灌区退水模拟与调控方法研究进展
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  • 英文篇名:Advances in simulation and regulation methods of irrigation return flow
  • 作者:李静思 ; 费良军 ; 李山 ; 史中兴 ; 陈天顺
  • 英文作者:LI Jingsi;FEI Liangjun;LI Shan;SHI Zhongxing;CHEN Tianshun;State Key Laboratory of Eco-Hydraulics in Northwest Arid Region, Xi'an University of Technology;Gansu Jingtaichuan Irrigation Management Bureau;
  • 关键词:灌区退水 ; 退水规律 ; 数值模拟 ; 水量-水质联合调控
  • 英文关键词:irrigation return flow;;laws for return flow;;numerical simulation;;joint regulation on water quantity and quality
  • 中文刊名:ZRZH
  • 英文刊名:Journal of Natural Disasters
  • 机构:西安理工大学省部共建西北旱区生态水利国家重点实验室;甘肃省景泰川电力提灌管理局;
  • 出版日期:2019-02-15
  • 出版单位:自然灾害学报
  • 年:2019
  • 期:v.28
  • 基金:国家自然科学基金项目(51779205);; 甘肃省景泰川电力提灌灌区退(回归)水监测与利用研究项目(ZKGK-2016-023)~~
  • 语种:中文;
  • 页:ZRZH201901008
  • 页数:11
  • CN:01
  • ISSN:23-1324/X
  • 分类号:56-66
摘要
灌区退水是灌区水文循环的重要组成部分,不合理的退水不但会降低水资源的利用效率,而且会增加环境污染的风险,对水资源的可持续利用构成威胁。而灌区退水的模拟与调控是实现灌区退水资源"量、质、效"综合控制的手段。在系统总结灌区退水可能组成与影响因素的基础上,剖析了灌区退水对生态环境的不利影响,归纳了退水量化的计算方法,并重点论述了多种水文模型在灌区退水模拟中应用的可行性以及退水调控的研究现状,以期为深化灌区退水机理的科学认识及采取有效调控手段提供参考。最后针对目前研究中存在的问题和薄弱环节,提出未来的重点研究方向,主要包括:(1)变化环境下退水规律的进一步揭示;(2)适用于灌区退水模拟的水文模型开发是未来急需解决的技术难题;(3)水量-水质联合调控是未来灌区退水的重点研究方向。
        Irrigation return flow is an important part of the hydrological cycle of the irrigation district. Unreasonable return flow not only can reduce the utilization efficiency of water resources, but also increase the risk of environmental pollution, thereby threaten the sustainable use of water resources. Simulation and regulation are key means to realize the integrated management of quantity, quality and efficiency of irrigation return flow. On the basis of summarizing the possible composition and influencing factors of irrigation return flow, this paper analyzes the adverse effects of return water on the ecological environment, sums up the calculation methods, especially emphasizes the feasibility of multiple hydrological models application in simulating return flow and the research status of return flow regulation, which are expected to provide a reference for deepening the scientific understanding of the mechanism of irrigation return flow and adopting effective control measures. In view of the existing problems and shortages, the future research directions are proposed, which mainly include:(1) the law of return flow under changing environment would be revealed further;(2) hydrological models suitable for simulating irrigation return flow hereafter need to be developed; and(3) the joint regulation of water quantity and quality is the key research direction of irrigation return flow in the future.
