• 제목/요약/키워드: irrigation management

검색결과 634건 처리시간 0.026초

Analysis of spatial characteristics and irrigation facilities of rural water districts

  • Mikyoung Choi;Kwangya Lee;Bosung Koh;Sangyeon Yoo;Dongho Jo;Minchul La;Sangwoo Kim;Wonho Nam
    • 농업과학연구
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    • 제50권4호
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    • pp.903-916
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    • 2023
  • This study aims to establish basic data for efficient management of rural water by analyzing regional irrigation facilities and benefitted areas in the statistical yearbook of land and water development for agriculture at the watershed level. For 511 domestic rural water use areas, water storage facilities (reservoirs, pumping & drainage stations, intake weirs, infiltration galleries, and tube wells) are spatially distributed, and the benefitted areas provided at the city/county level are divided by water use area to provide agricultural water supply facilities. The characteristics of rural water district areas such as benefitted area, were analyzed by basin. The average area of Korea's 511 rural water districts is 19,638 ha. The average benefitted area by rural water district is 1,270 ha, with the Geum River basin at 2,220 ha and the Yeongsan River basin at 1,868 ha, which is larger than the overall average. The Han River basin at 807 ha, the Nakdong River basin at 1,121 ha, and the Seomjing River basin at 938 ha are smaller than the overall average. The results of this basic analysis are expected to be used to set the direction of various supply and demand management projects that take into account the rational and scientific use and distribution of rural water and the characteristics of water use areas by presenting a quantitative definition of Korea's agricultural water districts.

실내조경에 있어서 양치식물의 수분환경 관리방안에 관한 연구 (A Study on the Management Plan of Water Environment of Ferns in the Interior Landscape)

  • 주진희;방광자;설종호
    • 한국조경학회지
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    • 제27권1호
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    • pp.122-131
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    • 1999
  • Indoor environments are usually less than optimal for the growth of ferns, especially in regards to the water condition. These studies were performed to investigate responses involved in causing growth of ferns and presume management plan against the water deficit under indoor conditions. The effect of air humidity and soil moisture on the ferns was examined in Adiantume raddianum and Selaginella kraussiana. Results of experiments are as follows; 1. Under a low humidity condition, having a 25-50% RH. ornamental value of ferns decreased much more than under a 90% RH. Under a low soil moisture, such as sand treatment, ornamental value of ferns also decreased. 2. Leaf chlorophyll content, water content and stomata situations increased as air humidity and soil moisture went up. 3. Even if air humidity and soil water were not enough for ferns growth, the extending of irrigation cycle was helpful. 4. Under extremely low air humidity conditions, some water management, namely, using water holding soil or extending of irrigation cycle was desirable. Other methods of increasing air humidity, including water instruments such as ornamental pools, waterfalls, or fountains, grouping plants together were also helpful. But spraying water on leaves increased injury to ferns growth because of excess evaporation from the leaves. Though these studies, we learn that ferns are susceptible to water condition such as air humidity, soil water and water management. If other environmental factos are maintained with optimal conditions, water condition plays an important role in ferns growth in indoor environments.

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Growth Monitoring for Soybean Smart Water Management and Production Prediction Model Development

  • JinSil Choi;Kyunam An;Hosub An;Shin-Young Park;Dong-Kwan Kim
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.58-58
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    • 2022
  • With the development of advanced technology, automation of agricultural work is spreading. In association with the 4th industrial revolution-based technology, research on field smart farm technology is being actively conducted. A state-of-the-art unmanned automated agricultural production demonstration complex was established in Naju-si, Jeollanam-do. For the operation of the demonstration area platform, it is necessary to build a sophisticated, advanced, and intelligent field smart farming model. For the operation of the unmanned automated agricultural production demonstration area platform, we are building data on the growth of soybean for smart cultivated crops and conducting research to determine the optimal time for agricultural work. In order to operate an unmanned automation platform, data is collected to discover digital factors for water management immediately after planting, water management during the growing season, and determination of harvest time. A subsurface drip irrigation system was established for smart water management. Irrigation was carried out when the soil moisture was less than 20%. For effective water management, soil moisture was measured at the surface, 15cm, and 30cm depth. Vegetation indices were collected using drones to find key factors in soybean production prediction. In addition, major growth characteristics such as stem length, number of branches, number of nodes on the main stem, leaf area index, and dry weight were investigated. By discovering digital factors for effective decision-making through data construction, it is expected to greatly enhance the efficiency of the operation of the unmanned automated agricultural production demonstration area.

