• 제목/요약/키워드: total water

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A Study on the Water Resources Assessment for Irrigation Scheme in Malawi

  • AHN, SungSick;Kim, Jin-Hong
    • International Journal of Advanced Culture Technology
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    • 제6권3호
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    • pp.178-186
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    • 2018
  • Generally, in terms of the development of irrigation scheme, the efficient water resource management that supplies the irrigation water in consideration of the required time and accurate quantity to grow the crop should be conducted. The water resource assessment should precede to supply the irrigation water efficiently. The water resources assessment is divided into the water requirement analysis and the water availability assessment. In case of Korea, the major crop is paddy rice unlike crops of Africa, such as sugarcane, maize, and cassava, etc. Because it is not familiar with the method for upland irrigation development in tropical area, it needs to know the water resources assessment for irrigation scheme development about these crops. The Natama Scheme in Chiradzulu District of the Southern Malawi was selected as study area, which has tropical climate. From the collected meteorological data, the evapotranspiration was analyzed by Penman-Monteith Method and the effective rainfall was analyzed by USDA Soil Conservation Service Method. This study displays the results that for study area, the evapotranspiration varies from 2.80 mm/day to 5.51 mm/day and the effective rainfall varied from 2.1mm to 149.0mm. According to the selected crop (Green Maize, Dry Maize), the unit water requirement (UWR) and water demand (WD) considering the irrigation efficiency, irrigation time and irrigation area were estimated to be $0.00122m^3/s/ha$ and $0.0122m^3/s$ respectively. For the water availability assessment, the runoff of Natama scheme was calculated by specific yield method. The water availability was evaluated through reviewed differences of discharge between $Q80_{intake}$ and Total WD, and the irrigation water can be supplied sufficiently in the existing 10ha of Natama scheme. As a result of reviewing the extensibility of irrigable area, total WD of scheme is $0.02313m^3/s$, and $Q80_{intake}$ is $0.02387m^3/s$ ($Q80_{intake}$ > Total WD). Therefore, Natama scheme can be extended from 10 ha to 17 ha in the dry season in consideration of the $Q80_{intake}$.

하천 분광특성을 이용한 수질항목 모니터링 연구 - 울산 지역 (Monitoring of Water Quality Parameters using Spectroscopic Characteristics of River Water - Ulsan Area)

  • 허진;김미경;신재기
    • 한국물환경학회지
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    • 제23권6호
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    • pp.863-871
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    • 2007
  • Spectroscopic characteristics of river water from four major watersheds in the Ulsan area were measured to examine their potential for estimating water quality parameters. The total 176 river samples were collected from 44 sites of small streams within the watersheds during the year 2006. Spectroscopic characteristics investigated included protein-like fluorescence (FLF) intensity, fulvic-like fluorescence (FLF) intensity, terrestrial humic-like fluorescence (TLF) intensity, UV absorbance at 254 nm, and UV absorbance difference at 220 nm and 254 nm. Protein-like fluorescence intensity showed linear relationships with biochemical oxygen demand (BOD), chemical oxygen demand (COD), total phosphorous (TP) concentrations of the samples with the correlation of 0.784, 0.779, and 0.733, respectively. Due to the UV absorption characteristics of nitrate at 220 nm, UV absorbance difference at 220 nm and 254 nm was selected to represent total nitrogen (TN) concentration. Exclusion of some samples with PLF intensity higher than 5.0 improved the correlation between the UV absorbance difference and TN as demonstrated by the increase of the correlation coefficient from 0.392 to 0.784. Instead, for the samples with PLF intensity lower than 5.0, the highest correlation of TN was achieved with UV absorbance at 254 nm. The results suggest that PLF intensity could be used as the estimation index for BOD, COD, and TP concentration of river water, and as the primary screening index for the prediction of TN using UV absorbance difference. Some BOD-based water quality levels among the river water were statistically discriminated by the PLF intensity. Low p-values were obtained from the t-tests on the samples with the first level and the second level (p=0.0003) and the samples with the second and the third levels (p=0.0413). Our combined results demonstrated that the selected spectroscopic characteristics of river water could be utilized as a tool for on-site real-time monitoring and/or the primary estimation of water quality.

