• Title/Summary/Keyword: 5 major rivers

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Land Cover Change Detection in the Nakdong River Basin Using LiDAR Data and Multi-Temporal Landsat Imagery (LiDAR DEM과 다중시기에 촬영된 Landsat 영상을 이용한 낙동강 유역 내 토지피복 변화 탐지)

  • CHOUNG, Yun-Jae
    • Journal of the Korean Association of Geographic Information Studies
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    • v.18 no.2
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    • pp.135-148
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    • 2015
  • This research is carried out for the land cover change detection in the Nakdong River basin before and after the 4 major rivers restoration project using the LiDAR DEM(Digital Elevation Model) and the multi-temporal Landsat imagery. Firstly the river basin polygon is generated by using the levee boundaries extracted from the LiDAR DEM, and the four river basin imagery are generated from the multi-temporal Landsat-5 TM(Thematic Mapper) and Landsat-8 OLI(Operational Land Imager) imagery by using the generated river basin polygon. Then the main land covers such as river, grass and bare soil are separately generated from the generated river basin imagery by using the image classification method, and the ratio of each land cover in the entire area is calculated. The calculated land cover changes show that the areas of grass and bare soil in the entire area have been significantly changed because of the seasonal change, while the area of the river has been significantly increased because of the increase of the water storage. This paper contributes to proposing an efficient methodology for the land cover change detection in the Nakdong River basin using the LiDAR DEM and the multi-temporal satellite imagery taken before and after the 4 major rivers restoration project.

Big Data-based Monitoring System Design for Water Quality Analysis that Affects Human Life Quality (인간의 삶의 질에 영향을 끼치는 수질(물) 분석을 위한 빅데이터 기반 모니터링 시스템 설계)

  • Park, Sung-Hoon;Seo, Yong-Cheol;Kim, Yong-Hwan;Pang, Seung-Peom
    • Journal of Korea Entertainment Industry Association
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    • v.15 no.3
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    • pp.289-295
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    • 2021
  • Today, the most important factor affecting the quality of human life is thought to be due to the environment. The importance of environmental monitoring systems to improve human life and improve welfare as the magnitude of the damage increases year by year due to the rapid increase in the frequency of hail, typhoons, collapse of incisions, landslides, etc. Is increasing day by day. Among environmental problems, problems caused by water quality have a very high proportion, and as there is a growing concern that the scale of damage will increase when water pollution accidents occur due to urbanization and industrialization, the demand for social water safety nets is increasing. have. In the last 5 years, 259 cases of water pollution (Han River 99, Nakdong River 31, Geum River 25, Seomjin River and Yeongsan River 19, and 85 others) have occurred in the four major river basins. Caused damage. Therefore, it is required to establish a water quality environment management strategy system based on big data that can minimize the uncertainty of the water quality environment by expanding the target of water quality management from the current water quality management system centered on the four major rivers to small and medium-sized rivers, tributaries/branches, and reservoirs. In this paper, we intend to construct and analyze a water quality monitoring system based on big data that can present useful water quality environment information by analyzing the water quality information accumulated for a long time.

Evaluation of Fish Migration Ratio at the Fishway Constructed in Weir (수중보에 설치된 어도의 어류이동 연계율 평가)

  • Cha, Soon-Bae;Seong, Jin-Uk;Kim, Jae-Ok;Park, Je-Chul
    • Journal of Environmental Science International
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    • v.24 no.2
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    • pp.229-236
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    • 2015
  • In this study, the fish-migration ratios of rivers were analyzed, with the aim of proposing objective materials to help South Koreans to establish fish migration systems efficiently in the future. A total of 34,012 weirs have been built in the five major basins, with 5,081 fish-ways observed. Consequently, the fish migration ratio was considered low (14.9 %). According to the findings of the study analyzing the 5,081 fish-ways, standard-type fish-ways took up 68 % of the total while the non-standard types accounted for 32 %. The five major basins were observed to have a total fish-migration ratio of 21.4 %. Regarding tributaries, Tributary 1 accounted for 27.5 % of the fish-migration ratio, while Tributary 2 and 3 accounted for 19.8 % and 16.3 %, respectively. In conclusion, the study argues that any relevant field in the fishing industry of South Korea needs to improve their understanding of the fish-migration ratio. This would be expected, eventually, to help them maximize the efficiency of a minimum number of fish-ways. In addition, the study supports the need for those in relevant fields to study carefully the ecological needs of each fish species, before establishing priority standards for the building of fish-ways.

