• 제목/요약/키워드: water inflow

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국내 연못생태계의 수질관리 (Introduction of Water Quality Management in Korean Pond Ecosystems)

  • 황순진;김한순;천세억;이재안;김창묵;신재기
    • 생태와환경
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    • 제39권4호통권118호
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    • pp.508-515
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    • 2006
  • 본 연구는 식물플랑크톤과 입자성 부유물질에 의해 수질문제를 야기하는 연못의 수질개선과 생태계의 기능 향상을 위해 2004년 7월부터 12월까지 수행되었다. 국내에서 대다수 연못의 관리는 자정작용과 물질순환의 생태학적 개념을 고려하지 않고 있었다. 다른 요인보다도 분수, 폭포 및 어류생물 사육에 의존되었고, 이러한 요인의 유무에 따라 수질 차이가 매우 큰 것으로 파악되었다. 연못 생태계 유지의 지속 가능성은 수질이 최우선으로 고려되는 기반이 제공되어야 한다. 물의 유입량과 유출량의 적절성과 함께 각 요소간 비율의 평형 조절이 무엇보다도 중요하다. 지속 가능성은 하나의 계에서 수평 또는 수직적 균형을 이룰 때 실현될 수 있기 때문에 이에 대한 연구 결과가 반드시 필요하다. 본 연구 결과에서 연못의 구조와 기능적 문제점이 도출된 데 대해 이러한 지속가능성을 유지하는데 가치 있는 유용성을 제공하게 되었다.

파일롯 규모의 운영에 따른 하천수질(T-P) 개선에 관한 연구 (A study of improvement of river water quality(T-P) in pilot-scale operation)

  • 최경수;이채영
    • 상하수도학회지
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    • 제35권5호
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    • pp.323-334
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    • 2021
  • Pilot-scale coagulation and sedimentation processes were operated to investigate the T-P (Total phosphorus) removal efficiency. A multiple regression model was also derived to predict the water quality improvement effect with river water characteristics. The inflow rates for the pilot-scale facility were 157-576 m3/day, and the coagulant doses were in the range of 13.7-58.5 mg/L (average 38.9 mg/L) for PAC (Poly alum chloride) and 16.5-62.1 mg/L (average 36.0 mg/L) for alum. The results found that the influent BOD (Biochemical oxygen demand) and T-P concentrations were 4.9 mg/L and 0.115 mg/L, and the removal efficiencies were 52.7% and 59.4%, respectively. T-P removal efficiencies on wet weather days were higher by 10% than dry weather days because influent solids influenced T-P's coagulation process. The pH of river water was 6.9-7.8, and the average pH was 7.3. Although the pH variation was not significant, the trend showed that the treatment efficiency of T-P and PO4-P removal increased. Thus, the pH range considered in this study seems to be appropriate for the coagulation process, which is essential for phosphorous removal. The T-P removal efficiencies were 19.6-93.3% (average 59.2%) for PAC and 16.4-98.5%(average 55.9%) for alum; thus, both coagulants showed similar results. Furthermore, the average coagulant doses were similar at 42.4 mg/L for PAC and 41.3 mg/L for alum. When the T-P concentration of the effluent was compared by the [Al]/[P] ratio, the phosphorus concentration of the treated water decreased with an increasing [Al]/[P] ratio, and the lowest T-P concentration range appeared at the [Al]/[P] ratio of 10-30. A seasonal multiple regression analysis equations were derived from the relationships between 10 independent and dependent variables (T-P concentration of effluent). This study could help lake water quality maintenance, reduce eutrophication, and improve direction settings for urban planning, especially plans related to developing waterfront cities.

수리화학적 환경 추적자를 이용한 강원도 석호지역에서의 지하수-지표수 상호작용에 대한 연구 (Determining Groundwater-surface Water Interaction at Coastal Lagoons using Hydrogeochemical Tracers)

  • 김동훈;이정윤;조수영;문희선;정윤영;박예진;오용화
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제28권2호
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    • pp.1-11
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    • 2023
  • Groundwater-surface water interaction was evaluated using water quality parameters (temperature and electrical conductivity), distributions of stable water isotopes (δ2H and δ 18O), and Rn-222 in lagoon water, groundwater, and seawater at three coastal lagoons (Songji (SJ), Youngrang (YR), and Sunpo (SP) Lagoon) in South Korea. From the results of composition and distributions of δ2H and δ18O, it was found that groundwater fraction of lagoon water in YR Lagoon (76%) was slightly higher than those of SJ (42%), and SP (63%) Lagoon. Based on Rn-222 mass balance model, groundwater discharge into SJ Lagoon in summer 2020 was estimated to be (3.2±1.1)×103 m3 day-1, which showed a similar or an order of magnitude higher than the results of previous studies conducted in coastal lagoons. This study can provide advanced techniques to evaluate groundwater-surface water interaction in coastal lagoons, wetlands, and lakes, and help to determine the effects of groundwater on coastal ecosystems.

