• 제목/요약/키워드: The water quality fluctuation characteristics

검색결과 43건 처리시간 0.021초

우리나라 저수지에서 지형, 수문, 수질 및 호안 토양 환경요인의 분석 (Analysis of Environmental Factors of Geomorphology, Hydrology, Water Quality and Shoreline Soil in Reservoirs of Korea)

  • 조현석;조강현
    • 생태와환경
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    • 제46권3호
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    • pp.343-359
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    • 2013
  • 우리나라 저수지에서 호안 환경의 특성을 파악하기 위하여, 수위변동폭과 이용 목적에 따라서 35개 저수지를 선정하여 지형, 수문, 수질 및 토양 환경요인을 조사하여 이들 사이의 관계를 분석하고 환경 특성에 따라 저수지의 유형을 구분하였다. 저수지의 지형적, 수문적 특성은 그 조성된 곳의 환경과 크기에 따라서 다양하였다. 저수지의 연수위변동폭은 1~27 m로서 변이가 컸다. 저수지의 수질은 대부분 중영양 혹은 부영양 상태이었다. 호안의 토양 환경은 모래 함량이 많았다. 저수지의 수위변동폭, 빈도 및 기간은 저수지의 이용 목적에 따라서 독특한 특성을 보였다. 홍수조절용 저수지는 수위변동 폭이 크고 빈도는 낮았으며 수력발전용 저수지는 수위변동 폭이 크고 빈도가 높았다. 회귀분류 나무(CART) 분석 결과에 의하면 저수지의 수질은 수심, 수위변동폭 및 고도에 의하여 구분되었다. 주요인분석(PCA)의 결과에 의하면 환경요인에 의하면 저수지의 유형은 저수지의 크기, 수위변동폭, 수질 및 토양의 토성과 유기물 함량에 의하여 구분되었다. 이상의 결과를 종합하면, 우리나라 저수지의 호안에서 저수지의 크기, 수위변동폭, 수질 및 호안 토양의 특성이 중요한 환경요인인 것으로 판단되었다.

우리나라 저수지의 용도에 따른 호안 식물상 차이 (Difference in Shoreline Flora According to the Usage of Reservoirs in Korea)

  • 조현석;조강현
    • 한국습지학회지
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    • 제17권4호
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    • pp.339-347
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    • 2015
  • 저수지의 이용목적에 따라서 수력발전용, 농업용수용, 생활 공업용수용 및 홍수조절용으로 구분한 우리나라 35개 저수지의 호안에서 출현하는 관속식물 종류와 지형, 수문, 물 및 토양 환경을 조사하여 이용목적에 따른 호안 환경과 식물상 특성의 차이를 규명하고자 하였다. 호안의 식물상은 저수지의 용도에 따라서 종수, 종류 및 식물종 특성에서 차이를 나타내었다. 단계별 변수선택법 결과에 의하면 저수지 호안의 출현종수는 중앙수위에서 범람빈도가 높고 호안의 연평균노출기간이 길수록 증가하였다. 주좌표분석과 집괴분석의 결과에서 저수지 호안의 식물상은 이용목적에 따라서 크게 3가지 유형, 홍수조절용과 생활 공업용수용, 농업용 및 발전용 저수지로 구분이 되었다. 식물상의 특성에 영향을 미치는 주요한 환경 요인은 연간 수위변동폭, 중앙수위 연범람빈도, LQI 지수 및 연평균노출기간이었다. 수위가 안정적으로 유지되고 수질이 중영양으로 유지되는 발전용 저수지에서는 종풍부도가 높고 침수식물종을 비롯한 수생식물종이 풍부한 연안대가 발달하였다. 수위변동이 심하고 수질이 빈영양 혹은 중영양인 홍수조절용과 생활 공업용수용 저수지 식물상은 수위변동역에서 단명의 교란지식물이 분포하였다. 수위변동이 중간 정도이고 중영양 또는 부영양인 농업용 저수지에서는 부엽식물과 부유식물과 같은 수면을 덮는 식물종이 특징적으로 분포하였다. 결론적으로 저수지 호안의 식물상 특성은 이용목적에 따라서 수위변동, 수질 등의 환경요인이 차이가 나타나고 이에 따라서 식물상의 구조와 종풍부도가 다르게 나타났다.

