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        검색결과 44

        21.
        1995.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        4,000원
        25.
        1994.01 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The study of lake pollution problems is often related to the dynamic behavior of phosphorus. Several phosphorus models are available that may be suitable to study these problems. Depending on the the management objectives and data availability, some models may be more appropriate than others. Criteria are defined to help modelers choose the most appropriate total phosphorus models for different lakes. These criteria consider in-lake processes such as sediment feedback, stratification, and algal uptake and recycle.
        4,000원
        31.
        1989.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        4,000원
        35.
        2014.02 KCI 등재 서비스 종료(열람 제한)
        본 연구에서는 충주댐을 대상으로 유역모델인 SWAT과 저수지모델인 CE-QUAL-W2를 연계 적용하여 기후변화에 따라 저수지로 유입되는 하천의 유량 및 탁수발생량을 모의하고, 저수지내의 탁수변화 및 부영양화 영향평가를 통한 저수지 수환경 변화를 전망하였다. 먼저 SWAT을 적용하여 강우시 저수지 유입하천의 유량 및 수질을 모의하여 모델의 재현성을 검토하였으며, 모형의 보정(2000~2005)과 검증(2006~2010) 결과 모델 예측값과 실측값이 적절하게 일치하는 것으로 나타났다. SWAT의 결과를 CE-QUAL-W2의 하천유량 및 유입수 수질 경계조건 입력 자료로 활용하고, 보정(2010년)과 검증(2008년)을 통하여 저수지 내 시간에 따른 물수지, 수온 변화, 부유물질(SS), T-N, T-P 및 부영양화(Chl-a) 양상 등을 분석하고 모델의 재현성을 검토하였다. 이후 기후변화 시나리오 적용에 따른 저수지 내 수환경 변화를 모의하기 위한 기후변화 자료로 IPCC AR4 GCM(ECHO-G)을 고해상도 지역기후시나리오로 개선시킨 RCM(MM5)의 A1B 시나리오를 다시 태풍사상을 고려한 인공신경망 기법에 의해 상세화하여 이용하였다. 기후변화 시나리오에 따른 기온증가의 영향으로 미래로 갈수록 상층수온은 증가하는 반면 심층수온은 감소하는 경향을 보였다. SS 최고유입농도는 평수년에 비해 풍수년에 17%, 갈수년에 0.2% 가량 증가하는 것으로 나타났다. 호소내 SS 10mg/L 이상 점유일수는 평수년에 비해 풍수년이 6일, 갈수년이 17일 증가하였고, 점유율 역시 풍수년에 24%, 갈수년에 26% 가량 증가하는 것으로 분석되었다. 미래로 갈수록 기후변화가 충주댐 탁수 장기화에 영향을 미치는 것으로 분석되었다. Chl-a의 최고농도는 평수년에 비해 풍수년에 19%, 갈수년에 3% 가량 조류의 농도가 증가되는 것으로 나타나 조류의 영향이 커지는 것을 알 수 있었다.
        36.
        2013.11 KCI 등재 서비스 종료(열람 제한)
        본 연구의 목적은 충주호 유역을 대상으로 2차원 횡방향 평균 수리 및 수질모형인 CE-QUAL-W2를 이용하여 호소내 수온분포, 부유물질및부영양화과정의변화특성을모의하고모형의적용성을평가하는것이다. 지형및단면자료구축을 위해 충주호를 남한강 본류(branch 1)와 유입 경계부(branch 2∼7)로 구분하여 격자를 구성하였다. 호소 수질모델링을 위한 주요 입력 자료로 기상자료, 호소의 수온과 탁도 초기조건, 하천의 유량과 수온, 수질 경계조건 자료를 구축하였다. 이후실측된수온, 부유물질(SS), 총질소(TN), 총인(TP), 조류(Chl-a)에대하여모형의보정(2010) 및검증(2008)을수행하여모형의적용가능성을평가하였다. 충주호의수온은4월부터표층수온이증가하여7월초에성층현상이발생되고12월에는연직수온분포가일정하게유지되었다. 집중호우발생후에는성층구조가교란되어수온약층이약10 m가량하강하였다. SS는수온과동일한패턴으로집중호우발생후에증가하다가12월에안정화되었으며, 2008년7월에발생된중층밀도류의 분포 현상을 잘 재현하였다. TN, TP의 경우 농도의 범위를 잘 재현하였지만, 모형 내에서 질소성분의 침강속도 및 인의 흡착-침전과정이 적절히 모의되지 않아 오차가 발생하였다. Chl-a의 경우 2010년과 2008년 여름의 조류의 성장패턴을 잘 반영하였지만, 모형이 횡방향 평균 유속과 농도를 사용함에 따른 모형의 한계점이 나타났다.
