HR: 09:00h
AN: H51J-05 [Abstracts]
TI: Factors Influencing Surface Runoff and Hydrologic Connectivity on an Agricultural Hillslope in Central Pennsylvania
AU: * Buda, A
EM: Anthony.Buda@ars.usda.gov
AF: USDA Agricultural Research Service, Building 3702
Curtin Road, University Park, PA 16802, United States
AU: Kleinman, P
EM: Peter.Kleinman@ars.usda.gov
AF: USDA Agricultural Research Service, Building 3702
Curtin Road, University Park, PA 16802, United States
AU: Srinivasan, M
EM: m.srinivasan@agresearch.co.nz
AF: AgResearch Ltd, Invermay Agricultural Centre
Private Bag 50034, Mosgiel, 9053, New Zealand
AU: Bryant, R
EM: Ray.Bryant@ars.usda.gov
AF: USDA Agricultural Research Service, Building 3702
Curtin Road, University Park, PA 16802, United States
AU: Feyereisen, G
EM: Gary.Feyereisen@ars.usda.gov
AF: USDA Agricultural Research Service, Building 3702
Curtin Road, University Park, PA 16802, United States
AB:
Improved understanding of surface hydrologic processes is central to the targeted application of agricultural
management practices for water quality protection. Factors influencing surface runoff production and hydrologic
connectivity were explored at three landscape positions on a single hillslope located within a 27.4 acre
agricultural watershed in central Pennsylvania. A total of 119 events (rainfall, rain-on-snow, and snowmelt) were
monitored for total runoff volume (mL), water-table depth (0 cm - 45 cm), and soil-moisture content from 2002 to
2004 using 1- by 2-m plots at seepage slope, transportational midslope, and colluvial footslope positions. The
seepage slope and transportational midslope plots were located in well-drained residual soils, whereas the
colluvial footslope plots were located nearest the stream channel in somewhat poorly drained soils with clay
fragipans. Poorly-drained soils in the colluvial footslope position generated more frequent (> 2 times) and
significantly higher volumes of runoff (> 19 times) than the well-drained soils in the transportational midslope
or seepage slope positions. Runoff generation on the colluvial footslope was predominately associated with
elevated water-table depths and occurred most frequently during the late fall and winter months. In contrast,
runoff generation on the well-drained seepage and transportational midslopes occurred most frequently during
the summer months and was predominately associated with lower water-table depths (i.e. infiltration-excess
surface runoff). Hydrologic connection, defined herein as runoff occurring simultaneously on the upslope and
downslope plots, was observed for 39% of the events and occurred most frequently during the spring and early
summer periods. The overall runoff trends observed in this study illustrate the importance of considering
seasonal and landscape variables in agricultural watershed management.
DE: 0402 Agricultural systems
DE: 1850 Overland flow
DE: 1895 Instruments and techniques: monitoring
SC: Hydrology [H]
MN: 2007 Fall Meeting