• 제목/요약/키워드: Irrigation times

검색결과 245건 처리시간 0.028초

灌漑用水路의 水路損失率 算定에 關한 硏究 (A Study on the Estimation of Watter Loss Rates in Irrigation Canals)

  • 구자웅;이기춘;김재영;이재영
    • 한국농공학회지
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    • 제24권2호
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    • pp.56-66
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    • 1982
  • This study was carried out in order to estimate water losses in irrigation canals, which may be used to evaluate the water requirement for irrigation projects. The conveyance losses were measured by the inflow-outflow method, the seepage losses were measured by the ponding method, and the operation losses in the course of irrigation were calculated by comparing the two kinds of losses. The results obtained in this experiment were as follows; 1. Conveyance losses per unit area of wetted perimeter by the main irrigation canal, the secondary irrigation canal and the tributary irrigation canal, were 1.399${\times}10^{-5}m^3/sec/m^2$, 5.154${\times}10^{-5}m^3/sec/m^2$, and 2.67${\times}10^{-5}m^3/sec/m^2$ respectively in the Goong-sa area. And they were 1.934${\times}10^{-5}m^3/sec/m^2$, 2.149${\times}10^{-5}m^3/sec/m^2$, and 4.558${\times}10^{-5}m^3/sec/m^2$ respectively in the Seong-dug area. 2. Seepage losses per unit area of wetted perimeter by the secondary irrigation canal and the tributary irrigation canal, were 2.180${\times}10^{-6}m^3/sec/m^2$ and 2.168${\times}10^{-6}m^3/sec/m^2$ in the Goong-sa area, 1.150${\times}10^{-6}m^3/sec/m^2$ and 1.084${\times}10^{-6}m^3/sec/m^2$ in the Seong-dug area respectively. 3. Operation losses per unit area of wetted perimeter by the secondary irrigation canal and the tributary irrigation canal, were 4.936${\times}10^{-5}m^3/sec/m^2$ and 2.453${\times}10^{-5}m^3/sec/m^2$ in the Goong-sa area, 2.034${\times}10^{-5}m^3/sec/m^2$ and 4.450${\times}10^{-5}m^3/sec/m^2$ in the Seong-dug area respectively. 4. Conveyance, seepage and operation losses in the Goong-sa area were 6.7%, 94.6%, and 14.0% more than those in the Seong-dug area. Operation losses amount to about 17 times as much as seepage losses in the Goong-sa area and about 29 times in the Seong-dug area. 5. The seepage losses depend much on the soil texture, ranging from 7.437${\times}10^{-7}m^3/sec/m^2$ to 2.430${\times}10^{-6}m^3/sec/m^2$. 6. Water loss rates in the main irrigatin canal, the secondary irrigation canal and the tributary irrigation canal, were estimated as 8.49%, 37.27% and 9.81% respectively in the Goong-sa area. And they were estimated as 15.10%, 32.67% and 13.78% respectively in the Seong-dug area.

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최적화기법에 의한 농업용 저수지의 관개면적별 최적용수관리 (Optimal Water Management for Classified Irrigation Area of Agricultural Reservoir by using Optimization Programming)

  • 차상화
    • 한국환경과학회지
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    • 제12권4호
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    • pp.439-446
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    • 2003
  • In this paper, the study area is selected Sungju Reservoir which was constructed with an agricultural purpose and determined the optimal water management plan among the five cases of classified irrigation area by using Linear Programming. As a results of reservoir operation, the additional water quantity of classified irrigation area showed 16.036${\times}$10$\^$6/m$^3$3/year, 19.404${\times}$10$\^$6/m$^3$/year, 18.864${\times}$100$\^$6/m$^3$/year, 4.032${\times}$10$\^$6/m$^3$/year and 0.672${\times}$10$\^$6/m$^3$/year and the total water supply quantity showed 69.628${\times}$10$\^$6/m$^3$/year, 70.048${\times}$10$\^$6/m$^3$/year, 67.979${\times}$10$\^$ 6/m$^3$/year, 67.979${\times}$10$\^$6/m$^3$/year, and 69.939${\times}$10$\^$6/m$^3$/year respectively. Therefore, the case-II was adopted with water management plan of optimum. It is also known that the maximum irrigation area augmentation effect appears in the case which will use the additional water quantity in field irrigation of the case-II which was adopted.

