• 제목/요약/키워드: water use efficiency

검색결과 931건 처리시간 0.039초

이동 농업용수지구 관개특성 (Characteristics of Irrigation on Yi-dong Agricultural Water District)

  • 김진택;이용직
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2003년도 학술발표회논문집(1)
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    • pp.62-65
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    • 2003
  • Improvement of the efficiency of the agricultural water use is important for the sustainable water management because the agricultural water use occupied above 60% of the total water use in korea. For the analysis of agricultural water use the Yi-dong experimental site was selected. For the monitoring system of the experimental site, four rainfall gauging stations and twenty-six water level gauging stations are established and operated. Analyses of the measured data are processed for the irrigation efficiency of agricultural water on the eight irrigation areas.

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Water/nutrient use efficiency and effect of fertigation: a review

  • Woojin Kim;Yejin Lee;Taek-Keun Oh;Jwakyung Sung
    • 농업과학연구
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    • 제49권4호
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    • pp.919-926
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    • 2022
  • Fertigation, which has been introduced in agricultural fields since 1990, has been widely practiced in upland fields as well as in plastic film houses as part of the crop production system. In accordance with demands in the agricultural sector, a huge number of scientific studies on fertigation have been conducted worldwide. Moreover, with a combination of advanced technologies such as big-data, machine learning, etc., fertigation is positioned as an indispensable tool to achieve sustainable crop production and to enhance nutrient and water use efficiency. In this review, we focused on providing valuable information in terms of crop production and nutrient/water use efficiency. A variety of fertigation studies have described that enhancement of crop production did not differ relative to conventional method or slightly increased. In contrast, fertigation significantly improved nutrient/water use efficiency, with a reduction in use ranging from 20 to 50%. Water-soluble organic resources such as livestock manure and agricultural byproducts also have been identified as useful resources like chemical fertilizers. Furthermore, the initial irrigation point was generally recommended in a range of -10 - -40 kPa, although the point differed according to the crop and crop growth stage. From this review, we suggest that fertigation, which is closely integrated with advanced technology, could be a leading technology to attain not only food security but also carbon neutrality via improvement of nutrient/water use efficiency.

Improving water use efficiency in the Upper Central Irrigation Area in Thailand via soil moisture system and local water user training

  • Koontankulvong, Sucharit;Visessri, Supatra
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2022년도 학술발표회
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    • pp.8-12
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    • 2022
  • Water loss is one of the typical but challenging problems in water management. To reduced water loss or increase water efficiency, the pilot projects were implemented in the TTD's irrigation area. Modern soil moisture technology and local level water user training were conducted together as a mean to achieve improved water efficiency. In terms of technology, soil moisture sensors and monitoring system were used to estimate crop water requirement to reduce unnecessary irrigation. This was found to save 16.47% of irrigated water and 25.20% of irrigation supply. Further improvement of water efficiency was gained by means of local level water user training in which stakeholders were engaged in the network of communications and co-planning. The lessons learnt from the TTD pilot project was translated into good water management practices at local level.

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농업용수 공급특성 및 관개효율 분석(경기 평택 이동시험지구 중심) (Characteristics of Irrigation and Analysis of Irrigation Efficiency)

  • 주욱종;이용직;허유만
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2003년도 학술발표논문집
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    • pp.255-258
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    • 2003
  • Agricultural water use occupies 60% of the total water use in Korea, so variation of the farming pattern and the efficiency of agricultural water use is important for the sustainable water management. For the analysis of agricultural water use, the Yi-dong experimental site was selected. For the monitoring system of the experimental site, four rainfall gauging stations and twenty-six water level gauging stations are established and operated. Analyses of the measured data are processed for the irrigation efficiency of agricultural water and the effect of the variation of farming pattern.

