• Title/Summary/Keyword: Irrigation system

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Development of the Information System for Management of Irrigation Facilities (농업수리시설물 관리를 위한 정보시스템 개발)

  • 고홍석;최진규;고남영;이주승
    • Proceedings of the Korean Society of Agricultural Engineers Conference
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    • 1999.10c
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    • pp.130-136
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    • 1999
  • The management method of the irrigation facilities are different with management agency , type, user, purpose of use, and the accuracy of data applied for the grasp of present situation and maintenance is of a low grade. Therefore the information management system is needed to classify and systematize the data. The purpose of this study is to prepare the digital map of Chonbuk FLIA district, to construct the database of the irrigation facilities , to develop the information system for the management using World Wide Web, to supply and be able to use easily to whomever needs it.

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Assessment of Mobile Technology Operability Based on RFID and QR Code for Real Time Information Management of Irrigation Facilities (수리시설물의 실시간 정보관리를 위한 RFID 및 QR 코드 기반의 모바일 기술 운용성 평가)

  • Kim, Tae-Gon;Nam, Won-Ho;Lee, Tae-Seok;Choi, Jin-Yong;Kim, Jin-Taek
    • Journal of The Korean Society of Agricultural Engineers
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    • v.54 no.1
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    • pp.1-9
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    • 2012
  • This study aims to assess the mobile information technology as an alternative means for managing information of irrigation facilities. Traditional irrigation facility management which is operated manually has faced to critical limitations, such as delayed and loss in data handling and facilities misidentification. Real time download, collection, and update the information about the irrigation structure conditions in terms of operation and maintenance can provide a better support of the management efforts. Thus this study suggested mobile information technology using RFID (Radio Frequency IDentification) and QR (Quick Response) code for real time information management of irrigation facilities. This paper describes the applications and implementation results of real-time mobile technology for the field information communication of the irrigation facilities. The system was tested in I-dong irrigation districts in Gyounggi-province, Korea and the assessment of operability demonstrated beneficial usability for inspection of agricultural irrigation facilities in the irrigation district. The tests showed that RFID was preferred method expected to improve operability although these had some limitation. The mobile technologies are expected to increase efficiency and effectiveness of irrigation facilities management.

Irrigation Frequency and Nitrogen Rates for Tall Fescue Growth

  • Lee, Sang-Kook
    • Weed & Turfgrass Science
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    • v.3 no.2
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    • pp.130-136
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    • 2014
  • Tall fescue is commonly well-adapted for low maintain area because of its wear resistance, deep root system, and drought tolerances. Deep and infrequent irrigation refers to applying large amounts of irrigation, 1.3 to 2.5 cm or more, in a single irrigation event. Light and frequent irrigation is commonly used with small amounts of water, 0.3 to 0.6 cm, every day or every other day. N use for turfgrass management is often unnoticed for water management. The objective of this field study was to evaluate the effects of irrigation frequency and N rates for tall fescue growth. The three irrigation treatments were no irrigation (precipitation only), 0.5 cm applied every other day, and 1.8 cm applied once a week at one irrigation event. The nitrogen (N) treatments were the low, medium, and high N rate treatments. The low, medium, and high N treatments were applied over 2, 4, and 6 applications, respectively. If high main maintenance of tall fescue is not important and water source is limited, irrigation is not necessary and, the $9.8gNm^{-2}yr^{-1}$ of two applications can be recommended for tall fescue under the weather condition of the study.

Evaluation of Water Supply Adequacy using Real-time Water Level Monitoring System in Paddy Irrigation Canals (실시간 관개수로 수위 모니터링을 활용한 논 관개용수 공급적정성 평가)

  • Hong, Eun Mi;Nam, Won-Ho;Choi, Jin-Yong;Kim, Jin-Taek
    • Journal of The Korean Society of Agricultural Engineers
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    • v.56 no.4
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    • pp.1-8
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    • 2014
  • Appropriate amount of water supply to paddy fields in proper time is important to achieve efficient agricultural water management. The purpose of this study is to evaluate the irrigation water supply adequacy for paddy fields using water level data in irrigation canals. For the evaluation, the real-time water level data were collected from main canals in the Dongjin irrigation district for 2 years. Using the water level data, delivered irrigation water amounts at the distribution points of each canal were calculated. The water balance model for paddy field was designed considering intermittent irrigation and the irrigation water requirement was estimated. Irrigation water supply adequacy was analyzed from main canals to the irrigation blocks based on the comparison between estimated requirement and delivered irrigation water amounts. From the adequacy analysis, irrigation water supply showed poor management condition in 2012 with low efficiency except the Daepyong canal section, and the adequacy in 2013 was good or fair except the Yongsung canal section. When irrigation water for paddy fields was insufficient, water supply adequacy was affected by irrigation area, but when irrigation water was enough to supply, adequacy was affected by distance from main canal to distribution points. These results of the spatial and temporal dimensions of the irrigation adequacy could be utilized for efficient irrigation water management to improve the temporal uniformity and equity in the water distribution for paddy fields.

