EarthRef.org Reference Database (ERR)
Development and Maintenance by the EarthRef.org Database Team

Detailed Reference Information
Mohanty et al. 1994
Mohanty, B.P., Ankeny, M.D., Horton, R. and Kanwar, R.S. (1994). Spatial analysis of hydraulic conductivity measured using disc infiltrometers. Water Resources Research 30: doi: 10.1029/94WR01052. issn: 0043-1397.

Spatial variability of surface hydraulic properties and the extrinsic (e.g., traffic, cropping, etc.) and intrinsic (e.g., soil type, pore size distribution, etc.) factors associated with these properties are important for infiltration and runoff processes in agricultural fields. Disc infiltrometers measured infiltration at 296 sites arrange on two parallel transects. To examine and differentiate the factors contributing to spatial structure under different field conditions these measurements were made in the corn rows, no-track interrows, and wheel track interrows of the fields using four different soil water tensions &PSgr; (0, 30, 60, and 150 mm). Unsaturated hydraulic conductivity (K) and saturated hydraulic conductivity (Ks) were maximum in the corn rows and minimum in wheel track interrows, with no-track interrows intermediate. Exponents (&agr; parameters) and Ks and K relationships (K=Ks exp-&agr;&PSgr;) for corn rows and no-track interows were not significantly different from each other but were significantly different from &agr; for the wheel track interrows at P=0.01 level. Spatial variability of K and Ks values showed some pseudoproportional effect in nugget variance for all three field conditions.

No-track interrows clearly showed an inverse trend for semivariogram of K with changing tension (&PSgr;) values, whereas differences were found for corn rows and wheel traffic interrows. The spatial structure of &agr; for all three field conditions were mostly white noise. Under corn rows, in addition to random variation, a small five-row traffic configuration, was discovered. The spatial structure of &agr; was influenced by soil type for the no-track interrows. Spatial structure was absent in wheel track interrows, indicating the destruction of pore structure due to compaction. ¿American Geophysical Union 1994

BACKGROUND DATA FILES

Abstract

Keywords
Hydrology, Stochastic processes, Hydrology, Instruments and techniques
Journal
Water Resources Research
http://www.agu.org/wrr/
Publisher
American Geophysical Union
2000 Florida Avenue N.W.
Washington, D.C. 20009-1277
USA
1-202-462-6900
1-202-328-0566
service@agu.org
Click to clear formClick to return to previous pageClick to submit