한강수계 중권역별 오염물질 추세분석 및 달성도 평가를 통한 우선관리물질 선정 (Pollutants Classification based on Trend Analysis and Assessment of Water Pollutants Achievement in Subbasins of Han River Basin)

  • 김계웅;송정헌;이도길;황하선;강문성
    • 한국농공학회논문집
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    • 제61권3호
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    • pp.67-76
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    • 2019
  • The objectives of this study were to analyze trends of water pollutants and to evaluate the achievement of water quality standards by subbasins in the Han River. The trends of 40 water pollutants at 232 water quality measurement points were analyzed. Chemical oxygen demand (COD), Total organic carbon (TOC), Total coliforms (TC), et cetera were found to be worsening trend. For evaluation of achievement, we evaluated water quality arithmetic mean with river environment standards and human health standards at representative points of the subbasin. Biochemical oxygen demand (BOD), TOC, Total phosphorus (T-P), Fecal coliforms (FC), TC exceeded water quality standards, and water quality of human health standards was all satisfied. So, we prioritized pollutants. If pollutants exceed water quality standards or were worse, they were classified first pollutants. Although BOD and T-P are first pollutants because of water quality standards excess, they are continuously improved. Also, it is better to maintain current status because water quality management system of BOD and T-P is well prepared. Meanwhile, TOC, TC, and FC exceed water quality standards. Furthermore, they were worse gradually, but there is a lack of management systems such as water quality standards of the effluence facilities. Therefore, it is necessary to supplement the system. The results of this study can be used as primary data for the establishment of water quality standards and selection of management pollutants.

Tolerance Range Analysis of Fish on Chemical Water Quality in Aquatic Ecosystems

  • Kim, Jeong-Kyu;Han, Jeong-Ho;An, Kwang-Guk
    • 생태와환경
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    • 제43권4호
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    • pp.459-470
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    • 2010
  • In this study, we analyzed fish tolerance guilds in mainstems and tributaries of 65 streams and rivers arid their relations to water quality using dataset sampled from April to November, 2009. For the study, water quality parameters including biochemical oxygen demand (BOD), electric conductivity (EC), total nitrogen (TN), total phosphorus (TP), ammonia nitrogen ($NH_3$-N), nitrate nitrogen ($NO_3$-N) and phosphate phosphorus ($PO_4$-P) were analyzed in the laboratory and also tolerance ranges in 3 category fishes of sensitive, intermediate, and tolerant species with high abundance were analyzed. According to fish guild analysis, tolerant species was 58% of the total community and the proportion of omnivore species was 63% of the total, indicating a degradation of habitats and water quality. Water quality was shown typical longitudinal gradients from the headwater to the down-river; TN and TP increased toward the down-rivers except for the big point-source area and ionic contents, based on, electric conductivity showed same pattern. Tolerance guild analysis of 9 major species with high abundance indicated that sensitive groups had narrower tolerance range in the water quality than the groups of intermediate and tolerant species. In contrast, tolerant groups including Zacco platypus, Carassius auratus, and Opsarichthys uncirostris amurensis had wider tolerance ranges than the groups of sensitive and intermediate species. Thus, each group was evidently segregated from the tolerance levels. Principal Component Analysis (PCA) employed for the relations of water quality to fish species in each groups suggests that water quality had highest eigenvalues with fish species in the 1st axis of the PCA and nitrogen (TN, $NH_3$-N, $NO_3$-N) and phosphorus (TP) were key components differentiating three groups of sensitive, intermediate and tolerance guilds.

