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Evaluating the Performance of APEX-PADDY Model using the Monitoring Data of Paddy Fields in South KoreaEvaluating the Performance of APEX-PADDY Model using the Monitoring Data of Paddy Fields in South Korea

Other Titles
Evaluating the Performance of APEX-PADDY Model using the Monitoring Data of Paddy Fields in South Korea
Authors
모하마드 캄루자먼조재필최순군송정헌송인홍황세운
Issue Date
Jan-2020
Publisher
한국농공학회
Keywords
APEX-Paddy Model; rice paddy; calibration; discharge; sediment; pollutant loads
Citation
한국농공학회논문집, v.62, no.1, pp 1 - 16
Pages
16
Indexed
KCI
Journal Title
한국농공학회논문집
Volume
62
Number
1
Start Page
1
End Page
16
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/8083
DOI
10.5389/KSAE.2020.62.1.001
ISSN
1738-3692
2093-7709
Abstract
The APEX model has been developed for assessing agricultural management efforts and their effects on soil and water at the field scale as well asmore complex multi-subarea landscapes, whole farms, and watersheds. Recently, a key component of APEX application, named APEX-Paddy, hasbeen modified for simulating water quality by considering paddy rice management practices. In this study, the performance of the APEX-Paddy modelwas evaluated using field data at Iksan experimental paddy sites in Korea. The discharge and pollutant load data during 2013 and 2014 were usedto both manually and automatically calibrate the model. The APEX auto-calibration tool (APEX-CUTE 4.1) was used for model calibration andsensitivity analysis. Results indicate that APEX-Paddy reasonably performs in predicting runoff discharge rate and nitrogen yield. However, sedimentand phosphorus yield is not correctly predicted due to the limitation of model schemes. With APEX-Paddy, the performance in reproducing thedischarge and nitrogen yield is found to be a satisfactory level after manual calibration. The manually calibrated model performed better than theautomatically calibrated model in nearly all comparisons. For runoff, manual calibration reduced PBIAS while R2 and NSE values of the automaticallycalibrated model were the same as the manual calibration. For T-N, NSE and PBIAS were reduced when using manual calibration, whereas R2 valuewas the same as manual calibration. The limitation of the APEX-Paddy model for predicting sediment, as well as the phosphorous yield, was discussedin this study.
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농업생명과학대학 > Department of Agricultural Engineering, GNU > Journal Articles

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Hwang, Sye Woon
농업생명과학대학 (지역시스템공학과)
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