• 제목/요약/키워드: drainage water volume

검색결과 88건 처리시간 0.019초

용수절약형 논관개 기법(관개배수 \circled1) (Water saving irrigation method in paddy fields)

  • 정상옥;안태홍
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2000년도 학술발표회 발표논문집
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    • pp.108-113
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    • 2000
  • A field study was performed to investigate the effect of water saving irrigation method on water use efficiency and rice yield. The field plot was 40a (40 ${\times}$ 100m) in size and located at Buryangmyun, Kimjae city, Chonbuk province. Field measurements were made during the growing seasons, May to September of the year 1998 and 1990. Irrigation water volume, drainage water volume, rainfall and ponding depth were measured. Irrigation water management practice employed was such that to keep the ponding depth about 3 to 4cm by intermittent irrigation with drying the soil surface until hair cracks emerge before the next irrigation. The amounts of water volume irrigated and drained were measured by pipe flow meter and ponding depth was observed by using a partly buried 120mm diameter PVC pipe. The results showed that the irrigation water depths, the rainfalls, and the drainage depths were 379mm, 458mm, and 448mm in 1988, and 274mm, 819mm, and 736mm in 1990, respectively. The average yield was 590kg per 10a. The water saving irrigation method saved irrigation water by about 20% with higher yield compared with the traditional method.

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2차원 유한체적 수치모형을 이용한 대구획 논의 배수특성 분석 (An Analysis of Drainage Characteristics at Large-Sized Paddy Fields Using a Two-Dimensional Numerical Model)

  • 박승우;박종민;강민구
    • 한국농공학회논문집
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    • 제46권3호
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    • pp.3-14
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    • 2004
  • A two-dimensional numerical model based on a finite volume method was formulated to solve the shallow water equations and applied for evaluating drainage characteristics at large-sized paddy fields. Manning roughness coefficient was calibrated using the observed inundating depths at drainage tests, and used for validating the model with the results from another drainage test. The simulated results were in good agreement with the observed inundating depths. The result of surface drainage showed that the longer width of the outlet was or the more the number of drainage outlet was, the shorter the drainage time was taken, and the larger the size of the field become, the longer the drainage time was taken, and the field shape had little effect on drainage time. To reduce the drainage time to 24 hours, the outlet is located lower than the elevation of the basin and small drainage ditch is constructed at the field. The results showed that the drainage time was taken short as the small drainage ditch was constructed. The comparison of drainage time as to the size of field constructed small drainage ditch showed the field, 100m ${\times}$ 200 m, can be drained in 24 hours.

코이어 배지 이용 토마토 장기 수경재배시 급액량이 근권부 무기이온에 미치는 영향 (Effect of Irrigation volume on Ions Content in Root Zone in Soilless Culture of Tomato Plant Using Coir Substrate)

  • 최경이;여경환;최수현;정호정;김승유;이성찬;강남준
    • 생물환경조절학회지
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    • 제27권1호
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    • pp.1-6
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    • 2018
  • 수경재배에서는 근권내 양분의 집적 정도는 급액의 양과 밀접한 관계를 가지기 때문에 급액의 양(횟수)이 토마토의 생육과 수량에 미치는 영향이 크다. 따라서 본 시험에서는 코이어를 이용한 토마토 장기 수경재배에 급액량이 근권의 무기이온에 미치는 영향을 구명하고자 하였다. 적산일사량을 기준으로 급액량을 조절하였으며 생육시기별로 적산일사량 설정치를 변경하며 급액량을 4수준으로 처리하였다. 처리별 매일의 급액량과 배액량을 조사하였고 배액율을 계산하였다. 급액량이 많을수록 토마토의 수분 흡수량은 증가하는 경향이었다. 그러나 High 처리구는 2월과 3월에 Medium high 처리구에 비하여 수분 흡수가 감소하였다. 월별 평균 급액량과 배액율을 계산하여 배액율이 20-30%되는 급액 구간으로 1월은 $120-140J/cm^2$, 2월은 $100-120J/cm^2$, 3월은 $80-100J/cm^2$, 4월은 $70-90J/cm^2$, 5월은 $60-75J/cm^2$로 적정한 범위를 정할 수 있었다. 급액량이 많을수록 이온들의 농도가 낮아서 근권의 양분집적을 상당 부분 방지할 수 있었는데 양분을 흡착하는 코이어 배지의 특성 때문에 배액율이 20-30%인 경우 근권의 무기이온의 농도는 상당히 높았다. 그런데 P와 K는 처리에 관계없이 배액에서 급액농도 보다 낮아지는 경우가 발생하였으며, 급액량이 많은 처리에서도 Mg와 S가 가장 잘 집적되는 이온이었다. 일사량이 적은 시기에는 급액량에 따른 배액내 무기이온의 농도는 큰 차이를 나타내지 않았으나, 일사량이 많은 시기에는 급액량이 적을수록 배액의 무기이온의 농도가 높았다. 특히, 3월 이후에는 급액량 조정만으로는 배액의 이온농도 상승을 방지하기 어려워 우선적으로 급액 EC를 낮춰 근권에 양분이 집적되는 것을 막을 필요가 있었다.