우리나라 저수지 수질에 미치는 수문지형 및 유역 토지피복의 영향 (Effects of Hydrogeomorphology and Watershed Land Cover on Water Quality in Korean Reservoirs)

  • 조현석;조형진;조강현
    • Ecology and Resilient Infrastructure
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    • 제6권2호
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    • pp.79-88
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    • 2019
  • 우리나라 저수지의 수질 특성과 이에 영향을 미치는 환경요인을 파악하기 위하여, 운영목적, 수위변동 및 지리적 분포가 다양한 73개 저수지를 선정하여 수질 요인으로 화학적산소요구량 (COD), 엽록소 a (Chl a), 총인 (TP), 총질소 (TN)를, 수문지형 요인으로 연수위변동폭, 총저수량, 댐의 고도, 유역 면적, 호안발달도 (shoreline development index)를, 토지피복 요인으로서 산림, 농경지 및 도시화지역의 면적비율을 조사하였다. 저수지 수질은 유역의 도시화지역과 농업지역의 면적 비율이 크고, 고도가 낮고 연수위변동폭과 유역면적이 좁으며 총저수량이 적고 원형에 가까운 형태의 저수지에서 더욱 부영양화가 심하였다. 저수지 운영목적에서는 농업용수용 저수지가 홍수조절용 저수지보다 수질이 좋지 않았다. 변수선택과 경로분석의 결과에서, TP에 의한 Chl a에 영향을 받는 COD는 수위변동폭과 호안발달도에 의하여 직접적으로 영향을 받았다. 또한 TP는 유역의 도시화면적에 의하여 직접적으로 영향을 받으며 토지이용은 저수지의 고도와 관련이 있었다. 한편 TP는 수위변동폭과 호안발달도에 영향을 받았다. 결론적으로 우리나라의 저수지 부영양화는 유역의 토지이용, 수문적, 지형적 특성에 의하여 영향을 받으며, 특히 저수지 운영목적에 따른 인위적인 물관리에 의한 수위변동과 저수지의 위치에 의하여 수질 특징이 결정된다고 생각된다.

하수관거 정비지역의 관거이송 유량 및 수질특성 변화 (Changes in Characteristics of Sewer Flow & Its Water Quality from the Sewer Rehabilitation Area)

  • 박준대;오승영;최윤호;김용석
    • 한국물환경학회지
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    • 제31권2호
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    • pp.196-208
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    • 2015
  • This study analyzed the characteristics of sewer flow and its water quality, and investigated changes in the characteristics in three areas where the sewer rehabilitation projects have been carried out. In S1 area, the patterns of the flow became regular and the range of the fluctuation decreased after the sewer rehabilitation. The flow and its BOD concentration increased. The infiltration/inflow and exfiltration showed clear distinction before and after the sewer rehabilitation in this area. In S2 area, the patterns and the range of the fluctuation of the flow made no differences before and after the sewer rehabilitation. The flow decreased slightly and its BOD concentration increased considerably after the sewer rehabilitation. Big decrement in stormwater inflow but small in exfiltration appeared in this area. In S3 area, the patterns and the range of the fluctuation of the flow made no differences before and after the sewer rehabilitation. The flow decreased slightly and its BOD concentration increased in a small rate in this area.

통계적 분석을 이용한 간이급수시설의 오염원에 관한 연구 (A Study on the Pollution Sources of Simple water Supply Piped System using Statistical Analysis)

  • 이홍근;김현용;백도현;김지영;이태호
    • 환경위생공학
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    • 제14권2호
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    • pp.56-67
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    • 1999
  • This study was performed to suggest the basic data and plans for the establishment of safe water supply plans in simple water supply piped system in the rural areas. In 4 different places, 24 points of water sources 36 points of taps from water sources were sampled. Of the whole 60 points, 55 points were ground water and 5 points were surface water. 14 items were measured for the analysis of water quality on each samples. The measured items were analyzed again by statistical method ; cluster analysis and principle components analysis. The results of this study are as followed. 1) In water quality analysis on water sources, 4 items, bacteria, E.coli, NH3-N and Fe exceed the standard. Of 24 points, 20 points(83%) on bacteria, 1 point(4%) on NH3-N and Fe exceed the standard. 2) In water quality analysis on near and remote taps, 4 items, bacteria, E.coli, NH3-N and Fe , exceed the standard. Of 36 points, 20 points (81%) on bactria, 1 pint(3%) on NH3-N and Fe exceed the standard. 3)Cluster analysis on water quality shows the differences by the kinds of water sources, geographical characteristics and distance from water sources. 4) Principle components analysis on ground water shows that Factor 1 and Factor 3 are natural fluctuation by the content of soil. Also, Factor 2 and Factor 4 are penetration of pollutants to underground. Therefore, it is needed to take deeper ground water in order to prevent from pollution in the areas which have ground water as water source . 5) Principle components analysis on surface water shows that Factor 1 is penetration of vacteria from surface to water source when rainfalls. Also, Factor 2 is fluctuation of water quality by the geographical characteristics. Therefore, the counterplans against non-point pollution source must be taken. Filtration and disinfection facilities are needed in the areas which have surface water as water source.