Responses of Soybean Genotypes to Different Levels of Irrigation

  • Rabbani, M.F.;Ashrafuzzaman, M.;Hoque, A.M.;Karim, M.Abdul
    • 한국작물학회지
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    • 제49권2호
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    • pp.131-135
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    • 2004
  • To find out the responses of soybean genotypes in terms of different levels of irrigation with the aim of evaluating the growth, yield, and its optimum levels of irrigation, an experiment was conducted at the Field of Crop Botany Department, Bangladesh Agricultural University, Mymensingh during the period from November 2000 to February 2001. Five levels of irrigation viz. $\textrm{I}_0$: no irrigation, $\textrm{I}_1$: one time irrigation at 20 days after sowing (DAS), $\textrm{I}_2$:two times irrigation at 20 and 40 DAS, $\textrm{I}_3$: three times irrigation at 20, 40, and 60 DAS, and $\textrm{I}_4$: four times irrigation at 20, 40, 60, and 80 DAS and three genotypes of soybean viz. BS-3, BS-16, and BS-60 were used in this experiment. The crop was grown in a split plot design having three replications. The plant height, leaf area index, crop growth rate, shoot dry weight, branches $\textrm{plantI}_{-1}$, filled pods $\textrm{plantI}_{-1}$, seeds $\textrm{plantI}_{-1}$, seed yield, and harvest index were influenced significantly by irrigation and these were found to be highest at three times irrigation except branches $\textrm{plantI}_{-1}$. The chlorophyll content increased but empty pods $\textrm{plantI}_{-1}$ decreased with increase in irrigation levels. Genotypes of soybean varied significantly in terms of growth attributes at various growth stages except shoot dry weight at 90 DAS. The genotype BS-3 performed better compared to other genotypes and gave maximum seed yield.

정식 후 초기 관수횟수 감소에 따른 배추 뿌리혹병 발생 억제효과 (Suppression Effect of Clubroot Disease by Reduced Irrigation Times after Planting in Chinese Cabbage)

  • 장석원;김희동;김성기;이은섭;노용택
    • 식물병연구
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    • 제14권2호
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    • pp.85-89
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    • 2008
  • 배추재배에서 뿌리혹병은 세계적으로 가장 문제가 되고 있는 병 중 하나이다. 본 연구는 배추 정식 후 관수횟수가 뿌리혹병의 발생 정도에 미치는 영향을 평가하기 위하여 폿트와 포장에서 실시되었다. 토양수분장력 별 시험에서 토양수분장력 별 관수횟수는 적을수록 발병도가 낮은 경향이었다. 상품수량은 0.06 MPa 처리구에서 10a당 5,306 kg으로서 다른 처리보다 증수하여 가장 경제적인 관수개시점으로 나타났다. 향후 적정 살균제 처리조합 혹은 저항성 품종 재식시의 관수 횟수에 대한 보강 연구가 필요할 것으로 보인다.