引文
[1] 中华人民共和国水利部. 中国水资源公报2015[M]. 北京: 中国水利水电出版社, 2016. Chinese People's Republican Ministry of Water Resources. China Water Resources Bulletin 2015[M]. Beijing: China Water Power Press, 2016. (in Chinese)
    [2] 中国水利百科全书编委会. 中国水利百科全书[M]. 北京: 中国水利水电出版社, 2006: 427.China Water Conservancy Encyclopedia Editorial Board. China Encyclopedia of Water Resources[M]. Beijing: China Water Power Press, 2006: 427. (in Chinese)
    [3] 王飞, 丁建丽, 哈学萍, 等. 干旱区盐渍地景观危险度评价方法——以新疆渭干河-库车河流域为例[J]. 自然灾害学报, 2012, 21(5): 79-87.WANG Fei, DING Jianli, HA Xueping, et al. Evaluation methods for hazard degree of salinized soil landscape in arid region: a case study on Weigan-Kuqa River Basin of Xinjiang[J]. Journal of Natural Disasters, 2012, 21(5): 79-87. (in Chinese)
    [4] 和玉璞, 徐俊增, 杨士红. 灌排调控模式对稻田排水过程的影响[J]. 灌溉排水学报, 2014, 33(45): 348-351.HE Yupu, XU Junzeng, YANG Shihong. Effects of different irrigation and drainage practices on drainage process in paddy fields[J]. Journal of Irrigation and Drainage, 2014, 33(45): 348-351. (in Chinese)
    [5] 曹荣荣. 洛惠渠灌区排水系统存在问题及对策[J]. 工程实际, 2010(2): 62-64. CAO Rongrong. Problems and countermeasures of drainage system in Luohuiqu irrigation district[J]. Engineering Practice, 2010(2): 62-64. (in Chinese)
    [6] 杜榜清, 李欣, 杨岗民. 宁蒙灌区退水规律研究方法[J]. 人民黄河, 2004, 26(12): 30-32.DU Bangqing, LI Xin, YANG Gangmin. Study on the law of water withdrawal in Ningmeng Irrigation District[J]. Yellow River, 2004, 26(12): 30-32. (in Chinese)
    [7] 史彦文. 宁夏引黄灌区退水量影响因素及预测方法研究[D]. 西安: 西安理工大学, 2010. SHI Yanwen. Study on the regularity of drainage water volume of qingtongxia irrigation area of Ningxia[D]. Xi’an: Xi’an University of Technology, 2010. (in Chinese)
    [8] 赵新宇. 大型灌区退水量预测理论与方法研究[D]. 西安: 西安理工大学, 2007.ZHAO Xinyu. Study on theories and methods of return water volume prediction in large irrigation area[D]. Xi’an: Xi’an University of Technology, 2007. (in Chinese)
    [9] 艾尼瓦尔买买提, 普拉提苏力坦, 海米提依米提. 阿克苏河灌区农田排水特征研究[J]. 干旱区资源与环境, 2009, 23(12): 145-150.MOHAMMED Anwer, SULTAN Polat, YIMIT Hamid. Characteristics of agricultural drainage from aksu river irrigation area[J]. Journal of Arid Land Resources and Environment, 2009, 23(12): 145-150. (in Chinese)
    [10] 周志轩, 周伟华, 杜鹃. 大中型引水灌区退水量研究进展[J]. 农业科学研究, 2014, 35(2): 41-45.ZHOU Zhixuan, ZHOU Weihua, Du Juan. Review of study on return water volume in large and middle irrigation areas[J]. Journal of Agricultural Sciences, 2014, 35(2): 41-45. (in Chinese)
    [11] 赵新宇, 费良军, 程东娟. 应用LM算法的神经网络模型研究灌区退水问题[J]. 农业工程学报, 2006, 22(8): 250-252. ZHAO Xinyu, FEI Liangjun, CHEN Dongjuan. Return water of irrigation area using neural network model based on LM Algorithm[J]. Transactions of the Chinese Society of Agricultural Engineering, 2006, 22(8): 250-252. (in Chinese)
    [12] 朱涛. 宁夏引黄灌区退水量影响因素及预测方法研究[D]. 西安: 西安理工大学, 2010.ZHU Tao. Study on impact factors and methods of return water volume prediction in yellow river irrigation area of Ning Xia[D]. Xi’an: Xi’an University of Technology, 2010. (in Chinese)
    [13] National Research Council. Irrigation-induced water quality problems: what can be learned from the San Joaquin Valley experience[R]. National Academy Press, Washington D.C., 1989: 157.
