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A small portable rainfall simulator for reproducible experiments on soil erosion
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 1532217
Author(s) Iserloh, T.; Fister, W.; Seeger, M.; Willger, H.; Ries, J. B.
Author(s) at UniBasel Fister, Wolfgang
Year 2012
Title A small portable rainfall simulator for reproducible experiments on soil erosion
Journal Soil & tillage research
Volume 124
Pages / Article-Number 131-137
Keywords Rainfall simulation, Runoff, Drop size, Drop velocity, Kinetic energy, Spatial rainfall distribution
Abstract The importance of distinguishing and discretely studying the subprocesses of runoff generation and erosion has led to the development of rainfall simulations on small plots. We methodically upgraded a small portable rainfall simulator with particular respect to (1) rainfall characteristics that include homogeneous spatial rainfall distribution and drop spectrum, (2) handling, and (3) control of test conditions. We measured simulator characteristics with rain gauges, calibration plate and Laser Precipitation Monitor by Thies (LPM). The upgraded small rainfall simulator, and measurements of the improved rainfall characteristics are presented in this paper.The upgraded configuration shows the desired improvements: regarding drop size distribution, a close relationship to natural rainfall (Marshall & Palmer Distribution) can be observed. Due to low fall heights, measured drop fall velocities are slow; maximum velocities range between 3.4 and 5 m s1. Mean kinetic energy expenditure, mean kinetic energy per unit area and unit depth of rainfall and mean momentum are 214 J m2 h1, 5.8 J m2 mm1 and 0.016 kg m s1, respectively. The spatial rainfall distribution of the upgraded simulator is homogenous with a Christiansen-Uniformity Coefficient of 91%. The measured variables show extremely low variation throughout all tests and should therefore be reproducible in field investigations at any time.
Publisher Elsevier
ISSN/ISBN 0167-1987
edoc-URL http://edoc.unibas.ch/dok/A6070672
Full Text on edoc No
Digital Object Identifier DOI 10.1016/j.still.2012.05.016
ISI-Number WOS:000309015800016
Document type (ISI) Article
 
   

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