무경운 직파재배가 논 용수량 및 비용절감에 미치는 효과 - 현장 사례 연구 (Effects of no-till direct seeding on irrigation water and cost reduction - A field case study)

  • 정상옥;김지용
    • Current Research on Agriculture and Life Sciences
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    • 제18권
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    • pp.33-42
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    • 2000
  • A field case study was performed to investigate the effect of shallow ponding in paddy field on irrigation water requirement of direct seeded rice. In addition, an economic analysis was made to see the effect of no-till direct seeded rice on cost reduction. A field study was performed at a 2.1ha paddy field in Kimjae city, Chonbuk province from 1991 to 1999. Various direct seeding methods such as dryland seeding, wetland seeding, and no-till wetland seeding were introduced. Then, cost reductions due to the direct seeding and no-till were calculated. In addition, to investigate the effect of shallow ponding on irrigation water requirement, field measurements such as irrigation water volume, drainage water volume, rainfall depth, and ponding depth, were made at a 40a plot within the same area in 1988 and 1990. The results of the shallow ponding study showed that the irrigation water depth, rainfall, and the drainage depth were 379mm, 458mm, and 448mm in 1988 growing season, and 274mm, 819mm, and 736mm in 1990, respectively. The shallow ponding irrigation method saved irrigation water by about 20% with higher yield compared with the traditional method. The economic analysis showed that won \640,000 per ha can be saved by direct seeding due to no nursery cost, and \1,220,000 per ha due to no-till and no nursery cost. The yields ranged 540 to 640 kg per 10a during the study period with an average of 590kg per 10a. If these cropping techniques with no-till direct seeding and shallow ponding depth for rice cropping prove to be advantageous with further study, they can be adopted for the most of the paddy fields in Korea.

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저수형 잔디블록 저수조 내 충진재료에 따른 저수량 및 초종별 증발산량 (Volume of Water Storage and Evapotranspiration by Inserted Materials at a Reservoir of Porous Grass Block)

  • 한승호;최준수;양근모;양병이;강진형;김원태
    • 한국조경학회지
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    • 제34권5호
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    • pp.76-83
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    • 2006
  • The purpose of this study was to investigate the performance of porous grass block. For the investigation, Festuca arundinacea and Zoysia japonica 'Zenith' were planted, and the volume of evapotranspiration and remains were examined based on different materials in the water tank in the experiment of Festuca arundinacea, the volume of water storage of treatment with perlite ($10.84{\iota}/m^2$) was higher than that with drainage ($7l/m^2$). The difference between the two was $3.84/m^2$. The drainage treatment without water storage capacity showed the higher degree of dryness in turf grass. The volume of evapo-transpiration of treatment with perlite was the highest (21.57mm/week). The volume of evapotranspiration of treatment with sand was 19.57mm/week, and with treatment with drainage was 18.24mm/week. Based on the measured volume of daily evapotranspiration of $2.60{\sim}3.08mm\;d^{-1}$, it was determined that the unit with water storage capacity would store water of one to two days usage compared to unite without such storage capacity. In the experiment of Zoysia japonica 'Zenith', the volume of water storage of treatment with perlite was $10.77l/m^2$ which was similar to the former experiment. The volume of evapotranspiration of treatment with perlite and sand were 21.64mm/week and 20.64mm/week, respectively. In case of airtight water tank, the volume was measured as 22.06mm/week. Each treatment has no notable difference in the volume of evapotranspiration. In conclusion, from the investigation in this study, porous grass block with water tank was found to be effective in plant growth under low irrigation. As the ecological area ratio and vegetated porous pavement have became more emphasized, additional study of rain infiltration and reservoir effect are needed in the future.

지표면의 시공간적 변화를 고려한 비점오염원 저감 저류지 최적용량산정 (Optimal Volume Estimation for Non-point Source Control Retention Considering Spatio-Temporal Variation of Land Surface)

  • 최대규;김진관;이재관;김상단
    • 한국물환경학회지
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    • 제27권1호
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    • pp.9-18
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    • 2011
  • In this study the optimal volume for non-point source control retention is estimated considering spatio-temporal variation of land surface. The 3-parameter mixed exponential probability density function is used to represent the statistical properties of rainfall events, and NRCS-CN method is applied as rainfall-runoff transformation. The catchment drainage area is divided into individual $30m{\times}30m$ cells, and runoff curve number is estimated at each cell. Using the derived probability density function theory, the stormwater probability density function at each cell is derived from the rainfall probability density function and NRCS-CN rainfall-runoff transformation. Considering the antecedent soil moisture condition at each cell and the spatial variation of CN value at the whole catchment drainage area, the ensemble stormwater capture curve is established to estimate the optimal volume for an non-point source control retention. The comparison between spatio-temporally varied land surface and constant land surface is presented as a case study for a urban drainage area.