Changes in Community Structure of Chironomidae Caused by Variability of Environmental Factors among Weir Sections in Korean Rivers (국내 보구간의 환경요인 차이에 의한 깔따구의 군집 구성 변화)

  • Kim, Won-Seok;Park, Jae-Won;Hong, Cheol;Choi, Bohyung;Kim, Ho-Joon;Park, YeonJeong;Park, Jung-Ho;Song, Haeng-Seop;Kwak, Ihn-Sil
    • Korean Journal of Ecology and Environment
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    • v.53 no.1
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    • pp.46-54
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    • 2020
  • Artificial and natural changes such as weir construction and climate change often cause abnormal blooming of organism. Therefore, variations in species community of organisms have been actively investigated to identify influential environmental changes on the fresh water ecosystem. In this study, we investigated Chironomidae community and environmental factors at 5 representative weirs (Ipo, IP; Sejong, SJ; Juksan, JS; Gangjeong-goryung, GG; and Dalsung weir) in 4 Korean major rivers to figure out relationship between Chironomidae community and environmental factors. Environmental factors indicating organic matter (total organic carbon, TOC and Chlorophyll-a, Chl-a) showed lower concentration in IP and SJ compared with other sites(JS, GG and DS). 3 sub-family 18 genus 25 species of Chironomidae community were found in this study. Among them, Chironominae was dominant in JS (Tanytarsus sp.1), GG (Polypedilum scalaenum) and DS (Polypedilum scalaenum), while different sub-family were dominant in IP (Orthcladinae, Tokunagayusurika akamushi) and SJ (Tanypodinae, Tanypus punctipennis). Moreover, based on the dominant species of Chironomidae community and environmental factors, the cluster analysis classified our study sites into 3 groups. These results imply that the diet resource is the most important factor for dominance of Chironomidae in Korean rivers. We also suggest that further study on the identification of diet resources for each Chironomidae specie is required for better understating of distribution in species community of Chironomidae at various ecosystems.

Analysis of Microbial Community Structure in River Ecosystem Using Quinone Profiles (Quinone profile를 이용한 하천생태계의 미생물군집구조 해석)

  • Lim, Byung-Ran;Lee, Kisay;Ahn, Kyu-Hong
    • Journal of Korean Society of Water and Wastewater
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    • v.20 no.5
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    • pp.685-690
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    • 2006
  • The differences in microbial community structures between planktonic microorganism and biofilm in rivers were investigated using respiratory quinone profiles. The compositions of microbial quinone for 4 tributaries of the Kyongan Stream located in/flowing through Yongin City, Gyeonggi-Do were analyzed. Ubiquinone(UQ)-8, UQ-9, menaquinone(MK)-6 and Plastoquinone(PQ)-9 were observed in all samples of planktonic microorganism and biofilm for the sites investigated, Most planktonic microorganism and biofilm had UQ-8(15 to 30%) and PQ-9(over 30%) as the dominant quinone type. These results indicated that oxygenic phototrophic microbes(cyanobacteria and/or eukaryotic phytoplankton) and UQ-8 containing proteobacteria constituted major microbial populations in the river. The quinone concentration in the river waters tested, which reflects the concentration of planktonic microorganisms, increases with increasing DOC. Further research into this is required. The microbial diversities of planktonic microorganism and biofilm calculated based on the composition of all quinones were in the range from 4.2 to 7.5, which was lower than those for activated sludge(ranging from 11 to 14.8) and soils(ranging from 13.4 to 16.8). The use of quinone profile appears to be a useful tool for the analysis of microbial community structure in river.

