• 제목/요약/키워드: agricultural lake

검색결과 217건 처리시간 0.028초

Modeling the effects of excess water on soybean growth in converted paddy field in Japan 1. Predicting groundwater level and soil moisture condition - The case of Biwa lake reclamation area

  • Kato, Chihiro;Nakano, Satoshi;Endo, Akira;Sasaki, Choichi;Shiraiwa, Tatsuhiko
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.315-315
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    • 2017
  • In Japan, more than 80 % of soybean growing area is converted fields and excess water is one of the major problems in soybean production. For example, recent study (Yoshifuji et al., 2016) suggested that in the fields of shallow groundwater level (GWL) (< 1m depth), rising GWL even in a short period (e.g. 1 day) causes inhibition of soybean growth. Thus it becomes more and more important to predict GWL and soil moisture in detail. In addition to conventional surface drainage and underdrain, FOEAS (Farm Oriented Enhancing Aquatic System), which is expected to control GWL in fields adequately, has been developed recently. In this study we attempted to predict GWL and soil moisture condition at the converted field with FOEAS in Biwa lake reclamation area, Shiga prefecture, near the center of the main island of Japan. Two dimensional HYDRUS model (Simuinek et al., 1999) based on common Richards' equation, was used for the calculation of soil water movement. The calculation domain was considered to be 10 and 5 meter in horizontal and vertical direction, respectively, with two layers, i.e. 20cm-thick of plowed layer and underlying subsoil layer. The center of main underdrain (10 cm in diameter) was assumed to be 5 meter from the both ends of the domain and 10-60cm depth from the surface in accordance with the field experiment. The hydraulic parameters of the soil was estimated with the digital soil map in "Soil information web viewer" and Agricultural soil-profile physical properties database, Japan (SolphyJ) (Kato and Nishimura, 2016). Hourly rainfall depth and daily potential evapo-transpiration rate data were given as the upper boundary condition (B.C.). For the bottom B.C., constant upward flux, which meant the inflow flux to the field from outside, was given. Seepage face condition was employed for the surrounding of the underdrain. Initial condition was employed as GWL=60cm. Then we compared the simulated and observed results of volumetric water content at depth of 15cm and GWL. While the model described the variation of GWL well, it tended to overestimate the soil moisture through the growing period. Judging from the field condition, and observed data of soil moisture and GWL, consideration of soil structure (e.g. cracks and clods) in determination of soil hydraulic parameters at the plowed layer may improve the simulation results of soil moisture.

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부영양 저수지에서 국내 담수산 패류가 수질에 미치는 영향 (Effects of Domestic Freshwater Shellfishes on the Water Quality in the Eutrophic Agricultral Reservoir)

  • 황순진;박구성;백순기;김백호
    • 한국물환경학회지
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    • 제26권1호
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    • pp.148-155
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    • 2010
  • Water quality and plankton community dynamics after the introduction of two domestic freshwater shellfishes (Unio douglasiae Griffith & Pidgeon and Cipangoplaudina chinese malleata Reeve), were monitored daily in enclosures, which constructed in the tidal zone of eutrophic agricultural reservoir (Shingu reservoir, Korea) for one week between July 31 and August 6, 2007. This biomanipulation study to improve the water quality of eutrophic lake, comprised eight enclosures (duplicate x four kinds), enclosure had no mussels (Control), stocked only with U. douglasiae at density of 60 individuals (UD), stocked only with C. chinese malleata at density of 60 individuals (CCM), and combined-stocked with 30 individuals of UD and 30 individuals of CCM (MIX), respectively. Our results clearly indicate that UD strongly decreased the concentration of chlorophyll-a and increased the water transparency, whereas CCM and MIX (included CCM) did increase algal density or decrease transparency, due perhaps to the disturbance of C. chinese malleata. Therefore, the field application of shellfish to enhance the water quality of eutrophic agricultural reservoir, should consider the grazing characteristics of biological control agents, especially active moving animals like snail.

수리모형(RMA-2)을 이용한 팔당호의 유속분포 모의실험 (Simulation of Velocity Distribution in the Lake "Paldang" using the RMA-2 Model)

