ASABE Technical Library - Abstract
Member and Access Notice
New submodel for watershed-scale simulations of fecal bacteria fate and transport at agricultural and pasture lands
Published by the American Society of Agricultural and Biological Engineers, St. Joseph, Michigan www.asabe.org
Citation: 2016 ASABE Annual International Meeting 162462856.(doi:10.13031/aim.20162462856)Authors: Yongeun Park, Yakov Pachepsky, Eunmi Hong, Daniel Shelton, Gene Whelan
Keywords: Agriculture, Manure, Microbial, Modeling
Abstract.
Microbial contamination of waters is the critical public health issue. The watershed-scale process-based modeling of bacteria fate and transport (F&T) has been proven to serve as the useful tool for predicting microbial water quality and evaluating management practices. The objective of this work is to review recent data on and models of processes controlling the fecal indicator bacteria (FIB) fate and transport (F&T), and to incorporate these new findings in a submodel that could be included in watershed-scale water quality models. The reviewed specific bacteria F&T processes include aboveground survival, survival in soil, distribution between suspended and sediment-associated in runoff bacteria fractions, rainfall-induced wash-off after animal waste deposition, mobilization from soil to runoff, and distribution between runoff and infiltration. Watershed models provide essential inputs for the bacteria F&T submodel including manure and animal waste loads, manure and animal waste erosion rates, incorporation scheduling, runoff and infiltration rates, sediment transport, retention in vegetated buffer strips, and soil and air temperature time series. We used independent drivers to evaluate and parameterize the model representation of processes in manure, animal waste, soil and water in the submodels. Decision trees and Arrhenius-type Q10 models were applied to simulate bacteria population dynamics as dependent on major survival factors. Simulations showed a reasonable prediction of FIB F&T when compared with the data of four years experiments with bacteria release from irrigated manured fields in Beltsville MD. The submodel is added to APEX and SWAT watershed-scale models and results of performance evaluation will be presented.
(Download PDF) (Export to EndNotes)