参考文献/References:
[1] 朱显谟. 黄土高原的综合治理[J]. 土壤通报, 1980(2): 11-15. [ZHU Xianmo. Comprehensive management of Loess Plateau [J]. Chinese Journal of Soil Science,1980(2): 11-15] DOI: 10.19336/j.cnki.trtb.1980.02.001
[2] 朱显谟. 黄土区土壤侵蚀的分类[J]. 土壤学报, 1956, 4(2): 99-115. [ZHU Xianmo. Classification on the soil erosion in the loess region [J]. Acta Pedologica Sinica, 1956, 4(2): 99-115]
[3] 刘元保, 朱显谟, 周佩华, 等. 黄土高原坡面沟蚀的类型及其发生发展规律[J]. 中国科学院西北水土保持研究所集刊, 1988, 7(1): 9-18. [LIU Yuanbao, ZHU Xianmo, ZHOU Peihua, et al. The laws of hillslope channel erosion occurence and development on Loess Plateau [J]. Memoir of NISWC, Academia Sinica, 1988, 7(1): 9-18]
[4] 伍永秋, 刘宝元. 切沟、切沟侵蚀与预报[J]. 应用基础与工程科学学报, 2000, 8(2): 134-142. [WU Yongqiu, LIU Baoyuan. Gully, gully erosion and prediction [J]. Journal of Basic Science and Engineering, 2000, 8(2): 134-142] DOI: 10.16058/j.issn.1005-0930.2000.02.004
[5] 罗来兴. 划分晋西、陕北、陇东黄土区域沟间地与沟谷的地貌类型[J]. 地理学报, 1956, 22(3): 201-222. [LUO Laixing. A tentative classification of landforms in the Loess Plateau [J]. Acta Geographica Sinica, 1956, 22(3): 201-222] DOI: 10.11821/xb195603002
[6] 刘宝元, 杨扬, 陆绍娟. 几个常用土壤侵蚀术语辨析及其生产实践意义[J]. 中国水土保持科学, 2018, 16(1): 9-16. [LIU Baoyuan, YANG Yang, LU Shaojuan. Discriminations on common soil erosion terms and their implications for soil and water conservation [J]. Science of Soil and Water Conservation, 2018, 16(1): 9-16] DOI: 10.16843/j.sswc.2018.01.002
[7] 杨丽娟, 王春梅, 张春妹, 等. 基于遥感影像研究极端暴雨条件下新成切沟发生发展规律[J]. 农业工程学报, 2022, 38(6): 96-104. [YANG Lijuan, WANG Chunmei, ZHANG Chunmei, et al. Occurrence and development of newly formed gullies under extreme rainstorm conditions using remote sensing images [J]. Transactions of the Chinese Society of Agricultural Engineering, 2022, 38(6): 96-104] DOI: 10.11975/j.issn.1002-6819.2022.06.011
[8] 刘晓冰, 张兴义. 沟道侵蚀的多样性和发生过程及研究展望[J]. 土壤与作物, 2018, 7(2): 90-102. [LIU Xiaobing, ZHANG Xingyi. Gully erosion: Diversity, processes and prospects [J]. Soils and Crops, 2018, 7(2): 90-102] DOI: 10.11689/j.issn.2095-2961.2018.02.001
[9] 张光辉. 切沟侵蚀研究进展与展望[J]. 水土保持学报, 2020, 34(5): 1-13. [ZHANG Guanghui. Advances and prospects for gully erosion researches [J]. Journal of Soil and Water Conservation, 2020, 34(5): 1-13] DOI: 10.13870/j.cnki.stbcxb.2020.05.001
[10] GUDINO-ELIZONDO N, BIGGS T W, CASTILLO C, et al. Measuring ephemeral gully erosion rates and topographical thresholds in an urban watershed using unmanned aerial systems and structure from motion photogrammetric techniques [J]. Land Degradation and Development, 2018, 29(6): 1896-1905. DOI: 10.1002/ldr.2976
[11] VANMAERCKE M, POESEN J, VAN MELE B, et al. How fast do gully headcuts retreat? [J]. Earth-Science Reviews, 2016, 154: 336-355. DOI: 10.1016/j.earscirev.2016.01.009
[12] 张光辉, 杨扬, 符素华, 等. 切沟侵蚀预报研究进展与展望[J]. 地球科学进展, 2022, 37(6): 551-562. [ZHANG Guanghui, YANG Yang, FU Suhua, et al. Advances and prospects of gully erosion prediction [J]. Advances in Earth Science, 2022, 37(6): 551-562] DOI: 10.11867/j.issn.1001-8166.2022.032