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한국 논토양(土壤)에서 물관리(管理)와 볏짚 시용(施用)에 따른 메탄 배출량(排出量)의 추정(推定) (Estimation of Methane Emission by Water Management and Rice Straw Application in Paddy Soil in Korea)

  • 신용광;윤성호;박무언
    • 한국토양비료학회지
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    • 제28권3호
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    • pp.261-265
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    • 1995
  • 논토양에서 물관리 및 볏짚시용이 메탄배출에 미치는 영향을 알기 위하여 물관리로는 상시담수와 간단관개의 2처리로 하고 각각에 삼요소를 대조로 하여 볏짚의 시용효과를 조사하였다. 메탄배출량은 $0.066g\;CH_4m^{-2}d^{-1}{\sim}0.455g\;CH_4 m^{-2}d^{-1}$의 범위였다. 상시담수보다 간단관개의 NPK구에서는 70%, NPK+볏짚시용구에서는 47%의 메탄 배출저감효과가 인정되었다. 간단관개조건에서 볏짚을 전량 작토에 환원한다고 가정할 때 우리나라 메탄 총배출량은 399,590톤/년으로 추정된다. 이 양은 OECD의 참고값 대비 56%, Neue와는 51%, Matthew와는 62%로 낮고 Taylor와는 118%로 높다.

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Analyzing Soybean Growth Patterns in Open-Field Smart Agriculture under Different Irrigation and Cultivation Methods Using Drone-Based Vegetation Indices

  • Kyeong-Soo Jeong;Seung-Hwan Go;Kyeong-Kyu Lee;Jong-Hwa Park
    • 대한원격탐사학회지
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    • 제40권1호
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    • pp.45-56
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    • 2024
  • Faced with aging populations, declining resources, and limited agricultural productivity, rural areas in South Korea require innovative solutions. This study investigated the potential of drone-based vegetation indices (VIs) to analyze soybean growth patterns in open-field smart agriculture in Goesan-gun, Chungbuk Province, South Korea. We monitored multi-seasonal normalized difference vegetation index (NDVI) and the normalized difference red edge (NDRE) data for three soybean lots with different irrigation methods (subsurface drainage, conventional, subsurface drip irrigation) using drone remote sensing. Combining NDVI (photosynthetically active biomass, PAB) and NDRE (chlorophyll) offered a comprehensive analysis of soybean growth, capturing both overall health and stress responses. Our analysis revealed distinct growth patterns for each lot. LotA(subsurface drainage) displayed early vigor and efficient resource utilization (peaking at NDVI 0.971 and NDRE 0.686), likely due to the drainage system. Lot B (conventional cultivation) showed slower growth and potential limitations (peaking at NDVI 0.963 and NDRE 0.681), suggesting resource constraints or stress. Lot C (subsurface drip irrigation) exhibited rapid initial growth but faced later resource limitations(peaking at NDVI 0.970 and NDRE 0.695). By monitoring NDVI and NDRE variations, farmers can gain valuable insights to optimize resource allocation (reducing costs and environmental impact), improve crop yield and quality (maximizing yield potential), and address rural challenges in South Korea. This study demonstrates the promise of drone-based VIs for revitalizing open-field agriculture, boosting farm income, and attracting young talent, ultimately contributing to a more sustainable and prosperous future for rural communities. Further research integrating additional data and investigating physiological mechanisms can lead to even more effective management strategies and a deeper understanding of VI variations for optimized crop performance.

논에서 시용 유기물의 메탄 전환율에 미치는 벼 식생 및 물관리의 영향 (Effect of Rice Vegetation and Water Management on Thrnover of Incorporated Organic Materials to Methane in a Korean Paddy Soil)

  • 신용광;김건엽;안종웅;고문환;엄기철
    • 한국토양비료학회지
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    • 제36권1호
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    • pp.50-56
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    • 2003
  • 논에 볏짚과 볏짚퇴비를 시용하고 상시담수와 간단관개로 관리하면서 벼가 심긴 chamber와 벼가 심겨지지 않은 chamber에서 메탄으로 전환되는 정도를 조사하였다. 벼가 심긴 chamber에서는 상시담수에서 메탄 전환율은 시용한 유기물의 신선도에 따라서 증가하였다. 볏짚을 5월에 시용한 처리 (RS5), 볏짚을 2월에 시용한 처리 (RS2), 볏짚퇴비를 5월에 시용한 처리 (RSC)에서 전환율이 각기 14.9%, 9.5%, 4.0%였었다. 범위는 4.0% ~ 14,9 %, 평균은 9.5%였었다. 간단관개에서 전환율도 유사한 경향이었다. 간단관개한 RS5 처리, RS2 처리, RSC 처리에서 메탄으로 전환율을 각기 9.8%, 5.5%, 2.1%였었다. 범위는 2.1% ~ 9.8%, 평균은 5.8%였었다. 벼를 심은 chamber에서 상시담수에서 메탄으로 전환율은 간단관개에서 보다 1.64배 높았다. 벼를 심지 않은 chamber에서 상시담수에서 메탄 전환율은 시용한 유기물의 신선도에 따라서 증가하였다. RS5 처리 RS2 처리 RSC 처리에서 전환율이 각기 8.7%, 3.3%, 3.0%였었다. 범위는 3.0% ~ 8.7%, 평균은 5.0%였었다. 간단관개에서 전환율도 유사한 경향이었다. 간단관개한 RS5 처리, RS2 처리. RSC 처리에서 메탄 전환율을 각기 5.4%, 3.0%, 1.4 %였었다. 범위는 1.4% ~ 5.4%, 평균은 3.3%였었다. 벼를 심은 chamber에서 상시담수에서 메탄 전환율은 간단관개에서 보다 1.52배 높았다.