    [14] Rabalais N N, Turner R E, Justic D, et al. Nutrient changes in the mississippi river and system response on the adjacent continental shelf[J]. Estuaries, 1996, 19(2B): 385-407.
    [15] 蔡龙炎, 李颖, 郑子航. 我国湖泊系统氮磷时空变化及对富营养化影响研究[J]. 地球与环境, 2010, 38(2): 235-241.CAI Longyan, LI Ying, ZHENG Zihang. Temporal and spatial distribution of nitrogen and phosphorus of lake systems in China and their impact on eutrophication[J]. Earth and Environment, 2010, 38(2): 235-241. (in Chinese)
    [16] 陈会, 王康, 周祖昊. 基于排水过程分析的水稻灌区农田面源污染模拟[J]. 农业工程学报, 2012, 28(6): 112-119.CHEN Hui, WANG Kang, ZHOU Zuhao. Simulation of agricultural non-point source pollution from paddy rice irrigation district based on analyses of drainage processes[J]. Transactions of the Chinese Society of Agricultural Engineering, 2012, 28(6): 112-119. (in Chinese)
    [17] Jin C H. Biodiversity dynamics of freshwater wetland ecosystems affected by secondary salinisation and seasonal hydrology variation: a model-based study[J]. Hydrobiologia, 2008, 598(1): 257-270.
    [18] Huckelbridge K H, Stacey M T, Glenn E P, et al. An integrated model for evaluating hydrology, hydrodynamics, salinity and vegetation cover in a coastal desert wetland[J]. Ecological Engineering, 2013, 6(7): 850-861.
    [19] Clarke S J. Conserving freshwater biodiversity: The value, status and management of high quality ditch systems[J]. Journal for Nature Conservation, 2015, 24: 93-100.
    [20] Jia Z H, Luo W, Xie J, et al. Salinity dynamics of wetland ditches receiving drainage from irrigated agricultural land in arid and semi-arid regions[J]. Agricultural Water Management, 2011, 100(1): 9-17.
    [21] Abdel-Azim R, Allam M N. Agricultural drainage water reuse in Egypt: strategic issues and mitigation measures[J]. Non-Conventional Water use: WASAMED project, 2005, 53: 105-117.
    [22] Nagy H M, Salem A A S. Evaluation of drainage water quality for reuse a case study of the Umoum drain in Egypt[J]. Lowland Technology International Journal, 2003(5): 27-38.
    [23] 王少丽, 王兴奎, 许迪. 农业非点源污染预测模型研究进展[J]. 农业工程学报, 2007, 23(5): 265-271.WANG Shaoli, WANG Xingku, XU Di. Advances in the prediction models of agricultural non-point source pollution[J]. Transactions of the Chinese Society of Agricultural Engineering, 2007, 23(5): 265-271. (in Chinese)
    [24] 薛金凤, 夏军, 马彦涛. 非点源污染研究预测模型研究进展[J]. 水科学进展, 2002, 13(5): 649-656.XUE Jinfeng, XIA Jun, MA Yantao. Advances in non-point source pollution prediction model[J]. Advances in Water Science, 2002, 13(5): 649-656. (in Chinese)
    [25] 雷志栋, 苏立宁, 杨诗秀, 等. 青铜峡灌区水土资源平衡分析的探讨[J]. 水利学报, 2002, 33(6): 9-14.LEI Zhidong, SU Lining, YANG Shixiu, et al. Balance analysis of water resources in qingtongxia irrigation area[J]. Journal of Hydraulic Engineering, 2002, 33(6): 9-14. (in Chinese)
    [26] Ito Y, Shiraishi H, Onishi R. Numerical estimation of return flow in river basin[J]. JARO-Japan Agricultural Rrsearch Quarterly, 1980, 14(1): 24-30.
