Simulation of water and solute transport in ®eld soils with the LEACHP model
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چکیده
LEACHP is a modular package for calculating the one-dimensional vertical water and solute ̄ux in horizontally layered soils under transient conditions. Data from ®eld studies conducted in a sandy soil (Vredepeel, The Netherlands) and in a loamy soil (Weiherbach, Germany) were used by ®ve groups to simulate water ̄ow and bromide and pesticide transport with the LEACHP model. Calibrated outputs were compared to the actual ®eld values. Soil hydraulic properties derived from laboratory measurements performed best to predict soil moisture pro®les of ®eld soils. For small-scale lysimeters calibration was necessary to simulate drainage ̄uxes that were within the wide range of experimental values. These calibrated parameters failed to predict increased drainage volumes observed under additional irrigation. Measurement of all soil water balance terms would allow a more thorough evaluation of the hydraulic component of LEACHP. Bromide pro®les were not well simulated on the sandy soil where considerable plant uptake was observed. Additionally, zones of immobile soil water might have been present. Residue pro®les of the volatile pesticide ethoprophos in soil were best simulated by groups that accounted for Agricultural Water Management 44 (2000) 225±245 * Corresponding author. Present address: DuPont de Nemours (France) S.A., European Research and Development Center, F-68740 Nambsheim, France. E-mail address: [email protected] (M. Dust). 0378-3774/00/$ ± see front matter # 2000 Elsevier Science B.V. All rights reserved. PII: S 0 3 7 8 3 7 7 4 ( 9 9 ) 0 0 0 9 3 1 volatilisation in their simulations. Different descriptions of the soil sorption process for the mobile pesticide bentazone between groups were dominated by different input of half-life values and hydraulic properties. Although bromide residue pro®les were predicted reasonably well in the loamy soil, it was not possible to predict isoproturon dissipation during summer with degradation parameters calibrated in a winter simulation. Predictions of soil water content pro®les and leaching volumes can be used with con®dence especially after calibration given that preferential ̄ow processes are not predominant. Although important input data for pesticide transformation and transport could be derived from extensive laboratory scale experiments, these did not represent all processes that could affect pesticide fate and behaviour under ®eld conditions. Calibration did not signi®cantly enhance the predictive capability of the solute transport simulations. # 2000 Elsevier Science B.V. All rights reserved.
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تاریخ انتشار 2000