A spatially dynamic programming model of nonuniform irrigation is developed to investigate the nitrogen leaching problem associated with irrigated agriculture. We evaluate the importance of temporal and spatial elements in (i) appropriately modeling the interseasonal corn production problem with nitrogen carry-over and leaching under non-uniform irrigation, and (ii) in adequately evaluating alternative policy instruments for pollution control. Comparisons of the time profiles under spatially variable nitrogen levels arising from nonuniform irrigation are provided along with an evaluation of three different price-based policy instruments for reducing nitrogen leaching
A computer simulation model was used to estimate the impact of different fertilizer management pract...
A delayed response model was used to examine the optimal nitrogen application for irrigated corn in ...
An economic relationship between agricultural production and groundwater pollution is established fi...
A spatially dynamic programming model of nonuniform irrigation is developed to investigate the nitro...
A spatially dynamic programming model of nonuniform irrigation is developed to investigate the nitro...
We develop a dynamic economic model that includes control variables for both nitrogen fertilizer and...
Irrigation non-uniformity is a key factor in reducing water and N efficiency and increasing N leach...
Dynamic optimization of crop production with nonuniform irrigation and nitrogen carryover and leachi...
Irrigation non-uniformity is a key factor in reducing water and N efficiency and increasing N leach...
A dynamic model is developed to analyze farmers' irrigation investment and crop choice decisions und...
A dynamic model is developed to analyze farmers' irrigation investment and crop choice decisions und...
This study compares subsurface drip irrigation and sprinkler irrigation with respect to expected ret...
In this study, a spatial dynamic model was developed, to simulate nitrogen dynamics in Van Hoi commu...
A dynamic model is developed to analyze farmers ’ irrigation investment and crop choice decisions un...
In this study, a spatial dynamic model was developed, to simulate nitrogen dynamics in Van Hoi commu...
A computer simulation model was used to estimate the impact of different fertilizer management pract...
A delayed response model was used to examine the optimal nitrogen application for irrigated corn in ...
An economic relationship between agricultural production and groundwater pollution is established fi...
A spatially dynamic programming model of nonuniform irrigation is developed to investigate the nitro...
A spatially dynamic programming model of nonuniform irrigation is developed to investigate the nitro...
We develop a dynamic economic model that includes control variables for both nitrogen fertilizer and...
Irrigation non-uniformity is a key factor in reducing water and N efficiency and increasing N leach...
Dynamic optimization of crop production with nonuniform irrigation and nitrogen carryover and leachi...
Irrigation non-uniformity is a key factor in reducing water and N efficiency and increasing N leach...
A dynamic model is developed to analyze farmers' irrigation investment and crop choice decisions und...
A dynamic model is developed to analyze farmers' irrigation investment and crop choice decisions und...
This study compares subsurface drip irrigation and sprinkler irrigation with respect to expected ret...
In this study, a spatial dynamic model was developed, to simulate nitrogen dynamics in Van Hoi commu...
A dynamic model is developed to analyze farmers ’ irrigation investment and crop choice decisions un...
In this study, a spatial dynamic model was developed, to simulate nitrogen dynamics in Van Hoi commu...
A computer simulation model was used to estimate the impact of different fertilizer management pract...
A delayed response model was used to examine the optimal nitrogen application for irrigated corn in ...
An economic relationship between agricultural production and groundwater pollution is established fi...