Two-phase flow of water and air during aerated subsurface drip irrigation
Su, Ninghu, and Midmore, David J. (2005) Two-phase flow of water and air during aerated subsurface drip irrigation. Journal of Hydrology, 313 (3-4). pp. 158-165.
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Here, we investigate the two-phase flow problem as in aerated subsurface irrigation. We extend McWhorter's one-dimensional equation for the concurrent flow of air and water (CEFAW) to three dimensions, and present explicit solutions subject to linear functions for the two-phase unsaturated hydraulic conductivity, diffusivity and fractional flow function. We present both steady- and unsteady-state solutions to the CEFAW corresponding to two types of constant continuous sources (a line source and a point source), which are relevant to aerated subsurface irrigation using emitters. The two-dimensional solution appears as the modified Bessel function of the second kind of order zero while the three-dimensional one as a complex exponential function. Graphic illustrations of the mathematical solutions indicate asymmetrical distributions of water content around the supply source due to gravity at the steady state established at large time, which differ in patterns and magnitudes for the two types of supply sources.
|Item Type:||Article (Refereed Research - C1)|
Also available online from the publisher's website
|Keywords:||two-phase flow, airflow, water flow, subsurface irrigation, mathematical models|
|FoR Codes:||04 EARTH SCIENCES > 0406 Physical Geography and Environmental Geoscience > 040608 Surfacewater Hydrology @ 0%|
07 AGRICULTURAL AND VETERINARY SCIENCES > 0799 Other Agricultural and Veterinary Sciences > 079901 Agricultural Hydrology (Drainage, Flooding, Irrigation, Quality, etc) @ 0%
05 ENVIRONMENTAL SCIENCES > 0503 Soil Sciences > 050305 Soil Physics @ 0%
|Deposited On:||16 Oct 2007|
|Last Modified:||18 Oct 2013 00:23|
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