• 제목/요약/키워드: Effective rainfall ratio method

검색결과 23건 처리시간 0.033초

토지피복도를 이용한 북한 지역의 논용수 수요량 추정 (Estimation of Paddy Water Demand Using Land Cover Map in North Korea)

  • 유승환;윤성한;홍석영;최진용
    • 한국관개배수논문집
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    • 제14권2호
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    • pp.236-244
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    • 2007
  • Agricultural water demand in North Korea must be considered for the near-future investment in agricultural consolidation projects and to prepare for the future unification. Thus, the objective of this study is to estimate the agricultural water demand of paddy fieldss in North Korea. GIS data including land cover classification map, Thiessen network and administration maps of North Korea, and meteorological data were synthesized. In order to estimate paddy water demand for a 10-year return period, the FAO Blaney-Criddle method and the fixed effective rainfall ratio method were used. The results showed that 4.77 billion $\beta$(c)/year paddy water demand is required for the 512,400 ha of paddy fieldss. Paddy water demand in the three major regions - Hwanghaedo, Pyeongando, Hamgyeongnamdo - was estimated chargong 81.7 percent of total paddy water demand in North Korea.

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SCS 초과우량산정방법을 이용한 저류함수법 적용 (Application of Storage Function Method with SCS Method)

  • 김태균;윤강훈
    • 한국수자원학회논문집
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    • 제40권7호
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    • pp.523-532
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    • 2007
  • 1974년 한강홍수예보시스템을 구축한 이후로, 저류함수법을 근간으로 하는 홍수예보시스템이 주요하천을 대상으로 운영되고 있다. 1961년 목촌준황(木村俊晃)에 의하여 제안된 저류함수법은 저류함수를 기본식으로 이용하고 있다. 저류함수법에서는 유역을 유출역과 침투역으로 구분하고, 누가우량이 포화우량을 초과하기 전까지는 유출역에서만 유출이 발생하고, 포화우량을 초과한 후부터 침투역에서도 유출이 발생하는 것으로 가정하였고, 이때 유출역의 면적이 일정하므로 유출률은 일정한 것으로 가정하였다. 또한 유출역과 침투역의 유출량을 분리하여 계산하며, 이는 비선형저수지의 특성을 고려하면 불합리하다. 본 연구에서는 저류방정식과 연속방정식을 이용한 수정된 저류함수법을 제시하였으며, 유효우량은 SCS 초과우량산정방법을 이용하였다. 낙동강유역의 위천을 대상으로 수정된 저류함수법을 적용하였으며, 목촌준황(木村俊晃) 저류함수법에 비하여 첨두홍수량 산정에 개선된 결과를 보였으며, 매개변수의 감소로 적용성을 개선하였다.

농업용수 수요량 산정 시스템 개발 (Development of the Estimation System for Agricultural Water Demand)

  • 이광야;김선주
    • 한국농공학회지
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    • 제43권1호
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    • pp.53-65
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    • 2001
  • To estimate agricultural water demand, many factors such as weather, crops, soil, cultivation method, crop coefficient and cultivation area, etc. must be considered. But it is not easy to estimate water demand in consideration of these factors, which are variable according to growth stage and regional environment. This study provides estimation system for agricultural water demand(ESAD) in order to estimate water demand easily and accurately, and arranges all factors needed for water demand estimation. This study identifies the application of estimation system for agricultural water demand with the data observed in the other studies, and analyzes nationwide agricultural water demand. The results are as follows. 1) The practice of different rice cultivation in the paddy field resulted in different water demands. Water depth and infiltration ratio in paddy are the most important factors to estimate water demand. The water depths in paddy simulated by ESAD is very similar to the observed ones. 2) Water demand of upland crops varies with the crops, soil, etc.. Effective rainfall estimated by daily routing of soil moisture varies according to the crops, soil, and effective soil zone(root depth). As crop root become grown, effective rainfall and an amount of irrigation water has been increased. 3) The current unit water demand of upland crops applied as 500mm or 550mm to estimate water demand does not reflect the differences caused by the crops, regional surrounding, weather condition, etc. Results from ESAD for the estimation of water demand of upland crops show that ESAD can simulate the actual field conditions reasonably because it simulates the actual irrigation practices with the daily routing of soil moisture.