  • 신동석;권순국
    • 한국환경농학회지
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    • 제18권1호
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    • pp.18-23
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    • 1999
  • 팔당호의 수심측량자료와 1997년의 유출${\cdot}$입 유량을 이용하여 RMA-2 수리모형의 팔당호 유속자료를 모의실험한 결과를 정리하면 다음과 같다. 1) 팔당호에 대한 RMA-2 수리모형의 민감도 분석결과 조도계수보다는 난류교환계수가 유속의 변화에 더 민감한 영향을 미치는 것으로 나타났다. 2) 팔당호에 RMA-2를 적용한 결과, 유속의 크기는 완충지역 역할을 하는 경안천 유입부인 남쪽보다는 방류량과 취수량에 영향을 받는 팔당호 북쪽이 10배 정도 크게 계산되었으며, 팔당호 내부의 물의 흐름은 7월까지는 흐름의 방향이 상류에서 하류방향으로 흐르는 정상적인 상태를 보이다가, 7월 이후 유입량이 많아짐에 따라 댐에서의 차단효과 때문에 경안천 및 소내섬 쪽으로 역류를 하는 것으로 나타나 팔당호 내부의 물의 흐름 방향과 지점별 상대적인 크기를 비교할 수 있었다. 3) 팔당호 내부의 역류 현상은 유입량과 유출량이 평형을 이루는 12월까지 지속되며, 특히 소내섬을 중심으로 반시계방향으로 회전하는 현상이 이 시기에 뚜렷하게 나타나, 수질이나 퇴적현상을 예측할 경우 이들을 반드시 고려해야 할 것으로 판단된다. 4) RMA-2모형에 의하여 좀더 정확한 유속을 예측하기 위해서는 실축유속 및 지형자료의 갱신 및 축적이 필요하다.

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환경기준으로서의 TOC에 대한 활용성 평가 - 낙동강수계 호소를 대상으로 - (Availability Evaluation of TOC as the Environmental Standard - Survey of Lakes in Nakdong River Basin -)

  • 최병우;강미아
    • 한국습지학회지
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    • 제20권2호
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    • pp.173-180
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    • 2018
  • 상수용, 농업용 등으로 사용되고 있는 낙동강수계의 30개소 호소를 대상으로 새로운 환경기준인 TOC(총유기탄소, Total organic carbon)의 활용성을 평가하였다. 적극적인 수자원의 이용은 양호한 수질을 확보하는 것으로 시작된다. 이는 사람과 자연에게 질적 안정성을 유지할 수 있게 하므로 양호한 수질 확보를 위해 수질기준은 보다 엄격하게 강화되고 있다. 생활환경 중 호소의 유기물질 오염수준을 개선하는 데에는 적절한 유기물질 지표의 활용성이 중요하다. 대상호소에서는 새로 도입된 TOC와 기존에 사용하던 COD(화학적산소요구량, Chemical oxygen demand)간의 상호성이 양의 관계로 나타났는데 이는 TOC의 COD 대체가능성을 의미한다. 그러나 TOC를 활용한 환경기준의 등급이 COD를 활용한 환경기준의 등급보다 더 양호한 것으로 나타나 TOC를 유기물질인자로 이용한 수질등급 수준이 완화된 것과 동일한 효과를 지니게 된다. 이것은 호소의 유기물질 지표를 활용하여 질적 수준을 판단하거나 개선하고자 할 때에 기존의 COD에 직접적으로 대체하기에 TOC의 한계를 나타내는 것이다. 따라서 호소의 질적 안전성을 확보하기 위해서는 수질등급 면에서 TOC의 환경기준 강화가 요구된다. 또 호소의 이용특성에 따라 TOC와 COD간의 상관성에도 큰 차이를 나타내고 있다. 이에 대한 명확한 과학적 규명이 필요하며, 이를 위해 호소의 유기물질 지표의 축적에 기존에 사용하던 COD의 지속적인 모니터링이 요구된다.

Assessment of polluted factors in aquatic environment using near infrared spectroscopy

  • Norio, Sugiura;Zhang, Yansheng;Wei, Bin;Zhang, Zhenya;Isoda, Hiroko;Maekawa, Takaaki
    • 한국근적외분광분석학회:학술대회논문집
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    • 한국근적외분광분석학회 2001년도 NIR-2001
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    • pp.1272-1272
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    • 2001
  • Eutrophication processes of aquatic environment are strictly correlated with the concentration levels of nitrogen, phosphorous, organic matter and biological parameters such as phytoplankton and chlorophylla (Tremel, 1996; Burns et al., 1997; Young et al. 1999; Wei et al.,2000). Accordingly, the monitoring and evaluation of these factors will provide useful information about the health of aquatic ecosystem. However, the traditional types of auqatic chemistry analysis and ecological monitoring of phytoplankton are time-consuming, costly, and further resulting in secondary pollution due to the use of reagents. NIR (near-infrared) spectroscopy, as a rapid, non-destructive, little sample preparation and reagents-free technology (Hildrum et al., 1992), has been extensively applied to the characterization of food (Osborne and Fearn, 1988), pharmaceutical (Morisseau and Rhodes, 1995) and textile materials (Clove et al.,2000). Currently, NIR technology has been used indirectly in inferring lake water chemistry by two approaches, suspended (Malley et al., 1996) or seston (Dabakk et al., 1999), and sediments (Korsman et al., 1992; Malley et al., 1999). In addition, the evaluation of trophic state and the identification of the key factors contributed to the trophication are the key step to restore the damaged aquatic environment. Moreover, an understanding of the factors, which regulate the algal proliferation, is crucial to the successful management of aquatic ecosystem. In the paper, NIR technology will be used to study the environmental factors affecting the algal proliferation in combination with the trophic state index and diversity index. This novel developed system can be applied in monitoring and evaluating allopathic water environment and provide real time information services for the aquatic environment management.