        37.
        2007.03 KCI 등재 서비스 종료(열람 제한)
        Recently, eutrophication or lake and reservoir has become serious problem to man who want use that water for several purpose. In order to solve the eutrophication problem, the trophic state of that eutrophic lake and reservoir should be measured properly. For the purpose of this, various method to indicate the trophic state of lake and reservoir was developed by many researchers. This research was conducted to evaluate characteristics and eutrophication of water qualitymfor small scale reservoir in Kunsan. On-site investigation to 5 reservoirs and laboratory experiment were carried out during four seasons from November, 2003 to July, 2004. Twelve items measured field ana a laboratory. Measured data was analyzed to quantitative method by multivariate approach and eutrophication index. The result is summarized as following. 1) Showing the characteristics of water quality for reservoir in Kunsan, Okgu reservoir and Oknua reservoir was exceeded 4 grades of agricultural water standard in TP, TN and COD. This means that eutrophication was gone much, therefore, water-purity control of reservoir need. While, Mije reservoir that is used to Kunsan citizens' recreation was good in water quality. But, water quality exceeded 4 grades of agricultural Dater standard sometimes. 2) As a results of correlation analysis between variables of water qualify, Interrelation between variables which is connected with eutrophication was expressed good relationship as above 6.000 in correlation coefficients. The correlation coefficient(r) between COD and chlorophyll-a, total phosphorus and chlorophyll-a, total nitrogen and chlorophyll-a were 0.750, 0.720 and 0.600 respectively. Therefore, Change of water quality can grasp according to eutrophication progress degree. 3) If do evaluate to eutrophication by quantitative method which is proposed by OECD, US-EPA and Forsberg & Ryding, in the case of chlorophyll a, Okgu, Oknua and Daewi reservoir was eutrophic state and Mije and Geumgul reservoir was mesotrophic state. But, estimation by TN and TP showed highly eutrophic state (hypereutrophic) in all reservoirs. 4) If do evaluate by eutrophication index which is Carlson's TSI, revised carlson TSI and Walker's index, in the case of chlorophyll a, TSI values of Okgu, Oknua and Daewi reservoir is eutrophic state more than 50 and Mije and Geumgul reservoir was mesotrophic state as range of 40∼50 in TSI value. But, in the case of TP as nutrients, all reservoirs showed highly eutrophic state which was exceed to 70 in TSI value. According to above results, the water quality for small scale reservoirs in Kunsan is progressing by trophic state. therefore, for continuous use as agriculture water, we had better do establishment of management plan about water quality.
        38.
        2004.04 KCI 등재 서비스 종료(열람 제한)
        Seasonal and vertical distribution of water quality were investigated from May 2001 to June 2002 in Kumoh reservoir located nearby Kumi City, Kyungpook. Kumoh reservoir that lost the role of agricultural irrigation is currently of rapid eutrophication. The vertical distribution of DO was observed clinograde with hypolimnetic anoxic zone. T-P concentrations at the surface ranged from 0.008 to 0.152 mgP/L and T-N concentrations ranged from 1.4 to 3.0mgN/L. The vertical and seasonal variation of T-N was smaller than T-P. DOC concentrations, indicator of organic matter pollution, ranged from 2.8 to 5.4 mgC/L. Apportionment of Total-DOC (T-DOC) indicated that 14% of T-DOC was attributed to Labile-DOC(L-DOC) and the rest was due to Refractory- DOC(R-DOC). The values of TSI(Trophic State Index) ranged between 44 and 52 indicating that Kumoh reservoir is under mesotrophic condition. The results of this study indicate that Kumoh reservoir is likely to be under influence of eutrophication and thus water quality will be aggravated. Therefore, the Kumoh reservoir requires further treatment to improve water quality and a plan of the reusing water resource should be developed.
