• 제목/요약/키워드: Rainfall-surface discharge

검색결과 120건 처리시간 0.037초

유역특성을 반영한 공간격자기반의 분포형모형 개선 (Modification of Spatial Grid Based Distributed Model Considering River Basin Characteristics)

  • 박진혁;허영택
    • 대한토목학회논문집
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    • 제28권3D호
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    • pp.431-436
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    • 2008
  • 최근, GIS기술의 급속한 발전에 따라 다양한 공간 수문 자료들이 속성정보와 결합되어 다루는 것이 가능해졌고, 집중형 유출모형보다 유역 유출량의 시 공간적인 변동을 고려할 수 있는 분포형유출 모형의 구축이 활발하게 연구되고 있다. 본 연구에서는 장기 유출량의 시공간적 분포를 파악할 수 있도록 지표 및 하도흐름해석에 물리적인 운동파(kinematic wave)이론에 근거한 분포형 강우-유출모형을 이용하였다. Hydro-BEAM모형을 근간으로 융설 적설과정 모듈을 추가로 개발하였고, 각종 수문매개변수를 DEM, 토지피복도, 토양도 등의 기본 GIS자료들로 부터 추출, 본 모형의 입력 자료로 사용하였다. 본 모형의 적용성 검증을 위해서 비교적 신뢰할만한 기상자료와 장기간의 수문자료를 보유하고 있는 일본의 쇼나이강 유역(532)을 대상으로 구축하였고, 수문곡선 비교 결과 비교적 재현성 높은 유출 결과를 모의할 수 있었다.

영산강 하구의 하계 담수 방류와 연관된 크기별 Chlorophyll a와 수환경의 일간 변동 (Daily Variation of Size-Fractionated Chlorophyll a Concentrations and Water Conditions Associated with Freshwater Discharge during Summer in the Yeongsan River Estuary)

  • 김세희;신용식
    • 한국해양생명과학회지
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    • 제5권2호
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    • pp.72-80
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    • 2020
  • 영산강 하구는 1981년에 농지 및 농업용수 개발을 위해 하굿둑이 건설되면서 인위적인 변형이 이루어진 시스템으로 하굿둑을 중심으로 담수역과 해수역으로 분리되었다. 하지만 여름철에는 잦은 강우로 인해 수문이 자주 개방되고, 개방 시에 담수가 해수역으로 방류되면서 기수역의 특성을 보이기도 한다. 본 연구에서는 담수 방류의 직접적인 영향을 파악하기 위해 2013년부터 2015년까지 여름철 동안 담수 방류 전후로 일간 모니터링을 실시하여 하계 식물플랑크톤 크기구조와 환경여건 변화를 파악하고자 하였다. 그 결과, 담수 방류는 급격한 염분감소와 탁도를 증가시켜 표층의 용존산소도 감소시키는 것으로 나타났다. 다만 조사 전까지 방류가 지속적으로 이루어진 2014년에는 이미 염분이 감소한 상황이어서 추가적인 방류로 인한 염분의 감소는 나타나지 않았다. 영양염 중에서는 특히 질소성 영양염의 유입이 크게 나타났고, 이로 인해 질소의 상대적 제한 보다는 인이나 규소의 제한 가능성이 크게 나타났다. 식물플랑크톤 생체량 및 크기구조는 연도별로 상이한 결과를 보였으나 결과적으로 담수 방류에 따라 변화를 초래하였고, 방류 후에도 어느 정도 그 경향이 유지되었다. 결론적으로 불규칙적이고 예측이 어려운 담수 방류는 염분, 탁도, 영양염 농도 등의 환경요인뿐만 아니라 식물플랑크톤의 생체량 및 크기구조를 단기적으로 크게 변화시키는 것으로 나타났다. 이러한 변화는 적조와 같은 유해조류발생(HABs) 뿐만 아니라, 먹이량 및 미세먹이망 변화를 통해 상위소비자 그리고 먹이망 구조에도 영향을 미칠 수 있을 것으로 사료된다.

