Quick Search
Adv Search
Home
|
About Journal
|
Editorial Board
|
Instruction
|
Subscription
|
Message
|
Contact
Chinese
2010
,
Vol. 8
Issue (2)
:
117-124
DOI
:
Articles
Current Issue
|
Next Issue
|
Archive
|
Adv Search
<<
[an error occurred while processing this directive]
| [an error occurred while processing this directive]
>>
Advance in researches on slop length factor in Universal Soil Loss Equation
Abstract
Reference
Related Articles
Download:
PDF
(414KB)
HTML
KB
Export:
BibTeX
or
EndNote
(RIS)
Supporting Info
Abstract
Service
Email this article
Add to my bookshelf
Add to citation manager
Email Alert
RSS
Articles by authors
QIN Wei
SHU Qing-Ke
ZHANG Yan-
Keywords
��
Cite this article:
QIN Wei, SHU Qing-Ke, ZHANG Yan- .Advance in researches on slop length factor in Universal Soil Loss Equation[J] , 2010,V8(2): 117-124
URL:
http://www.sswcc.org//EN/
or
http://www.sswcc.org//EN/Y2010/V8/I2/117
[1]
Wischmeier W H.Smith D D
Predicting rainfall erosion losses from cropland east of the Rocky Mountains:a guide for selection of practices for soil and water conservation.United States Department of Agriculture
1965
[2]
Renard K.Foster G R.Weesies G A
RUSLE:Revised universal soil loss Equation
1991(1)
[3]
Moore I D.Wilson J P
Length-slope factors for the revised universal soil loss equation:simplified method of estimation
1992(5)
[4]
Wischmeier W H.Smith D D
Predicting rainfall erosion losses:a guide to conservation planting
1978
[5]
Renard K G.Foster G R.Weesies G A
Predicting Soil Erosion by Water:a guide to conservation planning with the revised universal.United States Department of Agriculture
1997
[6]
Smith D D.Wischmeier W H
Factor affecting sheet and rill erosion
1957
[7]
Morgan R P C
Soil erosion and conservation
1986
[8]
Zingg A W
Degree and length of land slope ad it affects soil loss in runoff
1940(2)
[9]
Zachar D
Soil Erosion
1982
[10]
King L Y
The uniformitarian nature of hillslopes
1957(17)
[11]
�����ƺӹ��̾�
�����������µع��徶����Һ�徶���γɹ��̵ij����о�
1957(12)
[12]
������.����.��ǿ��
������ԭ�ִ���ʴ������
1988
[13]
������
���ͤ��ʳ������ʴ����Ұ��۲⼰������������
1958(2)
[14]
���ű�.������.���ɻ�
137Cs���ⶨ�����ũ����������ʴ��̽
1988(5)
[15]
������
������ʴ�����еĵ�ò�ٽ�
1987(10)
[16]
��ǿ��
�³���������ʴ��ɳ�����е�����
1989(4)
[17]
Musgrave G W
The quantitative evaluation of factors in water erosion:A first approximation
1947(3)
[18]
Wischmeier W H.Smith D D.Uhland R E
Evaluation of factors in the soil-loss equation
1958
[19]
Mutchler C K.Greer J D
Effect of slope length on erosion from low slopes
1980(4)
[20]
Meyer L D.Foster G R.Romkens M J M
Source of soil eroded by water from upland slopes[J].Present and prospective technology for predicting sediment yields and sources
1975
[21]
Foster G R.Meyer L D
Mathematical simulation of upland erosion by fundamental erosion mechanics Present and prospective technology for predicting sediment yields and sources
1975
[22]
McCool D K.Foster G R.Mutchler C K
Revised Slope Length Factor for the Universal Soil Loss Equation
1989(5)
[23]
Foster G R.Wischmeier W H
Evaluating irregular slopes for soil loss prediction
1974
[24]
���ܿ�.���廪.¬����
������ʡ������ʧ���̵��о�
1992(4)
[25]
������.����.�����
�ɱ���ɽ�������¸���������ʧ���̵Ľ���
1997(6)
[26]
IJ����.����ö
������ʴ������ʧԤ�����̵ij����о�
1983(6)
[27]
������.����Ӣ
������ԭ������ʧԤ�������н�����ʴ���͵������ӵ��о�
1988(7)
[28]
������.��־ΰ.��־
����͵����������µ�ˮ����ʧ��ϵ���о�
1992
[29]
����ƽ.ʷ���
�ƺӻʸ�������������ʴϵͳģ�ͺ�����ģʽ
1992
[30]
Zhao X G.Wu F Q.Liu B Z
Analysis of runoff and soil loss on the gentle fallow slope land in gully region of loess plateau
1999
[31]
Liu B Y.Nearing M A.Shi P J
Slope length effects on soil loss for steep slopes
2000
[32]
����.¬��¡.����
������������ʧԤ���о�
1993(4)
[33]
������
�ᶫ��ɽ���¸���������ʧ�����о�
1999(1)
[34]
������
��������ʴ�����Ե�������ֵ����ȡ
1988(2)
[35]
������.֣����.����
�й�����ˮʴԤ��ģ���о�
2005(4)
[36]
Lufafa A.Tenywa M M.Isabirye M
Prediction of soil erosion in a lake Victoria basin catchment using a GIS-based universal soil loss model
2003
[37]
Mitasova H.Mitas L
Modeling soil detachment with RUSLE 3d using GIS
1999
[38]
Desmet P J.Govers G