강우-유출 및 저수지 운영 연계 모의를 통한 기후변화의 이수안전도 및 홍수위험도 영향 분석: 합천댐 유역 사례 (Climate change impact analysis on water supply reliability and flood risk using combined rainfall-runoff and reservoir operation modeling: Hapcheon-Dam catchment case)

  • 노성진;이가림;김보미;조지현;우동국
    • 한국수자원학회논문집
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    • 제56권11호
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    • pp.765-774
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    • 2023
  • 기후변화로 인해 강우의 변동성이 증가하여가뭄 또는 홍수가 빈번하게 발생하고 있다. 불확실성이 증가하는 기후 조건에 대응하는 수자원 시설 관리대책의 수립을 위해서는, 하천의 자연 유출량과 인공계 물공급을 모두 고려한 저수지 운영 모의를 통하여, 이수 및 치수 측면의 수자원 시설 영향에 대한 종합적인 분석이 선행되어야 한다. 본 연구에서는 강우-유출과 저수지 운영 모형을 연계 모의하여, 합천댐 유역을 대상으로 기후변화에 대한 이수안전도 및 홍수위험도 분석을 수행하였다. 강우-유출모형으로는 modèledu Génie Rural à 4 paramètres Journalier (GR4J) 모형을, 저수지운영 모형은 HEC-Ressim 모형의 구조를 가지는 R 기반모형을 적용하였다. 구축된 연계 모형에 기후변화 시나리오를 2100년까지적용하여 합천댐의 이수안전도 및 홍수위험도 변화를 정량적으로 분석하였다. 이수안전도 분석 결과, SSP5-8.5에 비해 SSP2-4.5 조건에서 이수안전도가 더높으며, 먼미래로 갈수록 모두 과거 조건보다 이수안전도가 증가하는 것으로 나타났다. 특히, 먼미래 기간에서는 홍수 위험도의 범위가 더욱 넓어지는 것으로나타났으며, SSP2-4.5와 SSP5-8.5 두 시나리오모두 먼미래 기간에서 홍수 위험도의 중앙값이 가장 높았다. 또한, 연총강수량과연총유출은 과거 대비 10% 미만 증가하는데 비해, 홍수시댐무효방류량은 120%이상 증가하여, 연구대상지역인 합천댐유역의 경우, 미래 기후변화로 인한 홍수위험도가 상승할 것으로 예상된다.

평택호에서 수환경과 식물플랑크톤의 계절적 동태 (Seasonal Dynamics of Aquatic Environment and Phytoplankton in Pyeongtaek Reservoir, Korea)

  • 신재기
    • ALGAE
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    • 제18권2호
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    • pp.145-156
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    • 2003
  • Seasonal investigations were conducted to determine the major aquatic environmental factors and the variation of phytoplankton in Pyeongtaek Reservoir in March, June, September, and December 2000. Heavy rainfall mainly occurs from late June to mid-September, and water quality of reservoir was high in the influent zone of stream and riverine zone of reservoir. The biomass of phytoplankton was related to aquatic environmental factors. In particular, its value increased where nutrient concentration was high. Likewise, the increase of turbidity was found to have anthropogenic effects on the varying quantity of phytoplankton. The phytoplankton composition in quantitative survey identified into 43 genera and 71 species. Species numbers of Bacillariophyceae, Cyanophyceae, and Chlorophyceae accounted for 17%, 15%, and 49%, respectively, with the remainder constituting less than 3-7%. The distribution of such phyla also significantly varied according to seasons, accounting for 25%, 37%, 61%, and 14% in March, June, September, and December, respectively. Bacillariophyceae and Chlorophyceae were observed throughout the year, while Cyanophyceae proliferated in June and September. Euglenophyceae and Dinophyceae were prevalent in March and September, while Cryptophyceae occurred in March and December. The succession trend of phytoplankton showed the maximum cell density was followed by Bacillariophyceae (6.8$\times$$10^3$ cells ${\cdot}$ml)$\rightarrow$ Chlorophyceae (3.7$\times$$10^3$ cells ${\cdot}$ml)$\rightarrow$Cyanophyceae (1.3$\times$$10^4$ cells ${\cdot}$ml)$\rightarrow$Cryptophyceae (1.2$\times$$10^3$ cells ${\cdot}$ml). The cell density was the highest in the upstream. Dominant species were composed of Aulacoseira ambigua, Stephanodiscus hantzschii f. tenuis of Bacillariophyceae, Anabaena spiroides var. crassa, Microcystis aeruginosa, Oscillatoria amphibia of Cyanophyceae, Actinastrum hantzschii var. fluviatile, Pediastrum duplex var. reticulatum of Chlorophyceae, Euglena gracilis, Trachelomonas spp. of Euglenophyceae, and Chroomonas spp., Cryptomonas spp. of Cryptophyceae. As a results, seasonal variation of phytoplankton in Pyeongtaek Reservoir was evident in spite of inflow the high concentration of nutrients from watershed streams, because hydrological control and anthropogenic disturbance in reservoir were found to have major effects on the retention time of water.