호수 지형 및 수리수문학적 변화에 대한 몬순 영향 (The Impact of Monsoon on Seasonal Variability of Basin Morphology and Hydrology)

  • 안광국
    • 생태와환경
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    • 제33권4호통권92호
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    • pp.342-349
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    • 2000
  • 본 연구는 1993${\sim}$1994년 대청호에서 호수 형태 및 수리수문학적 변동에 대한 몬순강도의 영향을 평가하였다. 연구기간 동안, 강우, 유입수 및 방류량과 같은 수리수문학적 변수들은 뚜렷한 연간 대조를 보였다. 계절별 강우에 따르면, 강우량의 큰 격차는 7${\sim}$8월 장마기간에 일어났으며, 강으로부터의 유입량, 방류량 및 수체류 시간에 영향을 주었다. 1993년 총 유입량은 1994년에 비해 4배 이상을 넘었으며, 특히 1993년 하절기 유입량은 1994년 하절기에 비해 8배 이상을 상회하였다. 연평균 호수의 수체류 시간은 1993년, 1994년에 각각 93.2일, 158.6일로서 뚜렷한 대조를 보였으며, 장마기간에 가장 큰 차이를 보였다. 호수의 형태적 특성은 연간 대조적인 수리 수문학적 차이를 반영하여, 호수면적, 체적, 만 형성도, 및 평균수심은 1993년에 장마전 부터 장마후까지 계속적으로 증가한 반면, 1994년은 같은 기간에 대해 감소하였다. 이런 결과는 1993년 호수물의 얕은 연안대와의 접측 면적이 1994년에 비해 증가하여 저질과 영양염류 교환의 증가를 가져왔다. 또한 대청호수계면적과 호수면적의 비는 평균 해수면 80m에서 60.7로서, 국내 인공호인 소양호 및 안동호에서의 값보다 2${\sim}$3배 컸고, 자연호 보다는 10배 이상 컸다. 이런 호수 형태 및 수리 수문학적인 특성은 부영양화 현상을 조절하는 가장 중요한 인자중의 하나인 호수내 영양염류 농도에 영향을 주는 것으로 사료된다. 기존의 영양염류 부하량 모델은 계절적으로 안정된 유입량 및 수체류 시간하에서 적용될 수 있다고 가정하기 때문에, 하절기 변동이 극대화되는 우리나라 상황에서 호수 영양염류를 산정 예측할 때 Mass-Balance Model 이용은 신중을 기해야 된다고 사료된다.

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설계 강우량의 재현빈도 변화에 따른 도시유역의 침수특성 분석 (An Analysis on Inundation Characteristics of Urban Watershed according to Variation in Return Period of Design Rainfall)

  • 박인혁;하성룡
    • 한국습지학회지
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    • 제15권4호
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    • pp.585-593
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    • 2013
  • 본 연구는 강우 시 지표수의 관거 내 재유입을 고려할 수 있는 이중배수체계 모형을 활용하여 청주시의 설계 강우량에 따른 도시 유역의 침수를 모의하고 설계 강우량의 재현기간 변화에 따라 달라지는 침수특성을 분석하고자 한다. 이를 위해 청주시의 LiDAR 데이터로부터 $1m{\times}1m$ 해상도의 지표고도모델을 구축하여 입력 자료로 활용하였으며, 재현기간별 설계 강우량을 수문 입력 자료로 활용하였다. 분석 결과, 재현기간이 증가함에 따라 홍수량은 선형적인 증가를 보이지만, 침수면적은 재현기간 30년 이후 증가율이 완화되는 것으로 나타났으며, 평균 침수심의 경우 재현기간 30년 설계 강우량과 재현기간 200년 빈도 설계 강우량을 사용한 경우에 큰 폭의 증가가 발생했다. 한편 대상지역 내 주요 지점에 대한 통수부족량 산출 결과, 재현기간 10년의 설계 강우량을 활용한 경우에는 모두 통수 부족이 발생하지 않았으나 그 이상의 설계 강우량부터 통수부족이 발생하였다. 대상 지역 전체에 대한 통수 부족량 산출 결과, 재현기간 10년 이상의 설계 강우량부터 통수 부족량이 큰 폭으로 증가하나 설계 강우량의 재현기간이 50년을 넘어가면 통수 부족량의 증가율이 둔화되는 것으로 나타났다.