    [27] Mohan S, Vijayalakshmi D P. Prediction of irrigation return flows through a hierarchical modeling approach[J]. Agricultural Water Management, 2009, 96(2): 233-246.
    [28] French M N, Krajewski W F, Cuykendal R R. Rain forecasting in space and time using a neural network[J]. Journal of Hydrology, 1992, 137: 1-37.
    [29] 郭晓亮, 王国利, 梁国华, 等. 径流混沌时间序列的模糊支持向量机预测模型研究及其应用[J]. 水力发电学报, 2010, 29(3): 51-55.GUO Xiaoliang, WANG Guoli, LIANG Guohua, et al. Study on prediction model of the chaotic runoff time series using fuzzy support vector machines and a case study[J]. Journal of Hydroelectric Engineering, 2010, 29(3): 51-55. (in Chinese)
    [30] Skaggs R W. A water management model for shallow water table soils[R]. Tech. Rep. 134. University of North Carolina Water Resources Research Institue of North, 1978.
    [31] 罗纨, 贾忠华, Skaggs R W, 等. 利用DRAINMOD模型模拟银南灌区稻田排水过程[J]. 农业工程学报, 2006, 22(9): 53-57.LUO Wan, JIA Zhonghua, Skaggs R W, et al. Rice fields drainage process simulation in Yinnan irrigation district with DRAINMOD model[J]. Transactions of the Chinese Society of Agricultural Engineering, 2006, 22(9): 53-57. (in Chinese)
    [32] 王少丽, 王兴奎, PRASHER S O, 等. 应用DRAINMOD农田排水模型对地下水位和排水量的模拟[J]. 农业工程学报, 2006, 22(2): 54-59.WANG Shaoli, WANG Xingkui, PRASHER S O, et al. Field application of DRAINMOD model to the simulation of water table, surface runoff and subsurface drainage[J]. Transactions of the Chinese Society of Agricultural Engineering, 2006, 22(2): 54-59. (in Chinese)
    [33] Luo W, Skaggs R W, Masani, et al. Predicting Field Hydrology in Cold Conditions with Drainmod[J]. Transactions of the Chinese Society of Agricultural Engineering, 2001, 44(4): 825-834.
    [34] 李山, 罗纨, 贾忠华, 等. 半湿润灌区控制排水条件下降雨洗盐计算模型研究[J]. 水利学报, 2015, 46(2): 127-137.LI Shan, LUO Wan, JIA Zhonghua, et al. An analytical model for studying the effect of rainfall on salt leaching under controlled drainage in subhumid irrigation areas[J]. Journal of Hydraulic Engineering, 2015, 46(2): 127-137. (in Chinese)
    [35] Negm L M, Youssef M A, Chescheir G M, et al. DRAINMOD-based tools for quantifying reductions in annual drainage flow and nitrate losses resulting from drainage water management on croplands in eastern North Carolina[J]. Agricultural Water Management, 2016, 166(3): 86-100.
    [36] Yang X H. Evaluation and application of DRAINMOD in an Australian sugarcane field[J]. Agricultural Water Management, 2008, 95(4): 439-446.
    [37] 陈喜, 陈洵洪. 美国Sand Hills地区地下水数值模拟及水量平衡分析[J]. 水科学进展, 2004, 15(2): 94-99.CHEN Xi, CHEN Xunmei. Numerical modeling of groundwater flow and analysis of water budget in Nebraska Sand Hills, USA[J]. Advances in Water Science, 2004, 15(2): 94-99. (in Chinese)
    [38] 张斌. 基于Visual MODFLOW的黄土塬灌区地下水动态研究[D]. 杨凌: 西北农林科技大学, 2013.ZHANG Bin. Study on Groundwater Regime in Loess Plateau Irrigation Based on Visual MODFLOW[D]. Yangling: Northwest A & F university, 2013. (in Chinese)
    [39] Arnold J G, Muttiah R S, Srinivasan R, et al. Large area hydrologic modeling and assessment part Ⅰ:model development[J]. Journal of the American Water Resources Association, 1998, 3(1): 73-89.
