• Title/Summary/Keyword: 연안수질

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Response Analysis of the Slit type Breakwater under Coastal Waves and Flows (연안 파랑과 흐름하에서 슬릿방파제의 반응 해석)

  • Park, Sang-Gil;Lee, Joong-Woo;Kim, Kang-Min;Kang, Sug-Jin;Kim, Suk-Moon
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2010.10a
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    • pp.53-54
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    • 2010
  • 국내에서 소규모 어항의 재개발에 관광객 유치를 위한 친환경적인 기술의 적용이 본격화되고 있다. 항내수질 개선이라는 목적 하에서 외곽시설인 방파제의 선택은 항내 정온과 제체 안정성의 확보가 전제되어야 한다. 따라서 본 연구에서는 친환경방파제인 슬릿방파제의 수리특성을 파악하기 위한 수리모형실험을 수행하고 그 결과를 이용하여 파랑변형 및 유동 실험을 수행하였다. 현장 적용성 확인을 위하여 선정된 구조라항은 우리나라 남해의 소규모 어항으로, SSE, S, SSW파향에 영향을 받는 지역으로, 슬릿방파제를 적용한 결과 제체안정성과 항내 정온도가 확보되는 것으로 나타났다. 이는 슬릿방파제의 특징으로 장주기파의 통과율이 뛰어나다는 점과 소파효과라는 1차적인 목적과 항만 및 연안수역에서 해수교환의 향상이라는 2차적인 목적을 동시에 만족하는 것으로 나타났다.

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Reserch on Optimal Water Allocation Methodology for Real Time Water Management System (실시간 물관리 시스템을 위한 최적 물배분 방식에 대한 연구)

  • Lee, Jin-Hee;Lee, Dong-Ryul
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.493-497
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    • 2007
  • 한정된 수자원에 대한 수요가 급증하고 수질 및 환경문제가 대두되면서 수자원 계획 및 관리에 대한 관심이 많아지고 있는 실정이다. 이러한 수자원 계획 및 관리는 물리적으로 복잡해진 수자원 시스템 뿐만 아니라 사회적, 제도적 시스템을 반영할 필요성이 생겼으며 수자원 계획 및 관리자들의 의사결정에 도움을 주기 위하여 효율적인 여러 대안들의 평가나 수자원 관리(운영)가 필수적이다. 효율적인 수자원 계획 및 관리에 있어서 물배분은 매우 중요하며 이를 통해 급증하는 용수 수요에 효과적으로 대처하고 합리적인 수자원 관리(운영)을 실현할 수 있을 것이다. 본 연구에서는 실시간 물관리 시스템을 핵심이라고 할 수 있는 물배분 방식에 대한 연구로서 최적 물 배분 연구를 수행하였으며 연구의 목적은 시간적, 공간적 물부족량을 파악할 수 있는 모형을 바탕으로 현존하는 물배분 방식 즉, 선점주의(Prior Appropriation), 연안주의(Riparian), 공공 물배분, 경제적 물배분 등을 물배분 방식을 검토하고 수자원 관리자가 현업에서 효율적인 의사결정을 지원할 수 있는 최적 물배분 방식을 제시하는 것이다.

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Exploration and Verification of Submarine Groundwater Discharge on Jeju Island by Remotely Sensed Based Water Quality Analysis (시계열 수질 분석에 의한 제주도의 해저용출수 탐사 및 검증)

  • Baek Seung-Gyun;Park Maeng-Eon
    • Economic and Environmental Geology
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    • v.38 no.4 s.173
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    • pp.395-409
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    • 2005
  • To explore submarine groundwater discharge (SGD) into the coastal zone of Jeju Island, the water quality analysis with seasonal remotely sensed data was carried out. If the groundwater is directly discharged into the ocean, the water quality of coastal zone is influenced. Therefore sea surface temperature (SST), the transparency, and Chlorophyll-a's concentration were analyzed for extracting the anomaly zone related with SGD using Landsat Thematic Mapper (TM) data acquired on April, August, and December. Then the spatial characteristics of springs, which located along the coastal area, were analyzed by CIS data integration based on Fuzzy logic. The integration results were compared with the anomaly zone extracted from Landsat TM data, and it is considered that springs has close relationship with SGD.