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Distribution of Heavy Metals in Soils of Shihwa Tidal Freshwater Marshes

  • Yun, Seok-In;Choi, Woo-Jung;Choi, Young-Dae;Lee, Seung-Heon;Yoo, Sun-Ho;Lee, Eun-Ju-;Ro, Hee-Myong
    • The Korean Journal of Ecology
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    • 제26권2호
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    • pp.65-70
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    • 2003
  • Shihwa tidal freshwater marsh was constructed recently to treat pollutants entering Shihwa lake. In this study, we examined the spatial and temporal patterns of heavy metal accumulation in soils of Shihwa marsh and sought correlations between several soil variables (pH, electrical conductivity, organic matter, and acid ammonium oxalate-extractable Fe and Al contents) and the heavy metal concentration of soils. Surface soil samples (0∼20 cm) were collected in June 2000, November 2000, and July 2001, and were analyzed for heavy metals (Zn, Cd, Pb, Cu, Cr, As, and Hg) and soil chemical properties. The neutral pH and water-saturated conditions of Shihwa marsh appeared to favor immobilization of heavy metal through adsorption onto soils. The concentrations of heavy metal (especially Zn, Cu, and Cr) in soils of Shihwa marsh increased along the sampling occasions, suggesting that soils of Shihwa marsh serve as a sink of heavy metal. Among the sub-marshes, metal concentrations were highest in Banweol high marshes and lowest in Samhwa marshes. The temporal and spatial variations in the heavy metal concentrations of soils were correlated positively with organic matter and oxalate extractable Fe and Al contents, but negatively with electrical conductivity. These results suggest that organic matter and hydrous oxide of Fe/Al may playa key role in removing heavy metals in soils of Shihwa marsh, and that heavy metal removing capacity would increase with desalinization. However, the removal patterns of heavy metal by reeds warrant further studies to evaluate the total removal capacity of heavy metals by Shihwa marsh.

부남호·천수만의 갈수기와 강우기 수질 오염 특성과 식물플랑크톤의 공간 분포 특성 (Water quality characteristics and spatial distribution of phytoplankton during dry and rainy seasons in Bunam Lake and Cheonsu Bay, Korea)

  • 이민지;서진영;백승호
    • 환경생물
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    • 제39권2호
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    • pp.184-194
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    • 2021
  • 부남호는 하굿둑 건설 이후 수질이 급격히 악화되어 농업용수로 사용이 불가할 만큼 본래의 기능을 상실하였다. 따라서 해수 교환이나 유통의 필요성이 있으나, 극히 오염된 부남호의 물을 대량 방류할 시 문제가 야기될 수 있기 때문에 시기에 따른 환경 조사가 중요하다. 따라서 본 연구에서는 갈수기(4월)와 강우기(7월)에 천수만과 부남호의 수질 및 식물플랑크톤 분포 특성을 조사하였다. 갈수기에는 부유 생물이 정체되어 부남호 내에서 남조류 Oscillatoria spp. 세포수가 8.92×107 cells L-1로 대증식하였고, Nitrate+Nitrite을 제외한 영양염 대부분이 소비되었다. 강우기에는 담수 유입의 영향으로 부남호에서 용존 영양염이 크게 증가하였고 부남호에서 식물플랑크톤이 대증식하였다. 강우기 방류의 영향으로 천수만 내측 역시 높은 농도의 생물량을 보였다. 강우기 부남호에서 우점했던 남조류 Oscillatoria spp.와 Microcystis spp.가 천수만 내측에서도 다수 출현하였으며, 해수에서는 Cheatoceros spp., Eucampia zodiacus와 같은 규조류가 빠르게 증식하였다. 부영양화 지수는 부남호 내측에서 1을 초과하여 부영양 해역으로 평가되었다. 천수만은 강우기에 담수 방류의 영향을 받을 경우 부영양화 해역으로 평가되었다. 특히 부남호 내 방조제에 인접한 B3 정점의 8 m 이상 수심에서 정체된 해수 기원의 강한 빈산소 수괴가 관찰되었고, Nitrate+Nitrite를 제외한 영양염 농도가 극단적으로 높았다. 특히 COD 농도가 206 mg L-1로 심하게 오염된 상태임을 확인하였다. 따라서 부남호는 지속적으로 육상기원의 영양염이 누적되며, 식물플랑크톤의 대발생과 침강으로 수질이 더욱 악화될 가능성이 높은 수역으로 판단되었고, 이를 근본적으로 해결하기 위해서는 해수유통을 통한 생태계 복원이 필수적이다.

