina ,es…  相似文献   

19.
The processes of water resources exploitation and utilization can be divided into three stages by water resources transformation, and the history, present situation and future trend of water resources development in piedmont areas around high mountains of arid northwestern China. The three stages are: the stage of surface water development (the first stage), the stage of comprehensive development of surface and ground water (the second stage) and the stage of economical development of water resources (the third stage). The three stages link each other and show the law and processes of water resources exploitation and utilization associated with social and technological progress. The economical water policy should run through the three stages. On this point, however, the third stage differs from the others, particularly, refering to irrigated agriculture. The third stage has more progressive significance because it breaks the traditional ideas on water resources development. According to our investigation and calculation, under present conditions of water resources development, the net used water is about 160 × 108 m3, accounting for 18% of the total water resources of northwestern China. The water resources have not been fully developed. If the first stage is finished, the exploitable water can be increased by 91%. After the second stage, furthermore, it can be increased by 216%. Supported by the National Natural Science Foundation of China.  相似文献   

20.
PRESSURE OF WATER SHORTAGE ON AGRICULTURE IN ARID REGION OF CHINA   总被引:2,自引:0,他引:2  
1INTRODUCTIONWiththedevelopmentoftheworld,waterdemandisincreasing,especiallywiththegrowthofpopulationinthelast50years,waterdemandforirrigationhasgreatlyincreasedforfoodproduction.Inthearidandsemi-aridareas,watershortagebecomesaheavierproblemtorestrictfoodproduction,localeconomyandenvironmentalprotection.China,with22%ofthetotalpopulationintheworld,hasonly8%offreshwaterintheglobe;watershortagehasaffectedagricultureandresident'slifeinthenorthernChina.SomescientistsindicatedthatChina'swaters…  相似文献   

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