Spatiotemporal Variations of Marine Environmental Characteristics in the Middle East Coast of Korea in 2013-2014 (2013-2014년 한국 동해중부연안 해양환경특성의 시공간적 변화)

  • Lee, Yong-Woo;Park, Mi-Ok;Kim, Seong-Soo
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.19 no.4
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    • pp.274-285
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    • 2016
  • In order to elucidate the spatiotemporal variations of marine environmental parameters, we collected seawater samples in the middle east coast of Korea in 2013-2014. A high temperature and low salinity were distinctively observed in the summer and a low temperature and high salinity pattern in the winter. The temperature of the bottom water was in the range of $2^{\circ}C$ to $7^{\circ}C$, with the temperature being relatively high in the winter, while the salinity was measured to be around 34, with no large differences across the seasons. The dissolved oxygen concentrations were in the range of $7mg\;L^{-1}$ to $12mg\;L^{-1}$, and it was relatively high in May compared to other seasons. The seawater temperature and dissolved oxygen concentration at the surface layer showed a significant negative correlation in the autumn and winter seasons, based on which it is seemed that water temperature is the main factor controlling the amount of dissolved oxygen in the autumn and winter seasons. The dissolved inorganic nitrogen (DIN) and silicate (DSi) increased 11- and 7-fold, respectively, in the winter compared to the summer. The DIN to DIP (dissolved inorganic phosphorus) ratio for the surface seawater was approximately 16, but it was relatively low in the spring season. On the other hand, the DIN to DIP ratio was relatively high in the summer. Based on this, it is seemed that nitrogen and phosphorus were the growth-limiting nutrients for phytoplankton in the spring and summer, respectively. Water quality was I (excellent) ~III (medium) level at the most stations except for some stations (level IV) during the autumn season, having low dissolved oxygen saturations.

The Validation of Landsat TM Band Ratio Algorithm using In-water Optical Measurement (수중 광학측정을 이용한 Landsat TM 밴드비율 알고리듬 검증)

  • Jeong, Jong-Chul
    • Journal of the Korean Association of Geographic Information Studies
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    • v.4 no.1
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    • pp.18-26
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    • 2001
  • Landsat TM band ratio algorithms were made by in-water optical measurement data of each sampling points for water quality monitoring of coastal area using Landsat TM satellite data. The algorithm was derived from in-water optical reflectance data which was measuring by the PRR(profiling reflectance radiometer). And, in-water optical reflectance data were applied to Landsat TM bands. Relationship between in-water optical reflectance and pigments proposed by the ratio of TM band 1 and band 2 showed to as follows; $Y=3.8352{\times}(R(band\;1)/R(band\;2))^{-2.1978}$ ($R^2$=0.7069) and, relationship of the ratio of TM band 1 and band 3 as follows; $Y=23.288{\times}(R(band\;1)/R(band\;3))^{-1.5243}$ ($R^2$=0.8062). Calculated the upwelling radiance of water surface and radiance of TM showed the ratio of atmospheric effect. In the coastal area Rayleigh and Mie scattering of atmosphere is to make over 80% of normalized radiance of Landsat TM. In order to apply in-water algorithm obtained by PRR, we had to calculate the atmospheric effects at sampling site. And, the quantitative analysis of in-water components using Landsat TM data need the calibration of in-water algorithm and effective method of atmospheric correction.

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Reference Values and Water quality Assessment Based on the Regional Environmental Characteristics (해역의 환경특성을 고려한 해양환경 기준설정과 수질등급 평가)

