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滹沱河地区地下水适宜水位研究 被引量:8
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作者 史入宇 崔亚莉 +2 位作者 赵婕 邵景力 孙晓林 《水文地质工程地质》 CAS CSCD 北大核心 2013年第2期36-41,共6页
滹沱河流域地下水长期无节制开采造成部分浅层含水层处于疏干或半疏干状态,在分析地下开采现状基础上,根据区内垃圾填埋场和重要构筑物分布等情况,采用综合评价方法确定地下水适宜水位上、下限划定的原则,最终给出了基于环境、工程等多... 滹沱河流域地下水长期无节制开采造成部分浅层含水层处于疏干或半疏干状态,在分析地下开采现状基础上,根据区内垃圾填埋场和重要构筑物分布等情况,采用综合评价方法确定地下水适宜水位上、下限划定的原则,最终给出了基于环境、工程等多限制条件下的地下水适宜水位,采用mapgis网格剖分和叠加技术对滹沱河流域地下水流场进行处理,计算出滹沱河地区地下水可调控库容空间为91.48×108m3。为石家庄地区南水北调实施前后地下水调控方案、地下水可持续开发利用提供理论依据。 展开更多
关键词 滹沱河流域 地下适宜水位 调蓄空间
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内蒙古河套灌区适宜地下水水位研究进展 被引量:2
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作者 闫金良 张金燕 张敏 《内蒙古水利》 2015年第1期10-11,共2页
文章对灌区的适宜地下水位进行研究,提出目前研究中存在的问题,认为今后应注意大区域大尺度地下水的研究及将地下水作为农田水循环的一部分进行系统研究,加强地下水特别是微咸水在该灌区的应用研究。
关键词 河套灌区 适宜地下水位 研究进展 建议
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Suitability mapping of global wetland areas and validation with remotely sensed data 被引量:7
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作者 ZHU Peng GONG Peng 《Science China Earth Sciences》 SCIE EI CAS 2014年第10期2283-2292,共10页
With increasing urbanization and agricultural expansion, large tracts of wetlands have been either disturbed or converted to other uses. To protect wetlands, accurate distribution maps are needed. However, because of ... With increasing urbanization and agricultural expansion, large tracts of wetlands have been either disturbed or converted to other uses. To protect wetlands, accurate distribution maps are needed. However, because of the dramatic diversity of wetlands and difficulties in field work, wetland mapping on a large spatial scale is very difficult to do. Until recently there were only a few high resolution global wetland distribution datasets developed for wetland protection and restoration. In this paper, we used hydrologic and climatic variables in combination with Compound Topographic Index (CTI) data in modeling the average annual water table depth at 30 arc-second grids over the continental areas of the world except for Antarctica. The water table depth data were modeled without considering influences of anthropogenic activities. We adopted a relationship between poten- tial wetland distribution and water table depth to develop the global wetland suitability distribution dataset. The modeling re- suits showed that the total area of global wetland reached 3.316× 10^7 km^2. Remote-sensing-based validation based on a compi- lation of wetland areas from multiple sources indicates that the overall accuracy of our product is 83.7%. This result can be used as the basis for mapping the actual global wetland distribution. Because the modeling process did not account for the im- pact of anthropogenic water management such as irrigation and reservoir construction over suitable wetland areas, our result represents the upper bound of wetland areas when compared with some other global wetland datasets. Our method requires relatively fewer datasets and has a higher accuracy than a recently developed global wetland dataset. 展开更多
关键词 global wetland suitability distribution water balance model CTI accuracy assessment
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