        39.
        2003.09 KCI 등재 서비스 종료(열람 제한)
        Gunsan coastal area is one of region increasing pollution problems. To improve water quality, the reduction of these nutrients loads should be indispensible. In this study, the three-dimensional numerical hydrodynamic and ecosystem model were applied to analyze the processes affecting the eutrophication. In field survey, the average concentrations of dissolved inorganic nitrogen (DIN) and dissolved inorganic phosphorus(DIP) at surface waters were found to be 0.43㎎/ℓ and 0.03㎎/ℓ respectively, which were exceeding second grade of water quality criteria. In hydrodynamic modelling, the comparison between the simulated and observed tidal ellipses showed fairly good agreement. The ecosystem model was calibrated with the observed data in study area. The simulated results of DIN were fairly good coincided with the observed values within relative error of 32.39%, correlation coefficient(r) of 0.99. In the case of DIP, the simulated results were fairly good coincided with the observed values within relative error of 24.26%, correlation coefficient(r) of 0.82. The simulations of DIN and DIP concentrations using ecosystem model were performed under the conditions of 20~80% reductions for pollutant loading. At simulation results, concentration of DIN and DIP were reduced to 20~80% and under 10% in case of the 80% reduction of polltuant loading, respectively.
        40.
        2003.07 KCI 등재 서비스 종료(열람 제한)
        The purpose of this study is to evaluate and to predict of eutrophication in lakes by using Vollenweider- OECD model and total phosphorus concentration and inflow rate which were measurded in 1993~2001. The results of study were as follows. The annual total phosphorus loading from the watershed was calculated to be 55~195tP/yr at lake Soyang, 221~466tP/yr at lake Taechong, 123~278tP/yr at lake Andong, 57~109tP/yr at lake Seomjin. These are discharged, for the most parts, from population and fishfarm facility. TP loading on the surface area at lake Soyang was 3.01gP/㎡/yr, 2.82gP/㎡/yr, 2.84gP/㎡/yr, 3.03gP/㎡/yr, 2.34gP/㎡/yr, 1.78gP/㎡/yr, 0.91gP/㎡/yr, 0.89gP/㎡/yr, 0.86gP/㎡/yr, lake Taechong was 6.71gP/㎡/yr, 7.25gP/㎡/yr, 7.24gP/㎡/yr, 6.53gP/㎡/yr, 6.50gP/㎡/yr, 7.06gP/㎡/yr, 7.04gP/㎡/yr, 4.05gP/㎡/yr, 3.44gP/㎡/yr and TP loading on the surface area of lake Andong, lake Soemjin were 5.39gP/㎡/yr, 4.47gP/㎡/yr, 4.56gP/㎡/yr, 4.45gP/㎡/yr, 3.33gP/㎡/yr, 2.38gP/㎡/yr, 2.53gP/㎡/yr, 2.46gP/㎡/yr, 2.54gP/㎡/yr, 4.09gP/㎡/yr, 4.10gP/㎡/yr, 3.98gP/㎡/yr, 3.73gP/㎡/yr, 2.80gP/㎡/yr, 3.46gP/㎡/yr, 3.22gP/㎡/yr, 2.19gP/㎡/yr, 2.13gP/㎡/yr respectively. The tropic states of four lakes can be assessed as eutrophy because phosphorus loading exceeds the critical phosphorus loading by Vollenweider-OECD model.
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