[13] POESEN J, NACHTERGAELE J, VERSTRAETEN G, et al. Gully erosion and environmental change: Importance and research needs [J]. Catena, 2003, 50(2-4): 91-133. DOI: 10.1016/s0341-8162(02)00143-1
[14] POESEN J W A, TORRI D B, VANWALLEGHEM T. Gully erosion: Procedures to adopt when modelling soil erosion in landscapes affected by gullying [J]. Handbook of Erosion Modelling, 2011, 4(19): 360-386. DOI: 10.1002/9781444328455.ch19
[15] TORRI D, POESEN J. A review of topographic threshold conditions for gully head development in different environments [J]. Earth-Science Reviews, 2014, 130: 73-85. DOI: 10.1016/j.earscirev.2013.12.006
[16] TANG Jie, XIE Yun, LIU Chuan, et al. Effects of rainfall characteristics and contour tillage on ephemeral gully development in a field in northeastern China [J]. Soil and Tillage Research, 2022, 218: 105312. DOI: 10.1016/j.still.2021.105312
[17] 胡刚, 伍永秋. 发生沟蚀(切沟)的地貌临界研究综述[J]. 山地学报, 2005, 23(5): 565-570. [HU Gang, WU Yongqiu. Progress in the study of geomorphic threshold theory in channel(gully)erosion [J]. Mountain Research, 2005, 23(5): 565-570] DOI: 10.3969/j.issn.1008-2786.2005.05.008
[18] 胡刚, 伍永秋, 刘宝元, 等. 东北漫川漫岗黑土区浅沟和切沟发生的地貌临界模型探讨[J]. 地理科学, 2006, 26(4): 4449-4454. [HU Gang, WU Yongqiu, LIU Baoyuan, et al. Geomorphic threshold model for ephemeral gully incision in rolling hills with black soil in northeast China [J]. Scientia Geographica Sinica, 2006, 26(4): 4449-4454] DOI: 10.13249/j.cnki.sgs.2006.04.449
[19] VANDEKERCKHOVE L, POESEN J, WIJDENES D O, et al. Thresholds for gully initiation and sedimentation in Mediterranean Europe [J]. Earth Surface Processes and Landforms, 2000, 25(11): 1201-1220. DOI: 10.1002/1096-9837(200010)25:11<1201::aid-esp131>3.0.co; 2-l
[20] MORGAN R P C, MNGOMEZULU D. Threshold conditions for initiation of valley-side gullies in the Middle Veld of Swaziland [J]. Catena, 2003, 50(2-4): 401-414. DOI: 10.1016/S0341-8162(02)00129-7
[21] VERACHTERT E, VAN DEN EECKHAUT M, POESEN J, et al. Factors controlling the spatial distribution of soil piping erosion on loess-derived soils: A case study from central Belgium [J]. Geomorphology, 2010, 118(3): 339-348. DOI: 10.1016/j.geomorph.2010.02.001
[22] 李斌兵, 郑粉莉, 张鹏. 黄土高原丘陵沟壑区小流域浅沟和切沟侵蚀区的界定[J]. 水土保持通报, 2008, 28(5): 16-20. [LI Binbing, ZHENG Fenli, ZHANG Peng. Geomorphic threshold determination for ephemeral gully and gully erosion areas in the loess hilly gully region [J]. Bulletin of Soil and Water Conservation, 2008, 28(5): 16-20] DOI: 10.13961/j.cnki.stbctb.2008.05.016
[23] CHENG Hong, ZOU Xueyong, WU Yongqiu, et al. Morphology parameters of ephemeral gully in characteristics hillslopes on the Loess Plateau of China [J]. Soil and Tillage Research, 2007, 94(1): 4-14. DOI: 10.1016/j.still.2006.06.007
[24] 刘欣, 王春梅, 庞国伟, 等. 基于坡度—汇水面积关系的黄土浅沟与切沟沟头形成敏感区模拟[J]. 山地学报, 2020, 38(5): 658-67. [LIU Xin, WANG Chunmei, PANG Guowei, et al. Sensitive area simulation of ephemeral and permanent gullies based on slope-area relationship in the loess region [J]. Mountain Research, 2020, 38(5): 658-667] DOI: 10.16089/j.cnki.1008-2786.000543