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공업용수의 기술적 효율성 분석 (An Analysis of the Technical Efficiency of Industrial Water Input in Manufacturing)

  • 민동기
    • 환경정책연구
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    • 제8권4호
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    • pp.37-49
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    • 2009
  • 90년대 이후 용수관리 정책이 공급중심에서 수요관리로 정책 전환이 되면서 공업용수 수요량이 급격히 감소하였다. 본 연구에서는 공업용수 사용의 기술적 효율성을 분석하여 이러한 공업용수 수요량 감소가 공업용수의 사용이 효율적으로 이루어진 결과인지 검토하고 향후 공업용수의 기술적 효율성 제고를 통하여 공업용수 사용량을 더 줄일 수 있는지 검토하였다. 본 연구결과에 의하면 공업용수의 기술적 효율성은 1998년도 0.5183에서 2003년도에는 0.4853으로 도리어 약간 감소한 것으로 나타났다. 이는 다른 투입요소의 기술적 효율성에 비하여 낮은 수치로 앞으로 기술적 효율성 제고를 통하여 공업용수 사용량을 더 절감할 수 있음을 보여준다.

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지하점적관개와 고랑관개의 물 이용 효율 (Water Use Efficiency of Subsurface Drip Irrigation and Furrow Irrigation)

  • 송인홍;피터 월러;최연식;권순국
    • 한국농공학회논문집
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    • 제49권2호
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    • pp.3-13
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    • 2007
  • The primary objective of this study was to compare water use efficiencies between subsurface drip irrigation and furrow irrigation. The uniformity of used drip lines was tested to determine if clogging would be a threat to the long-term success of a subsurface drip irrigation system. Three crops, cantaloupe, lettuce, and bell pepper, were grown in four plots for each irrigation system. Significantly less water was applied with subsurface drip irrigation than with furrow irrigation (29.5 % less for cantaloupe and 43.2 % less for bell poppet) in order to produce similar crop yields. Water use efficiencies with subsurface drip irrigation were significantly higher than those with furrow irrigation fur cantaloupe (P-value = 0.018) and bell pepper (P-value ${\leq}$ 0.001). Drip-irrigated lettuce, a shallow-rooted crop, had moderately higher water use efficiency during the first two seasons, while no difference was observed in the third season. After the experiment, the uniformity of the drip lines was 92.1 % on average and classified as good. The high values fur water use efficiency and uniformity indicate that subsurface drip irrigation can be a sustainable method for conserving irrigation water.

우리나라에 적합한 OECD 농업용수 사용지표의 설정 (Application of OECD Agricultural Water Use Indicator in Korea)

