北京师范大学 水科学研究院,北京,100875
纸质出版:2016
移动端阅览
杨帆, 潘成忠. 黄土丘陵沟壑区多年生草地的保水固土效益[J]. 水土保持通报, 2016,36(2):300-306.
YANG Fan, PAN Chengzhong. Effects of Perennial Grassland on Soil and Water Conservation in Hilly Region of Loess Plateau[J]. Bulletin of Soiland Water Conservation, 2016, 36(2): 300-306.
杨帆, 潘成忠. 黄土丘陵沟壑区多年生草地的保水固土效益[J]. 水土保持通报, 2016,36(2):300-306. DOI: 10.13961/j.cnki.stbctb.2016.02.056.
YANG Fan, PAN Chengzhong. Effects of Perennial Grassland on Soil and Water Conservation in Hilly Region of Loess Plateau[J]. Bulletin of Soiland Water Conservation, 2016, 36(2): 300-306. DOI: 10.13961/j.cnki.stbctb.2016.02.056.
[目的
]
探究草被在不同生长年限和不同降雨类型下的保水固土效益
为黄土区进一步开展生物水保措施提供理论依据。[方法
]
以绥德水土保持科学试验站辛店沟平沟墕苜蓿、草木樨和农地标准径流场1956-1960年汛期总降雨和汛期40场次降雨产流产沙监测数据为基础进行分析研究。[结果
]
(1) 各观测年汛期总径流量和总产沙量大小顺序均为:牧草地
<
农地
以农地为参照
苜蓿和草木樨径流场减水效益分别为20%~83%和11%~88%
二者减沙效益基本保持在50%以上;(2) 采用K-Means聚类分析法
以次降雨量和最大30分钟雨强(I
30
)为聚类条件
将40场次降雨事件划分为雨量大雨强低的Ⅰ型、雨量小雨强大的Ⅲ型以及中等雨量中等雨强Ⅱ型。各径流场在Ⅲ雨型下产流产沙量最大
两种牧草地在Ⅱ雨型下减水效益最佳;(3) 两种牧草地减水减沙效益随生长年限的变化而变化
且各径流场减水减沙效益主要受Ⅲ雨型影响
该雨型下牧草地减水效益随生长年限的增加而增加
减沙效益随生长年限先减小后增加。[结论
]
两种牧草均具有较好的减水减沙效益
而其减水减沙效益与雨型具有密切关系
不同时期
草地减水减沙效益并非同步。
[Objective] The effects of perennial grassland with different growing years and rainfall regimes on soil and water conservation were analyzed to provide a theoretical basis for the further development of biological engineering measures in hilly region of the Loess Plateau. [Methods] Data of total runoff sediment yield and 40 rainfall events collected from Suide Soil and Water Conservation Station from 1956 to 1960 were used to analyze the effects of perennial grassland on soil and water conservation in hilly region of the Loess Plateau. [Results] (1) The observed total runoff and erosion modulus of grasslands were smaller than those of farmlands. Runoffs of alfalfa and Melilotus decreased 20%~83% and 11%~88% respectively
as compared with the corresponding values of farmlands. Sediment reductions of grassland and farmlands were both more than 50%. (2) Based on K-Means clustering
40 rainfall events were classified into three rainfall regimes according to the amount and intensity(30 min) of rainfall: regime Ⅰ had the characteristics of high rainfall
low intensity and occurred infrequently; regime Ⅱ had the features of medium rainfall
medium intensity and medium frequent occurrence; regime Ⅲ had the features of less rainfall
high intensity and high frequent occurrence. A large proportion of runoff and soil loss was caused by rainfall regime Ⅲ. Water reduction of grasslands was observed the best in regime Ⅱ of the three regimes. (3) Under regime Ⅲ
the benefit of water reduction increased with the increase of grass growth period
and soil reduction was small in earlier growth years and then increased afterwards. [Conclusion] Grasslands grew with the two grasses both had the benefits of water and soil reduction. The benefit were closely linked with rainfall regime. The benefit of water reduction and soil reduction were not always coincided.