한국의 골프 코스 그린의 관리 및 스피드 특성과 상관에 관한 연구 (Characteristics and Correlation between Green Management Practices and Speed in Korean Golf Courses)

  • 이상재;심경구;허근영
    • 한국조경학회지
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    • 제28권4호
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    • pp.29-43
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    • 2000
  • This study is carried out to investigate the cahracteristics of green management practices and green speed(i.e., ball-roll distance) on 129 Golf Courses in Korea, and to explain the effects of managemet practices that affect green speed. Data collected from green-keepers were subjected to frequency, correlation analysis, and multi-regression analysis using SPSSWIN(Statistical Package for the Social Science). The results are as follows. 1. In spring mowing height, 3.5-4 mm appeared the highest frequency(44.4%) and 4-4.5mm mowing height appeared the high frequency(41.0%). In summer mowing height, 4.5-5mm appeared the highest frequency(51.3%). In fall mowing height, 4-4.5mm appeared the highest frequency(41.0%). 2. In N-fertilizing amount of February and November, 0(zero) g/$m^2$ appeared the highest frequency. In N-fertilizing amount, of June and July 0-2 g/$m^2$ appeared the highest frequency. In N-fertilizing amount, of March, May, August, and September 2-4 g/$m^2$ appeared the highest frequency. In N-fertilizing amount, of October 2-4 or 6-8 g/$m^2$ appeared the highest frequency. 3. In spring topdressing times, 3-6 times appeared the highest frequency(52.6%). In spring topdressing amount, more than 2mm appeared the highest frequency(35.9%). In summer topdressing tierms, 0-3times appeared the highest frequency(71.8%). In summer topdressing amount, 0.5-1mm appeared the highest frequency(46.2%). In fall topdressing times, 0-3times appeared the highest frequency(47.4%). In fall topdressing amount, more than 2mm appeared the highest frequency(35.9%). 4. In spring irrigation tiems, 3-4times/a week appeared the highest frequency (30.6%). In spring irrigation amount, the irrigation below 5mm/day under appeared the highest frequency(38.7%). In summer irrigation times, 4-7times/ a week appeared the highest frequency(38.9%). In summer irrigation amount, 5-10mm/a day appeared the highest frequency(45.2%). In fall irrigation times, 2-3times/a week appeared the highest frequency(36.1%). In fall irrigation amount, the irrigation below 5mm/a day under appeared the highest frequency(45.2%). 5. In spring aeration times, 2 times appeared the highest frequency(55.2%). In spring aeration depth, 5-10mm appeared the highest frequency(81.6%). In fall aeration times, 1 time appeared the highest frequency(82.5%). In fall aeration depth, 5-10mm appeared the highest frequency(86.8%). 6. In spring green speed, 1.98-2.28 or 2.59-2.89mm appeared the highest frequency(32.7%). In summer green speed, 1.98-2.28mm appeared the highest frequency (46.9%). In fall green speed, 1.98-2.28mm appeared the highest frequency(38.8%). 7. The factors which affect green speed were mowing height, N-fertilizing, season, topdressing, irrigation, and aeration. Vertical mowing did not affect green speed. The order of the relevant important factors was mowing height >: N-fertilizing > season > topdressing > irrigation > aeration. Mowing height and N-fertilizing were the most important factors in green speed. As mowing height decreased, green sped always increased. As total N-fertilizing amount decreased, green speed increased. In summer, green sped decreased remarkably. As topdressing times increased and the topdressing amount decreased, green sped increased. As irrigation times increased and irrigation amount decreased, green speed increased.

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개발초기 간척답의 관개용수량 산정에 관한 연구 (Irrigation Water Requirements of Unripened Reclaimed Paddy Fields)

  • 손재권;구자웅;최진규
    • 농촌계획
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    • 제8권1호
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    • pp.26-40
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    • 2002
  • In order to plan the effective irrigation project in unripened reclaimed paddy fields, the estimation of criteria of irrigation water requirements for the normal growth of crops is very important. This study was carried out to determine the leaching requirements before cultivating crops, the consumptive use of water by the growth of crops, and preventive water requirements of resalinization during the growth period in unripened reclaimed paddy fields. The irrigation water requirements in good permeable soils were estimated as 2,530mm for culvert treatment(S1CW3) and 3,080mm for non-culvert treatment(S1NW4), which were 1.8 times and 2.4 times as high as the irrigation water requirements in common rice fields, respectively. And, in case of poor permeable soils, 3,360mm for culvert treatment(S2CW4) and 3.580mm for non-culvert treatment(S2NW4) were estimated, which were 2.5 times and 2.8 times higher than the normal irrigation water requirements, respectively.

