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Amir Sedaghatdoost

Publications and source records attributed to Amir Sedaghatdoost.

2 recordsLinked to original sources

Simulating the transport of dissolved ammonium-nitrogen and phosphate-phosphorous to streams using artificial neural network (ANN)

The export of agricultural fertilizers to streams results in untold harms to downstream water quality and thus ecosystem. Understanding and simulating the export of these chemicals is the first step to control their transport to streams. In this paper, the export of ammonium and phosphate, two major contaminants resulted from agricultural activities, were simulated using artificial neural network (ANN) and daily sediment and runoff data. Results indicated that ANN could simulate the trend of the export of these chemicals to streams successfully; however, it could not simulate the extreme events well. This might be due to the complexity of the transport of ammonium and phosphate, which contains many different processes that could not be captured in daily sediment and runoff data.

physics.geo-ph

Simulation of water flow and solute transport as affected by a soil layer interface and a subsurface drainage system using a numerical model

Vadose zone consists of various heterogeneities and boundary conditions, which profoundly impact the water flow and solute transports in the soil. Understanding these effects is vital for predicting biogeochemistry of the soil and preventing environmental issues associated with groundwater pollution. The HP1 model has been applied for numerical analysis of various water flow and chemical transport problems in the soil. The objective of the paper was to assess the effects of a soil layer and a subsurface drainage system on the water flow and solute transport in a soil column experiment using the HP1 model. Results indicated that both the soil layer and the subsurface drainage system had profound impacts on the geochemical processes in the soil. The soil layer retarded the transport of solute in the soil and created a hotspot for geochemical processes. On the other hand, the subsurface drainage system drained out an excessive amount of water and solutes from the soil and therefore decreased the solute concentration in deep soil.

physics.geo-ph