The morphological characteristics of gully systems and watersheds in Dry-Hot Valley, SW China

被引:0
作者
Zhen Xu [1 ]
Fachao Qin [1 ]
Bin Zhang [1 ]
Qingchun Deng [1 ]
Hui Liu [1 ]
Jie Jin [2 ]
Liangtao Shi [2 ]
机构
[1] School of Land and Resources, China West Normal University
[2] Tropical Eco-agriculture Institute, Yunnan Academy of Agricultural
关键词
D O I
暂无
中图分类号
P931.1 [流水地貌学、湿润地貌学];
学科分类号
摘要
Gully systems and watersheds are geomorphic units with clear boundaries that are relatively independent of basin landscapes and play an important role in natural geography. In order to explore the morphological characteristics of gully systems and watersheds in the Dry-Hot Valley [South West(SW) China], gullies are interpreted from online Google images with high resolution and watersheds are extracted from digital elevation model at a scale of 1:50,000. The results show that:(1) There are17,382 gullies(with a total area of 1141.66 km2) and 42 watersheds in the study area.(2) The average gully density of the study area(D) is 4.29 km/km2, gully frequency(F) is 14.39 gullies/km2, the branching ratio(B) is 5.13, the length ratio(L) is 3.12, and the coefficient of the main and tributary gullies(M) is 0.06. The degree of gully erosion isstrong to extremely strong, the main development intensity of gully erosion ranges from intense to moderate, and the type of gully system is tributary.(3) The watershed areas(A) are between 0.39 and 96.43 km2, the relief ratio(R) is from 0.10 to 0.19, the circularity ratio(C) is from 0.30 to0.83, the texture ratio(T) is from 0.82 to 39.35, and the dominant geomorphological texture type is fine.(4) There is a quantitative relationship between F and D:F = 0.624 D2(R =0.84) and T is closely related to D, F, M(R2[ 0.7). A,R and C are related to M(R2[ 0.5). The development of gully systems is the result of coupling effects between multiple factors. In this area, the degree of erosion and the condition of the main and tributary gullies can be controlled by the degree of topographic breakage in the watershed, which provides some theoretical basis for the evaluation of gully erosion by the latter. In addition, the scale, relief, and shape have a significant impact on the locations of the main and tributary gullies. For tributary gullies, attention should be paid to the interception and control of runoff and sediment in the small confluence branches in order to prevent gully expansion and head advance. These features can inform the development of targeted measures for the control of soil erosion.
引用
收藏
页码:854 / 866
页数:13
相关论文
共 18 条
  • [1] 安家沟流域坡沟系统坡面径流泥沙特征的研究
    曲富荣
    [J]. 安徽农学通报, 2017, 23 (10) : 148 - 150
  • [2] Morphology and controlling factors of the longitudinal profile of gullies in the Yuanmou dry-hot valley[J] DING Lin;QIN Fa-chao;FANG Hai-dong;LIU Hui;ZHANG Bin;SHU Cheng-qiang;DENG Qing-chun;LIU Gang-cai;YANG Qian-qian; Journal of Mountain Science 2017, 04
  • [3] 东北丘陵区沟蚀发展现状及影响因素分析
    许晓鸿
    隋媛媛
    张瑜
    欧洋
    罗莉莉
    李阳
    [J]. 土壤学报, 2014, 51 (04) : 699 - 708
  • [4] 晋西黄土丘陵沟壑区流域特征研究
    刘玲
    师忱
    孙江涛
    赵廷宁
    [J]. 干旱区资源与环境 , 2013, (04) : 146 - 152
  • [6] 黄土残塬区侵蚀沟道分类研究
    刘增文
    李雅素
    [J]. 中国水土保持, 2003, (09) : 32 - 34+50
  • [7] 陕北黄土高原沟道小流域形态特征分析[J] 陈浩 地理研究 1986, 01
  • [8] A gully erosion assessment model for the Chinese Loess Plateau based on changes in gully length and area[J] Zhen Li;Yan Zhang;Qingke Zhu;Song Yang;Hongjun Li;Huan Ma Catena 2017,
  • [9] Distributive directions of gully system in Yuanmou Dry-hot Valley[J] Hongli Mu;Qingchun Deng;Bin Zhang;Fachao Qin;Mingliang Luo;Hui Liu;Shoujiang Liu Arabian Journal of Geosciences 2015,
  • [10] Gully morphology; hillslope erosion; and precipitation characteristics in the Appalachian Valley and Ridge province; southeastern USA[J] Ingrid E. Luffman;Arpita Nandi;Tim Spiegel Catena 2015,