• 제목/요약/키워드: Flood base data

검색결과 45건 처리시간 0.025초

한국지형구(韓國地形區) (The Study of Physiographic province in Korea)

  • 박노식
    • 동굴
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    • 제68호
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    • pp.75-98
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    • 2005
  • Korea physiographic province is divided into two provinces which is northern Chugaryung graben zone and southern Chugraryung graben zone. Northern Chugraryung is also divided in to Gema block and Kohan block, and southern Chugraryung dividedinto Han block, Yongnam basin and Honam plain. The above mentioned macro geomorophic units is divided, mainly on the geotectonics. The meso geomorphic units is divided, based upon the regional distribution of topographic characteristic that is plateaus, mountains, mountain range, basins and great plain etc. Micro geomorphic units id into a mountain, a hill, a plain, and a lowland, and then it is formed by selfreliant topographic unit. And micro topographic (fan, peneplain, delta, etc) dealt with a characteristics unit. In this article has a disregarded amallest scale that is included flood plait natural levee, back marsh and oxbow lake etc. Accordingly, it shows macro units are meso units are 5, meso units are 53, micro units are 299. A study method of physiographic provincs prefered to aufsteigende and abstergands methoy. How to organically combine topographic factors can be seen in regional distribution of the peculiar topographic characteristics, for charage teristic of topographic makes a study on the topographic of micro unit such understanding as aufsteigende method. At the same time, since it can be studied systematically from marco unit to micro unit like the absteigende methods, I used both methods. And this establishment of physiographic province based on the scientific method depend on the base map of climate classification. Geology, Soil, Biology. I feel confident that it will be used the basic map for land use map, land classification map, study of geomorphology of Korea. And will be used for study of a topographic standard data.

레이더강우를 이용한 GIS기반의 분포형모형 적용성 분석 (Application Analysis of GIS Based Distributed Model Using Radar Rainfall)

  • 박진혁;강부식;이근상
    • 대한공간정보학회지
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    • 제16권1호
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    • pp.23-32
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    • 2008
  • 최근 기상이변에 따른 국지성 돌발 홍수의 빈번한 발생으로 인해 레이더 등을 이용한 초단기 강수예보의 필요성이 대두되고 있다. 본 연구는 시공간 분포를 적절하게 표현할 수 있는 레이더 강우시계열자료와 GIS기반의 분포형모형을 연계하여 국내 댐유역에 적용해 봄으로써, 분포형모형의 홍수유출시 현업에서의 적용가능성을 검증하였다. 본 연구에서 사용한 물리적기반의 분포형모형으로는 $Vflo^{TM}$모형을 이용하였으며, 금강권역의 용담댐유역($930km^2$)을 시험유역으로 적용하였다. 입력강우로는 2005년 8월 국지성호우사상, 2007년 태풍 "에위니아"와 "빌리스"를 대상으로하여, 진도레이더로 부터 레이더강우 전처리프로그램인 K-RainVieux를 이용하여 모형의 격자해상도에 맞는 분포형 강우를 생성하여 지역편차보정한 결과 누적강수총량은 2%내외, 편이(bias)값은 $0.886{\sim}0.908$로서 양호한 결과를 보여주었다. GIS수문매개변수를 DEM, 토지피복도, 토양도 등의 기본GIS자료들로 부터 추출, 물리적기반의 분포형모형($Vflo^{TM}$)의 매개변수로 사용하였으며, 3가지 강우사상에 대한 다첨두수문곡선 모의결과 총유출량 및 첨두유량 오차가 20%미만으로 나타나 실무에서의 사용시 홍수량 예측에 충분한 적용성이 있음을 확인할 수 있었다. 본 연구의 성과는 향후 돌발홍수에 대응한 실시간 단기 강우유출예측시스템을 구축하기위한 기반이 될 것으로 기대된다.

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Analysis of Urban Flood Damage Using SWMM5 and FLUMEN Model of Sadang Area in Korea

