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1)  water refill
人工回灌含水层
2)  artificial recharge of groundwater
地下水人工回灌
1.
Based on the analysis of the present situation of the supply and demand of water resources, and its developing trend in the urban area of Anyang city, the article puts forward the necessity and feasibility of implementing artificial recharge of groundwater.
 通过对安阳市区水资源的供需现状和发展趋势分析,提出实施地下水人工回灌的必要性和可行性;在对地质构造、水文地质条件、水源条件、工程效益等进行分析后,认为在安阳市区实施地下水人工回灌是可行的,并提出了4条合理化建议。
3)  artificial groundwater recharge
人工地下水回灌
1.
In the process of artificial groundwater recharge with secondary effluent from wastewater treatment plant, the remove and transfer of the pollutant and the health risks caused by potentially health hazardous compands were the focus in this study.
本课题重点研究了城市污水处理厂二级生化出水深度处理后在人工地下水回灌过程中,水中的污染物在土壤中的迁移和去除规律以及水中的化学污染物引起的健康风险。
4)  artificial recharge
人工回灌
1.
Adequate and rational development in arid periods and years can make space for artificial recharge in humid seasons or years.
研究青岛地区玄武岩地质、水文地质条件,提出玄武岩地下水及其含水层(体)的开发途径:干旱年份尽可能多开采地下水,丰水年份人工回灌以增加水资源可利用量。
2.
By means of studying the hydrological data , hydrogeologic data and annual measured data , the authors systematically analyzed the various conditions of artificial recharge of underground water , and carried out the study on artificial recharge of underground water , in the paper .
本文通过分析研究水文、水文地质及多年地下水动态观测等资料,系统地分析了地下水人工回灌的各种务件, 对地下水人工回灌进行了试验研究。
3.
The artificial recharge of groundwater is still in the initial stage in China.
影响地下水人工回灌的条件有水文地质条件、回灌水源和回灌方案的经济可行性。
5)  artificial injection
人工回灌
1.
Simulation of artificial injection with large-diameter wells in the western outskirt of Beijing;
北京西郊地区大口井人工回灌的模拟研究
2.
In the Beijing city the rainwater artificial injection is carried out that can use by the means of the rubber dams on rivers,the controlling-flood reservoirs,the sand.
北京城区可以利用河道橡胶坝、滞洪水库、砂石坑、大口井、深井等多种方式开展雨洪人工回灌,通过回补地下水,改善地质生态环境。
6)  Artifical recharge
人工回灌
1.
To generalize the application of artificial recharge to shallow aquifer,this paper discussed the feasibility and applicability of adopting artifical recharge technology to shallow aquifer in Shanghai.
通过开展试验研究,将深部承压含水层中应用成熟的地下水人工回灌技术引入浅部含水层中,但由于浅部含水层砂层结构及水动力条件与深部含水层差异较大,回灌工艺及方法也存在差异。
补充资料:回含
1.犹环绕。
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