Comparison of Organic Matter Distribution in Major Tributaries of the Nakdong River (낙동강 지류하천에서 TOC와 COD 유기물의 분포 비교)

  • Kim, Heung-Seop;Hong, Jong-Jin;Seong, Jin-Uk;Choi, Kwang-Soon;Park, Je-Chul
    • Journal of Korean Society on Water Environment
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    • v.29 no.5
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    • pp.618-624
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    • 2013
  • This study was conducted to suggest the concentration distribution of organic matters in 348 tributaries of Nakdong River, and to review the validity of the conversion of organic matter indexes. The average concentration of organic matters in the tributaries was TOC 2.4 mgC/L, DOC 2.1 mgC/L, COD 1.0 mgC/L, respectively. DOC ratio to TOC is 87% and COD ratio is 44%. First tributaries shows higher organic pollution than second tributaries. The correlation between TOC and COD was relatively high as 0.796 (p < 0.01, n = 670). Based upon these results, a regression analysis was conducted. The results showed that TOC concentration was 2.5 times higher than COD concentration. In conclusion, it is appropriate to use TOC for the management of all organic matters. Furthermore, there is a need to build organic matter-related Databases for more rivers so as to establish TOC standards and manage the water quality.

Variation of hazardous substances in sewage ecotoxicological assessment (하수 원수내 유해물질 변화에 따른 생태독성평가)

  • Seo, Byong-Won;Lee, Ju-Hwa;Lee, Yong-Hoon;Kang, Seon-Hong
    • Journal of Korean Society of Water and Wastewater
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    • v.27 no.5
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    • pp.603-610
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    • 2013
  • According to industrialization, increased toxic chemicals discharge has been causing water pollution. Especially domestic sewage is a major source of water pollution. Sixty percent of the total wastewater discharged is domestic sewage. Self-purification capacity of rivers and streams is drastically reduced by the emission of domestic sewage, industrial wastewater and livestock wastewater. Although domestic sewage is managed by implementing standards and regulations, toxicity effect of domestic sewage to humans and the environment is not yet clearly understood. In this study, by using daphnia magna, the ecotoxicity of domestic swage was assessed. Cl, Cu, Pb, COD, T-N, DO, pH and residual chlorine were investigated as background concentrations. The experiments were conducted with water samples obtained from three local sewage treatment plants. The experiment results indicated that higher level of toxicity corresponds to the higher pollution concentrations. The higher level of combinations of background concentrations such as heavy metals leads to the worse ecotoxicity. Especially, the Cu concentration affects the TU value.

Distribution Pattern, Geochemical Composition, and Provenance of the Huksan Mud Belt Sediments in the Southeastern Yellow Sea (황해 남동부 흑산니질대 퇴적물의 분포, 지화학적 조성 및 퇴적물 기원지)

  • Ha, Hun Jun;Chun, Seung Soo;Chang, Tae Soo
    • Journal of the Korean earth science society
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    • v.34 no.4
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    • pp.289-302
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    • 2013
  • In order to determine the provenance of the Huksan Mud Belt sediments in the southeastern Yellow Sea, the major and rare earth elements of the same sediments were analyzed. The surface sediments were sampled from top of piston-cores and box-cores taken at 51 sites within the Huksan Mud Belt. With the mean grain size of $5-6{\phi}$, the sediments of the study area are mud-dominated. The spatial distribution patterns show that silt content is high in the northern Mud Belt, whereas clay content increases as it moves toward the southern Mud Belt. Interestingly, the geochemical compositions both of major and rare earth elements have resulted in differences of sediment provenance. Among the major elements, plots of Fe/Al vs. Mg/Al ratios, $Al_2O_3$ vs. MgO ratios, and $Al_2O_3$ vs. $K_2O$ reveal that the Huksan Mud Belt sediments are dominated by the Korean river-derived sediments. However, the characteristics of rare earth elements infer sediments originating from the Chinese rivers. This discrepancy between the above provenances is attributed to the different contributory factors in the content of chemical elements. Considering strong correlation between major elements with grain sizes, the contents of the major elements are thought to be influenced by the grain size. However, there is a weak correlation between rare earth elements and grain sizes. The behaviour of rare earth elements may be controlled by heavy minerals, rather than grain sizes. Further study requires to solve the discrepancy arose from the difference in applied chemical tracers.

