• 제목/요약/키워드: NRCS-Method

검색결과 46건 처리시간 0.026초

농지배수 수문설계 기준과 임계지속기간을 고려한 농업 소유역 침수분석 (Inundation Analysis of Agricultural Basin Considering Agricultural Drainage Hydrological Plan and Critical Rainfall Duration)

  • 김귀훈;전상민;강문성;최진용
    • 한국농공학회논문집
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    • 제65권4호
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    • pp.25-32
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    • 2023
  • KDS (Korean Design Standard) for agricultural drainage is a planning standard that helps determine the appropriate capacity and type of drainage facilities. The objective of this study was to analyze the inundation of the agricultural basin considering the current design standard and the critical rainfall duration. This study used the rainfall durations of 1-48 hour, and the time distribution method with the Chicago and the modified Huff model. For the runoff model, the NRCS (Natural Resources Conservation Service) unit hydrograph method was applied, and the inundation depth and duration were analyzed using area-elevation data. From the inundation analysis using the modified Huff method with different rainfall durations, 4 hours showed the largest peak discharge, and 11 hours showed the largest inundation depth. From the comparison analysis with the current method (Chicago method with a duration of 48 hours) and the modified Huff method applying critical rainfall duration, the current method showed less peak discharge and lower inundation depth compared to the modified Huff method. From the simulation of changing values of drainage rate, the duration of 11 hours showed larger inundation depth and duration compared to the duration of 4 hours. Accordingly, the modified Huff method with the critical rainfall duration would likely be a safer design than the current method. Also, a process of choosing a design hydrograph considering the inundation depth and duration is needed to apply the critical rainfall duration. This study is expected to be helpful for the theoretical basis of the agricultural drainage design standards.

복합영농 관개지구의 배수량 모의 모형의 개발 (Surface Drainage Simulation Model for Irrigation Districts Composed of Paddy and Protected Cultivation)

  • 송정헌;강문성;송인홍;황순호;박지훈;안지현
    • 한국농공학회논문집
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    • 제55권3호
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    • pp.63-73
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    • 2013
  • The objectives of this study were to develop a hydrologic simulation model to estimate surface drainage for irrigation districts consisting of paddy and protected cultivation, and to evaluate the applicability of the developed model. The model consists of three sub-models; agricultural supply, paddy block drainage, and protected cultivation runoff. The model simulates daily total drainage as the sum of paddy field drainage, irrigation canal drainage, and protected cultivation runoff at the outlets of the irrigation districts. The agricultural supply sub-model was formulated considering crop water requirement for growing seasons and agricultural water management loss. Agricultural supply was calculated for use as input data for the paddy block sub-model. The paddy block drainage sub-model simulates paddy field drainage based on water balance, and irrigation canal drainage as a fraction of agricultural supply. Protected cultivation runoff is calculated based on NRCS (Natural Resources Conservation Service) curve number method. The Idong reservoir irrigation district was selected for surface drainage monitoring and model verification. The parameters of model were calibrated using a trial and error technique, and validated with the measured data from the study site. The model can be a useful tool to estimate surface drainage for irrigated districts consisting of paddy and protected cultivation.

보청천 유역의 유출곡선지수 회귀식에 관한 연구 (A Study of Curve Number Regression Equation for Bocheong Stream)

  • 곽재원;김수전;주홍준;김형수
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2010년도 학술발표회
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    • pp.576-580
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    • 2010
  • NRCS의 유출곡선지수 산정법(CN; Runoff Curve Number method)은 유역내의 토지 이용 및 토지 피복, 토양특성, 수문학적 조건 등을 이용하여 총 강우량으로부터 유효 유출량을 계산하는 방법으로서 이론의 간편성과 적용성으로 인하여 여러 분야에 적용되고 있다. 그러나, 유출곡선지수의 특성상 지역적인 특성에 따라 차이가 발생할 수 밖에 없음에도 국내에서는 대부분 미국 NEH(National Engineering Handbook)에서 제시한 기준을 이용하고 있는 실정이다. 이에 대하여 본 연구에서는 국내 유역의 강우-유출 특성을 반영한 유출곡선지수를 산정하고 강우에 따른 직접 유출량을 모의하기 위한 방법을 연구하였다. 이를 위하여 보청천 유역의 관측 강우-유출 자료에 Hawkins et al(1993)등이 제시한 점근 유출곡선지수방법을 적용하고 이를 국가수자원관리종합정보시스템(WAMIS)에서 제시한 값과 비교하였다. 또한 유역의 대표 유출곡선지수에 대한 회귀식을 유도하고 이를 이용하여 보청천 유역의 하계 유출을 모의하고 그 결과를 비교 분석 하였다. 연구결과 대표 유출곡선지수식을 이용한 유역의 직접유출 모의결과가 단일 유출곡선지수시의 모의결과보다 더 우수한 결과를 나타내었다.

