DocumentCode
2825263
Title
Development of a particulate collection instrument for soil wind erosion in the near surface layer
Author
Hai, Chun-Xing ; Liu, Bao-yuan ; Zhao, Ye ; Wang, Jing ; Zhou, Rui-Rong ; Fang, Yi
Author_Institution
Coll. of Geogr. Sci., Inner Mongolia Normal Univ., Hohhot, China
fYear
2011
fDate
15-17 July 2011
Firstpage
7295
Lastpage
7298
Abstract
Wind erosion, a primary cause of soil degeneration, is a problem in arid and semiarid areas throughout the world. Although many methods are available to study soil erosion, there are no effective methods for obtaining quantitative measurements in the field. To address this issue, we developed a new instrument for measuring sand flow, in particular the near-surface sediment distribution of dust weight. The technique also analyzes dust particle size, composition, and organic matter content. In this paper, we describe the construction and underlying principles of this particle collection instrument, which calculates the sand content of per unit volume of air at different heights from the ground. Field experiments are performed using the instrument, and the data are analyzed. Through the collection and measurements of wind erosion particulates in the near surface (0-2m), we found that as the altitude increased from ground level, the content of these materials in the atmosphere was gradually reduced, the particles became thinner, and the amount of organic residue significantly decreased. This method provides a meaningful contribution to the quantitative research of near surface sediment runoff and wind erosion, and has scientific significance for determining the intensity of sediment transport.
Keywords
atmospheric boundary layer; atmospheric measuring apparatus; atmospheric techniques; dust; hydrology; sand; sediments; soil; wind; dust particle size; dust weight; near surface layer; near surface sediment runoff; near-surface sediment distribution; organic matter content; organic residue; particle collection instrument; particulate collection instrument; sand content; sand flow; sediment transport; semiarid area; soil degeneration; soil wind erosion; wind erosion particulates; Atmospheric measurements; Electron tubes; Instruments; Sediments; Soil; Wind; Particles collection instrument; Sand flow; Wind erosion;
fLanguage
English
Publisher
ieee
Conference_Titel
Mechanic Automation and Control Engineering (MACE), 2011 Second International Conference on
Conference_Location
Hohhot
Print_ISBN
978-1-4244-9436-1
Type
conf
DOI
10.1109/MACE.2011.5988733
Filename
5988733
Link To Document