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지상인자에 의한 순간단위도 유도와 유출량 예측 (Derivation of the Instantaneous Unit Hydrograph and Estimation of the Direct Runoff by Using the Geomorphologic Parameters)

  • 천만복;서승덕
    • 한국농공학회지
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    • 제32권3호
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    • pp.87-101
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    • 1990
  • The purpose of this study is to estimate the flood discharge and runoff volume at a stream by using geomorphologic parameters obtained from the topographic maps following the law of stream classification and ordering by Horton and Strahier. The present model is modified from Cheng' s model which derives the geomorphologic instantaneous unit hydrograph. The present model uses the results of Laplace transformation and convolution intergral of probability density function of the travel time at each state. The stream flow velocity parameters are determined as a function of the rainfall intensity, and the effective rainfall is calculated by the SCS method. The total direct runoff volume until the time to peak is estimated by assuming a triangular hydrograph. The model is used to estimate the time to peak, the flood discharge, and the direct runoff at Andong, Imha. Geomchon, and Sunsan basin in the Nakdong River system. The results of the model application are as follows : 1.For each basin, as the rainfall intensity doubles form 1 mm/h to 2 mm/h with the same rainfall duration of 1 hour, the hydrographs show that the runoff volume doubles while the duration of the base flow and the time to peak are the same. This aggrees with the theory of the unit hydrograph. 2.Comparisions of the model predicted and observed values show that small relative errors of 0.44-7.4% of the flood discharge, and 1 hour difference in time to peak except the Geomchon basin which shows 10.32% and 2 hours respectively. 3.When the rainfall intensity is small, the error of flood discharge estimated by using this model is relatively large. The reason of this might be because of introducing the flood velocity concept in the stream flow velocity. 4.Total direct runoff volume until the time to peak estimated by using this model has small relative error comparing with the observed data. 5.The sensitivity analysis of velocity parameters to flood discharge shows that the flood discharge is sensitive to the velocity coefficient while it is insensitive to the ratio of arrival time of moving portion to that of storage portion of a stream and to the ratio of arrival time of stream to that of overland flow.

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안전한 토석류 관리를 위한 계측기 선정에 관한 연구 (Study of Determination in Measurement System for Safely Managing Debris-Flow)

  • 민대홍;윤형구
    • 한국안전학회지
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    • 제32권3호
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    • pp.41-47
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    • 2017
  • Recent studies have shown that there are various systems which can be used to monitor hazardous area in a debris flow location, but lack of methodological research on the exact location where each instrument should be installed has hindered the success of this systems. The objective of this study is to suggest the measurement system for monitoring debris-flow and propose the effective method to determine location of measurement system. Previously studied, from 1991 to 2015, were referred and the applied ratio of every instrument was investigated. The measurement information was divided into 8 categories including rainfall, debris-flow velocity, displacement, fluid pore pressure, ground vibration, image processing, impact force and peak flow depth. The result of this study revealed that the most applied instruments to be rain gauge and geophone for measuring average rainfall and ground vibration respectively. The Analytic Hierarchical Process (AHP) method was selected to determine installation location of instrument and the weighting factors were estimated through fine content, soil thickness, porosity, shear strength, elastic modulus, hydraulic conductivity and saturation. The soil thickness shows highest weights and the fine content relatively demonstrates lowest weights. The score of each position can be calculated through the weighting factors and the lowest score position can be judged as the weak point. The weak point denotes the easily affecting area and thus, the point is suitable for installing the measurement system. This study suggests a better method for safely managing the debris-flow through a precise location for installing measurement system.

선형 Model에 의한 소류역에 있어서의 무차원 단위도 유도에 관한 연구 (A study on the derivation of Dimensionless Unit Hydrographs by the Linear model in the small watersheds)

  • 이순혁;한중석
    • 한국농공학회지
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    • 제23권3호
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    • pp.78-87
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    • 1981
  • This study was attempted to get dimensionless unit hydrograph by linear model which can be used to the estimation of flood for the development of Agricultural water resources and laid emphasis on the application of dimensionless unit hydrographs for the ungaged watersheds by applying linear model. The results summarized through this study are as follows. 1.Peak discharge is found to be Qp= CAR (C =0. 895A-o.145) having high significance between peak discharge, Qp and effective rainfall, R within the range of small watershed area, 84 to 470km2. consequently, linearity was acknowledged between rainfall and runoff. Reasonability is confirmed for the derivation of dimensionless unit hydrograph by linear model. 2.Through mathematical analysis, formula for the derivation of dimensionless unit hydrograph was derived. qp--p=(tp--t)n-1[e-(n-1)](tp--t-1) 3.Moment method was used for the evaluation of storage constant, K and shape parameter, n for the derivation of dimensionless unit hydrograph. Storage constant, K is more closely related with the such watershed characteristics as length of main stream and slopes. On the other hand, the shape parameter, n was derived with such watershed characteristics as watershed area, river length, centroid distance of the basin and slopes. 4.Time to peak discharge, Tp could be expressed as Tp=1. 25 (√s/L)0.76 having a high significance. 5.Dimensionless unit hydrographs by linear model stood more closely to the observe dimensionless unit hydrographs On the contrary, dimensionless unit hydrographs by S.C. S. method has much difference in comparison with linear model at the falling limb of hydrographs. 6.Relative errors in the q/qp at the point of 0.8 and 1.2 for the dimensionles ratio by linear model and S. C. S. method showed to be 2.41, 1.57 and 4.0, 3.19 percent respectively to the q/qp of observed dimensionless unit hydrographs. 7.Derivation of dimensionless unit hydrograph by linear model can be accomplished by linking the two empirical formulars for storage constant, K, and shape parameter, n with derivation formular for dimensionless unit hydrograph for the ungaged small watersheds.