  • 허승오;정강호;하상건;송관철;엄기철
    • 한국토양비료학회지
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    • 제39권5호
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    • pp.321-327
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    • 2006
  • 농업환경지표가 OECD 회원국간의 농업환경 비교와 이를 통한 농업환경 개선과 농업정책 수립에 대한 권고의 수단으로만 작용을 하지만 이것이 향후 통상 무역과 연계될 것은 추측 가능한 사실이다. OECD 농업환경지표를 우리나라에 그대로 적용했을 때 얻어진 지표 값이 우리나라의 농업환경을 사실대로 반영하지 못한다면 우리가 받을 피해는 미래에도 작용할 것이므로 이에 대한 새로운 제안을 통해 우리나라에 적합한 지표를 설정해야 한다. OECD에 의해 제안된 농업용수 사용 강도 지표는 논이나 밭에서 이용되거나 배수 유출되는 물의 특성을 모두 반영한 방법이 아니므로 몬순 기후지대에 속하는 한국에 적당하지 않다. 특히, 여름철 집중호우시기에 년 강우량의 2/3가 내리는 강우 특성은 이를 담수해 저장하는 능력을 가진 농경지의 수자원 보유능과 기타의 농업적 특성을 고려한 계산방법으로 농업용수를 산정해야 한다. 논의 경우 강우가 내리거나 관개가 되었을 때 담수나 침투를 통해 물을 지하로 배수해 지하수를 형성하거나 지표의 배수로나 하천을 통해 강이나 저수지로 상당량의 물을 흘려보내 다시 이용할 수 있도록 해준다. 즉, 농업용수로 계산되어 있는 물의 상당량은 다른 농경지나 생활용수 또는 공업용수나 하천 유지용수로 다시 이용된다. 따라서, 물 사용강도에 이용되는 농업용수는 농경지에서 소모되지 않고 지하수로 흘러 들어가거나 하천으로 유입되는 배출수를 고려하여 계산하는 것이 합리적이다. 이렇게 계산하면 22.9%(2001년)로 OECD 계산방법으로 얻어진 47%보다 24.1%가 낮아진다. 합리적인 농업용수 스트레스 지표를 산출하기 위해서는 각 나라마다 다른 나라와 강을 공유하고 있는지의 여부와 농업을 위한 주 취수원이 무엇인지를 살펴보아 그 나라에 적합한 스트레스 지표를 산출하도록 유도하는 것이 바람직할 것이다. 그러나, 실제 물에 대한 스트레스는 강우량, 수계별 수자원 부존량, 사용가능량, 농업용수 총공급수량, 환경 유지용수를 위한 기준 갈수량 확보 가능성, 농업용수 관리현황 및 저수율 분석, 수계별 농업용수 사용 가능량 및 기상 등이 복잡하게 작용할 것이므로 이 모든 인자들을 포함한 지표를 만들기는 쉬운 일이 아니다. 따라서, 우리나라는 OECD의 스트레스 지표와는 달리 환경 위해성 판단이 필요 없고, 계산이 복잡하지 않으며 우리의 환경에 적합하도록 주 취수원인 농업용 저수지의 저수율로 농업용수 스트레스 지표를 산정 했다. 농업용수 사용 기술적 효율지표는 작물의 재배 생리특성 및 이용특성과 지역마다 차이가 나는 기후의 특성을 반영하지 않은 계산의 결과이다. 그러므로 이러한 특성들을 반영하는 기술적 물 이용효율 지표를 만들기 위해서는 각 지역 또는 나라마다 작물별로 기준이 되는 물 소요량을 산정한 후 그 소요량에 대한 공급된 양의 비율로 WUTE를 결정하는 것이 합리적이다. 지역별, 작물별 특성을 포함해야 하는 농업용수 사용 경제적 효율 지표는 소비된 물을 분모로 삼아 계산에 이용하는 대신에 농업용수 사용 기술적 효율에서 제안한 각 지역 또는 나라마다 작물별로 기준이 되는 물 소요량을 산정한 후 그 소요량에 대한 공급된 양의 비율을 계산식의 분모에 적용하고, 벼의 경우는 생산물의 가격 대신에 지하수가 되는 양과 하천수가 되는 양에 대한 경제적 평가에 더해 논에 많은 양의 물이 관개됨으로서 발생하는 수변 생태계에 의한 환경유지 기능과 온도와 습도가 높은 한국의 기후 특성에서 전체 에너지 밸런스를 유지하는데 기여하는 관개수의 가치에 대한 평가와 더불어 생산물의 가격을 포함하는 것이 합리적일 것이다.

유역의 토지이용 특성을 고려한 비점오염원 관리방안 적용에 따른 저감 효율 분석 (Analysis of the Efficiency of Non-point Source Pollution Managements Considering the Land Use Characteristics of Watersheds)

  • 최유진;이서로;금동혁;한정호;박운지;김종건;임경재
    • 한국물환경학회지
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    • 제36권5호
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    • pp.405-422
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    • 2020
  • Land use change by urbanization has significantly affected the hydrological process including the runoff characteristics. Due to this situation, it has been becoming more complicated to manage non-point source pollutions caused by rainfall. In order to effectively control non-point sources, it is necessary to identify the reduction efficiency of the various management method based on land use characteristics. Thus, the purpose of this study is to analyze the reduction efficiency of non-point source pollution management practices targeting three different watersheds with the different land use characteristics using the Soil and Water Assessment Tool (SWAT). To do this, the vulnerable subwatersheds to non-point source pollution occurrence within each watershed were selected based on the streamflow and water quality simulation results. Then, considering the land use, low impact development (LID) or best management practices (BMPs) were applied to the selected subwatersheds and the efficiency of each management was analyzed. As a result of analysis of the non-point source pollution reduction efficiency, when LID was applied to urban areas, the average reduction efficiencies of SS, NO3-N, and TP were 5.92%, 4.62%, and 10.35%, respectively. When BMPs were applied to rural areas, the average reduction efficiencies of SS, TN and TP were 35.45%, 4.37%, and 10.16%, respectively. The results of this study can be used as a reference for determining appropriate management methods for non-point source pollution in urban, rural, and complex watersheds.