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장기관측자료에 의한 금강하구둑 수문조작에 따른 수질 변화 평가 (The Estimation of Water Quality Changes in the Keum River Estuary by the Dyke Gate Operation Using Long-Term Data)

  • 권정노;김종구;고태승
    • 한국수산과학회지
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    • 제34권4호
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    • pp.348-354
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    • 2001
  • This study was conducted to estimation of change characteristics for water quality by the dyke gate operation in the Keum River estuary. The estimation data made use of surveyed data in Keum River estuary by NERDI (National Fisheries Research and Development Institute) during $1990\~1999$. Shown to compare water quality changes at st. A and st. D in Figure 1, the concentrations of TSS, COD and nutrients at st. A were as high as about $2\~4$ times than those at st. D due to affection of fresh water discharge in the Keum River. The percentages of water quality change at surface water by dyke gate operation in the Keum River estuary were shown that TSS (Total Suspended Solid) was decrease to $56\%,\;47\%$ at st. A and D, and COD (Chemical Oxygen Demand) was increase to $68\%,\;71\%$ at st. A and D, respectively. The changes percentage of DIN (Dissolved Inorganic Nitrogen) by dyke gate operation in the Keum River estuary were increase high to $95\%$ at surface water and $7\sim30\%$ at bottom water, but those of DIP (Dissolved Inorganic Phosphorus) were increase to $2.8\sim8.6\%$ at surface water and $28\%$ at bottom water. The range of fluctuation for water quality at each station by dyke gate operation has shown that salinity and TSS are little better than before dyke gate operation, but COD show highly fluctuation. Also we studied estimation of characteristics of water quality change by the season, COD was increased except the summer, TSS was decreased to all season. DIN was increased to about $61\sim172.1\%$ for all season, but DIP was increased to the spring and decreased to the autumn, DIN enrichment in the estuary by dyke gate operation are interpreted to improvement of organic matter decomposition and nitrification by increasing the residence time and to increase nutrient flux in sediments due to decreasing dissolved oxygen and increasing a deposit matter.

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신규 댐 건설 전후의 수질변동 분석: 영주댐 상류유역을 중심으로 (Analysis of Water Quality Characteristics According to Short-term Fluctuation of Water Level in the New Dam: Focused on the Upstream Watershed of Yeongju Multipurpose Dam)

  • 이새로미;박재로;황태문;안창혁
    • 한국물환경학회지
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    • 제36권5호
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    • pp.431-444
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    • 2020
  • The relationship between dam construction and water quality has recently come to be considered an important issue. A dam is a physical factor which causes changes to the river system around it. Considering these points, this study was conducted to obtain basic data by analyzing the relationship between water level fluctuations and water quality parameters in the short-term. In terms of methodology, the new construction of the Yeongju Dam (M5) in 2016 was divided into Stage 1 as the lotic system and Stage 2 as the lentic system, with four years in each period, and the water level fluctuations and water quality were analyzed using official data. As a result of this study, M5, a stagnant area in which organic matter and nutrients accumulate, was found to be an important factor in water quality management. In addition, the water level changed rapidly (0.9±0.2 m → 10.9±7.1 m) as the river environment condition was converted from the lotic system to the lentic system. In addition, water quality parameters such as BOD, COD, TOC, and Chl-a significantly changed in the short-term. Further, since the transport of organic matter and nutrients occurred well in the lotic system, sedimentation was expected to be dominant in the lentic system. Therefore, it was determined that when the river flow is blocked, autochthonous organic matter is an important factor for long-term water quality management in the future. This process can increase the trophic state of the water body. As a result of this study, the TSIKO value was converted from mesotrophic in Stage 1 to eutrophic in Stage 2. Eventually, short-term changes in the river environment will affect not only changes in water level but also changes in water quality. Thus, a comprehensive and strategic approach is needed for long-term water quality management in the future.