[25] DUBE H B, MUTEMA M, MUCHAONYERWA P, et al. A global analysis of the morphology of linear erosion features [J]. Catena, 2020, 190(2): 104542. DOI: 10.1016/j.catena.2020.104542
[26] VANMAERCKE M, PANAGOS P, VANWALLEGHEM T, et al. Measuring, modelling and managing gully erosion at large scales: A state of the art [J]. Earth-Science Reviews, 2021, 218(6): 103637. DOI: 10.1016/j.earscirev.2021.103637
[27] LIU Xin, GUO Mingming, ZHANG Xingyi, et al. Morphological characteristics and volume estimation model of permanent gullies and topographic threshold of gullying in the rolling hilly Mollisols region of northeast China [J]. Catena, 2023, 231(9): 107323. DOI: 10.1016/j.catena.2023.107323
[28] CHENG Hong, WU Yongqiu, ZOU Xueyong, et al. Study of ephemeral gully erosion in a small upland catchment on the Inner-Mongolian Plateau [J]. Soil and Tillage Research, 2006, 90(1-2): 184-193. DOI: 10.1016/j.still.2005.09.006
[29] GUAN Yabing, YANG Shengtian, ZHAO Changsen, et al. Monitoring long-term gully erosion and topographic thresholds in the marginal zone of the Chinese Loess Plateau [J]. Soil and Tillage Research, 2021, 205: 104800. DOI: 10.1016/j.still.2020.104800
[30] 刘欣. 基于地形指标的黄土高原坡面侵蚀沟发生与空间分异研究[D]. 西安: 西北大学, 2021: 1-69. [LIU Xin. Research on occurrence and spatial differentiation of hillslope erosion gullies based on topographic indexes in Loess Plateau [D]. Xi'an: Northwest University, 2021: 1-69] DOI: 10.27405/d.cnki.gxbdu.2021.001838
[31] 刘元保. 黄土高原坡面沟蚀的危害及其发生发展规律[D]. 杨凌: 中国科学院西北水土保持研究所, 1984: 1-89. [LIU Yuanbao. Harm and developmental patterns of gully erosion on Loess Plateau slopes [D]. Yangling: Institute of Soil and Water Conservation, Chinese Academy of Sciences, 1984: 1-89]
[32] ZHANG Chunmei, WANG Chunmei, LONG Yongqing, et al. Comparative analysis of gully morphology extraction suitability using unmanned aerial vehicle and google earth imagery [J]. Remote Sensing, 2023, 15(17): 4302. DOI: 10.3390/rs15174302
[33] 张春妹, 董亚维, 王春梅, 等. 黄河中游中等流域切沟空间分异规律研究[J]. 农业资源与环境学报, 2023, 40(2): 358-371. [ZHANG Chunmei, DONG Yawei, WANG Chunmei, et al. Study on the spatial differentiation patterns of gullies in the middle scale watershed of the middle reaches of Yellow River [J]. Journal of Agricultural Resources and Environment, 2023, 40(2): 358-371] DOI: 10.13254/j.jare.2022.0170
[34] PATTON P C, SCHUMM S A. Gully erosion, Northwestern Colorado: A threshold phenomenon [J]. Geology, 1975, 3(2): 88-90. DOI: 10.1130/0091-7613(1975)3<88:GENCAT>2.0.CO; 2
[35] 李浩, 杨薇, 刘晓冰, 等. 沟蚀发生的地貌临界理论计算中数据获取方法及应用[J]. 农业工程学报, 2019, 35(18): 127-133. [LI Hao, YANG Wei,LIU Xiaobing,et al. Data obtained method and application for topographic threshold theory calculation of gully initiation [J]. Transactions of the Chinese Society of Agricultural Engineering, 2019, 35(18): 127-133] DOI: 10.11975/j.issn.1002-6819.2019.18.016