Uniformity Assessment of Soil Moisture Redistribution for Drip Irrigation (점적관개에 따른 토양수분 재분배 균일성 평가)

  • Choi, Soon-Kun;Choi, Jin-Yong;Nam, Won-Ho;Hur, Seung-Oh;Kim, Hak-Jin;Chung, Sun-Ok;Han, Kyung-Hwa
    • Journal of The Korean Society of Agricultural Engineers
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    • v.54 no.3
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    • pp.19-28
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    • 2012
  • Greenhouse cultivation has been increasing for high quality and four season crop production in South Korea. For the cultivation in a greenhouse, maintaining adequate soil moisture at each crop growth stage is quite important for yield stability and quality while the behavior of moisture movement in the soil has complexity and adequate moisture conditions for crops are vary. Drip irrigation systems have been disseminated in the greenhouse cultivation due to advantages including irrigation convenience and efficiency without savvy consideration of the soil moisture redistribution. This study aims to evaluate soil moisture movement of drip irrigation according to the soil moisture uniformity assessment. Richards equation and finite difference scheme were adapted to simulate soil moisture behavior in soil. Soil container experiment was conducted and the model was validated using the data from the experiment. Two discharge rate (1 ${\ell}/hr$ and 2 ${\ell}/hr$) and three spaces between the emitters (10 cm, 20 cm, and 30 cm) were used for irrigation system evaluation. Christiansen uniformity coefficient was also calculated to assess soil moisture redistribution uniformity. The results would propose design guidelines for drip irrigation system installation in the greenhouse cultivation.

Wireless Sensor Network Development using RFID for Agricultural Water Management (농업용수관리를 위한 RFID 기반 무선 센서 네트워크 개발)

  • Nam, Won-Ho;Kim, Tae-Gon;Choi, Jin-Yong;Kim, Jin-Taek;La, Min-Chul
    • Journal of The Korean Society of Agricultural Engineers
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    • v.53 no.5
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    • pp.43-51
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    • 2011
  • Irrigation facilities are spread over demand area in a low density and exposed in the field requiring efficient operation and maintenance. Thus, it could be more efficient to manage an irrigation system when it is with wireless sensor network (WSN) using RFID (Radio Frequency Identification) application. A WSN, a kind of ubiquitous sensor network composed of wireless network, RFID and database management system was developed for agricultural water management in terms of operational status and maintenance requirements. Identification code for RFID tag was designed and an application for RFID reader was developed for field data collection, and a database management system was constructed for managing irrigation facility attributes. The system was installed in I-dong irrigation districts in Gyounggi-province, Korea and the operated results showed the applicability of the WSN for agricultural water management.

A Web-Based Information System for Irrigation Reservoir Operations (관개용 저수지 운영을 위한 Web 기반 정보시스템 개발)

  • 서춘석;박승우;강문성;강민구
    • Proceedings of the Korean Society of Agricultural Engineers Conference
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    • 1999.10c
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    • pp.81-86
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    • 1999
  • A Web-based information system from the Korea Agricultural Water Use Laboratory AWUL, has been developed to provide with regional water management information and guidance for the operations of irrigation reservoirs through the World Wide Web(WWW). Twenty-six reservoirs are selected as the reference reservoirs for regional water management , and the real-time operation guide may be issued the grwoing seasons. The information available from the system includes the wether forecasting , drought analyses, and reservoir operation data for those reference sites. For a specific reservoir, the manager may access the system to obtain the water requriement, irrigation secheduling , and reservoir operations that fit best to the irrigation district.