CE-QUAL-W2를 이용한 진양호 취수량 변화에 따른 수질영향 분석 (Analysis of Water Quality Impact for Water Intake in Jinyang Reservoir Using CE-QUAL-W2)

  • 탁용훈;김영도;정선아;정세웅
    • 한국수자원학회논문집
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    • 제48권10호
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    • pp.857-868
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    • 2015
  • 저수지의 효과적인 수질관리를 위해서는 신뢰도 높은 수리 및 수질모형이 필요하며, 이러한 모형의 성능은 다양한 수문사상에 대하여 적용함으로써 검증할 수 있다. CE-QUAL-W2 모형은 횡방향 평균 2차원 수리 및 수질 모형으로써 진양호와 같이 수체의 수심과 길이에 비해 폭이 좁은 저수지에 적합한 모형으로 앞선 연구자들에서 많이 사용되어 왔다. 본 연구에서는 용수수요가 증가할 것으로 예상되는 남강댐 유역에 대하여 풍수년인 2011년과 평수년인 2009년의 수문사상에 대하여 검보정을 실시하였고, 보정년도인 2011년의 수문사상과 수질 조건을 이용하여 취수량 증가에 대한 영향을 모의하였다. 모의 결과취수량을 변화시킴에 따라 T-N, T-P 및 Chlorophyll-${\alpha}$ 농도는 증가하는 것으로 나타났고, 특히 갈수기에 각각 최대 62.53%, 39.07%, 232.19% 증가하는 것으로 나타났으며, Chlorophyll-${\alpha}$ 농도의 변화는 T-P의 변화특성과 비슷한 추세를 보였다.

하천의 지표 미생물 모의를 위한 인공신경망 최적화 (Optimum conditions for artificial neural networks to simulate indicator bacteria concentrations for river system)

  • 배헌균
    • 한국수자원학회논문집
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    • 제54권spc1호
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    • pp.1053-1060
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    • 2021
  • 현행 수질모니터링은 현장에서 수질 시료를 채취하여 실험실로 이동 후 분석하는 방법에 의존하고 있다. 이러한 분석기법은 노동집약적이며 경제적으로도 많은 부담이 주어진다. 그러나 현행 모니터링시스템을 개선하기 위하여 보다 짧은 시료채취주기 또는 시료채취지점 확대 등과 같은 방법을 동원하는 것은 인력 및 경제적 측면을 고려할 때 현실적으로 거의 불가능에 가깝다. 따라서 인력 및 경제적인 측면에서 큰 부담없이 현행 수질모니터링기법을 보완할 수 있는 방안이 고려되어야 한다. 본 연구에서는 모델링 기법을 도입하여 현행 수질모니터링 시스템을 보완하고자 하였고 인공신경망모델을 적용하였다. 인공신경망은 사람의 뇌에서 일어나는 작용을 모방한 기법으로 인지할 수 있는 현상을 뇌가 종합적으로 판단하는 과정을 컴퓨터에서 구현하는 방식인데 수질 예측을 위해 이러한 인공신경망기법을 도입 하였다. 본 연구에서는 수질 인자 중 Total coliform 을 타겟으로 하여 하천말단부에서 이들 인자를 예측할 수 있는지에 중점을 두고 연구를 수행하였다. 연구결과 제한된 입력인자를 이용하여 모델을 검보정하였음에도 불구하고 좋은 예측 성능을 보였다. 따라서 본 연구에서 사용된 기법을 근거로 수질상태를 사전에 예측함으로 수계 관리를 수행한다면 현 수질모니터링 시스템 보완에 큰 도움일 될 것으로 기대된다.

비모수 통계기법을 이용한 만경강 유역의 장기간 수질 경향 분석 (Long-Term Trend Analyses of Water Qualities in Mangyung Watershed)

  • 이혜원;박석순
    • 한국물환경학회지
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    • 제24권4호
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    • pp.480-487
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    • 2008
  • Spatial and temporal analyses of water qualities were performed for 11 monitoring stations located in Mangyung watershed in order to analyze the trends of monthly water quality data of Biochemical Oxygen Demand (BOD), Total Nitrogen (TN) and Total Phosphorus (TP) measured from 1995 to 2004. The long-term trends were analyzed utilizing Seasonal Mann-Kendall test, LOWESS and three-dimensional graphs were constructed with respect to distance and time. The graph can visualize spatial and temporal trend of the long-term water quality in a large river system. The results of trend analysis indicated that water quality of BOD and TN showed the downward trend. This quantitive and quantitative analysis is the useful tool to analyze and display the long-term trend of water quality in a large river system.