한국의 호수 수질관리의 문제점 (Problems of lake water management in Korea)

  • 김범철;전만식;김윤희
    • 한국환경생태학회:학술대회논문집
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    • 한국환경생태학회 2003년도 추계학술논문발표회 논문집
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    • pp.105-126
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    • 2003
  • In Korea most of annual rainfall is concentrated in several episodic heavy rains during the season of summer monsoon and typhoon. Because of uneven rainfall distribution many dams have been constructed in order to secure water supply in dry seasons. The Han River system has the most dams among Korean rivers, and the river is a series of dams now. Reservoirs need different strategy of water quality control from river water. Autochthonous organic matter and phosphorus should be the major target to be controlled in lakes. In this Paper some problems are discussed that makes efforts of water quality improvement ineffective in lakes of Korea, even after the substantial investment to wastewater treatment facilities.1) Phosphorus is the key factor controlling eutrophication of lakes and the reduction ofphosphors should be the major target of water treatment. However, water quality management strategy in Korea is still stream-oriented, and focused on BOD removal from sewage. Phosphorus removal efficiency remains as low as 10-30%, because biological treatment is adopted for both secondary treatment and advanced treatment. The standard for TP concentration of the sewage treatment plant effluent is 6 mgP/l in most of regions, and 2 mg/l in enforced region near metropolitan water intake point. TP in the effluents of sewage treatment plants are usually 1-2 mg/1, and most of plants meet the effluent regulation without a further phosphorus removal process. The generous TP standard for effluents discourages further efforts to improve phosphorus removal efficiency of sewage treatment. Considering that TP standard for the effluent is below 0.1 mg/l in some countries, it should be amended to below 0.1 mg/l in Korea, especially in the watershed of large lakes.2) Urban runoff and combined sewer overflow are not treated, even though their total loading into lakes can be comparable to municipal sewage discharges on dry days. Chemical coagulation and rapid settling might be the solution to urban runoff in regard of intermittent operation on only rainy days.3) Aggregated precipitation in Korea that is concentrated on several episodic heavyrains per year causes a large amount of nonpoint source pollution loading into lakes. It makes the treatment of nonpoint source discharge by methods of other countries of even rain pattern, such as retention pond or artificial wetland, impractical in Korea.4) The application rate of fertilizers in Korea is ten times as high as the average ofOECD countries. The total manure discharge from animal farming is thought to be over the capacity of soil treatment in Korea. Even though large portion of manure is composted for organic fertilizer, a lot of nutrients and organic matter emanates from organic compost. The reduction of application rate and discharge rate of phosphorus from agricultural fields should be encouraged by incentives and regulations.5) There is a lot of vegetable fields with high slopes in the upstream region of the HanRiver. Soil erosion is severe due to high slopes, and fertilizer is discharged in the form of adsorbed phosphorus on clay surface. The reduction of soil erosion in the upland area should be the major preventive policy for eutrophication. Uplands of high slope must be recovered to forest, and eroded gullies should be reformed into grass-buffered natural streams which are wider and resistant to bank erosion.

