연안오염총량관리제는 지자체에 오염물질부하량을 할당하고, 오염부하 삭감뿐만 아니라 바람직한 지역발전에 있어서 아주 중 요하다. 본 연구에서는 광양만특별관리해역의 총량관리 도입에 앞서 해역으로 유입하는 오염물질의 유입부하와 광양만 해역의 수질상태 를 조사하였고, 현재 연안오염총량관리를 실시하고 있는 다른 해역의 장기적인 현황을 살펴보았으며, 수회에 걸쳐 광양만 특별관리해역 환경자문위원회의 의견을 수렴하였다. 그 결과, 광양만에도 총량관리의 필요성이 인정되었으나, 시행에 앞서 우선 COD, TN, TP, 중금속, PAHs의 지속적인 모니터링과 함께 총량관리 도입의 경제성과 효율성과 같은 타당성 검토가 이루어져야 할 것으로 판단되었다.
Total water pollution load management(TWPLM) seeks to harmonize conservation and development by allowing regional developments to be carried out in an eco-friendly manner and within the scope of achieving the desirable water quality. Water pollutant sources are managed so as to keep the total amount of pollutants in public watersheds within a certain level or total allowance in accordance with target water quality goal. With relation to the basic guideline under the Special Act on the Water Resources Management and Community Support for Watersheds, the load from the land should be determined by the classification of rainy and dried season respectively. Objective loads of abatement applied in the 1st planning period(2004∼2010) are set up standards by low flow condition(Q275) without considering the change of flow, while allowable wasteloads are estimated by the criteria of daily mean precipitation 10 mm, as critical standard for the division of surface runoff load. Even though the standard flow conditions to meet the goal of water quality at the end of unit watershed are low flow, but it might be considered to set up drought flow condition(Q355) for the improvement of water quality. Also the objective loads for abatement to meet the target water quality should be calculated without the effect of non-point sources from the land.
For the development of flow duration curves for the management of 41 Total Maximum Daily Load (TMDL) units of the Nakdong River basin, first, an equation for estimating daily flow rates as well as the level of correlation (correlation and determination coefficients) was extrapolated through regression analysis of discrete (Ministry of Environment) and continuous (Ministry of Land, Infrastructure and Transportation) measurement data. The equation derived from the analysis was used to estimate daily flow rates in order to develop flow duration curves for each TMDL unit. By using the equation, the annual flow duration curves and flow curves, for the entire period and for each TMDL unit of the basin, were developed to be demonstrated in this research. Standard flow rates (abundant-, ordinary-, low- and drought flows) for major flow duration periods were calculated based on the annual flow duration curves. Then, the flow rates, based on percentile ranks of exceedance probabilities (5, 25, 50, 75, and 95%), were calculated according to the flow duration curves for the entire period and are suggested in this research. These results can be used for feasibility assessment of the set values of primary and secondary standard flow rates for each river system, which are derived from complicated models. In addition, they will also be useful for the process of implementing TMDL management, including evaluation of the target level of water purity based on load duration curves.
본 논문에서는 금강수계 오염총량관리 기본계획에서 제시된 오염부하량 자료를 기반으로 공시된 목표수질을 달성하기 위한 적정방류량을 산정하였다. 오염총량관리의 1단계로 BOD를 대상으로 총량관리가 이루어질 계획이며 향후 질소 및 인 계열로 확대될 전망이다. 총량구역별 및 행정구역별로 산정된 BOD와 TN, TP 부하량을 GIS를 활용하여 10개의 지류수계에 대하여 재분배하였고 지류수계에 해당되지 않는 구역에 대해서는 15개의 소구간으로 처리하여 반영하였다.
본 연구에서는 미국 환경청에서 개발하여 유역 오염총량관리를 위한 수질모형으로 이용되고 있는 HSPF 모형을 선정하여 발안 HP#6 시험유역을 대상으로 모형의 적용성을 분석하였다. HSPF모형을 이용하여 HP#6 시험유역에서 모형의 보정기간인 1996년부터 1997년까지 유출량을 모의한 결과, RMSE는 2.1mm, RMAE는 0.4mm, 는 0.92로 모의되었으며, 모형의 검정기간인 1999년부터 2000년의 모의 결과 RMSE는 6.03mm, RMAE
This study was performed to plan pollutant loading allocation by sub-watershed at Kumho river basin located in the north Kyeongsang province. HEC-geoHMS which is extension program of ArcView was used to extract sub-watershed. To simulate water quality, Qual2eu model was calibrated and validated. BOD was simulated under several scenarios to evaluate reduction effects of pollutant loading. Uniform treatment and transfer matrix method was considered. Effects of headwater flow rate and efficiency waste water treatment plant were also considered.
수질모델을 사용하여 수계내 오염물질의 총량관리를 위한 오염물질관리 목표량 및 허용총량 파악, 그리고 삭감계획의 효과 분석을 수행할 수 있다. 그러나 QUAL2E, WASP5 및 HSPF와 같은 수질모델은 다양한 자료를 요구하고 실제수계 적용이 쉽지 않음으로 수계의 수리학적 특성이 반영된 용이성을 갖춘 분석적인 수질모델 개발의 필요성이 제기되었다. 따라서, 본 연구에서는 유달경로를 고려한 배수구역내 오염총량관리를 위한 분석적인 BOD모델(AMB)을 개발하