    [40] Gosain A K, Rao S, Srinivasan R, et al. Return-flow assessment for irrigation command in the Palleru river basin using SWAT model[J]. Hydrological Processes, 2005, 19(3): 673-682.
    [41] 仕玉治, 张弛, 周惠成, 等. SWAT模型在水稻灌区的改进及应用研究[J]. 水电能源科学, 2010, 28(7): 18-22.SHI Yuzhi, ZHANG Chi, ZHOU Huicheng, et al. Improvement and application of SWAT model in rice irrigation area[J]. International Journal Hydroelectric Energy, 2010, 28(7): 18-22. (in Chinese)
    [42] Krysanova V, Muller-Wohlfer D L, Becker A. Development and test of a spatially distributed hydrological/water quality model for mesoscale watersheds[J]. Ecological Modeling, 1998, 106(2-3): 261-289.
    [43] Wang J T, Zhang H M, Chang B H. The exploration application of MIKE SHE model in Qingtongxia irrigation area water recycle[C]. International Conference on Energy, Environment & Sustainable Ecosystem Development, 2017.
    [44] 代俊峰, 崔远来. 基于SWAT的灌区分布式水文模型-Ⅰ型构建的原理与方法[J]. 水利学报, 2009, 40(2): 145-152.DAI Junfeng, CUI Yuanlai. Distributed hydrological model for irrigation area based on SWAT-Ⅰ principle and method[J]. Journal of Hydraulic Engineering, 2009, 40(2): 145-152. (in Chinese)
    [45] 代俊峰, 崔远来. 基于SWAT的灌区分布式水文模型-Ⅱ模型应用[J]. 水利学报, 2009, 40(3): 311-319 . DAI Junfeng, CUI Yuanlai. Distributed hydrological model for irrigation area based on SWAT-Ⅱ Model application[J]. Journal of Hydraulic Engineering, 2009, 40(3): 311-319. (in Chinese)
    [46] 郑捷, 李光永, 韩振中, 等. 改进的SWAT模型在平原灌区的应用[J]. 水利学报, 2011, 42(1): 88-97.ZHENG Jie, LI Guangyong, HAN Zhenzhong, et al. Application of modified SWAT model in plain irrigation district[J]. Journal of Hydraulic Engineering, 2011, 42(1): 88-97. (in Chinese)
    [47] 夏军, 翟晓燕, 张永勇. 水环境非点源污染模型研究进展[J]. 地理科学进展, 2012, 31(7): 941-952.XIA Jun, ZHAI Xiaoyan, ZHANG Yongyong. Progress in the research of water environmental nonpoint source pollution models[J]. Progress in Geography, 2012, 31(7): 941-952. (in Chinese)
    [48] 黄仲冬. 基于SWAT模型的灌区农田退水氮磷污染模拟及调控研究[D]. 新乡: 中国农业科学院, 2011.HUANG Zhongdong. Application of SWAT model to simulate farmland drainage pollution and management practices research[D]. Xinxiang:Chinese Academy of Agricultural Sciences, 2011. (in Chinese)
    [49] 黄一帆. 泾惠渠地下水动态及预测的研究[D]. 杨凌: 西北农林科技大学, 2014.HUANG Yifan. Groundwater Dynamic and Prediction in Jinghui Canal Irrigation[D]. Yangling: Northwest A & F University, 2014. (in Chinese)
    [50] 郭晓东, 田辉, 张梅桂, 等. 我国地下水数值模拟软件应用进展[J]. 地下水, 2010, 32(4): 5-7.GUO Xiaodong, TIAN Hui, ZHANG Meigui, et al. Application development of groundwater value simulation software in our country[J]. Ground Water, 2010, 32(4): 5-7. (in Chinese)
    [51] 徐宗学. 水文模型[M]. 北京: 科学出版社, 2009.XU Zongxue. Hydrological model[M]. Beijing: Science Press, 2009. (in Chinese)
    [52] Kim N W, Chung I M, Won Y S, et al. Development and application of the integrated SWAT-MODFLOW model[J]. Journal of Hydrology, 2008, 356: 1-16.
