Citation: | Han Pengfei, Wang Xusheng, Zhang Jun, Wan Li, Chen Jinsong, Yu Kun. Evolution characteristics of groundwater flow systems in the past 50 years in Kongqi River irrigation district, Xinjiang, China[J]. Bulletin of Geological Science and Technology, 2022, 41(1): 109-118. doi: 10.19509/j.cnki.dzkq.2022.0023 |
[1] |
Tóth J. A theory of groundwater motion in small basins in central Alberta, Canada[J]. Journal of Geophysical Research, 1962, 67: 4375-4387. doi: 10.1029/JZ067i011p04375
|
[2] |
Tóth J. A theoretical analysis of groundwater flow in small drainage basins[J]. Journal of Geophysical Research, 1963, 68: 4795-4812. doi: 10.1029/JZ068i016p04795
|
[3] |
梁杏, 张人权, 靳孟贵. 地下水流系统: 理论、应用、调查[M]. 北京: 地质出版社, 2015.
Liang X, Zhang R Q, Jin M G. Groundwater flow systems: Theory, application and investigation[M]. Beijing: Geological Publishing House, 2015(in Chinese).
|
[4] |
蒋小伟, 万力, 王旭升. 区域地下水流理论进展[M]. 北京: 地质出版社, 2013.
Jiang X W, Wan L, Wang X S. Advance in thetheory of regional groundwater flow[M]. Beijing: Geological Publishing House, 2013(in Chinese).
|
[5] |
Wang J Z, Wörman A, Bresciani E, et al. On the use of late-time peaks of residence time distributions for the characterization of hierarchically nested groundwater flow systems[J]. Journal of Hydrology, 2016, 543: 47-58. doi: 10.1016/j.jhydrol.2016.04.034
|
[6] |
梁杏, 张人权, 牛宏, 等. 地下水流系统理论与研究方法的发展[J]. 地质科技情报, 2012, 31(5): 143-151. https://www.cnki.com.cn/Article/CJFDTOTAL-DZKQ201205020.htm
Liang X, Zhang R Q, Niu H, et al. Development of the theory and research method of groundwater flow system[J]. Geological Science and Technology Information, 2012, 31(5): 143-151(in Chinese with English abstract). https://www.cnki.com.cn/Article/CJFDTOTAL-DZKQ201205020.htm
|
[7] |
Han P F, Wang X S, Wan L, et al. The exact groundwater divide on water table between two rivers: A fundamental model investigation[J]. Water, 2019, 11: 1-11.
|
[8] |
Liang X, Liu Y, Jin M, et al. Direct observation of complex Tóthian groundwater flow systems in the laboratory[J]. Hydrological Processes, 2010, 24(24): 3568-3573. doi: 10.1002/hyp.7758
|
[9] |
Wang X S, Jiang X W, Wan L, et al. A new analytical solution of topography-driven flow in a drainage basin with depth-dependent anisotropy of permeability[J]. Water Resources Research, 2011, 47(9): 3101-3106.
|
[10] |
Wang X S, Wan L, Jiang X W, et al. Identifying three-dimensional nested groundwater flow systems in a Tóthian basin[J]. Advances in Water Resources, 2017, 108. https://doi.org/10.1016/j.advwatres,2017,7:16.
|
[11] |
Jiang X W, Wang X S, Wan L, et al. An analytical study on stagnant points in nested flow systems in basins with depth-decaying hydraulic conductivity[J]. Water Resources Research, 2011, 47(1), 128-139.
|
[12] |
梁杏, 张婧玮, 蓝坤, 等. 江汉平原地下水化学特征及水流系统分析[J]. 地质科技通报, 2020, 39(1): 21-33. doi: 10.19509/j.cnki.dzkq.2020.0103
Liang X, Zhang J W, Lan K, et al. Hydrochemical characteristics of groundwater and analysis of groundwater flow systems in Jianghan Plain[J]. Bulletin of Geological Science and Technology, 2020, 39(1): 21-33(in Chinese with English abstract). doi: 10.19509/j.cnki.dzkq.2020.0103
|
[13] |
江欣悦, 李静, 郭林, 等. 豫北平原浅层地下水化学特征与成因机制[J]. 地质科技通报, 2021, 40(5): 290-300. doi: 10.19509/j.cnki.dzkq.2021.0511
Jiang X Y, Li J, Guo L, et al. Chemical characteristics and formation mechanism of shallow groundwater in the northern Henan Plain[J]. Bulletin of Geological Science and Technology, 2021, 40(5): 290-300(in Chinese with English abstract). doi: 10.19509/j.cnki.dzkq.2021.0511
|
[14] |
陈亚宁. 新疆塔里木河流域生态保护与可持续管理[M]. 北京: 科学出版社, 2015.