2차원 유한체적 수치모형을 이용한 대구획 논의 용배수 특성해석(관개배수 \circled2) (An Analysis of Irrigation and Drainage Characteristics at Large-Sized Paddy Fields Using a Two-Dimensional Numerical Model)

  • 박종민;박승우;강문성;강민구
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2000년도 학술발표회 발표논문집
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    • pp.162-168
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    • 2000
  • A two-dimensional numerical model based on a finite volume method was formulated to solve the shallow water equations and applied for evaluating irrigation and drainage characteristics at large-sized paddy fields. Manning roughness coefficient was calibrated using the observed inundating depths at drainage tests and used for validating the model with the results from irrigation and drainage test. The simulated results were in good agreement with the observed inundating depths.

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농업용 저수지 수질과 경험적 인자들과의 관계 (The Relationships Between Empirical Factors and Water Quality in Agricultural Reservoirs)

  • 김호섭;최은미;박주현;황하선;김범철;공동수;황순진
    • 한국물환경학회지
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    • 제24권3호
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    • pp.333-339
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    • 2008
  • This study was carried out to assay the relationships between empirical factors and water quality in 23 agricultural reservoirs. Based on the trophic state index (TSI) deviation analysis, phosphorus in type II and III was the primary limiting factor on algal growth. BOD, COD, TP and chl.a concentration in type III reservoirs showed higher concentration than those of other types, while SS and TN concentration was no noticeable difference among three types. Characteristics of type III reservoirs showed large reservoir surface and drainage area, large surface area to volume (SAV) ratio, small drainage area to reservoir area (DA/RA) ratio, relatively old age, large paddy field and upland field to drainage area ratio (Mean 17.4%) and high generation and discharge loads compared to other types of reservoirs. In type I and II reservoirs, trends of BOD, TN, TP concentration in water column, were similar to those of the discharge load of pollutants. Although type II reservoirs generally showed low phosphorus discharge loads compared to type I reservoirs, TP and chl.a concentration in water column was greater than that of type I. Characteristics of type II reservoirs showed relatively large SAV ratio and old age compared to type I reservoirs and was similar to those of type III including eutrophic reservoirs.

Utilization of the Outflowing Groundwater Resources in an Underpass Structure

  • Jin, Kyu-Nam;Park, Jae-Hyeon;Lee, Jung-Min;Lee, Sang-Ho
    • Environmental Engineering Research
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    • 제18권3호
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    • pp.117-121
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    • 2013
  • For underpasses in Yeongjong Sky City business district, the guided drainage system, as a buoyancy prevention system has been designed, and is under construction. This paper investigates the safety of the guided drainage system for underpass structures being constructed in Yeongjong Sky City business district. This paper also calculates the amount of outflowing groundwater generated by the guided drainage system, and proposes alternative usages of the water. In order to investigate safety and field applicability of the guided drainage system for underpasses, characteristics of the surface flow for the area of interest have been analyzed, and the flow change of groundwater following the underpass structure construction has been evaluated using the 3-dimensional groundwater program MODFLOW. The influence of ground water on safety of the underpass structures has been calculated by FLAC2D analysis. For alternative usages for the outflowing groundwater generated by the guided drainage system, utilization methods of the outflowing groundwater in national and international resources have been researched. The amount of an outflowing groundwater to be generated in the area of interest has been analyzed, and efficient potential usages of this groundwater have been researched. When guided drainage technique is applied, the change in flow of groundwater must be evaluated and considered as safety factor relating to the buoyancy of the structure. As a result, safety factor demonstrated more than 1.2, meaning that the underpass structure is safe. The amount of subsoil drain generated by the guided drainage system was also analyzed. The quality and amount of water satisfied the standards and volume requirements, so as to make it applicable for a number of uses, such as X, Y, and Z, and should prove to be a valuable resource as the circumstances of the neighboring area change over time. These resources can be used as basic data for future urban water circulation studies, as well as generating research of alternative water usages.

담수심처리가 논의 물수지에 미치는 영향 (The Effects of pending depth treatment on Water balance in paddy fields)

  • 손성호;정상옥
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2001년도 학술발표회 발표논문집
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    • pp.99-105
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    • 2001
  • The purpose of this study is to investigate the effects of pending depth treatment on water balance in paddy fields. The pending depth treatments were very shallow, shallow and deep. The experimental plots were three $80m{\times}25m$ rectangular plots. Daily values of rainfall amount, pending depth, irrigation water, drainage water, evapotranspiration, infiltration, and piezometeric head were measured in the field. The pending depth was continuously observered by water level logger during the growing season. The ET was measured in 1m diameter PVC lysimeters. Irrigation water volume was measured by 75m pipe flow meter and the drainage water volume was measured by 25mm and 75mm pipe flow meters and a recording Parshall fulume. PVC pipe piezometers with 12mm diameter were used. The results of the water balance showed that irrigation water of 881.1mm, 735.4mm, and 532.6mm in very shallow, shallow, and deep pending, respectively. The effective rainfall was 182.6mm(44.6%), 254.7mm(62.2%), and 188.6mm(46.0%) in very shallow, shallow, and deep pending, respectively. The results show that the shallow pending depth looks the best of the three treatments.

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