Comparative assessment of surface and ground water quality using geoinformatics

  • Giridhar, M.V.S.S.;Mohan, Shyama;Kumar, D. Ajay
    • Advances in environmental research
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    • 제9권3호
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    • pp.151-160
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    • 2020
  • Water quality demonstrates physical, chemical and biological characteristics of water. The quality of surface and groundwater is currently an important concern with population growth and industrialization. Over exploitation of water resources due to demand is causing the deterioration of surface water and ground water. Periodic water quality testing must be carried out to protect our water resources. The present research analyses the spatial variation of surface water and groundwater in and around the lakes of Hyderabad. Twenty-Seven lakes and their neighboring bore water samples are obtained for water quality monitoring. Samples are evaluated for specific physico-chemical parameters such as pH, Total Dissolved Solids (TDS), Cl, SO4, Na, K, Ca, Mg, and Total Hardness (TH). The spatial variation of water quality parameters for the 27 lakes and groundwater were analysed. Correlation and multiple regression analysis were carried out to determine comparative study of lake and ground water. The study found that most of the lakes were polluted and this had an impact on surrounding ground water.

일부 농촌지역의 급수시설 및 분뇨처리에 대한 위생학적 조사 (A survey on the Sanitary Conditions of Water Supply and Privy Facilities to the Rural Area.)

  • 기윤호
    • 한국환경보건학회지
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    • 제4권1호
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    • pp.1-9
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    • 1977
  • The survey on the sanitary conditions to the water supply facilities, privy facilities and disposal methods of human excreta in Sindong area of Choonseung-gun, Kangwon Province was carried out during 7 months from May to November, 1976. The results of the survey are as follows. 1) The pump-wells are used in the 1,185 households as 66.7% of 1,775 and are almost private. 2) The materials of drainage floors and drainage are almost cement, and the drainages are good condition. 3) Most parts of dug-wells have been used beyond 9 years after installation, and disinfection of water has not been carried out in the case of 68.1% of total wells. 4) Objectives of water use to the number of households as 60.2% are drinking, kitchen and cleaning. 5) Water consumption per capita day is estimated to be about 22.7% litters. 6) 1,521 households as 85.7% of total 1,775 possess their private privies and the numbers as 80.6% of the private privies are located outside the houses. 7) The privies are needed to be improved much more in the view point of excreting to the ashpile instead of the septic tank in the case of 39.2% of total households. 8) Human excreta as manure are used to the field in the number of households as 82.4 of total 1,316.

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토양함수량의 조절에 의한 Glycine max. 인공군업의 성장과 총질소량의 변동에 관하여 (On the Growth and Total Nitrogen Changes of Glycine max. Artificial Plant Communities, Grown in Sandy Loam Soil withe a Controlled Moisture Content)

  • 임양재
    • Journal of Plant Biology
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    • 제14권3호
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    • pp.21-28
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    • 1971
  • Dry matter production, leaf area growth and total nitrogen changes were studied in Glycine max. soybean communities, which were grown in sandy loam soils controlled to provide various moisture levels, i.e., 5-7%(level 1), 8-10%(level 2), 11-13%(level 3), 14-15%(lev디 4), 17-20%(level 5) and 22-24%(level 6). A summary of the results is shown. The maximum dry matter production of leaves, stems and nodules and the maximum leaf area per unit area were at level 5, but the maximum of root dry matter production was at level 4. Total nitrogen content of the soybean plant decreased with growth, but each level of soil moisture content also showed a little difference. Water content of the plant decreased with plant age and soil water deficiency, especially in roots and nodules. Nodule formation increased in proportion to soil moisture content. total nitrogen content of the soil on which the soybeans grew, increased from 0.23% before sowing to 0.30% at 100 days after sowing. It seems that soil water content acts as a linear factor in the elongation or dry weight increase of shoots and roots until increasing to level 5. Considering the pattern of plant growth through analysis of the shoot and root dry weight ratio, or the photosynthetic organ and non-photosynthetic organ dry weight ratio, the asymptote of plant growth at a high soil water content exceeded that at a low soil water content.

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