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밭 작물의 최적관개수준과 계획용수량 산정 (The Optimum Irrigation Level and the Project Water Requirement for Upland Crops)

  • 윤학기;정상옥;서승덕
    • 한국농공학회지
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    • 제32권1호
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    • pp.72-86
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    • 1990
  • This study was carried out to get the basic information of irrigation plans for upland crops such as the optimum irrigation level and the project water requirement. Red peppers and cucumbers were cultivated in PVC pot lysimeters filled with 60cm deep clay loam soil. Four tensiometers were installed in each pot to measure the soil water pressure head. Six levels of irrigation were used. The results obtained from this study are summarized as follows: 1.The optimum irrigation level. The irrigation level of FC-PF2.7 was found to be the optimum level for both red pepper and cucumber with respect to the yield and the weight per fruit. In case of FC-PF2.7, total ET during the irrigation period were 1005.2mm for red pepper, and 429.6mm for cucumber, respectively. 2.soil moisture extraction patterns. Average soil moisture extraction patterns (SMEP)during the irrigation period were from 1st soil layer 43% : 32% : 16% : 9% for red pepper and 39% : 34% : 15% : 12% for cucumber, respectively. The extraction ratio of the upper soils showed very large values during the early stage of growth and decreased largely during the middle stage, and became larger in the last stage. 3.The project water requirement. Among the reference crop evapotranspiration(ETo) computation methods presented by FAO, the Penman method was found to be the best. The effective rainfall was computed by a modified USDA-SCS curve number equation. Availability ratios of the total rainfall during irrigation season were 59.2% for red pepper and 48.9% for cucumber, respectively. Net project water requirement of design year are 837.3mm for red pepper. and 502.Smm for cucumber, respectively.

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Tank 모형을 이용한 동해안 오십천 하구의 유사량 평가에 관한 연구 (A Study on Estimate of Sediment Yield Using Tank Model in Oship River Mouth of East Coast)

  • 강상혁;옥용식;김상률;지정환
    • 한국환경농학회지
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    • 제30권3호
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    • pp.268-274
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    • 2011
  • 본 연구에서는 유량 및 유사량 자료가 부족한 미계측 유역에 대해 Tank모형을 확장하여 궁극적으로 유사량을 평가하는 방법을 제시하였다. 적용 유역은 동해안 타 유역에 비해 유량자료가 확보되어 있는 오십천을 대상으로 집중호우기의 토사유출 특징과 하천의 토사유달률을 구하였다. 본 연구의 주요 결과는 다음과 같다. 1) 실측에 의한 유사량의 산정에 있어서는 먼저 유사량 관계식(sediment rating curve)의 개발이 선행되어야 한다. 본 연구에서는 유량 산정지점에 대해 유량과 병행하여 유사량 관계식을 다음과 같이 구하였다. 오십천 유량-유사량 관계식 : $Q_s=6.017Q^{1.374}$ 2) Tank모형을 적용하여 2006년 강우유출량을 산정한 결과 관측값과 유사한 값($RMSE=1.26m^3/day$)을 얻을 수 있었다. 3) 대상지역의 2006년과 2009년의 연평균 토사전달율 을 비교한 결과 태풍에 따른 집중강우가 있었던 2006년의 토사전달율이 평년의 2009년에 비해 현저하게 높았는데 이는 급격한 강우유출량의 증가에 따른 것이라 보인다. 4) 개량된 Tank모형에 의한 유량 및 토사유출량은 기존의 SRC방법과 비교했을 경우 유사한 경향을 보였으며 이는 향후 유량과 유사량 자료가 부족한 유역에 대해 효과적으로 적용할 수 있을 것으로 본다.