지류하천의 상·하류 수질변화 비교: 낙동밀양 중권역 내 계성천 화포천을 대상으로 (Comparison of Changes in Upstream and Downstream Water Quality of Tributary Rivers: Gyeseong-stream and Hwapo-stream in Nakdongmiryang Watershed)

  • 심규현;김경훈;김성민;김용석;김진필
    • 한국물환경학회지
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    • 제36권5호
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    • pp.445-452
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    • 2020
  • Tributary is a part of life space for people and a very important place that accommodates rest recreation and other daily activities. absolutely insufficient basic data about water quality and flow rate are available for basin management. Efficient water and basin management systems, which are also supported by local residents can be established by securing such basic data of major tributaries in the Nakdong river system. In this study, the fluctuation characteristics of upstream and downstream water pollution levels were compared using the measurement results of the water environment measurement network and the tributary monitoring project for the gyeseong-stream and Hwapo-stream in the Nakdong-miryang watershed. In 2017, when water pollution is the highest, it was confirmed that the annual average rainfall was the lowest. Although the upstream and downstream water quality tendencies of the Gyeseong-stream are similar, the water quality concentrations of the Gyeseong-stream are relatively different. But although the Hwapo stream has various causes of pollution, there was not much difference in the level of pollution between the upper and lower streams. In addition, both rivers need the ability to purify rivers by securing sufficient water for river maintenance, and if the correlation between water quality items can be inferred through continuous monitoring of tributaries where the aspect of water quality change is unclear, water quality management Determined to be efficient operation.

하계 금강하구 주변해역의 수질특성과 수질변동 요인분석 (Characteristics of Water Quality and factor Analysis on the Variations of Water Quality in Coastal Sea around the Keum River Estuary in Summer)

  • 권정노;김종구;유선재
    • 한국해양환경ㆍ에너지학회지
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    • 제3권4호
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    • pp.3-22
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    • 2000
  • 1998년 하계(6~9월)에 금강하구 주변 해역 11개 정점을 조사하여 공간적인 수질변통 특성을 파악하고, 통계분석 기법의 하나인 요인분석을 동하여 하계 금강하구 주변해역에서의 수질변동 지배요인을 분석하였다. 조사기간 동안 금강하구 주변해역의 화학적산소요구량의 평균농도는 1.36mg/L, 용존무기질소의 평균농도는 28.60㎍-at/L, 용존무기인의 평균농도는 0.48㎍-at/L로 나타났으며, 주성분분석 결과 전체 수질변동의 약 43%를 차지하는 제 1주성분 요인이 담수 유입과 밀접한 관련이 있는 영양염류와 염분의 변화로 나타나, 담수변통 요인이 중요한 역할을 하는 것으로 나타났다.

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수질오염총량관리 단위유역의 유량변화 특성분석 - 금강수계를 대상으로 - (Characterization on the Variation of Streamflow at the Unit Watershed for the Management of Total Maximum Daily Loads - in Guem River Basin -)

  • 박준대;오승영;최옥연
    • 한국물환경학회지
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    • 제27권6호
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    • pp.914-925
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    • 2011
  • The variation of streamflow is regarded as one of the most influential factors on the fluctuation of water quality in the stream. The characteristics of the variation should be taken into account in the plans for the management of Total Maximum Daily Loads (TMDLs). This study analysed and characterized spatial distribution and temporal variation of streamflow at each unit watershed in Guem-river basin. For the analysis of the distribution of streamflow, the type and the extent of the distribution were investigated for the unit watershed. For the analysis of the variation, short and long term changes of streamflow were examined. The result showed that most of the distributions were not log-normalized and the extent of variation tends to be greater at the unit watershed placed on the tributaries in the basin. A kind of margin could be granted to the unit watershed involving high variations so as to establish the water quality goal and load allotment more reasonably and effectively in view of whole waterbody.