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城市地下水开发引起的岩土环境问题与对策 被引量:1
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作者 聂宁 石东方 《海岸工程》 2003年第3期46-51,共6页
从环境岩土工程学的角度出发,对由于大量开采地下水造成的环境工程地质问题和环境水文地质问题而造成的地面沉降和塌陷、水资源短缺、水质污染及海水入侵等不良后果进行了较为全面的论述,并就各种问题的防治提出了综合措施。
关键词 城市地下水开发 环境岩土工程学 环境工程地质 环境水文地质 水资源 防治措施
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城市地下水开发对生态环境的影响分析与阐释 被引量:2
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作者 杨国良 刘培玺 《冶金丛刊》 2016年第8期141-,共1页
经济的飞速增长和社会进步离不开水资源的支持,特别是在人们生活水平得到显著提高的今天,广大人民群众对水资源的需要越来越高。在这样的形势下,尝试开发地下水资源,经过一定的探索促使城市地下水资源开发规模逐渐扩大。文章围绕城市地... 经济的飞速增长和社会进步离不开水资源的支持,特别是在人们生活水平得到显著提高的今天,广大人民群众对水资源的需要越来越高。在这样的形势下,尝试开发地下水资源,经过一定的探索促使城市地下水资源开发规模逐渐扩大。文章围绕城市地下水资源开发对生态环境产生的影响展开分析,进而探讨其有效对策,希望能够促进城市地下水资源得到合理开发,促使生态环境得到充分保护。 展开更多
关键词 城市地下水开发 生态环境 地面沉降 污染
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Groundwater Geophysical Studies in the Developed and Sub-urban BBMP Area, Bangalore, Karnataka, South India
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作者 Ramaraju H. K. Venkatesha. G. Arun Kumar Sharma 《Journal of Earth Science and Engineering》 2016年第2期83-89,共7页
The projection for groundwater states that the total domestic water demand for greater Bangalore would increase from 1,170 MLD in 2010 to 1,336 MLD in 2016. Dependence on groundwater is ever increasing due to rapid In... The projection for groundwater states that the total domestic water demand for greater Bangalore would increase from 1,170 MLD in 2010 to 1,336 MLD in 2016. Dependence on groundwater is ever increasing due to rapid Industrialization & Urbanization. It is estimated that almost 40% of the population of Bangalore is dependent on groundwater. Due to the unscientific disposal of domestic and industrial waste generated, groundwater is getting highly polluted in the city. The scale of this impact will depend mainly upon the water-service infrastructure, the superficial geology and the regional setting. The quality of ground water is equally important as that of quantity. Jointed and fractured granites and gneisses constitute the major aquifer system of BBMP (Bruhat Bengaluru Mahanagara Palike) area. Two new observatory borewells were drilled and lithology report has been prepared. Petrographic Analysis (XRD/XRF) and Water Quality Analysis were carried out as per the standard methods. Petrographic samples were analysed by collecting chip of rock from the borewell for every 20 ft depth, most of the samples were similar and samples were identified as Biotite-Gneiss, Schistose Amphibolite. Water quality analysis was carried out for individual chemical parameters for two borewells drilled. The 1st Borewell struck water at 150 ft (total depth-200 ft) & 2nd struck at 740 ft (total depth-960 ft). Five water samples were collected till end of depth in each borewell. Chemical parameter values such as, Total hardness (360-348, 280-320) mg/ltr, Nitrate (12.24-13.5, 45-48) mg/ltr, Chloride (104-90, 70-70) mg/ltr, Fe (0.75-0.09, 1.288-0.312) mg/ltr etc. are calculated respectively. Water samples were analysed from various parts of BBMP covering 750 sq kms, also thematic maps (IDW method) of water quality are generated for these samples for post-monsoon season. The study aims to explore the sub-surface lithological layers and the thickness of weathered zone, which indirectly helps to know the groundwater pollution source near surface water bodies, dug wells, etc. The above data are interpreted for future ground water resources planning and management. 展开更多
关键词 LITHOLOGY PETROGRAPHY pollution urbanization.
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