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수문모니터링과 물수지법을 이용한 농업용 저수지 유역 유출곡선번호 추정 (Estimation of Runoff Curve Number for Agricultural Reservoir Watershed Using Hydrologic Monitoring and Water Balance Method)

  • 윤광식;김영주;윤석군;정재운;한국헌
    • 한국농공학회논문집
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    • 제47권3호
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    • pp.59-68
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    • 2005
  • The rainfall-runoff potential of Jangseong reservoir watershed was studied based on SCS (Soil Conservation Service, which is now the NRCS, Natural Resources Conservation Service, USDA) runoff curve number (CN) technique. Precipitation and reservoir operation data had been collected. The rainfall-runoff pairs from the watershed for ten years was estimated using reservoir water balance analysis using reservoir operation records. The maximum retention, S, for each storm event from rainfall-runoff pair was estimated for selected storm events. The estimated S values were arranged in descending order, then its probability distribution was determined as log-normal distribution, and associated CNs were found about probability levels of Pr=0.1, 0.5, and 0.9, respectively. A subwatershed that has the similar portions of land use categories to the whole watershed of Jangseong reservoir was selected and hydrologic monitoring was conducted. CNs for subwatershed were determined using observed data. CNs determined from observed rainfall-runoff data and reservoir water balance analysis were compared to the suggested CNs by the method of SCS-NEH4. The $CN_{II}$ measured and estimated from water balance analysis in this study were 78.0 and 78.1, respectively. However, the $CN_{II}$, which was determined based on hydrologic soil group, land use, was 67.2 indicating that actual runoff potential of Jangseong reservoir watershed is higher than that evaluated by SCS-NEH4 method. The results showed that watershed runoff potential for large scale agricultural reservoirs needs to be examined for efficient management of water resources and flood prevention.

복합형 구조에서의 전자파전파 특성 (Wave Propagation characteristic from Composite structures)

  • 윤광렬
    • 한국전자통신학회논문지
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    • 제6권3호
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    • pp.343-348
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    • 2011
  • 이동통신의 급속한 보급과 발전에 의하여, 시가지에서의 전자파전파의 특성을 해명해야할 뿐만 아니라, 산림, 계곡 등의 외부 공간과 실내 공간 등의 전파난청 지역으로 불려오던 공간에 있어서도 안정적으로 통신을 이용할 수 있는 무선통신환경 개선의 중요성이 높게 요구 되고 있다. 더욱이, 이동통신의 디지털화와 더불어 건물 등에 의한 반사에 의해서 생기는 멀티패스에 기인하는 수신펄스의 시간지연이 고속디지털통신의 장해가 되고 있다. 이러한 도심 시가지에대한 전자파전파의 특성을 보다 정밀하게 추정하기 위해서는 건물 벽면의 구조 등의 영향도 고려 대상으로 포함 시킬 필요성이 있다. 따라서 본 논문에서는 FVTD(finite volume time domain)법을 적용하여, 기초적인 자료 보완을 위하여, 즉 주기적 구조에 의한 산란 특성과 불규칙적 표면을 포함하는 복합형 구조에 의한 2차원 전파환경 모델들에 대한 산란 특성을 조사 하였다.