마이크로컴퓨터를 이용한 시설원예작물 재배의 관개자동화에 관한 연구 (A Study on the Automatic Irrigation Control System in the Vinyl-House Cultivation Utilizing Microcomputer)

  • 김철수;김진현;정성원
    • Journal of Biosystems Engineering
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    • 제14권2호
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    • pp.128-136
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    • 1989
  • The purpose of this study was to develop a computer operated automatic drip irrigation system for application in vinyl-house cultivation. The results can be summarized as follows: 1) The T-type ice compensation wire was used to measure the temperature. The voltage level measured up to 0.02 volt was used as input to an 8-bit A/D converter. 2) A specially devised tensiometer was used to content the watering system. When the needle of the pressure gauge reaches the lower threshold position it turns on the pumping system and turns off when it reaches higher threshold position. 3) In order to use the multiple gypsum blocks for one transducer, reed relays and a D/O board were used to make the sequential switching possible. 4) It was possible to automate the trickle irrigation system for the whole growth period of vinyl-house crops with the help of microcomputer. 5) In terms of furrow irrigation, the irrigation water consumption was the smallest, 2.8 times less than conventional method of surface trickle irrigation, 3.4 times less than subsurface trickle irrigation method. 6) In terms of productivity of cucumber, there was a drop in productivity when compared to furrow irrigation method, 7.2% for surface trickle irrigation, 27.4% for subsurface irrigation method.

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실내에서 관수주기, 토양처리, 배수층이 자생 도깨비고비의 생육에 미치는 영향 (Influence of Irrigation Times, Soil Treatment and Drainage in Indoor on the Growth Response of Cyrtomium falcatum Ferns Korea Native)

  • 주진희;방광자
    • 한국환경복원기술학회지
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    • 제8권1호
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    • pp.73-78
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    • 2005
  • 본 연구는 실내에서의 관수주기, 토양처리, 배수층에 따른 생육과 생리적 반응을 살펴봄으로 써 실내에서 도깨비고비의 적정 생육환경을 밝히고자 수행하였다. 실험구의 관수주기는 2회/주와 7회/주로 하였으며 각 실험구의 세부처리로서 토양처리와 배수층처리는 배수층-피트모스 : 버미큘라이트 : 펄라이트=1 : 1 : 1(D-PVP), 피트모스 : 버미큘라이트 : 펄라이트=1 : 1 : 1(PVP), 배수층-부엽토 : 마사토=1 : 1(D-SL) 그리고 부엽토 : 마사토=1 : 1(SL)로 각각 처리하였으며 그 결과는 다음과 같다. 1. 실내환경에서 도깨비고비는 주 2회 관수처리보다 주 7회 관수처리에서 지상부의 생육은 촉진되었으나 낙엽수 증가로 인해 실내적응성은 감소될 뿐 아니라 황화되는 현상을 보였다. 2. 토양에 있어서는 마사토 : 부엽토=1 : 1처리가 피트모스 : 버미큘라이트 : 펄라이트=1 : 1 : 1처리보다 생육이 양호한 것으로 나타났으나 낙엽수의 증가로 인해 실내적응성은 감소하였다. 3. 배수층에 유 무에 따른 생육에 있어서는, 관수주기와 토양에 관계없이 배수층이 없을 경우 초장과 소엽장이 촉진되나, 실내적응성, 포자엽수, 신엽수는 배수층이 있을 때 더 높은 것으로 나타났다. 4. 생리적 변화에 있어 광합성률은 관수주기, 배수층, 토양처리에 따라 차이를 보였으며 주 2회 관수처리구에서는 배수층이 있는 피트모스 : 버미큘라이트 : 펄라이트=1 : 1 : 1처리에서 가장 높게, 주 7회 관수처리구에서는 배수층이 없는 마사토 : 부엽토=1 : 1처리에서 가장 낮은 것으로 나타났다.