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Development of Integrated Design System for Agricultural Facilities (수리시설물 통합설계시스템의 구현)

  • Bae, Yeun-Jung;Lee, Jeong-Jae;Yoon, Seong-Soo
    • Magazine of the Korean Society of Agricultural Engineers
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    • v.44 no.4
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    • pp.75-84
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    • 2002
  • The irrigation facilities are managed systematically and a facility is independent at the view of shape and function. The design of the irrigation facility is the formulated process with independent objectives. So its process is accordance to object-oriented concept. The design of irrigation facilities is classified into several steps. In these steps, the design data is made and the various problems are solved and consolidated with analysis and decision. In order to achieve our goal of constructing an efficient integrated design system, the results from the design should be able to be systematically connected and re-used. In the study, the design task of irrigation facility, the integrated design system for (IDSAF) is to be developed using the object-oriented methods, and then its applicability will be examined.

Determination of Proper Irrigation Scheduling for Automated Irrigation System based on Substrate Capacitance Measurement Device in Tomato Rockwool Hydroponics (토마토 암면재배에서 정전용량 측정장치를 기반으로 한 급액방법 구명)

  • Han, Dongsup;Baek, Jeonghyeon;Park, Juseong;Shin, Wonkyo;Cho, Ilhwan;Choi, Eunyoung
    • Journal of Bio-Environment Control
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    • v.28 no.4
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    • pp.366-375
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    • 2019
  • This experiment aims to determine the proper irrigation scheduling based on a whole-substrate capacitance using a newly developed device (SCMD) by comparing with the integrated solar radiation automated irrigation system (ISR) and sap flow sensor automated irrigation system (SF) for the cultivation of tomato (Solanum lycopersicum L. 'Hoyong' 'Super Doterang') during spring to winter season. For the SCMD system, irrigation was conducted every 10 minutes after the first irrigation was started until the first run-off was occurred, of which the substrate capacitance was considered to be 100%. When the capacitance threshold (CT) was reached to the target point, irrigation was re-conducted. After that, when the target drain volume (TDV) was occurred, the irrigation stopped. The irrigation volume per event for the SCMD was set to 50, 75, or 100 mL at CT 0.9 and TDV 100 mL during the spring to summer cultivation, and the CT was set to 0.65, 0.75, 0.80, or 0.90 in the winter cultivation. When the irrigation volume per event was set to 50, 75, or 100 mL, the irrigation frequency in a day was 39, 29, and 19, respectively, and the drain rate was 3.04, 9.25, and 20.18%, respectively. When the CT was set to 0.65, 0.75, or 0.90 in winter, the irrigation frequency was about 6, 7, 15 times, respectively and the drain rate was 9.9, 10.8, 35.3% respectively. The signal of stem sap flow at the beginning of irrigation starting time did not correspond to that of solar irradiance when the irrigation volume per event was set to 50 or 75 mL, compared to that of 100 mL. In winter cultivation, the stem sap flow rate and substrate volumetric water content at the CT 0.65 treatment were very low, while they were very high at CT 0.90 was high. All the integrated data suggest that the proper range of irrigation volume per event is from 75 to 100 mL under at CT 0.9 and TDV 100 mL during the spring to summer cultivation, and the proper CT seems to be higher than 0.75 and lower than 0.90 under at 75 mL of the irrigation volume per event and TDV 70 mL during the winter cultivation. It is going to be necessary to investigate the relationship between capacitance value and substrate volumetric water content by determining the correction coefficient.

Design and Implementation of irrigation management embedded system controlling substrate moisture directly (배지수분 직접제어에 의한 급액관리 임베디드 시스템 설계 및 구현)

  • Lee, Han-Kwon;Byun, Young-Ki;Lee, Seung-Hyuk;Pack, Hyun-Ok;Cho, Tae-Kyung;Kim, Young-Shik;Park, Byoung-Soo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.7 no.2
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    • pp.188-194
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    • 2006
  • Since the late 1920's possibility of commercial hydroponics was testified practically. Hydroponics is used as environmentally friendly agriculture production system recently with high effectiveness. Now that existing irrigation control systems such as time control or solar radiation control cannot satisfy stable water content in root substrates, the needs for new irrigation system keep increasing. In this paper, we proposed environmentally friendly automatic irrigation management system by employing automation system based on electronic control system, which could solve problems based on manual irrigation management system. In addition, it suggested to be applied to any crops and will be able to overcome existing limit in irrigation by measuring the water content of root substrate in realtime.

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