DocumentCode
2005487
Title
Estimation of RUSLE EI30 based on 10 min interval rainfall data and GIS-based development of rainfall erosivity maps for Hitotsuse basin in Kyushu Japan
Author
Santosa, Purnama B. ; Mitani, Yasuhiro ; Ikemi, Hiro
Author_Institution
Dept. of Civil & Struct. Eng., Kyushu Univ., Fukuoka, Japan
fYear
2010
fDate
18-20 June 2010
Firstpage
1
Lastpage
6
Abstract
Land erosion is regarded as one of the most important phenomenon causes land degradation. In revised universal soil loss equation (RUSLE) erosion model, rainfall erosivity factor (R) is one of the important parameters. Ideally, the calculation of EI30 (R factor) uses breakpoint rainfall intensity data which is calculated manually from graphical charts that are generated by continuously recording rain gauges. However, due to limited availability of breakpoint rainfall data, many simple methods for estimating EI30 have been developed by using yearly, monthly and daily rainfall data. In this research, due to limited data availability, pluviograph data at 10 minute interval from eight stations in Hitotsuse basin were used to compute EI30 (R factor) for RUSLE. The approach used in this research is based on storm rainfall and duration data from 1990 to 2009. This method is based on the calculation of rainfall energy per unit depth of rainfall, total storm kinetic energy (E), rainfall intensity for a particular increment of a rainfall, and maximum 30 minute rainfall intensity. Furthermore, EI30 were computed, and then GIS method was used to create rainfall erosivity maps. The annual rainfall erosivity values prediction model was developed based on MFI values.
Keywords
erosion; geographic information systems; rain; soil; AD 1990 to 2009; GIS; Hitotsuse basin; Kyushu Japan; RUSLE EI30 estimation; RUSLE erosion model; graphical chart; land degradation; land erosion; rainfall data; rainfall erosivity factor; rainfall erosivity map; revised universal soil loss equation; storm rainfall; time 10 min; Correlation; Indexes; Interpolation; Mathematical model; Rain; Soil; Storms; RUSLE; erosivity maps; land erosion;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoinformatics, 2010 18th International Conference on
Conference_Location
Beijing
Print_ISBN
978-1-4244-7301-4
Type
conf
DOI
10.1109/GEOINFORMATICS.2010.5568195
Filename
5568195
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