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HSPF 모형을 이용한 축산계 비점오염 저감에 따른 합천댐 유역 수질 영향 분석Estimation of Livestock Pollutant Sources Reduction Effect on Water Quality in Hapcheon Dam Watershed Using HSPF Model

Other Titles
Estimation of Livestock Pollutant Sources Reduction Effect on Water Quality in Hapcheon Dam Watershed Using HSPF Model
Authors
조현경김상민
Issue Date
2020
Publisher
한국물환경학회
Keywords
Discharge load; Generated load; Hapcheon dam; HSPF; Nonpoint source; Reduction scenarios
Citation
한국물환경학회지, v.36, no.2, pp.98 - 108
Indexed
KCI
Journal Title
한국물환경학회지
Volume
36
Number
2
Start Page
98
End Page
108
URI
https://scholarworks.bwise.kr/gnu/handle/sw.gnu/7954
DOI
10.15681/KSWE.2020.36.2.98
ISSN
2289-0971
Abstract
The purpose of this study was to evaluate water quality in Hapcheon dam via using the Hydrological Simulation Program-Fortran (HSPF) model and applied livestock reduction scenarios. Hapcheon dam watershed input data for the HSPF model were established using the stream, land use, digital elevation map and meteorological data and others. The HSPF model was calibrated and validated using the observed water quality data from 2000 to 2016. For water quality simulation, we calculated the generated and discharge loads of the population, livestock, industry and land use following the guideline provided by the Ministry of Environment. The pollutant data were obtained from National Institute of Environmental Research (NIER) . The monthly discharge load were estimated by applying the delivery rate. The calibration and validation results showed that the annual mean BOD had a difference of 0.22 mg/L and an error of ±13%, T-N had a difference of 0.66 mg/L and an error of ±16% and T-P had a difference of 0.027 mg/L and an error of ±13%. In order to evaluate the nonpoint pollutants management effects, we applied livestock reduction scenarios because livestock consists of the largest portion of pollutants. As a result of the 20% of livestock reduction, BOD, T-N and T-P decreased by 3%, 1% and 3%, respectively. When 40% of livestock reduction was applied, BOD, T-N and T-P decreased by 5%, 3% and 4%, respectively. Based on the results of this study, effective pollutant management methods can be applied to improve the water quality and achieve the target water quality of Hapcheon dam watershed.
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농업생명과학대학 > Department of Agricultural Engineering, GNU > Journal Articles

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농업생명과학대학 (지역시스템공학과)
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