期刊文献+

坡面薄层水流的土壤分离实验研究 被引量:34

Soil detachment by shallow flow on slopes
在线阅读 下载PDF
导出
摘要 土壤分离是土壤侵蚀的重要过程之一。准确预测土壤分离对完善土壤侵蚀物理模型具有重要意义。利用变坡水槽实验测试了土壤分离速率与坡度和流量的关系 ,并与水流剪切力、水流功率和单位水流功率三种水动力参数进行比较 ,结果表明 :土壤分离速率随着坡度和流量的增加而线性增加 ;当流量小于某一临界流量时 ,土壤分离将不发生 ;利用坡度和流量回归的线性模型能准确预测土壤分离速率 ;在水流剪切力、水流功率和单位水流功率三个水力参数之间 ,水流功率是描述土壤分离速率的最好参数 ;比较坡度 -流量模型与水流功率模型 ,认为坡度 -流量模型更具有实用性和可操作性。 Soil detachment is one of the most important components of soil erosion process. A precise prediction of this component is significant to the development of physical based erosion model. In this paper, the relationship between soil detachment rate and slope, flow rate, shear stress, stream power and unit stream power was discussed. The experimental results showed that soil detachment rates would be predicted by a linear function of flow rate and slope. Soil detachment does not occur until flow reaches a critical rate. Among shear stress, stream power and unit stream power, stream power is best related to soil detachment rate. Compared with stream power model, slope-flow rate model is more applicable and easier to operate.
出处 《农业工程学报》 EI CAS CSCD 北大核心 2003年第6期52-55,共4页 Transactions of the Chinese Society of Agricultural Engineering
基金 国家自然科学基金项目 (40 0 0 1 0 1 4 )
关键词 薄层水流 土壤分离 水动力参数 shallow flow soil detachment hydrodynamic parameter
  • 相关文献

参考文献2

二级参考文献16

  • 1[1]Beaseley D B,Huggins L F,Monke E J.ANSWERS:A model for water planning.Trans.of ASAE,1980,23:938~944
  • 2[2]Mogan R P C,Morgan D D V,Finney H J.A predictive model for the assessment of soil erosion risk.J.Agr.Eng.Res.,1984,30:245~253
  • 3[3]Nearing M A,Forster G,Lane L J,Finkner S C.A Process-based soil erosion model for USDA-watererosion prediction project technology.Trans.of ASAE,1989,32(5):1587~1593
  • 4[4]Elliot W J,Laflen J M.A process-based rill erosion model.Trans.of ASAE,1993,36(1):65~72
  • 5[5]Abrahams A D,Gang L,Parsons A J.Rill hydraulics on a semiarid hillslope,southern Arizona.Earth Surface Processes and Landforms,1996,21:35~47
  • 6[6]Gilley J E,Kottwitz E R,Simanton J R Hydraulic characteristics of rills.Trans.of ASAE,1990,33:1900~1906
  • 7[7]Moss A J.Thin-flow transportation of solids in arid and non-arid areas:A comparison.IAHS-AISH Publ.,1979,128:435~445
  • 8[8]Foster G R,Huggins L F,Meyer L D.A laboratory study of rill hydraulics:I.Velocity relationship.Trans.of ASAE,1984,27(3):790~796
  • 9[9]Shen H W.In Sedimentation:Symposium to Honor Professor H.A.Einstein,Fort Collins,CO:Colorado State Univ.,1975,12.1~12.19
  • 10[10]Huang Chi-hua,Bradford J M,Laflen J M.Evaluation of detachment-transport coupling concept in the WEPP rill erosion equation.Soil Sci.Soc.Am.J.,1996,60:734~739

共引文献132

同被引文献418

引证文献34

二级引证文献411

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部