경주 신라우물의 지하수 수문학적 연구 (Groundwater Hydrological Study of Silla Well in Gyeongju)

  • 배상근
    • 한국환경과학회지
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    • 제25권1호
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    • pp.99-105
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    • 2016
  • In this paper, a groundwater hydrological study of the Gyeongju well during the Silla period is conducted to investigate how sufficiently the Gyeongju well supplied water demand at the time. It is assumed that the current geology and soil condition in Gyeongju remain similar to the Silla period. Also, the land use and land coverage during the Silla period is estimated based on the current land condition in Gyeongju. Precipitation during the Silla period is analyzed using precipitation data from 1984 to 2014 provided by Gyeonju weather station. Precipitation analysis is applied based on 3 different scenarios; precipitation intensity during the Silla period was Case (1) the same as, Case (2) 30% more, and Case (3) 30% less than the precipitation intensity of the last decade (2005~2014). Furthermore, to observe the use of the well in Gyeongju during droughts, the following condition(Case (4)) is also considered; ten year drought during the Silla period was the same as the ten year drought from 1984 to 2014. Available amount of groundwater development is analyzed using NRCS-CN method. The results show that the potential amount of groundwater in Gyeongju during Silla era was for Case (1) $62,825,272m^3/year$, Case (2) $93,606,567m^3/year$, Case (3) $32,277,298m^3/year$, and Case (4)$32,870,896m^3/year$. Also, it has been shown that $45,260,000m^3$ of groundwater were required to supply to all households in Gyeongju during Silla era. Therefore, if the precipitation intensity during Silla era was similar with the last decade, the groundwater would provide enough supply to all households in Gyeongju. However, in the case that the precipitation intensity during Silla era was 30% less than the last decade or a ten year drought happened, it is predicted that the water use in Gyeongju would have been limited.

저류형 투수블록 설치를 통한 안동국제탈춤광장 유출량 저감효과 모의 (The Simulation of Runoff Reduction by the Storage Type of Zermeable Concrete Block Paving on Andong Maskdance Festival Square)

  • 박성기;전지홍
    • 한국물환경학회지
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    • 제34권3호
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    • pp.293-300
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    • 2018
  • Ihe purpose of this study is to evaluate the effects the storage type of permeable concrete block paving (ST-PCBP) have on runoff reduction and infiltration increasement at Andong Maskdance Festival Square. This was accomplished using the NRCS-curve number method over the last 10 years. Two different scenarios were developed in this study for low impact development (LID) design. For the $1^{st}$ scenario, the walking path and parking lot were install using the ST-PCBP and runoff from the inline skating rink ($3,808m^2$) and lawn ($11,191m^2$) were routed to the ST-PCBP, but the rooftop runoff flowed into the storm water drainage system. For the $2^{nd}$ scenario, one of the non-structural BMPs, disconnected impervious surface (DIS), was applied so additional runoff from rooftop would enter the ST-PCBP. It was determined that ST-PCBP could significantly reduce surface runoff from the study area and increase infiltration with 71% and 88% of surface runoff reduction and 151% and 215% of infiltration increasement for scenarios 1 and 2, respectively. The effect of LID in the $2^{nd}$ scenario was better than the $1^{st}$ scenario, therefore DIS in conjunction with ST-PCBP could be a more cost-effective LID application.

저영향개발기법 설계 및 평가를 위한 LIDMOD3 개발 (LIDMOD3 Development for Design and Evaluation of Low Impact Development)

  • 전지홍;서성철
    • 한국물환경학회지
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    • 제34권4호
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    • pp.382-390
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    • 2018
  • In this study, the LIDMOD3 was developed to design and evaluate low impact development (LIDMOD). In the same fashion, the LIDMOD3 employs a curve number (NRCS-CN) method to estimate the surface runoff, infiltration and event mean concentration as applicable to pollutant loads which are based on a daily time step. In these terms, the LIDMOD3 can consider a hydrologic soil group for each land use type LID-BMP, and the applied removal efficiency of the surface runoff and pollutant loads by virtue of the stored capacity, which was calculated by analyzing the recorded water balance. As a result of Model development, the LIDMOD3 is based on an Excel spread sheet and consists of 8 sheets of information data, including: General information, Annual precipitation, Land use, Drainage area, LID-BMPs, Cals-cap, Parameters, and the Results. In addition, the LIDMOD3 can estimate the annual hydrology and annual pollutant loads including surface runoff and infiltration, the LID efficiency of the estimated surface runoff for a design rainfall event, and an analysis of the peak flow and time to peak using a unit hydrolograph for pre-development, post-development without LID, and as calculated with LID. As a result of the model application as applied to an apartment, the LIDMOD3 can estimate LID-BMPs considering a well spatical distributed hydroloic soil group as realized on land use and with the LID-BMPs. Essentially, the LIDMOD3 is a screen level and simple model which is easy to use because it is an Excel based model, as are most parameters in the database. This system can be expected to be widely used at the LID site to collect data within various programmable model parameters for the processing of a detail LID model simulation.

