Citation: | YANG Guang, TENG Yan-guo, LIU Yang, YU Kun, CHAI Wen-xu. RECHARGE RATIO OF SURFACE WATER INFILTRATION OF RIVERSIDE WELL FIELDS ALONG THE HARBIN SECTION OF THE SONGHUA RIVER[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(9): 96-100. doi: 10.13205/j.hjgc.202209013 |
[1] |
中华人民共和国国家标准,水文地质术语(GB/T 14157—1993),1993.
|
[2] |
GRISCHEK T,SCHOENHEINZ D,WORCH E,et al.Bank filtration in Europe:an overview of aquifer conditions and hydraulic controls[M].2020.
|
[3] |
郭学茹,孟利,王金生,等.岸滤系统水质演化过程及影响因素研究进展[J].北京师范大学学报(自然科学版),2020,56(2):230-239.
|
[4] |
BRUNKE M,GONSER T.The ecological significance of exchange processes between rivers and groundwater[J].Freshwater Biology,1997,37(1):1-33.
|
[5] |
YE X Y,CUI R J,WANG L X,et al.The influence of riverbank filtration on regional water resources:a case study in the second Songhua River Catchment,China[J].Water Supply,2020,20(4):1425-1438.
|
[6] |
KALBUS E,REINSTORF F,SCHIRMER M.Measuring methods for groundwater-surface water interactions:a review[J].Hydrology & Earth Systemences,2006,10(6):873-887.
|
[7] |
DA’U A,MOHAMMAD F R,AHMAD Z A,et al.An overview assessment of the effectiveness and global popularity of some methods used in measuring riverbank filtration[J].Journal of Hydrology,2017,550:497-515.
|
[8] |
MUSTAFA S,BAHAR A,AZIZ ZA,et al.Review of the role of analytical modelling methods in riverbank filtration system[J].Jurnal Teknologi (Sciences & Engineering),2014,71(1):59-69.
|
[9] |
方磊,吴瑞,马小波,等.基于水文地球化学的宁夏吴忠地区傍河取水可行性探讨[J].地下水,2021,43(6):137-138
,242.
|
[10] |
刘洋,崔庚,温传磊,等.第二松花江下游洪水过程对河水-地下水交换的影响[J].水电能源科学,2017,35(10):33-36.
|
[11] |
RAUTIO A B,KORKKA-NIEMI K I,SALONEN V.Thermal infrared remote sensing in assessing groundwater and surface-water resources related to Hannukainen mining development site,northern Finland[J].Hydrogeology Journal,2018,26:163-183.
|
[12] |
张兵,宋献方,张应华,等.第二松花江流域地表水与地下水相互关系[J].水科学进展,2014,25(3):336-347.
|
[13] |
SU X S,CUI G,DU S H,et al.Using multiple environmental methods to estimate groundwater discharge into an arid lake (Dakebo Lake,Inner Mongolia,China)[J].Hydrogeology Journal,2016,24(7):1-16.
|
[14] |
薛禹群,吴吉春.地下水动力学[M].3版.北京:地质出版社,2010.
|
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