[36] LI Yong, MO Yaqi, ARE K S, et al. Sugarcane planting patterns control ephemeral gully erosion and associated nutrient losses: Evidence from hillslope observation [J]. Agriculture Ecosystems and Environment, 2021, 309(12): 107289. DOI: 10.1016/j.agee.2020.107289
[37] LIU Gang, ZHENG Fenli, WILSON G V, et al. Three decades of ephemeral gully erosion studies [J]. Soil and Tillage Research, 2021, 212(39-41): 105046. DOI: 10.1016/j.still.2021.105046
[38] HAYAS A, POESEN J, VANWALLEGHEM T. Rainfall and vegetation effects on temporal variation of topographic thresholds for gully initiation in mediterranean cropland and olive groves [J]. Land Degradation and Development, 2017, 28(8): 2540-2552. DOI: 10.1002/ldr.2805
[39] TORRI D, SANTI E, MARIGNANI M, et al. The recurring cycles of biancana badlands: Erosion, vegetation and human impact [J]. Catena, 2013, 106(1): 22-30. DOI: 10.1016/j.catena.2012.07.001
[40] LI Zhenwei, ZHANG Guanghui, GENG Ren, et al. Rill erodibility as influenced by soil and land use in a small watershed of the Loess Plateau, China [J]. Biosystems Engineering, 2015, 129(11): 248-257. DOI: 10.1016/j.biosystemseng.2014.11.002
[41] POESEN J. Soil erosion in the Anthropocene: Research needs [J]. Earth Surface Processes and Landforms, 2018, 43(1): 64-84. DOI: 10.1002/esp.4250
[42] 李勉, 姚文艺, 陈江南, 等. 草被覆盖下坡沟系统坡面流能量变化特征试验研究[J]. 水土保持学报, 2005, 19(5): 15-19. [LI Mian, YAO Wenyi, CHEN Jiangnan, et al. Experimental study on changeable characteristics of runoff energy in hillslope-gully slope erosion system with different grass coverage [J]. Journal of Soil and Water Conservation, 2005, 19(5): 15-19] DOI: 10.3321/j.issn:1009-2242.2005.05.004
[43] 艾建卫, 高照良, 娄永才, 等. 含沙量对高陡边坡径流水动力学特性的影响[J]. 水土保持研究, 2023, 30(4): 75-82. [AI Jianwei, GAO Zhaoliang, LOU Yongcai, et al. Effects of sediment concentrationon hydrodynamic characteristics of runoff on high and steep slope [J]. Research of Soil and Water Conservation, 2023, 30(4): 75-82] DOI: 10.13869/j.cnki.rswc.2023.04.016
[44] 罗榕婷, 张光辉, 曹颖. 坡面含沙水流水动力学特性研究进展[J]. 地理科学进展, 2009, 28(4): 567-574. [LUO Rongting, ZHANG Guanghui, CAO Ying. Progress in the research of hydrodynamic characteristics of sediment-laden overland flow [J]. Progress in Geography, 2009, 28(4): 567-574] DOI: 10.11820/dlkxjz.2009.04.012
[45] 崔钦凯, 刘俊娥, 陈浩, 等. 草被覆盖、雨强和坡度对黄土坡面径流含沙量的影响[J]. 水土保持学报, 2023, 37(5): 40-47. [CUl Qinkai, LlU Jun'e, CHEN Hao, et al. Influence of grass coverage, rain intensity and slope on sediment concentration of runoff on loess slope [J]. Journal of Soil and Water Conservation, 2023, 37(5): 40-47] DOI: 10.13870/j.cnki.stbcxb.2023.05.005
[46] ARABAMERI A, CERDA A, PRADHAN B, et al. A methodological comparison of head-cut based gully erosion susceptibility models: Combined use of statistical and artificial intelligence [J]. Geomorphology, 2020, 359(7): 107136. DOI: 10.1016/j.geomorph.2020.107136
[47] ZHAO Yiyang, ZHANG Yan, YUAN Mutian, et al. Estimation of initiation thresholds and soil loss from gully erosion on unpaved roads on China's Loess Plateau [J]. Earth Surface Processes and Landforms, 2021, 46(9): 1713-1724. DOI: 10.1002/esp.5102