Grain Yield and Water Use Efficiency as Affected by Irrigation at Different Growth Stages

  • Kim, Wook-Han;Hong, Byung-Hee;Ryu, Yong-Hwan
    • 한국작물학회지
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    • 제44권4호
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    • pp.330-338
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    • 1999
  • Extensive research has been conducted on effects of drought stress on growth and development of soybean but information is rather restricted on the limited-irrigation system by way of precaution against a long-term drought condition in the future. The experiment for limited-irrigation was conducted in transparent vinyl shelter at Asian Vegetable Research and Development Center (AVRDC), Taiwan in 1997. Two soybean varieties, Hwangkeum and AGS292, improved in Korea and AVRDC, respectively were used for this experiment. The relationships between normalized transpiration rate (NTR) and fraction of transpirable soil water (FTSW) in both varieties were similar that the NTR was unchanged until FTSW dropped to about 0.5 or 0.6. At FTSW less than those values, NTR declined rapidly. Days required to harvest in both varieties were significantly prolonged at IR6 treatment compared to any other treatments. Daily mean transpiration rate was significantly higher at IR5 treatment, as averaged over varieties. Similarly, water use efficiency was also high at 1R5 treatment. In both varieties, seed yield was the greatest at the IR5 treatment, as compared to any other limited-irrigation treatments, due to the increased seed number and high transpirational water use efficiency. The indices of input water and seed yield for the different limited-irrigation treatments against control indicated that Hwangkeum produced 59.6% or 60.7% of seed yield using 36.1% or 44.9% of input water, as compared to control, by irrigation at only R5 or R6 stages, respectively. The AGS292 produced 56.1% of seed yield with 35.4% of input water of control, when irrigated at R5 stage. The results of this study have elucidated that the limited irrigation at R5 stage in soybean can be minimized yield loss with such small quantity of water under the environment of long-term drought stress and the expected shortage of agricultural water in the future.

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물 부족국가에서 활용가능한 정화조의 최적모형 개발 (Development of Optimal Septic Tank in the Countries of Water Shortages)

  • 임봉수;경해룡
    • 한국물환경학회지
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    • 제31권4호
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    • pp.418-427
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    • 2015
  • This study was carried out to evaluate the performance of a lab-scale novel septic tank system for improving the conventional septic tank in the developing countries of water shortages. The lab-scale novel septic tank system consists of sepetic tank, aeration tank with HBC-ring, and sand filter. Optimum HRT was reguired about 1.5days to get a total COD removal efficiency of 90%, COD, BOD and SS removal efficiency was about 70%, 60%, and 85% in sepetic tank only. The structure of sepetic tank with two stages results in the high removal efficiency of organic matter. When sepetic tank, aeration tank, and sand filter were more than HRT 1.5days, 18hrs, and 12hrs, respectively, final effluent was less than 20 mg/L of BOD, 14 mg/L of SS, so that there is a high potential of its use for reusing water in flush toilet. There is no significant effect of HRT change on nutrient removal. Total nitrogen removal efficiency was about 40%, final effluent was 30~40 mg/L of TN, total phosphorus removal efficiency was about 11~25%, final effluent was 9~12 mg/L of TP. Because there is very small amounts of organic nitrogen and phosphorus in effluent, it was possible to reuse water for agricultural use.