Chen Y N. Ecological protection and sustainable management of the Tarim River basin[M]. Beijing: Science Press, 2015(in Chinese).
|
[15] |
樊自立, 马映军. 干旱区水资源开发及合理利用的几个问题[J]. 干旱区研究, 2000, 17(3): 6-11. https://www.cnki.com.cn/Article/CJFDTOTAL-GHQJ200003001.htm
Fan Z L, Ma Y J. Some issues about the exploitation and the rational utilization of water resources in the arid areas[J]. Arid Zone Research, 2000, 17(3): 6-11(in Chinese with English abstract). https://www.cnki.com.cn/Article/CJFDTOTAL-GHQJ200003001.htm
|
[16] |
张国飞. 基于GMS的河谷冲淤积平原区地下水数值模拟研究[D]. 呼和浩特: 内蒙古农业大学, 2011.
Zhang G F. Numerical simulation based on groundwater modeling system on alluvial and silted valley plain[D]. Huhhot: Inner Mongolia Agricultural University, 2011(in Chinese with English abstract).
|
[17] |
新疆库尔勒地质环境监测站. 新疆库尔勒市地下水动态监测五年报告(1996-2000年)[R]. 新疆库尔勒: 新疆库尔勒地质环境监测站, 2001.
Geological Environment Monitoring Station in Korla, Xinjiang. Five-year report (1996-2000) on groundwater dynamic monitoring in Korla, Xinjiang[R]. Korla, Xinjiang: Geological Environment Monitoring Station in Korla, Xinjiang, 2001(in Chinese).
|
[18] |
新疆库尔勒地质环境监测站. 新疆库尔勒市地下水动态监测五年报告(2006-2010年)[R]. 新疆库尔勒: 新疆库尔勒地质环境监测站, 2011.
Geological Environment Monitoring Station in Korla, Xinjiang. Five-year report (2006-2010) on groundwater dynamic monitoring in Korla, Xinjiang[R]. Korla, Xinjiang: Geological Environment Monitoring Station in Korla, Xinjiang, 2011(in Chinese).
|
[19] |
何金苹. 近30年开都-孔雀河流域绿洲时空演变及驱动机制研究[D]. 乌鲁木齐: 新疆大学, 2018.
He J P. Spatio-temporal change and driving force mechanism of Oasis in the Kaidu-Kongqi River Basin over the past 30 years[D]. Urumqi: Xinjiang University, 2018(in Chinese with English abstract).
|
[20] |
李晓菲, 徐长春, 李路, 等. 21世纪开都-孔雀河流域未来气候变化情景预估[J]. 干旱区研究, 2019, 36(3): 556-566. https://www.cnki.com.cn/Article/CJFDTOTAL-GHQJ201903004.htm
Li X F, Xu C C, Li L, et al. Projection of future climate change in the Kaidu-Kongqi River Basin in the 21st century[J]. Arid Zone Research, 2019, 36(3): 556-566(in Chinese with English abstract). https://www.cnki.com.cn/Article/CJFDTOTAL-GHQJ201903004.htm
|
[21] |
国家气象中心. 中国地面气候资料月值数据集[EB/OL]. http://data.cma.cn/, 2018.
National Meteorological Centre. Monthly climate dataset on the surface in China[EB/OL]. http://data.cma.cn/, 2018 (in Chinese).
|
[22] |
严红, 蔡瑞庆. 2006-2010年库尔勒地下水现状及未来保护措施[J]. 西部探矿工程, 2013, 25(2): 129-134. doi: 10.3969/j.issn.1004-5716.2013.02.042
Yan H, Cai R Q. Current situation and further protection measures of groundwater in Korla from 2006 to 2010[J]. West-China Exploration Engineering, 2013, 25(2): 129-134(in Chinese with English abstract). doi: 10.3969/j.issn.1004-5716.2013.02.042
|
[23] |
张家凤. 开都河-孔雀河流域水资源优化配置研究[D]. 乌鲁木齐: 新疆农业大学, 2012.
Zhang J F. Study on optimized allocation of water resources in Kaidu-Kongque River Basin[D]. Urumqi: Xinjiang Agricultural University, 2012(in Chinese with English abstract
|
[24] |
Mcdonald M G, Harbaugh A W. A modular three-dimensional finite-difference ground-water flow model[R]. Denver: U.S. Geological Survey, 1988.
|
[25] |
Pollock D W. User's guide for MODPATH/MODPATH-PLOT, Version 3: A particle tracking post-processing package for MODFLOW, the U.S. Geological Survey Finite Difference Groundwater Flow Model[R]. Denver: U.S. Geological Survey Open-file report 94-464, USGS. 1994.
|
[26] |
刘国燕, 刘宝君. 浅析十八团渠灌区水价影响[J]. 西部探矿工程, 2007, 19(5): 232-234. doi: 10.3969/j.issn.1004-5716.2007.05.091
Liu G Y, Liu B J. Analysis on the influence of water price in the irrigation area of Shibatuanqu[J]. West-China Exploration Engineering, 2007, 19(5): 232-234(in Chinese with English abstract). doi: 10.3969/j.issn.1004-5716.2007.05.091
|
[27] |
新疆水文水资源局. 库尔勒地下水资源开发利用规划报告[R]. 乌鲁木齐: 新疆水文水资源局, 1998.
Hydrology and Water Resources Bureau in Xinjiang. Planning report on development and utilization of groundwater resources in Korla[R]. Urumqi: Hydrology and Water Resources Bureau in Xinjiang, 1998(in Chinese).
|