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유역 특성과 유출추적에 의한 단위도 해석에 관한 고찰 (A Study on the Interpretalion of the Synthetic Unit Hydrograph According to the Characteristics of catchment Area and Runoff Routing)

  • 서승덕
    • 한국농공학회지
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    • 제8권1호
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    • pp.1088-1096
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    • 1966
  • The following is a method of synthetic unitgraph derivation based on the routing of a time area diagram through channel storage, studied by Clark-Jonstone and Laurenson. Unithy drograph (or unitgraph) is the hydrograph that would result from unit rainfall\ulcorner excess occuring uniformly with respect to both time and area over a catchment in unit time. By thus standarzing rainfall characteristics and ignoring loss, the unitgraph represents only the effects of catchment characteristics on the time distribution of runoff from a catchment The situation abten arises where it is desirable to derive a unitgraph for the design of dams, large bridge, and flood mitigation works such as levees, floodways and other flood control structures, and are also used in flood forecasting, and the necessary hydrologie records are not available. In such cases, if time and funds permit, it may be desirable to install the necessary raingauges, pruviometers, and stream gaging stations, and collect the necessary data over a period of years. On the otherhand, this procedure may be found either uneconomic or impossible on the grounds of time required, and it then becomes necessary to synthesise a unitgraph from a knowledge of the physical charcteristics of the catchment. In the preparing the approach to the solution of the problem we must select a number of catchment characteristic(shape, stream pattern, surface slope, and stream slope, etc.), a number of parameters that will define the magnitude and shape of the unit graph (e.g. peak discharge, time to peak, and base length, etc.), evaluate the catch-ment characteristics and unitgraph parameters selected, for a number of catchments having adequate rainfall and stream data and obtain Correlations between the two classes of data, and assume the relationships derived in just above question apply to other, ungaged, Catchments in the same region and, knowing the physical characteritics of these catchments, substitute for them in the relation\ulcorner ships to determine the corresponding unitgraph parameters. This method described in this note, based on the routing of a time area diagram through channel storage, appears to provide a logical line of research and they allow a readier correlation of unitgraph parameters with catchment characteristics. The main disadvantage of this method appears to be the error in routing all elements of rainfall excess through the same amount of storage. evertheless, it should be noted that the synthetic unitgraph method is more accurate than the rational method since it takes account of the shape and tophography of the catchment, channel storage, and temporal variation of rainfall excess, all of which are neglected in rational method.

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유역특성에 의한 합성단위도의 유도에 관한 연구 (Derivation of the Synthetic Unit Hydrograph Based on the Watershed Characteristics)

