Title of article :
A mathematical model for evaluating the effect of wind on downward-spraying rainfall simulators
Author/Authors :
de Lima، نويسنده , , J.L.M.P and Torfs، نويسنده , , P.J.J.F and Singh، نويسنده , , V.P، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2002
Pages :
21
From page :
221
To page :
241
Abstract :
Rainfall simulators are used to study a variety of different processes (e.g., water erosion, infiltration, overland flow, irrigation, movement of agrochemicals, etc.). Wind affects field experiments that make use of rainfall simulators. Water-drop trajectories and velocities are altered, affecting water application and kinetic energy distributions. s study, a three-dimensional numerical model was developed from the movement of individual drops after their release from the nozzle of a downward-spraying rainfall simulator. Drag forces, wind and gravity affect the original momentum of a single drop. Water application and kinetic energy were estimated from the coupling of a hydrodynamic model for drop movement, a drop generator representing a single full-cone spray nozzle, and an appropriate interception algorithm at the soil surface. thematical model should facilitate the selection of single full-cone spray nozzles and the size and configuration of the spray area for rainfall simulation in order to achieve high application uniformity values on the plot area. It can contribute to the adequate choice of nozzles as well as operating conditions necessary for laboratory and field purposes. Laboratory and field experiments were conducted to evaluate the adequacy of the proposed methodology.
Keywords :
Numerical modelling , Rainfall simulators , Wind effects , nozzles
Journal title :
CATENA
Serial Year :
2002
Journal title :
CATENA
Record number :
2251904
Link To Document :
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