Comparative Analysis of QUAL2E, QUAL2K and CAP Steady State Water Quality Modeling Results in Downstream Areas of the Geum River, Korea (QUAL2E, QUAL2K 및 CAP 모델을 이용한 금강 하류 하천구간 정상상태 수질모델링 결과 비교 분석)

  • Seo, Dongil;Yun, Jong Uk;Lee, Jae Woon
    • Journal of Korean Society of Water and Wastewater
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    • v.22 no.1
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    • pp.121-129
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    • 2008
  • Major factors affecting water quality in rivers are transportation, input of pollutant loads and kinetic transformation of pollutants. Government level decision makings on water quality management are based on steady state water quality modeling. However, it is more than often that such a steady state assumption is far from real situations in rivers. Therefore, it is unavoidable to have modeling errors in water quality modeling especially for steady state modeling for longer period of time. Authors attempted to identify sources of errors in results of steady state models and thus tried to find out ways to minimize those errors. Three water quality models, QUAL2E (Brown et al., 1983), QUAL2K (Chapra et al., 2006) and CAP (Seo and Lee, 2000) were applied to the lower stream of the Geum River. $BOD_5$ and COD tend to underestimate observed data while TN and TP showed relatively smaller errors. QUAL2E model provided best calibration results for BOD5 and TP and QUAL2K model showed best calibration results for TN. Since these errors are only relative values, it was difficult to conclude which model is better performing in certain situations. The most probable reasons for errors in water quality modeling are; 1) inappropriate consideration on flow characteristics, 2) lack of information on incoming pollutant load and 3) inappropriate location of sampling for water quality analysis.

Analysis of mass-balance using CE-QUAL-W2 in the four major rivers (CE-QUAL-W2를 이용한 4대강 보 구간 물질수지 분석)

  • Kwon, Bo Min;Jeong, Sun-A;Yi, Hye-Suk;Han, Gyu Seong;Lee, Jae Soon;Choi, Kwangsoon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.481-481
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    • 2018
  • 본 연구에서는 4대강 수계 16개 보를 대상으로 보별 오염물질의 정량적인 분석을 통한 수질관리를 목적으로 미공병단에서 개발된 CE-QUAL-W2 모형을 이용하여 보별 유기물(BOD, TOC), 영양염류(TN, TP), 조류생체량(ALG)에 대한 물질수지를 분석하였다. 2013년부터 2017년까지를 분석기간으로 설정하여 각 보 구간에서 상류 보, 지류, 하수종말처리장의 유입부하를 입력조건으로 구성하였으며, 검증된 모델 입력자료 및 출력자료를 바탕으로 각 수질항목에 대한 유입 및 유출부하량을 산정하였다. 또한 월별 및 연간 오염물질의 증감 양을 비교 분석하여 보 구간에서 오염물질의 생산 및 소멸 여부에 대한 평가를 하였다. 조사기간 동안 오염물질의 증감 양은 수계 및 보별, 월별 및 연도별, 그리고 수질항목에 따라 상이한 것으로 나타났다. 5년간 평균 수계별 보 구간으로 유입부하량, 유출부하량에 대한 증감율을 보면 한강수계 3개보의 경우 BOD는 -5.4~3.1%, TN은 -3.9~1.1%, TP는 -6.9~-0.9%, TOC는 -8.1~-2.1%, ALG는 14.4~30.8%를 나타내었으며, 낙동강수계 8개보의 BOD는 -10.3~10.6%, TN은 -12.2~11.4%, TP는 -14.9~21.6%, TOC는 -16.6~2.3%, ALG는 -29.5~30.1%, 금강수계 3개보의 BOD는 -1.6~ -0.5%, TN은 -2.6~-0.9%, TP는 -6.6~-3.9%, TOC는 -5.4~-4.9%, ALG는 3.5~21.5%, 영산강수계 2개보의 BOD는 -0.4~3.1%, TN은 0.6~2.0%, TP는 -9.8~-0.9%, TOC는 -11.4~-10.3%, ALG는 30.3~36.5%로 전반적으로 낙동강수계의 BOD와 TP, 영산강수계의 BOD와 TN을 제외한 오염물질이 보 구간 내에서 침전, 분해 등에 의해 감소하는 것으로 나타났다. 조류생체량은 낙동강의 낙단보와 구미보를 제외한 보 구간 내에서 증가하였으며 특히, 금강과 영산강은 하류로 갈수록 조류생체량이 증가하는 것으로 나타났다.

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