  • Li, Heng;Kim, Yeonsu;Lee, Seungsoo;Song, Miyeon;Jung, Kwansue
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.396-396
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    • 2015
  • Frequent urban floods affect the human safety and economic properties due to a lack of the capacity of drainage system and the increased frequency of torrential rainfall. The drainage system has played an important role in flooding control, so it is necessary to establish the effective countermeasures considering the connection between drainage system and surface flow. To consider the connection, we selected SWMM5 model for analyzing transportation capacity of drainage system and FLUMEN model for calculating inundation depth and time variation of inundation area. First, Thiessen method is used to delineate the sub-catchments effectively base on drainage network data in SWMM5. Then, the output data of SWMM5, hydrograph of each manhole, were used to simulate FLUMEN to obtain inundation depth and time variation of inundation area. The proposed method is applied to Sadang area for the event occurred in $27^{th}$ of July, 2011. A total of 11 manholes, we could check the overflow from the manholes during that event as a result of the SWMM5 simulation. After that, FLUMEN was utilized to simulate overland flow using the overflow discharge to calculate inundation depth and area on ground surface. The simulated results showed reasonable agreements with observed data. Through the simulations, we confirmed that the main reason of the inundation was the insufficient transportation capacities of drainage system. Therefore cooperation of both models can be used for not only estimating inundation damages in urban areas but also for providing the theoretical supports of the urban network reconstruction. As a future works, it is recommended to decide optimized pipe diameters for efficient urban inundation simulations.

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다양한 첨단 유량 계측기기를 활용한 제주도 하천 유출 비교 분석 (Analysis and Comparison of Stream Discharge Measurements in Jeju Island Using Various Recent Monitoring Techniques)

  • 양성기;김동수;정우열;류권규
    • 한국환경과학회지
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    • 제20권6호
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    • pp.783-788
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    • 2011
  • Different from the main land of South Korea, Jeju Island has been in difficulties for measuring discharge. Due to high infiltration rate, most of streams in Jeju Island are usually in the dried state except six streams with the steady base flow, and the unique geological characteristics such as steep slope and short traveling distance of runoff have forced rainfall runoff usually to occur during very short period of time like one or two days. While discharge observations in Jeju Island have been conducted only for 16 sites with fixed electromagnetic surface velocimetry, effective analysis and validation of observed discharge data and operation of the monitoring sites still have been limited due to very few professions to maintain such jobs. This research is sponsored by Ministry of Land, Transport and Maritime Affairs to build water cycle monitoring and management system of Jeju Island. Specifically, the research focuses on optimizing discharge measurement techniques adjusted for Jeju Island, expanding the monitoring sites, and validating the existing discharge data. First of all, we attempted to conduct discharge measurements in streams with steady base flow, by utilizing various recent discharge monitoring techniques, such as ADCP, LSPIV, Magnetic Velocimetry, and Electromagnetic Wave Surface Velocimetry. ADCP has been known to be the most accurate in terms of discharge measurement compared with other techniques, thus that the discharge measurement taken by ADCP could be used as a benchmark data for validation of others. However, there are still concerns of using ADCP in flood seasons; thereby LSPIV would be able to be applied for replacing ADCP in such flooded situation in the stream. In addition, sort of practical approaches such as Magnetic Velocimetry, and Electromagnetic Wave Surface Velocimetry would also be validated, which usually measure velocity in the designated parts of stream and assume the measured velocity to be representative for whole cross-section or profile at any specified location. The result of the comparison and analysis will be used for correcting existing discharge measurement by Electromagnetic Wave Surface Velocimetry and finding the most optimized discharge techniques in the future.

한국주요빙계의 소유역에 대한 순간단위권 유도에 관한 연구 (I) (Studies on the Derivation of the Instantaneous Unit Hydrograph for Small Watersheds of Main River Systems in Korea)