A GIS procedure for the automated calculation of the USLE LS factor on topographically complex landscape units
1996
[39]
Jain S K.Kumar S.Varghese J
Estimation of Soil Erosion for a Himalayan Watershed Using GIS Technique
2001(1)
[40]
����.�β�Ⱥ.����
����3S������С����ˮ����ʧ������ֵģ���붨���о�
2004(5)
[41]
�̳編.������.ʷ־��
Ӧ��USLEģ���������ϢϵͳIDRISIԤ��С����������ʴ�����о�
2000(2)
[42]
����.�ƾ���.���
GIS��RS֧���µ�������ʴģ��Ӧ���о�
2005(4)
[43]
��ΰ
����GIS��USLE��������ʴ����Ч���о�:������ʡ�����ز�����Ϊ��
2003
[44]
Ф����.֣����
�Ϸ���ˮ��ɳ��������ʴ���̵�Ӱ��
2003(3)
[45]
���ɲ�.������
GIS֧���µ�������ʴ������:�Խ���ʡ̩���ع�Ϫ��Ϊ��
1999(1)
[46]
����.������.����
GIS������������Ⱦ��������о�
2002(2)
[47]
��Ч��.ŷ��־��.Ф��
�й�ˮ����ʧ�����Էֲ����ɼ��������о�
2001(1)
[48]
��ҫ��.��־��
����GIS��С����ˮ����ʧң�ж�������о�
2006(1)
[49]
Fu G B.Chen S L.McCool D K
Modeling the impacts of no-till practice on soil erosion and sediment yield with RUSLE,SEDD,and ArcView GIS
2006
[50]
ʷ־��.�̳編.������
����GIS��RUSLE��С����ũ��ˮ�����ֹ滮�о�
2002(4)
[51]
Millward A A.Mersey J E
Adapting the RUSLE to model soil erosion potential in a mountainous tropical watershed
1999
[52]
Kinnell P I A
AGNPS-UM:applying the USLE-M within the agricultural non-point source pollution model
2000
[53]
��ΰ.�����.����
����GIS��RUSLE�Ļ�����ԭС����������ʴ����
2009(8)
[54]
Angimaa S D.Stott D E.O'Neill M K
Soil erosion prediction using RUSLE for central Kenyan highland conditions
2003
[55]
Hickey R.Smith A.Jankowski P
Slope length calculations from a DEM within ARC/INFO GRID
1994(5)
[56]
Van Remortel R D.Hamilton M E.Hickey R J
Estimating the LS factor for RUSLE through iterative slope length processing of digital elevation data within ArcInfo grid
2001(1)
[57]
Van Remortel R D.Maichlea R W.Hickey R J
Computing the LS factor for the Revised Universal Soil Loss Equation through array-based slope processing of digital elevation data using a C++ executable
2004
[58]
����.������.������
������ʧ��ң�м����GIS��Ԫ���������㷨���о�
1994(3)
[59]
����¼.�̺�
����դ��GIS������ʴ�������ӵ���ȡ�㷨
2006(5)
[60]
������.���ڿ�.��־��
����DEM��GIS������ͨ��������ʧ���̵�������ֵ����ȡ
2007(2)
[61]
�ⶫ��.������.��С��
����GIS��դ�����澶��·��ģ����LSֵ����
2002(5)
[62]
Freeman T G
Calculating catchment area with divergent flow based on a regular grid
1991
[63]
Fairfield J.Leymarie P
Drainage networks from grid digital elevation models
1991
1��
������, ������, ������, ��ά��, �¼���, �����.����������Ŀˮ������������ͨ������[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 1-
2��
Ƚ��,��ռ��,��־Ƽ,����,��ȫ��.���������ˮ�����ִ�ʩ��ɳЧ����Ӱ�����ع�ϵ����[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 1-6
3��
����,���ұ�.�ӻ�����ԭֲ��ָ�������л�ȡɭ�ָ�������Ϣ[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 7-12
4��
л��ϼ,���ڿ�,����,����Ƽ,����,�ӹ�ΰ.�Ӻ�����ˮ�����ִ�ʩ��ʴЧӦ����[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 13-19
5��
���ӹ�,������,ʷ����.�ƺ�������ɳ����״��������Դ��[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 20-26
6��
�ϻ���,������,����.������ܫ������ˮ����ʧ�ۺ�����ʽ[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 27-33
7��
����־,������,�ſ���.BP�������ڵ�·������������ģ���е�Ӧ��[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 34-38
8��
�Ų�,�Ž���,������,�����,֣��,«ٻ.�������̻��ֵ�����ˮ������Ĵ�ֱ�ֲ�[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 39-44
9��
Ф��,������,������.��������2���˹��ֵ��ص�����ѭ������[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 45-50
10��
���˲�,����,�Ŷ�,�ؿ���,�¾�,����,�ؾ�,����.������ɺ������ܺͲ��ҹ��Һ����̬����[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 51-56
11��
����,����.�Ⲽ��ɳĮ���ػ�Į����̬�仯����[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 57-60
12��
����,�籦��,����,�����,��־��.���ϵ����˸����ֵ�����ˮ����̬����[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 61-66
13��
������,���˲�.�˸��ݵ����������ֲ����ϵ�Ķ�̬�仯���䴹ֱ�ֲ�[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 67-72
14��
��ΰ��,���ڿ�,����,�,����.����������ʴ���������е��³����ӳ߶ȱ任����[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 73-78
15��
����,����,���Ҷ�,�����.ɽ��ʡ������ʴ������仯��������[J]. �й�ˮ�����ֿ�ѧ, 2010,8(4): 79-85
Copyright 2010 by