  • 서승덕
    • 한국농공학회지
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    • 제17권1호
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    • pp.3642-3654
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    • 1975
  • The purpose of this thesis is to derive a unit hydrograph which may be applied to the ungaged watershed area from the relations between directly measurable unitgraph properties such as peak discharge(qp), time to peak discharge (Tp), and lag time (Lg) and watershed characteristics such as river length(L) from the given station to the upstream limits of the watershed area in km, river length from station to centroid of gravity of the watershed area in km (Lca), and main stream slope in meter per km (S). Other procedure based on routing a time-area diagram through catchment storage named Instantaneous Unit Hydrograph(IUH). Dimensionless unitgraph also analysed in brief. The basic data (1969 to 1973) used in these studies are 9 recording level gages and rating curves, 41 rain gages and pluviographs, and 40 observed unitgraphs through the 9 sub watersheds in Nak Oong River basin. The results summarized in these studies are as follows; 1. Time in hour from start of rise to peak rate (Tp) generally occured at the position of 0.3Tb (time base of hydrograph) with some indication of higher values for larger watershed. The base flow is comparelatively higher than the other small watershed area. 2. Te losses from rainfall were divided into initial loss and continuing loss. Initial loss may be defined as that portion of storm rainfall which is intercepted by vegetation, held in deppression storage or infiltrated at a high rate early in the storm and continuing loss is defined as the loss which continues at a constant rate throughout the duration of the storm after the initial loss has been satisfied. Tis continuing loss approximates the nearly constant rate of infiltration (${\Phi}$-index method). The loss rate from this analysis was estimated 50 Per cent to the rainfall excess approximately during the surface runoff occured. 3. Stream slope seems approximate, as is usual, to consider the mainstreamonly, not giving any specific consideration to tributary. It is desirable to develop a single measure of slope that is representative of the who1e stream. The mean slope of channel increment in 1 meter per 200 meters and 1 meter per 1400 meters were defined at Gazang and Jindong respectively. It is considered that the slopes are low slightly in the light of other river studies. Flood concentration rate might slightly be low in the Nak Dong river basin. 4. It found that the watershed lag (Lg, hrs) could be expressed by Lg=0.253 (L.Lca)0.4171 The product L.Lca is a measure of the size and shape of the watershed. For the logarithms, the correlation coefficient for Lg was 0.97 which defined that Lg is closely related with the watershed characteristics, L and Lca. 5. Expression for basin might be expected to take form containing theslope as {{{{ { L}_{g }=0.545 {( { L. { L}_{ca } } over { SQRT {s} } ) }^{0.346 } }}}} For the logarithms, the correlation coefficient for Lg was 0.97 which defined that Lg is closely related with the basin characteristics too. It should be needed to take care of analysis which relating to the mean slopes 6. Peak discharge per unit area of unitgraph for standard duration tr, ㎥/sec/$\textrm{km}^2$, was given by qp=10-0.52-0.0184Lg with a indication of lower values for watershed contrary to the higher lag time. For the logarithms, the correlation coefficient qp was 0.998 which defined high sign ificance. The peak discharge of the unitgraph for an area could therefore be expected to take the from Qp=qp. A(㎥/sec). 7. Using the unitgraph parameter Lg, the base length of the unitgraph, in days, was adopted as {{{{ {T}_{b } =0.73+2.073( { { L}_{g } } over {24 } )}}}} with high significant correlation coefficient, 0.92. The constant of the above equation are fixed by the procedure used to separate base flow from direct runoff. 8. The width W75 of the unitgraph at discharge equal to 75 per cent of the peak discharge, in hours and the width W50 at discharge equal to 50 Per cent of the peak discharge in hours, can be estimated from {{{{ { W}_{75 }= { 1.61} over { { q}_{b } ^{1.05 } } }}}} and {{{{ { W}_{50 }= { 2.5} over { { q}_{b } ^{1.05 } } }}}} respectively. This provides supplementary guide for sketching the unitgraph. 9. Above equations define the three factors necessary to construct the unitgraph for duration tr. For the duration tR, the lag is LgR=Lg+0.2(tR-tr) and this modified lag, LgRis used in qp and Tb It the tr happens to be equal to or close to tR, further assume qpR=qp. 10. Triangular hydrograph is a dimensionless unitgraph prepared from the 40 unitgraphs. The equation is shown as {{{{ { q}_{p } = { K.A.Q} over { { T}_{p } } }}}} or {{{{ { q}_{p } = { 0.21A.Q} over { { T}_{p } } }}}} The constant 0.21 is defined to Nak Dong River basin. 11. The base length of the time-area diagram for the IUH routing is {{{{C=0.9 {( { L. { L}_{ca } } over { SQRT { s} } ) }^{1/3 } }}}}. Correlation coefficient for C was 0.983 which defined a high significance. The base length of the T-AD was set to equal the time from the midpoint of rain fall excess to the point of contraflexure. The constant K, derived in this studies is K=8.32+0.0213 {{{{ { L} over { SQRT { s} } }}}} with correlation coefficient, 0.964. 12. In the light of the results analysed in these studies, average errors in the peak discharge of the Synthetic unitgraph, Triangular unitgraph, and IUH were estimated as 2.2, 7.7 and 6.4 per cent respectively to the peak of observed average unitgraph. Each ordinate of the Synthetic unitgraph was approached closely to the observed one.

