[1]CHEN Mingxiang,ZHAI Luxin,YANG Yang,et al.Response of Ecohydrological Processes in Artificial Bamboo Forest to Climate Change[J].Research of Soil and Water Conservation,2022,29(03):189-196+204.
Copy

Response of Ecohydrological Processes in Artificial Bamboo Forest to Climate Change

References:
[1] 刘蔚漪.闽北不同类型毛竹林水文生态功能研究[D].北京:中国林业科学研究院,2011.
[2] Allen M R, Ingram W J. Constraints on future changes in climate and the hydrologic cycle[J]. Nature:International Weekly Journal of Science, 2002,419(6903):228-232.
[3] Oki T, Kanae S. Global Hydrological cycles and world water resources[J]. Science, 2006,313(5790):1068-1072.
[4] Gohari A, Mirchi A, Madani K. System dynamics evaluation of climate change adaptation strategies for water resources management in Central Iran[J]. Water Resources Management, 2017,31(5):1413-1434.
[5] 张利平,曾思栋,夏军,等.漳卫河流域水文循环过程对气候变化的响应[J].自然资源学报,2011,26(7):1217-1226.
[6] Piao S, Ciais P, Huang Y, et al. The impacts of climate change on water resources and agriculture in China[J]. Nature, 2010,467(7311):43-51.
[7] 马欢,杨大文,雷慧闽,等. Hydrus-1D模型在田间水循环规律分析中的应用及改进[J].农业工程学报,2011,27(3):6-12.
[8] 李蓝君,宋孝玉,夏露,等.黄土高原沟壑区典型造林树种蒸散发对气候变化的响应[J].农业工程学报,2018,34(20):148-159.
[9] 王国庆,李迷,金君良,等.涪江流域径流变化趋势及其对气候变化的响应[J].水文,2012,32(1):22-28.
[10] Notter B, Macmillan L, Viviroli D, et al. Impacts of environmental change on water resources in the Mt. Kenya region[J]. Journal of Hydrology, 2007,343(3/4):266-278.
[11] 任利东,黄明斌,樊军.不同类型层状土壤持水能力的研究[J].农业工程学报,2013,29(19):105-111.
[12] 刘建军,王全九,王卫华,等.利用Hydrus-1D反推土壤水力参数方法分析[J].世界科技研究与发展,2010,32(2):173-175.
[13] 许晓梁,陈孝兵,陈力.不同目标函数对土壤水力参数反演效果评价[J].水电能源科学[J],2018,36(10):140-143,169.
[14] 王鹏,宋献方,袁瑞强,等.基于Hydrus-1D模型的农田SPAC系统水分通量估算:以山西省运城市董村农场为例[J].地理研究,2011,30(4):622-634.
[15] Lyu S, Chen W, Wen X, et al. Integration of HYDRUS-1D and MODFLOW for evaluating the dynamics of salts and nitrogen in groundwater under long-term reclaimed water irrigation[J]. Irrigation Science, 2019,37(1):35-47.
[16] 马蒙蒙,林青,徐绍辉.不同因素影响下层状土壤水分入渗特征及水力学参数估计[J].土壤学报,2020,57(2):347-358.
[17] 韩丽,宋克超,张文江,等.长江源头流域水文要素时空变化及对气候因子的响应[J].山地学报,2017,35(2):129-141.
[18] 张淑兰,于澎涛,张海军,等.气候变化对干旱缺水区中尺度流域水文过程的影响[J].干旱区资源与环境,2013,27(10):70-74.
[19] 于磊,顾鎏,李建新,等.基于SWAT模型的中尺度流域气候变化水文响应研究[J].水土保持通报,2008,28(4):152-154.
[20] 史晓亮,杨志勇,吕杰,等.滦河流域气候变化的水文响应研究[J].水土保持研究,2016,23(2):123-127.
[21] 许海丽,潘云,宫辉力,等.1959—2000年妫水河流域气候变化与水文响应分析[J].水土保持研究,2012,19(2):43-47.
[22] 李云良,张奇,李相虎,等.鄱阳湖流域水文效应对气候变化的响应[J].长江流域资源与环境,2013,22(10):1339-1347.
[23] 金凯,王飞,韩剑桥,等.1982—2015年中国气候变化和人类活动对植被NDVI变化的影响[J].地理学报,2020,75(5):961-974.
[24] 许静.不同试验方法测定田间持水量的对比研究[D].长春:吉林大学,2018.
[25] 水利部.土工试验方法标准[S]. GB/T50123-2019,2019.
[26] im/unek J,ejna M, Saito H, et al. The Hydrus-1D software package for simulating the movement of water, heat, and multiple solutes in variably saturated media; Manual Version 4.17[Z]. Riverside, CA, USA:Univeristy of California, 2013.
[27] Nash J E, Sutcliffe J V. River flow forecasting through conceptual models part I: A discussion of principles-ScienceDirect[J]. Journal of Hydrology, 1970,10(3):282-290.
[28] 吴辰,郝振纯,鲁承阳,等.五道沟地区土壤水分动态变化规律及模拟研究[J].水电能源科学,2018,36(9):138-142.
[29] IPCC. Special report on global warming of 1.5℃[M]. UK:Cambridge University Press, 2018.
[30] 苏勃,高学杰,效存德. IPCC《全球1.5℃增暖特别报告》冰冻圈变化及其影响解读[J].气候变化研究进展,2019,15(4):395-404.
[31] 窦小东,黄玮,易琦,等. LUCC及气候变化对龙川江流域径流的影响[J].生态环境学报,2019,28(1):7-15.
[32] 班春广,徐宗学,苟娇娇,等.1973—2015年年楚河上游流域径流变化趋势及驱动因素分析[J].北京师范大学学报:自然科学版,2019,55(6):748-754.
[33] 罗宇,穆兴民,高鹏,等.延河流域潜在蒸散发时空变化特征分析[J].水土保持通报,2021,41(2):306-313.
Similar References:

Memo

-

Last Update: 2022-04-20

Online:506       Total Traffic Statistics:23883784

Website Copyright: Research of Soil and Water Conservation Shaanxi ICP No.11014090-10
Tel: 029-87012705 Address: Editorial Department of Research of Soil and Water Conservation, No. 26, Xinong Road, Yangling, Shaanxi Postcode: 712100