  • 이순혁
    • 한국농공학회지
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    • 제19권1호
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    • pp.4296-4311
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    • 1977
  • This study was conducted to derive an Instantaneous Unit Hydrograph for the accurate and reliable unitgraph which can be used to the estimation and control of flood for the development of agricultural water resources and rational design of hydraulic structures. Eight small watersheds were selected as studying basins from Han, Geum, Nakdong, Yeongsan and Inchon River systems which may be considered as a main river systems in Korea. The area of small watersheds are within the range of 85 to 470$\textrm{km}^2$. It is to derive an accurate Instantaneous Unit Hydrograph under the condition of having a short duration of heavy rain and uniform rainfall intensity with the basic and reliable data of rainfall records, pluviographs, records of river stages and of the main river systems mentioned above. Investigation was carried out for the relations between measurable unitgraph and watershed characteristics such as watershed area, A, river length L, and centroid distance of the watershed area, Lca. Especially, this study laid emphasis on the derivation and application of Instantaneous Unit Hydrograph (IUH) by applying Nash's conceptual model and by using an electronic computer. I U H by Nash's conceptual model and I U H by flood routing which can be applied to the ungaged small watersheds were derived and compared with each other to the observed unitgraph. 1 U H for each small watersheds can be solved by using an electronic computer. The results summarized for these studies are as follows; 1. Distribution of uniform rainfall intensity appears in the analysis for the temporal rainfall pattern of selected heavy rainfall event. 2. Mean value of recession constants, Kl, is 0.931 in all watersheds observed. 3. Time to peak discharge, Tp, occurs at the position of 0.02 Tb, base length of hlrdrograph with an indication of lower value than that in larger watersheds. 4. Peak discharge, Qp, in relation to the watershed area, A, and effective rainfall, R, is found to be {{{{ { Q}_{ p} = { 0.895} over { { A}^{0.145 } } }}}} AR having high significance of correlation coefficient, 0.927, between peak discharge, Qp, and effective rainfall, R. Design chart for the peak discharge (refer to Fig. 15) with watershed area and effective rainfall was established by the author. 5. The mean slopes of main streams within the range of 1.46 meters per kilometer to 13.6 meter per kilometer. These indicate higher slopes in the small watersheds than those in larger watersheds. Lengths of main streams are within the range of 9.4 kilometer to 41.75 kilometer, which can be regarded as a short distance. It is remarkable thing that the time of flood concentration was more rapid in the small watersheds than that in the other larger watersheds. 6. Length of main stream, L, in relation to the watershed area, A, is found to be L=2.044A0.48 having a high significance of correlation coefficient, 0.968. 7. Watershed lag, Lg, in hrs in relation to the watershed area, A, and length of main stream, L, was derived as Lg=3.228 A0.904 L-1.293 with a high significance. On the other hand, It was found that watershed lag, Lg, could also be expressed as {{{{Lg=0.247 { ( { LLca} over { SQRT { S} } )}^{ 0.604} }}}} in connection with the product of main stream length and the centroid length of the basin of the watershed area, LLca which could be expressed as a measure of the shape and the size of the watershed with the slopes except watershed area, A. But the latter showed a lower correlation than that of the former in the significance test. Therefore, it can be concluded that watershed lag, Lg, is more closely related with the such watersheds characteristics as watershed area and length of main stream in the small watersheds. Empirical formula for the peak discharge per unit area, qp, ㎥/sec/$\textrm{km}^2$, was derived as qp=10-0.389-0.0424Lg with a high significance, r=0.91. This indicates that the peak discharge per unit area of the unitgraph is in inverse proportion to the watershed lag time. 8. The base length of the unitgraph, Tb, in connection with the watershed lag, Lg, was extra.essed as {{{{ { T}_{ b} =1.14+0.564( { Lg} over {24 } )}}}} which has defined with a high significance. 9. For the derivation of IUH by applying linear conceptual model, the storage constant, K, with the length of main stream, L, and slopes, S, was adopted as {{{{K=0.1197( {L } over { SQRT {S } } )}}}} with a highly significant correlation coefficient, 0.90. Gamma function argument, N, derived with such watershed characteristics as watershed area, A, river length, L, centroid distance of the basin of the watershed area, Lca, and slopes, S, was found to be N=49.2 A1.481L-2.202 Lca-1.297 S-0.112 with a high significance having the F value, 4.83, through analysis of variance. 10. According to the linear conceptual model, Formular established in relation to the time distribution, Peak discharge and time to peak discharge for instantaneous Unit Hydrograph when unit effective rainfall of unitgraph and dimension of watershed area are applied as 10mm, and $\textrm{km}^2$ respectively are as follows; Time distribution of IUH {{{{u(0, t)= { 2.78A} over {K GAMMA (N) } { e}^{-t/k } { (t.K)}^{N-1 } }}}} (㎥/sec) Peak discharge of IUH {{{{ {u(0, t) }_{max } = { 2.78A} over {K GAMMA (N) } { e}^{-(N-1) } { (N-1)}^{N-1 } }}}} (㎥/sec) Time to peak discharge of IUH tp=(N-1)K (hrs) 11. Through mathematical analysis in the recession curve of Hydrograph, It was confirmed that empirical formula of Gamma function argument, N, had connection with recession constant, Kl, peak discharge, QP, and time to peak discharge, tp, as {{{{{ K'} over { { t}_{ p} } = { 1} over {N-1 } - { ln { t} over { { t}_{p } } } over {ln { Q} over { { Q}_{p } } } }}}} where {{{{K'= { 1} over { { lnK}_{1 } } }}}} 12. Linking the two, empirical formulars for storage constant, K, and Gamma function argument, N, into closer relations with each other, derivation of unit hydrograph for the ungaged small watersheds can be established by having formulars for the time distribution and peak discharge of IUH as follows. Time distribution of IUH u(0, t)=23.2 A L-1S1/2 F(N, K, t) (㎥/sec) where {{{{F(N, K, t)= { { e}^{-t/k } { (t/K)}^{N-1 } } over { GAMMA (N) } }}}} Peak discharge of IUH) u(0, t)max=23.2 A L-1S1/2 F(N) (㎥/sec) where {{{{F(N)= { { e}^{-(N-1) } { (N-1)}^{N-1 } } over { GAMMA (N) } }}}} 13. The base length of the Time-Area Diagram for the IUH was given by {{{{C=0.778 { ( { LLca} over { SQRT { S} } )}^{0.423 } }}}} with correlation coefficient, 0.85, which has an indication of the relations to the length of main stream, L, centroid distance of the basin of the watershed area, Lca, and slopes, S. 14. Relative errors in the peak discharge of the IUH by using linear conceptual model and IUH by routing showed to be 2.5 and 16.9 percent respectively to the peak of observed unitgraph. Therefore, it confirmed that the accuracy of IUH using linear conceptual model was approaching more closely to the observed unitgraph than that of the flood routing in the small watersheds.