용수절약을 위한 국내 SRI 적용 가능성 평가 (Evaluation on Feasibility of System of Rice Intensification (SRI) for Reduction of Irrigation Water in South Korea)

  • 박운지;최용훈;신민환;원철희;박기욱;최중대
    • 한국농공학회논문집
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    • 제53권4호
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    • pp.49-57
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    • 2011
  • The objective of this study was to experimentally investigate the feasibility of SRI (system of rice intensification) in Korean rice farming. Eight experimental plots of $5{\times}15$ m in size were prepared on an existing rice field of loam soil. Spacing was $30{\times}15$ cm (conventional treatment: CT), $30{\times}30$ cm, $40{\times}40$ cm and $50{\times}50$ cm, respectively. CT were flooded and SRI plots irrigated intermittently 3 to 5 day interval during cultivation. Organic matter content and pH of the soil were $2.5{\pm}0.03$ % and $6.1{\times}0.2$, respectively, before the cultivation. The highest number of tillers and height of the plant were measured at $50{\times}50$ cm plots. The height and number of tillers and height in $50{\times}50$ cm plots were 10 cm and 1.5 times more than CT. Average irrigation supply to SRI and CT was 243.2 mm and 547.3 mm, respectively. It meant that the reduction of irrigation water in SRI plots over CT was estimated to 55.6 %. Therefore SRI was concluded to have a good enough possibility to be applied in South Korea because it was proven to be more effective in reduction of irrigation water and crop cultivation compare to the CT.

Effects of Ridge Height, Planting Density and Irrigation on Growth and Yield of Licorice

  • Han, Sang-Sun;Kim, Yeon-Bok;Lee, Sang-Yong;Chang, Kwang-Jin;Lee, Han-Bum;Lee, Ki-Cheol;Park, Cheol-Ho
    • Plant Resources
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    • 제4권1호
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    • pp.6-12
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    • 2001
  • Growth and yield of licorice were investigated under the different conditions of ridge height, planting density, and irrigation in order to establish its cultural practices for the domestic production with the aim to substitute the import. Seedlings were grown under low ridge(20cm) and high ridge(40cm) in low density plot(60$\times$30cm) and high density plot(40$\times$30cm), respectively. The low ridge cultivation of large seedlings increased plant height and root length under low density, and stem and root diameter under high density compared to the high ridge cultivation. In the high ridge cultivation, high density plot was 1.1 to 1.3 times in plant height, root length, stem and root diameter as high as low density one. Fresh and dry weight of plant and root in high ridge were 1.3 to 1.5 times as high as those in low one. The growth of small seedlings(4~10g) were generally poor compared to that of large seedlings. High density plot in low ridge showed the good growth characteristics including plant height, root length, stem and root diameter, and number of branch. High density plot was 1.4 to 1.6 times in fresh and dry weight of plant and root as high as low density plot. In the seasonal changes of growth under various irrigation regimes, the twice irrigation a day produced the more number of leaf than the other regimes since around 46 days after transplanting. The former irrigation resulted in 1.2 to 1.4 times in plant height as long as the other irrigations around 26 days after transplanting and then the difference was increased to 1.6 to 2.0 times around 64 days after transplanting. Under the twice irrigation a day, plant height, root length, stem diameter, root diameter, number of leaf, fresh plant weight, dry plant weight, fresh root weight, dry root weight were 1.6 to 2.0, 1.1, 1.2 to 1.6, 1.3 to 1.8, 1.9 to 2.7, 1.7 to 8.0, 1.6 to 2.8,2.0 to 3.0, 1.6 to 2.7 times as high as those under the other irrigation regimes, respectively.

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