Simulating field-scale soil organic carbon dynamics using EPIC

被引:40
作者
Causarano, Hector J.
Shaw, Joey N.
Franzluebbers, Alan J.
Reeves, D. Wayne
Raper, Randy L.
Balkcom, Kipling S.
Norfleet, M. Lee
Izaurralde, R. Cesar
机构
[1] USDA ARS, Beltsville Agr Res Ctr, Hydrol & Remote Sensing Lab, Beltsville, MD 20705 USA
[2] Auburn Univ, Dept Agron & Soils, Auburn, AL 36849 USA
[3] USDA ARS, Nat Resource Conserv Ctr, Watkinsville, GA 30677 USA
[4] USDA ARS, Natl Soil Dynam Lab, Auburn, AL 36832 USA
[5] USDA, NRCS, Temple, TX 76501 USA
[6] Univ Maryland, Pacific NW Natl Lab, Joint Global Change Res Inst, College Pk, MD 20740 USA
关键词
SENSITIVITY-ANALYSIS; MODEL CALIBRATION; UNCERTAINTY; MANAGEMENT;
D O I
10.2136/sssaj2006.0356
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Simulation models integrate our knowledge of soil organic C (SOC) dynamics and are useful tools for evaluating impacts of crop management on soil C sequestration; yet, they require local calibration. Our objectives were to calibrate the Environmental Policy Integrated Climate (EPIC) model, and evaluate its performance for simulating SOC fractions as affected by soil landscape and management. An automated parameter optimization procedure was used to calibrate the model for a site-specific experiment in the Coastal Plain of central Alabama. The ability of EPIC to predict corn (Zea mays L.) and cotton (Gossypium hirsutum L.) yields and SOC dynamics on different soil landscape positions (summit, sideslope, and drainageway) during the initial period of conservation tillage adoption (5 yr) was evaluated using regression and mean squared deviations. Simulated yield explained 88% of measured yield variation, with the greatest disagreement on the sideslope position and the greatest agreement in the drainageway. Simulations explained approximately 1, 34, and 40% of the total variation in microbial biomass C (MBC), particulate organic C (POC), and total organic C (TOC), respectively. The lowest errors in TOC simulations (0-20 cm) were found on the sideslope and summit. We conclude that the automated parameterization was generally successful, although further work is needed to refine the MBC and POC fractions, and to improve EPIC predictions of SOC dynamics with depth. Overall, EPIC was sensitive to spatial differences in C fractions that resulted from differing soil landscape positions. The model needs additional refinement for accurate simulations of field-scale SOC dynamics affected by short-term management decisions.
引用
收藏
页码:1174 / 1185
页数:12
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