    [53] Skaggs R W, Breve M A, Gilliam J W. Hydrologic and water quality impacts of agricultural drainage[J]. Critical Reviews in Environmental Science and Technology, 1994, 24(1): 1-32.
    [54] Wesstrom I, Messing I, Linner H, et al. Controlled drainage-effects on drain outflow and water quality[J]. Agricultural Water Management, 2001, 47(2): 85-100.
    [55] Ale S, Bowling L C, Owens P R, et al. Development and application of a distributed modeling approach to assess the watershed-scale impact of drainage water management[J]. Agricultural Water Management, 2012, 107: 23-33.
    [56] Tawfik A, Fleifle E A, Valeriano O C S, et al. Simulation-Optimization Model for Intermediate Reuse of Agriculture Drainage Water in Egypt[J]. Transactions of the Chinese Society of Agricultural Engineering, 2013,139(3): 391-401.
    [57] Negm L M, Youssef M A, Jaynes D B. Evaluation of DRAINMOD-DSSAT simulated effects of controlled drainage on crop yield,water balance,and water quality for a corn-soybean cropping system in central Iowa[J]. Agricultural Water Management, 2017, 187: 57-68.
    [58] Skaggs R W, CHESCHEIR G M. Effects of subsurface drain depth on nitrogen losses from drained lands[J]. Transactions of the ASAE, 2003, 46(2): 237-244.
    [59] 张蔚榛, 张瑜芳. 有关农田排水标准研究的几个问题[J]. 灌溉排水, 1994, 13(1): 1-6. ZHANG Weizhen, ZHANG Yufang. Some problems concerning the research needs on criteria for land use[J]. Irrigation and Drainage, 1994, 13(1): 1-6. (in Chinese)
    [60] 张瑜芳, 张蔚榛. 考虑作物产量和化肥流失时排水设计标准的确定方法[J]. 水利学报, 2001(2): 44-49.ZHANG Yufang, ZHANG Weizhen. Determination of drainage criteria considering the increase of crop yield and environment protection[J]. Journal of Hydraulic Engineering, 2001(2): 44-49. (in Chinese)
    [61] 王友贞, 于凤存, 沈涛. 淮北平原区干沟控制排水技术及效应[J]. 水利学报, 2013, 44(1): 104-110.WANG Youzhen, YU Fengcun, SHEN Tao. Study on the technique and effect of controlled drainage through the main drainage ditch[J]. Journal of Hydraulic Engineering, 2013, 44(1): 104-110. (in Chinese)
    [62] 王友贞, 王修贵, 汤广民. 大沟控制排水对地下水水位影响研究[J]. 农业工程学报, 2008, 24(6): 74-77.WANG Youzhen, WANG Xiugui, TANG Guangmin. Effects of controlled drainage of main ditch on groundwater table[J]. Transactions of the Chinese Society of Agricultural Engineering, 2008, 24(6): 74-77. (in Chinese)
    [63] 罗纨, 贾忠华, 方树星, 等. 宁夏银南灌区稻田控制排水对排水量及盐分影响的试验研究[J]. 水利学报, 2006, 37(5): 608- 612.LUO Wan, JIA Zhonghua, FANG Shuxing, et al. Effect of drainage control on salt and water balance in rice field[J]. Journal of Hydraulic Engineering, 2006, 37(5): 608- 612. (in Chinese)
    [64] 朱成立, 郭相平, 刘敏昊, 等. 水稻沟田协同控制灌排模式的节水减污效应[J]. 农业工程学报, 2016, 32(3): 86-91.ZHU Chengli, GUO Xiangping, LIU Minhao, et al. Reduction of nitrogen, phosphorous and runoff by coordination controlled drainage with basin and ditch in paddy field[J]. Transactions of the Chinese Society of Agricultural Engineering, 2016, 32(3): 86-91. (in Chinese)
    [65] Christern E, Skehan D. Design and management of subsurface pipe drainage to reduce salt loads[J]. Journal of Irrigation & Drainage Engineering, 2001, 127(3): 148-155.