  • Rho, Tae-Keun;Lee, Tong-Sup;Lee, Sang-Ryong;Choi, Man-Sik;Park, Chul;Lee, Jong-Hyun;Lee, Jae-Young;Kim, Seung-Su
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.17 no.2
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    • pp.45-58
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    • 2012
  • For the development of reference values and evaluation of water quality in various environmental conditions, we divided the coastal region around Korean peninsular into 5 distinctive ecological regions based on the influence of surface current, depth, tidal range, turbidity, and climate condition. We used national marine environment monitoring data collected by National Fisheries Research & Development Institute(NFRDI) from 2000-2009. For the reference values, we used maximum seasonal mean from 2000 to 2007 for DIN, DIP, and chlorophyll-a and minimum seasonal mean for secchi depth measured at stations without the influence of river runoff in each ecological regions. For the reference value of bottom dissolved oxygen saturation, we used minimum mean value of 90% calculated from minimal riverine influence stations of whole regions. We calculated enrichment score for each assessment criteria. The enrichment score of DIN, DIP, and Chlorophyll-a was 1 (=< reference value), 2 (< 110% of reference value), 3 (< 125% of reference value), 4 (< 150% of reference value), and 5 (> 150% of reference value). The enrichment score of DO saturation and Secchi depth was 1 (> reference value), 2 (> 90% of reference value), 3 (>75 % of reference value), 4 (> 50% of reference value), and 5 (< 50% of reference value). We calculated water quality index using weighted linear combination of five enrichment score for the comparison of whole regions. From the water quality index distribution calculated from all stations between 2000 and 2007 period, we classified into 5 grade based on the standard deviation calculated from total water quality index. We assigned grade very good(I), good(II), moderate(III), bad(IV), and very bad(V) when the water quality index was less than 23, minimum + 1 sd, +2 sd, +3 sd, and grater than minium+ 3 sd, respectively.

Spatial Downscaling of Ocean Colour-Climate Change Initiative (OC-CCI) Forel-Ule Index Using GOCI Satellite Image and Machine Learning Technique (GOCI 위성영상과 기계학습 기법을 이용한 Ocean Colour-Climate Change Initiative (OC-CCI) Forel-Ule Index의 공간 상세화)

  • Sung, Taejun;Kim, Young Jun;Choi, Hyunyoung;Im, Jungho
    • Korean Journal of Remote Sensing
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    • v.37 no.5_1
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    • pp.959-974
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    • 2021
  • Forel-Ule Index (FUI) is an index which classifies the colors of inland and seawater exist in nature into 21 gradesranging from indigo blue to cola brown. FUI has been analyzed in connection with the eutrophication, water quality, and light characteristics of water systems in many studies, and the possibility as a new water quality index which simultaneously contains optical information of water quality parameters has been suggested. In thisstudy, Ocean Colour-Climate Change Initiative (OC-CCI) based 4 km FUI was spatially downscaled to the resolution of 500 m using the Geostationary Ocean Color Imager (GOCI) data and Random Forest (RF) machine learning. Then, the RF-derived FUI was examined in terms of its correlation with various water quality parameters measured in coastal areas and its spatial distribution and seasonal characteristics. The results showed that the RF-derived FUI resulted in higher accuracy (Coefficient of Determination (R2)=0.81, Root Mean Square Error (RMSE)=0.7784) than GOCI-derived FUI estimated by Pitarch's OC-CCI FUI algorithm (R2=0.72, RMSE=0.9708). RF-derived FUI showed a high correlation with five water quality parameters including Total Nitrogen, Total Phosphorus, Chlorophyll-a, Total Suspended Solids, Transparency with the correlation coefficients of 0.87, 0.88, 0.97, 0.65, and -0.98, respectively. The temporal pattern of the RF-derived FUI well reflected the physical relationship with various water quality parameters with a strong seasonality. The research findingssuggested the potential of the high resolution FUI in coastal water quality management in the Korean Peninsula.