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낙동강에서 격리된 과거 홍수터의 경계 설정과 토지이용 분석 (Delineation and Land Use Analysis of the Isolated Former Floodplain in the Nakdong River, Korea)

  • 진승남;조강현;조형진
    • Ecology and Resilient Infrastructure
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    • 제2권4호
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    • pp.324-329
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    • 2015
  • 우리나라의 하천은 대부분 치수를 위한 제방공사를 통해 직강화되어 있다. 하천과 홍수터의 횡적 연결성을 회복하기 위해서는 제방에 의해 격리된 과거 홍수터를 탐색하고 현재 토지이용현황을 파악하는 것이 중요하다. 본 연구의 목적은 낙동강에서 제내지의 격리된 과거 홍수터를 탐색하고 토지이용현황을 분석하는 것이다. 격리된 과거 홍수터는 지리정보시스템 (GIS)을 이용하여 낙동강 유역에서 수치표고모델, 연속수치지도 및 계획홍수위를 중첩하여 산출하였다. 탐색된 격리된 과거 홍수터의 토지이용현황은 토지피복도를 이용하여 분류하였다. 낙동강에서 격리된 과거 홍수터는 총 384지점이 탐색되었으며, 전체면적은 $291km^2$이었으며, 상류지역에서는 주로 산지에 둘러 쌓인 형태였고, 하류지역에서는 넓은 개활지의 형태로도 분포하였다. 격리된 과거 홍수터의 토지이용은 농경지 (73.9%)와 시가화지역 (12.7%)이 대부분을 차지하였다. 낙동강에서 탐색된 격리된 과거 홍수터와 토지이용현황은 향후 하천 복원 계획에 기초자료로 이용될 수 있을 것이다.

지하저류조 설치에 따른 침수피해 저감효과 분석 (Analysis on the Effects of Flood Damage Mitigation according to Installation of Underground Storage Facility)

  • 김영주;한건연;조완희
    • 대한토목학회논문집
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    • 제30권1B호
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    • pp.41-51
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    • 2010
  • 본 연구에서는 대구광역시 서구 비산7동 지역을 배수구역으로 선정하여 집중호우발생시 유출특성을 모의하고, 침수피해를 저감시키기 위한 방안으로 지하저류조의 설치에 따른 침수피해 저감효과에 대한 분석을 실시하였다. SWMM 모형을 적용하여 2003년 태풍 '매미' 사상에 대한 유출해석을 실시하였으며, 유출해석을 통하여 계산된 월류량에 대한 2차원 침수모형을 적용한 침수해석을 통하여 2003년 당시의 침수흔적도와 침수해석 결과의 비교 및 검증을 실시하여 침수지역의 공간적 분포가 매우 유사한 양상을 보이고 있는 것을 확인하였다. 또한 지하저류조의 설치에 따른 침수피해 저감효과를 분석하기 위하여 동일한 강우조건을 가지고 대상유역에 대한 유출해석을 실시하여 월류된 유량에 대한 2차원 침수해석을 실시하여 침수피해 저감효과를 분석하였다. 지하저류조의 설치 및 크기에 따른 침수피해 저감효과를 분석한 결과 지하저류조의 높이가 1.7 m($120m{\times}180m{\times}1.7m$)인 경우 월류체적은 72%, 침수면적은 40.1% 감소하였고, 높이가 2.0m($120m{\times}180m{\times}2.0m$)인 경우 월류체적은 84.8%, 침수면적은 50.6% 감소하였으며, 높이가 2.2 m($120m{\times}180m{\times}2.2m$)인 경우 월류체적은 94%, 침수면적은 91.2% 감소하였고, 높이가 2.5 m($120m{\times}180m{\times}2.5m$)인 경우는 월류가 발생하지 않는 것으로 확인되었다. 지하 저류조의 크기와 위치에 따른 침수피해 저감영향에 대한 정량적 분석을 통하여 제시된 연구결과는 침수피해 방지를 위하여 경제적이고 사회적으로도 활용가치가 높은 지하저류조의 설치를 위한 충분한 기초자료가 될 것으로 기대된다.