효과적인 유역관리를 위한 CN기법 기반의 침투량 산정 및 기저유출량 분석 (Estimation of CN-based Infiltration and Baseflow for Effective Watershed Management)

  • 김희원;신연주;최정헌;강현우;류지철;임경재
    • 한국물환경학회지
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    • 제27권4호
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    • pp.405-412
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    • 2011
  • Increased Non-permeable areas which have resulted from civilization reduce the volume of groundwater infiltration that is one of the important factors causing water shortage during a dry season. Thus, seeking the efficient method to analyze the volume of groundwater in accurate should be needed to solve water shortage problems. In this study, two different watersheds were selected and precipitation, soil group, and land use were surveyed in a particular year in order to figure out the accuracy of estimated infiltration recharge ratio compared to Web-based Hydrograph Analysis Tool (WHAT). The volume of groundwater was estimated considering Antecedent soil Moisture Condition (AMC) and Curve Number (CN) using Long Term Hydrologic Impact Assessment (L-THIA) model. The results of this study showed that in the case of Kyoung-an watershed, the volume of both infiltration and baseflow seperated from WHAT was 46.99% in 2006 and 33.68% in 2007 each and in Do-am watershed the volume of both infiltration and baseflow was 33.48% in 2004 and 23.65% in 2005 respectively. L-THIA requires only simple data (i.e., land uses, soils, and precipitation) to simulate the accurate volume of groundwater. Therefore, with convenient way of L-THIA, researchers can manage watershed more effectively than doing it with other models. L-THIA has limitations that it neglects the contributions of snowfall to precipitation. So, to estimate more accurate assessment of the long term hydrological impacts including groundwater with L-THIA, further researches about snowfall data in winter should be considered.

경사도에 따른 CN보정에 의한 L-THIA 직접유출 모의 영향 평가 (The Effect of Slope-based Curve Number Adjustment on Direct Runoff Estimation by L-THIA)

  • 김종건;임경재;박윤식;허성구;박준호;안재훈;김기성;최중대
    • 한국물환경학회지
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    • 제23권6호
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    • pp.897-905
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    • 2007
  • Approximately 70% of Korea is composed of forest areas. Especially 48% of agricultural field is practiced at highland areas over 400 m in elevation in Kangwon province. Over 90% of highland agricultural farming is located at Kangwon province. Runoff characteristics at the mountainous area such as Kangwon province are largely affected by steep slopes, thus runoff estimation considering field slopes needs to be utilized for accurate estimation of direct runoff. Although many methods for runoff estimation are available, the Soil Conservation Service (SCS), now Natural Resource Conservation Service (NRCS), Curve Number (CN)-based method is used in this study. The CN values were obtained from many plot-years dataset obtained from mid-west areas of the United States, where most of the areas have less than 5% in slopes. Thus, the CN method is not suitable for accurate runoff estimation where significant areas are over 5% in slopes. Therefore, the CN values were adjusted based on the average slopes (25.8% at Doam-dam watershed) depending on the 5-day Antecedent Moisture Condition (AMC). In this study, the CN-based Long-Term Hydrologic Impact Assessment (L-THIA) direct runoff estimation model used and the Web-based Hydrograph Analysis Tool (WHAT) was used for direct runoff separation from the stream flow data. The $R^2$ value was 0.65 and the Nash-Sutcliffe coefficient value was 0.60 when no slope adjustment was made in CN method. However, the $R^2$ value was 0.69 and the Nash-Sutcliffe value was 0.69 with slope adjustment. As shown in this study, it is strongly recommended the slope adjustment in the CN direct runoff estimation should be made for accurate direct runoff prediction using the CN-based L-THIA model when applied to steep mountainous areas.