가막만 소호해역에서 태풍 전후 수질 변동특성

  • Lee, Yeong-Sik
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2007.05a
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    • pp.294-297
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    • 2007
  • 유기유기물 증가원인의 파악과 근본적인 대책에 대한 연구의 일환으로 부영양화된 연안해역에 대하여 태풍 발생 전후의 수질변동에 대하여 조사하였다. 그 결과를 요약하면 다음과 같다. 1) 용존산소 포화도는 수온과 염분 약층이 형성된 시기에 저층에서 54% 이하로 관측되었다. 태풍이 지나간 직후에는 표층과 저층에서 거의 비슷한 용존산소 포화도$(78{\sim}88%)$가 조사되었다. 그리고, 태풍이 지나간 3일 후 식물플랑크톤이 대량으로 증식한 표층에서 용존산소 포화도가 234%로 아주 높은 값이 관측되었고, 저층(5m)에서도 90%가 조사되어, 태풍과 식물플랑크톤의 이상 증식이 저층의 용존산소 포화도를 높이는 작용을 한 것으로 보인다. 2) 염분이 가장 낮았던 시기에 표층에서 $NA_4-N$, $NO_3-N$, $SiO_2-Si$의 농도가 각각 18.22, 38.90, 52.10uM로 아주 높게 조사되었으며, $NH4-N$, $PO_4-P$, $SiO_2-Si$는 용존산소가 낮은 저층에서도 높게 나타났다. 3) 클로로필은 최고 $311.0{\mu}g/L$가 태풍 후에 관측되었으며, 그 원인 생물은 Scrippsiella trochoidea (42,000cells/mL)였다. 조류성장잠재능력은 태풍발생 후에 아주 높게 조사되었으며, 항상 질소가 부족한 것으로 조사되었다. 4) 화학적 산소요구량은 최고 10.55 mg/L였으며, 태풍으로 저층 퇴적물로부터 부유되는 유기 오탁 물질이 화학적 산소요구량 증가에 미치는 기여도는 크지 않은 것으로 보이며, 화학적 산소요구량 증가의 대부분이 식물플랑크톤의 증식에 기인한 것($r^2=0.612$, p<0.0001)으로 조사되었다.

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Numerical Assessment for Coastal Water Purification Utilizing a Tidal Jet System (조석분류를 이용한 연안해역의 수질정화에 관한 수치적 평가)

  • Park, Jong-Chun
    • Journal of Ocean Engineering and Technology
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    • v.20 no.4 s.71
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    • pp.58-63
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    • 2006
  • When the costal zone surrounded by a breakwater has a narrow vertical opening, currents in the vicinity of a narrow entrance can result in a jet flow, coinciding with the tide. Such a Tidal-Jet Generator(TJG) can change the water mass distribution and transport processes in the domain of influence of the jet. Also, it can decrease the residual time of them. In the present study, the water purification utilizing tidal jets in the coastal zone over constant bathymetry are estimated numerically, using a finite-difference numerical scheme, named the NS-MAC-TIDE method, which isbased on the fully 3D Navier-stokes(NS) equations. The shear velocity near the inlet of the TJG are predicted from the flow field simulation, and are assessed qualitatively with the development of scouring or sediment that is caused by the change of diffusion or sweeping flowup from the seabed of sediment particles. Finally, through solving a transport equation of concentration, the residual time related on mass transport processes and the flushing mechanism for water purification are investigated.

Analysis of Flow and BOD Transport at the Downstream of Nam River Dam Using 2-D and 3-D Semi-coupled Models (2·3차원 준연계 모형을 이용한 남강댐 하류부 흐름 및 BOD 수송 해석)

  • Kim, Ji-Hoon;Song, Chang-Geun;Kim, Young-Do;Seo, Il-Won
    • Journal of Korea Water Resources Association
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    • v.45 no.3
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    • pp.331-347
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    • 2012
  • The downstream of the Nam River Dam is crucial region for long-term water resource planning for Busan and Gyeongnam Province. Thus, the analysis of flow behavior and water quality is necessary for the sustainable surface water management and the control of pollutant source. In this study, the flow field and BOD transport at the downstream of Nam River Dam were analyzed by incorporating 2-D water quality model, RAM4 and 3-D water quality model, WASP with the hydrodynamic model, RAM2 and EFDC, respectively. The application of 2-D flow analysis model, RAM2 showed that velocity distributions at the five transverse sections of the meandering part closely followed the measured values by ADCP, and the flow field and overflow characteristic at the submerged weir showed satisfactory performance compared with the result of 3-D EFDC model. In addition, the BOD concentration field obtained by RAM2-RAM4 coupled modeling was in good agreement with the result by EFDC-WASP model throughout the computational domain. The hydrodynamic characteristic and water quality at the downstream reach of Nam River Dam are mainly influenced by the Dam discharge, and the water quantity is closely related to the water quality control and fishery environment at the lower part of Nakdong River. Therefore, when further quantitative analysis is necessary regarding these issues, 2-D semi-coupled modeling is recommended in terms of computational effectiveness and model application aspect.