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야채재배 밭에서 지표피복의 비점오염원 저감효과 (Effect of Surface Cover on the Reduction of NPS Pollution at a Vegetable Field)

  • 신민환;장정렬;원철희;최용훈;신재영;임경재;최중대
    • 한국물환경학회지
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    • 제28권3호
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    • pp.436-443
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    • 2012
  • This research was focused on the effect of rice straw and rice straw mat on the reduction of upland field non-point source (NPS) pollution discharges. Six experimental plots of $5{\times}22m$ in size and 3% in slope prepared on gravelly sandy loam soil were treated with control, rice straw cover and rice straw mat cover. Radish in Spring growing seasons were cultivated. NPS pollution discharge was monitored and compared with respect to the treatments. The surface cover rate of rice straw and rice straw mat right after the treatments was 64.7% and 73.7%, respectively. Rainfall of the 16 monitored events ranged from 12.8 mm to 538.2 mm. Runoff coefficient of the events was 0.01~0.67 in control plot, 0~0.63 in rice straw plot and 0~0.45 in rice straw mat plot. The reduction of runoff compared to the control plot was 5.4~99.7% in rice straw plot and 32.9~100% in rice straw mat plot. The reduction of NPS pollution load was 52.0% for SS, 28.5% for T-N and 35.2% for T-P in rice straw plot and 79.8% for SS, 68.3% for T-N and 53.3% for T-P in rice straw mat plot. This research revealed that rice straw mat cover on the soil surface could not only increase the crop yield and farmer's income but also reduce the NPS pollution loads significantly.

시공간영상을 이용한 실용적인 표면영상유속계 개발 (Development of a Practical Surface Image Velocimeter using Spatio-Temporal Images)

  • 이윤호;류권규
    • Ecology and Resilient Infrastructure
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    • 제10권4호
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    • pp.208-216
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    • 2023
  • 본 연구의 목표는 실용적인 표면영상유속계를 만들기 위해 가장 적절한 하드웨어와 소프트웨어의 구성을 제시하는 것이다. 실용적인 표면영상유속계 구성을 위해 하드웨어로 CCTV를 선택하고, 2분 간격으로 30초간의 영상을 지속적으로 촬영하는 장비를 구성하였다. 촬영된 동영상을 분석하는 소프트웨어에는 11-변수 투영법을 적용하여 변화하는 수위에 따라 정확한 측정점을 재구성하도록 하였다. 아울러 각 측정점에서 주흐름방향으로 정확한 시공간영상을 작성할 수 있도록 시공간영상 작성법을 제안하였다. 제안된 방법으로 구성된 표면영상유속계를 제작하여 인수천에 시험적용하여 호우 사상에 대해 검토한 결과 정확하고 신속하며 연속적인 유량측정이 가능하였다.

소규모 시험포에서의 비료처리별 오염배출 농도 특성 비교 (Comparison of Pollutant Load Discharge Characteristics with Fertilizer Treatments from Small Scale Plot)

  • 류창원;신용철;허성구;한윤수;임경재;최중대
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2006년도 학술발표회 논문집
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    • pp.997-1001
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    • 2006
  • Organic compost has been widely applied to the cropland because it has been thought as Environmentally Sound Agriculture (ESA) in Korea. In this study, two-year indoor rainfall experiments were performed. Surface runoff and groundwater volume from 10% and 20% slope plots were measured and water quality samples were collected and analyzed for BOD, COD, T-P and T-N. Flow weighted mean concentration (FWMC) values were computed to assess effects of various fertilizer treatments. FWMC BOD values for organic compost treated plots were higher than chemical fertilizer treated plots. FWMC BOD values for 20% slope plots were higher than those from those for 10% slope plots. The similar trends were found for COD and T-P. FWMC T-N values for chemical fertilizer treated plots were higher than organic compost treated plots. FWMC T-N values for 10% slope plots were higher than those for 20% slope plots. In Korea, excessive use of organic compost has caused extremely high levels of organic matter contents at the cropland. Since organic compost is very slow in releasing its nutrients to the soil, farmers usually apply excessive organic compost for immediate effects and maximum crop yields, which has been causing soil and water quality degradations. Therefore, thorough investigations for better nutrient management plans are needed to develop the ESA strategy in Korea.

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