등고선지도를 이용한 수로 및 산사태 위험 분석 -천안의 성거산을 중심으로- (A risk analysis of water courses and landslide using contour maps -Focusing on Mt. Seonggo in Cheonan City-)

  • 김세근;김동근;맹승렬
    • 디지털융복합연구
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    • 제10권6호
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    • pp.289-296
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    • 2012
  • 우리나라는 지형적, 기후적 특성으로 인해 매년 여름 산사태의 가능성이 크며, 최근 난개발로 인해 이의 발생과 피해가 더욱 커지고 있다. 천안지역은 상대적으로 안전한 지역으로 인식되어 왔으나 산사태의 위험요인이 증가하고 있어 체계적 분석이 필요하다. 본 논문에서는 천안 성거산 주변을 중심으로 등고선 지도를 이용하여 지형의 특징을 추출하고, 이를 이용하여 호우 시 수로와 유역의 면적을 계산하였다. 분석결과 성거산 주변 지역은 수로의 길이와 호우 유입량 관점에서 산사태에 비교적 안정적인 것으로 분석되었으나 일부 국소지역은 계속적 관찰이 필요하다. 한편 등고선 지도는 다른 수치지도 보다 비용 면에서 경제적이므로 1차적 산사태 위험도 분석에 적합하다.

A Study of Transient Estuarine Circulation in the Chunsu Bay, Yellow Sea: Impact of Freshwater Discharge by Artificial Dikes

  • Jeong, Kwang-Young;Ro, Young Jae;Kang, Tae Soon;Choi, Yang Ho;Kim, Changsin;Kim, Baek Jin
    • 해양환경안전학회지
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    • 제26권3호
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    • pp.242-253
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    • 2020
  • This study examined the ef ects of freshwater discharge by artificial dikes from the Kanwol and Bunam lakes on the dynamics in the Chunsu Bay, Yellow Sea, Korea, during the summer season based on three-dimensional numerical modeling experiments. Model performances were evaluated in terms of skill scores for tidal elevation, velocity, temperature, and salinity and these scores mostly exceeded 90 %. The variability in residual currents before and after the freshwater discharge was examined. The large amount of lake water discharge through artificial dikes may result in a dramatically changed density field in the Chunsu Bay, leading to an estuarine circulation system. The density-driven current formed as a result of the freshwater inflow through the artificial dikes (Kanwol/Bunam) caused a partial change in the tidal circulation and a change in the scale and location of paired residual eddies. The stratification formed by strengthened static stability following the freshwater discharge led to a dramatic increase in the Richardson number and lasted for a few weeks. The strong stratification suppressed the vertical flux and inhibited surface aerated water mixing with bottom water. This phenomenon would have direct and indirect impacts on the marine environment such as hypoxia/anoxia formation at the bottom.