시설재배 토양의 수분 조절을 위한 자동 수분제어시스템 개발 (Development of an Automatic Water Control System for Greenhouse Soil Water Content Management)

  • 이동훈;이규승;장영창
    • Journal of Biosystems Engineering
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    • 제33권2호
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    • pp.115-123
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    • 2008
  • This study was conducted to develop an automatic soil water content control system for greenhouse, which consisted of drip irrigation nozzles, soil water content sensors, an on/off valve, a servo-motor assembly and a control program. The control logic adopted in the system was Ziegler-Nichols algorithm and rising time, time constant and over/undershoot ratio as control variables in the system was selected and determined by various control experiments to maintain small delay time and low overshoot. Based on the experimental results, it was concluded that the control system developed in the study could replace the unreliable conventional greenhouse soil water management.

논의 수질정화 기능 분석 (Analysis of the Function of the Paddy-field in Purifying Water Quality)

  • 김현수;김영일;김진수
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2003년도 학술발표논문집
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    • pp.599-602
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    • 2003
  • The objective of this study is to analyze the function of the paddy-field in purifying water quality. This study was carried out is based on the data in the six case studies. To improve purification function of paddy field, the following farming management is required. 1) A guideline to control the inlet and outlet of the paddy plot is need to minimize drainage water by means of a reasonable irrigation management. 2) A guideline for fertilizer application in consideration of loading nutrients dissolved in irrigation water. 3) The reuse system of agricultural drainage water is required to minimize impacts on water quality of surface water(reservoir and river).

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관수로 자동급수전의 관개효과 분석 -충북 보은군 학림 관수로 지구를 대상으로- (Analysis of Irrigation Effect in the Paddy Plot Irrigated by Pipelines With an Automatic Hydrant)

  • 오광영;김진수;김선종;김영화
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2001년도 학술발표회 발표논문집
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    • pp.80-83
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    • 2001
  • In this study, we investigated irrigation effect for the paddy plot irrigated by pipeline with two types of hydrants: automatic and manual. The automatic hydrant have been introduced to the paddy field to save water and reduce the labor for water management. The automatic hydrant is automatically opened and closed according to the water depth of a paddy plot. The water management labor to close manual hydrant in the afternoon of every three days can be eliminated when we use the automatic hydrant. The water requirements for the automatic hydrant plot 3.26mm/d are much less than those for manual hydrant plot 9.99mm/d.

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중수돗물 관수에 따른 크리핑벤트그래스의 생육과 품질 (Changes of Growth and Quality of Creeping Bentgrass by Greywater Irrigation)

  • 이종진;김영선;이재필;윤민호;이긍주
    • Weed & Turfgrass Science
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    • 제4권4호
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    • pp.390-396
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    • 2015
  • 물 부족 국가인 우리나라에서도 점차 골프장 코스관리자들이 관개용수 절약 및 재활용에 대해 관심을 갖기 시작했다. 시기적 요구에 따라 본 연구에서는 잔디 물 관리 시 중 수돗물을 관개용수로 사용이 가능한지 평가하기 위해 토양화학성과 잔디 생육에 미치는 영향을 조사하였다. 관개용수 종류에 따른 처리구는 중수돗물 처리구(GW)와 수돗물 처리구(TW)로 구분하였고, 각 관개용수별로 생육기간 중 시비하지 않은 관개용수 처리구(N-TW, N-GW)와 시비를 한 관개용수 처리구(F-TW, F-GW) 등 총 4개의 처리로 나뉘었다. 시험기간 중 처리구별 골프장 그린의 사질토양의 화학성 변화는 관찰되지 않았다. 중수돗물 처리구의 엽색 지수, 엽록소 지수, 잔디 뿌리길이, 잔디 예지물량 및 양분 흡수량은 수돗물 결과와 비슷하여 관개용수의 종류에 따른 잔디 생육과 품질에 대한 유의성 있는 차이는 나타나지 않았다. 잔디조직 내 무기 성분 함량 및 흡수량에 있어서 질소와 칼륨은 중수돗물 처리구에서 높았다. 잔디의 생육과 품질은 관개용수의 종류나 수질 보다는 비료 시비에 더 큰 영향을 받는 것으로 판단되었다. 본 연구 결과를 종합해 볼 때, 관개용수로서 중수돗물을 사용하여도 골프장 그린 크리핑벤트그래스의 생육과 품질 및 토양화학성에 미치는 영향이 적다는 것을 확인할 수 있었다.