간월호 유역의 토지이용 및 기후변화에 따른 논밭 필요수량 변화 추정 (Estimation of Crop Water Requirement Changes Due to Future Land Use and Climate Changes in Lake Ganwol Watershed)

  • 김시내;김석현;황순호;전상민;송정헌;강문성
    • 한국농공학회논문집
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    • 제63권6호
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    • pp.61-75
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    • 2021
  • This study aims to assess the changes in crop water requirement of paddy and upland according to future climate and land use changes scenarios. Changes in the spatiotemporal distribution of temperature and precipitation are factors that lower the stability of agricultural water supply, and predicting the changes in crop water requirement in consideration of climate change can prevent the waste of limited water resources. Meanwhile, due to the recent changes in the agricultural product consumption structure, the area of paddy and upland has been changing, and it is necessary to consider future land use changes in establishing an appropriate water use plan. Climate change scenarios were derived from the four GCMs of the CMIP6, and climate data were extracted under two future scenarios, namely SSP1-2.6 and SSP5-8.5. Future land use changes were predicted using the FLUS (Future Land Use Simulation) model. Crop water requirement in paddy was calculated as the sum of evapotranspiration and infiltration based on the water balance in a paddy field, and crop water requirement in upland was estimated as the evapotranspiration value by applying Penman-Monteith method. It was found that the crop water requirement for both paddy and upland increased as we go to the far future, and the degree of increase and variability by time showed different results for each GCM. The results derived from this study can be used as basic data to develop sustainable water resource management techniques considering future watershed environmental changes.

SWMM과 WASP5 모형을 사용한 하구담수호의 수질 예측 (Prediction of water quality in estuarine reservoir using SWMM and WASP5)

  • 윤춘경;함종화
    • 한국환경농학회지
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    • 제19권3호
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    • pp.252-258
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    • 2000
  • SWMM and WASP5 were applied for pollutant loading estimate from watershed and reservoir water quality simulation, respectively, to predict estuarine reservoir water quality. Application of natural systems to improve estuarine reservoir water quality was reviewed, and its effect was predicted by WASP5. Study area was the Hwa-Ong reservoir in Hwasung-Gun, Kyonggi-Do. Procedures for estimation of pollutant loading from watershed and simulation of corresponding reservoir water quality were reviewed. In this study, SWMM was proved to be an appropriate watershed model to the nonurban area, and it could evaluate land use effects and many hydrological characteristics of catchment. WASP5 is a well known lake water quality model and its application to the estuarine reservoir was proved to be suitable. These models are both dynamic and the output of SWMM can be linked to the WASP5 with little effort, therefore, use of these models for reservoir water quality prediction in connection was appropriate. Further efforts to develop more logical and practical measures to predict reservoir water quality are necessary for proper management of estuarine reservoirs.

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논문 - 새만금호 농업용지 방수제 주요지점의 수위 및 유속 분포 수치모의 (Numerical Simulation of the Water Level and Velocity Distribution of Main Point Agricultural Land Water Proof in Saemangeum Watershed)

  • 김동주;김지성;박영진
    • 한국관개배수논문집
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    • 제18권2호
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    • pp.43-53
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    • 2011
  • In this study, the internal development of the Saemangeum basic concept of the changes being promoted as a lead construction and agricultural land works(54.2 km) has established a numerical model for the scenario. Inner dike to the construction site to reflect the following conditions to reproduce the numerical model by each areas during construction inner dike where scour expected to perform a numerical analysis for the hydraulic review by areas with possible future changes were to predict. Simulation results showed that numerical simulation results for scour expected frequency of 100 years in flood conditions is simulated with 0.02 m/s~l.27 m/s scour velocity for high-impact factor is considered to be stable. Each start point and end point work area of inner dike reviewed and flow rate of 100 years flood, the velocity distribution in the influx of a large flow rate of 0.02 m/s~1.68 m/s occur during construction inner dike are not being evaluated as a special issue does not occur will be considered according to the method and order of construction inner dike stability review suggests that the future need to be made.

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