Characteristics of Andong Dam Inflow during Non-rainfall Season

  • Park, Gey-Hwan;Park, Ki-Bum;Chang, In-Soo
    • 한국환경과학회지
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    • 제27권10호
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    • pp.845-851
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    • 2018
  • In this study, the runoff characteristics of the non-rainfall period were examined using daily rainfall data from 1977 to 2017 and the data of runoff into the dam. Results showed that, the mean runoff decreases with longer non-rainfall periods in the Andong dam basin. The correlation coefficient between non-rainfall days and average runoff reaches 0.85. The results of the analysis of the runoff characteristics during the non-rainfall period, based on the preceding rainfall of Andong dam are as follows. The runoff characteristics of the entire non-rainfall period, shows that, for a rainfall of 1.0 mm or less, the runoff height was larger than the rainfall size and the base runoff larger. The correlation between the antecedent rainfall and runoff height was reached as high as 0.9864 in the 30 ~ 50 mm interval of the antecedent rainfall period, and this is the interval where the linearity of rainfall and runoff was at its maximum in the Andong dam basin. The correlation between the antecedent rainfall and the runoff height reached 0.92 for rainfalls of 100.0 mm. However, for rainfalls of 100.0 mm greater, the correlation between the antecedent rainfall and runoff height during the rainfall period was 0.64, which is relatively small. In this study, we investigated the runoff characteristics of the rainfall period in the Andong dam watershed. As a result, it was confirmed that the mean runoff decreased with rainfall duration. The linearity was found to be weak for rainfall events greater than 100.0 mm. The results of this study can be used as data for water balance analysis and for formulating a water supply plan to establish water resource management of Andong dam.

공압파쇄를 이용한 지하수량 증가에 대한 연구 (A Study on Pneumatic-Fracturing for Development of Groundwater in Rock Mass)

  • 김종태;정교철;부성안;김진성;김혜빈
    • 지질공학
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    • 제14권2호
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    • pp.189-197
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    • 2004
  • 최근, 지하수 양수량이 적은 관정을 대상으로 양수량을 증가시키기 위한 연구가 활발하게 이루어지고 있다. 이러한 관정에 대한 효율적인 방법으로는 공압파쇄를 이용할 수 있다. 공압파쇄는 관정 내 일시적 및 단계적으로 공기압을 주입하여 암반 내 응력의 불균형을 초래시켜 균열의 폭, 길이, 수를 증가시키거나 균열 내 물질을 제거함으로써 지하수가 유입될 수 있는 공간을 확보해주는 공법이다. 즉, 일시적으로 큰 공기압을 암반 내로 주입하여 암반 원래의 투수성보다 더 높은 투수성 및 지하수양을 얻을 수 있다. 이 연구의 결과로서 P-5공에서는 파쇄 전 양수량이 $26\textrm{m}^3/day$, 수위강하량이 51.12m, 비양수량은 $0.51\textrm{m}^2/day$이며, 파쇄 후 양수량은 $30\textrm{m}^3/day$, 수위강하량이 56.58m, 비양수량은 $0.53$m^2$/day$이다. 이는 당초보다 $4\textrm{m}^3/day$이 증가되었으며 약 15%의 수량증대 효과가 나타났다.

부산 수영구 지하철 터널에서의 지하수 유출이 주변 지하수에 미치는 영향 (The Influence of the Surrounding Groundwater by Groundwater Discharge from the Subway Tunnel at Suyeong District, Busan City)

  • 정상용;김태형;박남식
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제17권2호
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    • pp.28-36
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    • 2012
  • This study carried out several kinds of investigations such as geology, hydrogeology, groundwater level and quality, surface-water quality, and the quantity and quality of groundwater discharge from the subway to identify the causes of groundwater contamination around the subway tunnel at Suyeong District in Busan City. Geostatistical analyses were also conducted to understand the characteristics of groundwater level and quality distributions. There are Kwanganri Beach and Suyeong River in the study area, which are basically influenced by seawater. The total quantities of groundwater utilization and groundwater discharge from the subway tunnel in Suyeong District are 2,282,000 $m^3$/year, which is 2.4 times larger than the sustainable development yield of groundwater. The lowest groundwater level around the subway tunnel is about 32 m below the mean sea-level. The large drawdown of groundwater led to the inflow of seawater and salinized river water toward the subway tunnel, and therefore the quality of groundwater didn't satisfy the criteria of potable, domestic, agricultural and industrial uses. Distribution maps of groundwater level and qualities produced by kriging were very useful for determining the causes of groundwater contamination in the study area. The distribution maps of electrical conductivity, chloride and sulfate showed the extent of seawater intrusion and the forceful infiltration of the salinized Suyeong River. This study revealed that seawater and salinized river water infiltrated into the inland groundwater and contaminated the groundwater around the subway tunnel, because the groundwater level was seriously drawdowned by groundwater discharge from the subway tunnel. The countermeasure for the minimization of groundwater discharge from the subway tunnel is necessary to prevent the groundwater obstacles such as groundwater depletion, groundwater-quality deterioration, and land subsidence.