SCS-CN 산정을 위한 수치세부정밀토양도 활용과 괴산군 소수면 소유역의 물 유출량 평가 (Estimation of SCS Runoff Curve Number and Hydrograph by Using Highly Detailed Soil Map(1:5,000) in a Small Watershed, Sosu-myeon, Goesan-gun)

  • 홍석영;정강호;최철웅;장민원;김이현;손연규;하상건
    • 한국토양비료학회지
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    • 제43권3호
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    • pp.363-373
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    • 2010
  • 수문 수자원 분야에서의 활용도를 제고하기 위하여 HSG 1995와 HSG 2006 두가지 분류법에 의한 우리나라 수문학적 토양유형의 분포에 대한 정보를 제공하고 이를 각각 충북 괴산군 소수면의 소유역의 수치세부정밀토양도 (1:5,000)에 적용하여 SCS-CN법을 이용한 유효 우량 산정과 유출곡선을 작성한 결과는 다음과 같다. 산악지에서 주로 침투능이 크고 하성 또는 해안평탄지로 가면서 낮아지는 경향을 보였다. HSG 1995 토양 유형 중 A군은 전체의 42.2%로 가장 넓게 분포하는 것으로 나타났고, B군 29.4%, C군 18.5%, D군 9.9% 순으로 나타났다. HSG 2006 토양유형은 A군 35.1%, B군 15.7%, C군 5.5%, D군 43.7%로 D군이 가장 넓게 분포하는 특징을 가진다. HSG 1995에서 A, B, C군으로 분류되었다가 HSG 2006에서 D군으로 분류된 토양 유형의 비율이 약 34.1%로 나타나 국립농업과학원에 의해 분류된 토양유형 중 D군의 면적이 크게 늘어난 것을 알 수 있었다. 충북 괴산군 소수면 소유역의 수치세부정밀토양도에 기반한 수문학적 토양유형 분포특성을 나타낸 것으로 산림과 밭으로 이용되는 토양의 유형이 A로 분류되는 것은 일치하는 경향을 보였다. HSG 2006의 토양유형은 유역에서 C 유형이 거의 없거나 적게 분포하고 HSG 1995에 비해 D 유형이 많게 나타난다. 미계측 유역에 대한 직접유출량 산정에 가장 많이 사용되는 SCS-CN법을 이용하여, 충북 괴산군 소수면 소유역에서 직접유출에 기여하는 유효우량을 산정하고 SCS 삼각단위도를 사용하여 첨두유량과 첨두시간을 계산한 결과는 다음과 같다. HSG 1995와 HSG 2006 수문학적 토양유형과 토지 이용별 CN값을 적용하여 유역의 CN값 (AMC II)을 구한 결과는 각각 54와 62로 나타났다. 이 때, 우량계가 설치된 지점의 강우자료를 평균하여 2004년~2005년 강우사상별로 정리하여 초기손실량 (I)이 총강우량 (P)보다 큰 경우를 제외한 강우사상을 선택하였고, 8월 16일에서 강우사상 전까지 내린 강수에 따라 선행수분조건 III으로 조정하여 유효우량 산출을 위한 CN값을 각각 73과 79로 하여 사용하였다. 강우사상에 대한 HSG 2006 기준의 유효우량이 56.67 mm로 HSG 1995 기준의 44.87 mm 보다 약 25% 많게 나타났다. 두 가지 수문학적 토양 유형 분류 기준에 따라 계산된 각 유효 우량에 대하여 수문곡선을 합성하여 실제 관측치와 비교한 결과 두 개 기준 모두 관측치와 유사한 변화 패턴을 보이고 있으나 실측치보다 감수부에서 급격하게 감소되는 특징을 나타냈다. 첨두유량은 HSG 1995 보다는 HSG 2006 기준을 사용할 때 관측치와 더 가까운 값을 나타내었다.

계층분석적 의사결정기법을 이용한 비점원오염 관리지역의 선정 (Selecting Target Sites for Non-point Source Pollution Management Using Analytic Hierarchy Process)

  • 신정범;박승우;김학관;최라영
    • 한국농공학회논문집
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    • 제49권3호
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    • pp.79-88
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    • 2007
  • This paper suggests a hierarchial method to select the target sites for the nonpoint source pollution management considering factors which reflect the interrelationships of significant outflow characteristics of nonpoint source pollution at given sites. The factors consist of land slope, delivery distance to the outlet, effective rainfall, impervious area ratio and soil loss. The weight of each factor was calculated by an analytic hierarchy process(AHP) algorithm and the resulting influencing index was defined from the sum of the product of each factor and its computed weight value. The higher index reflect the proposed target sites for nonpoint source pollution management. The proposed method was applied to the Baran HP#6 watershed, located southwest from Suwon city. The Agricultural Nonpoint Pollution Source(AGNPS) model was also applied to identify sites contributing significantly to the nonpoint source pollution loads from the watershed. The spatial correlation between the two results for sites was analyzed using Moran's I values. The I values were $0.38{\sim}0.45$ for total nitrogen(T-N), and $0.15{\sim}0.22$ for total phosphorus(T-P), respectively. The results showed that two independent estimates for sites within the test water-shed were highly correlated, and that the proposed hierarchial method may be applied to select the target sites for nonpoint source pollution management.