    [66] 田世英, 罗纨, 贾忠华, 等. 控制排水对宁夏银南灌区水稻田盐分动态变化的影响[J]. 水利学报, 2006, 37(11): 1309-1314.TIAN Shiying, LUO Wan, JIA Zhonghua, et al. The effect of controlled drainage on salt dynamics inirrigated rice fields of the Yinnan irrigation district[J]. Journal of Hydraulic Engineering, 2006, 37(11): 1309-1314. (in Chinese)
    [67] Hornbuckle J W, CHRISTEN E W, AYARS J E, et al. Controlled water table management as a strategy for reducing salt loads from subsurface drainage under perennial agriculture in semi-arid Australia[J]. Irrigation and Drainage Systems, 2005, 19(2): 145-159.
    [68] 罗纨, 李山, 贾忠华, 等. 兼顾农业生产与环境保护的农田控制排水研究进展[J]. 农业工程学报, 2013, 29(16): 1-6.LUO Wan, LI Shan, JIA Zhonghua, et al. Advances in research of controlled drainage for crop production and environmental protection[J]. Transactions of the Chinese Society of Agricultural Engineering, 2013, 29(16): 1-6. (in Chinese)
    [69] 王少丽. 基于水环境保护的农田排水研究新进展[J]. 水利学报, 2010, 41(6): 697-702.WANG Shaoli. Advancement of study on farmland drainage technology based on water environment protection[J]. Journal of Hydraulic Engineering, 2010, 41(6): 697-702. (in Chinese)
    [70] Agnihotri A K, Kumbhare P S, Rao Kvgk, et al. Econometric consideration for reuse of drainage effluent in wheat production[J]. Agricultural Water Management, 1992, 22(3): 249-270.
    [71] 许迪, 龚时宏, 李益农, 等. 农业水管理面临的问题及发展策略[J]. 农业工程学报, 2010, 26(11): 1-7.XU Di, GONG Shihong, LI Yinong, et al. Problems and development strategies of agricultural water management[J]. Transactions of the Chinese Society of Agricultural Engineering, 2010, 26(11): 1-7. (in Chinese)
    [72] 王少丽, 许迪, 刘大刚. 灌区排水再利用研究进展[J]. 农业机械学报, 2016, 47(4): 42-48. WANG Shaoli, XU Di, LIU Dagang. Research progress on drainage water reuse in irrigation district[J]. Transactions of the Chinese Society for Agricultural Machinery, 2016, 47(4): 42-48. (in Chinese)
    [73] 王云贺. 盐碱化水田退水水质变化及再利用研究[D]. 长春: 中国科学院大学, 2014.WANG Yunhe. Return Flow Water Quality and Reuse in Saline-alkali Paddy Soils[D]. Changchun: University of Chinese Academy of Science, 2014. (in Chinese)
    [74] 贝拉G.利普泰克.环境工程师用册(上,下册)[M]. 北京: 中国建筑工业出版社, 1987.Bella G. Liptech. Environmental Engineers' Booklet (upper and lower volumes)[M]. Beijing:China Architecture & Building Press, 1987. (in Chinese)
    [75] Kovacic D A, Twait R M, Wallace M P, et al. Use of created wetlands to improve water quality in the Midwest-Lake Bloomington case study[J]. Transactions of the Chinese Society of Agricultural Engineering, 2006, 28(3): 258 -270.
    [76] Borin M, Tocchetto D. Five year water and nitrogen balance for a constructed surface flow wetland treating agricultural drainage waters[J]. Science of the Total Environment, 2007, 380(1-3): 38-47.

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