Fattet M, Fu Y, Ghestem M, et al. Effects of vegetation type on soil resistance to erosion:Relationship between aggregate stability and shear strength[J]. Catena, 2011,87(1):60-69.
李勇,朱显谟,田积莹.黄土高原植物根系提高土壤抗冲性的有效性[J].科学通报,1991(12):935-938.
字淑慧,吴伯志,段青松.不同草带对坡耕地土壤侵蚀的影响[J].水土保持学报,2005,19(5):41-44.
张兴昌,邵明安,黄占斌,等.不同植被对土壤侵蚀和氮素流失的影响[J].生态学报,2000,20(6):1038-1044.
吴钦孝,赵鸿雁.植被保持水土的基本规律和总结[J].水土保持学报,2001,15(4):13-15.
Pan Chengzhong, Shangguan Zhouping, Lei Tinwu. Influences of grass and moss on runoff and sediment yield on sloped loess surfaces under simulated rainfall[J]. Hydrological Processes, 2006,20(18):3815-3824.
李蕾,刘黎明,谢花林.退耕还林还草工程的土壤保持效益及其生态经济价值评估:以固原市原州区为例[J].水土保持学报,2004,18(1):161-163.
Sun Wenyi, Shao Quanqin, Liu Jiyuan, et al. Assessing the effects of land use and topography on soil erosion on the Loess Plateau in China[J]. Catena, 2014,121(1):151-163.
Jiang Wenying, Cheng Yufen, Yang Xiaoxiao, et al. Chinese Loess Plateau vegetation since the last glacial maximum and its implications for vegetation restoration[J]. Journal of Applied Ecology, 2013.50(2):440-448.
闫晓玲.黄土高塬沟壑区两种牧草蓄水保土效果试验[J].人民黄河,2012,34(4):81-83.
李正民,舒惠玲,樊水根,等,红壤岗地上种草经济与生态效益研究[J].四川草原,1996,9(4):10-15.
Chengzhong Pan, Lan Ma, Zhouping Shangguan. Determining the sediment trapping capacity of grass filter strips[J]. Journal of Hydrology, 2011,405(1/2):209-216.
Pan Chengzhong, Shangguan Zhouping. Runoff hydraulic characteristics and sediment generation in sloped grassplots under simulated rainfall conditions[J]. Journal of Hydrology, 2006,331(1/2):178-185.
晏清洪,原翠萍,雷廷武,等.降雨类型和水土保持对黄土区小流域水土流失的影响[J].农业机械学报,2014,45(2):169-175.
李广,黄高宝.雨强和土地利用方式对黄土丘陵区水土流失的影响[J].农业工程学报,2009,25(11):85-90.
李强,刘国彬,许明祥,等,黄土丘陵区撂荒地土壤抗冲性及相关理化性质[J].农业工程学报,2013,29(10):153-159.
戴全厚,刘国彬,翟胜,等.侵蚀环境退耕撂荒地水稳性团聚体演变特征及土壤养分效应[J].水土保持学报,2007,21(2):61-64.
Erik C, van Rens B, Annemieke K. Vegetation succession and its consequences for slope stability in SE Spain[J]. Plant and Soil, 2005.278(1/2):135-147.
曾光,杨勤科,姚志宏.黄土丘陵沟壑区不同土地利用类型土壤抗侵蚀性研究[J].水土保持通报,2008,28(1):6-9.
潘成忠,上官周平,牧草对坡面侵蚀动力参数的影响[J].水利学报,2005,36(3):371-377.
Baets S D, Poesen J, Gyssels G, et al. Effects of grass roots on the erodibility of topsoils during concentrated flow[J]. Geomorphology, 2006,76(1/2):54-67.
Li Yushan, Huang Mingbin. Pasture yield and soil water depletion of continuous growing alfalfa in the Loess Plateau of China[J]. Agriculture, Ecosystems & Environment, 2008,124(1/2):24-32.
Baets S D, Poesen J, Knapen A, et al. Impact of root architecture on the erosion-reducing potential of roots during concentrated flow[J]. Earth Surface Processes and Landforms, 2007,32(9):1324-1345.
0
浏览量
1387
下载量
5
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621