Relaying of 4G Signal over 5G Suitable for Disaster Management following 3GPP Release 18 Standard

  • Jayanta Kumar Ray;Ardhendu Shekhar Biswas;Arpita Sarkar;Rabindranath Bera;Sanjib Sil;Monojit Mitra
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제17권2호
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    • pp.369-390
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    • 2023
  • Technologies for disaster management are highly sought areas for research and commercial deployment. Landslides, Flood, cyclones, earthquakes, forest fires and road/train accidents are some causes of disasters. Capturing video and accessing data in real time from the disaster site can help first responders make split second decisions which may save human lives and valuable resource destructions. In this context the communication technologies performing the task should have high bandwidth and low latency which only 5G can deliver. But unfortunately in India, deployment of the 5G mobile communication systems is yet to give a shape and again in remote areas unavailability of 4G signals is still severe. In this situation the authors have proposed, simulated and experimented a 4G-5G communication scheme where from the disaster site the signals will be transmitted by a 5G terminal to a nearby 4G-5G gateway installed in a mobile vehicle. The received 5G signal will be further relayed by the 4G-5G gateway to the fixed 4G base station for onward transmission towards the disaster management station for decision making, deployment and relief monitoring. The 4G-5G gateway acts as a relay and converter of 5G signal to 4G signal and vice versa. This relayed system can be further mounted on a vehicle mounted relay (VMR) as proposed by 3GPP in Release 18. The scheme is also in the same line of context with Verizon's, "Tactical Humanitarian Operations Response" (THOR) vehicle concept. The performance of the link is studied in different channel conditions, the throughput achieved is superb. The authors have implemented the above mentioned system towards smart campus networking and monitoring landslides activities which are common in their regions.

색체디자인을 위한 MCC 개발에 관한 연구 (A Study on MCC Development for Color Design)

  • 문은배
    • 디자인학연구
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    • 제18권2호
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    • pp.219-232
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    • 2005
  • 현대인은 시각, 제품, 환경 디자인뿐 아니라 웹 콘텐츠, 애니메이션, 영상자료 등의 홍수 속에서 생활하고 있다. 그러므로 현대의 소비자는 그 어느 때 보다도 많은 선택권을 가지고 있으며 모든 디자인 결과물은 소비자에게 다양성을 제공할 수 있어야 한다. 우리는 디자인의 발전과 더불어 색채를 통한 새로운 감성을 개발함으로써 소비자에게 한 발 더 가까이 접근해야 한다. 그리고 새로운 감성을 창출하여 소비자에게 제안해야 한다. 본 MCC 팔레트는 디자인 할 떠 보다 정확한 감성을 적용하여 개인적인 편견을 없애고, 사용자에게 디자인 의도를 정확하게 호소하기 위한 것이다. MCC 팔레트는 한국적인 정거와 감성언어를 연구하고, 문헌적인 자료와 사진자료를 통해 감성 형용사를 수집하였다. 그리고 수집된 형용사를 균등하게 배분하였으며, 배분된 형용사를 각각 감성의 분야별로 정리하여 체계를 수집하였다. 그리고 각각 형용사별로 3색, 4색 배색을 하고 이들의 결과를 색채 전문가와 디자이너에게 설문 및 자문을 통하여 팔레트를 구성하였다. 그 결과 보다 실용성이 높은 색채 팔레트를 완성하였다. 완성된 배색은 웹상의 www.mcdri.net에서 운영되고 있으며, 또한 winders로 프로그램 되어 CD-ROM형 소프트웨어로 개발하였다. 인구결과로 만들어진 MCC 팔레트는 감성 자료 검색 데이터베이스를 구축함으로써 개발 후 실질적으로 적용이 가능하며, 각 매체별 색채오차 해소, 색채 배색의 검색을 통한 아이디어 개발, 사용층 및 사용대상에 대한 체계적인 접근을 용이하게 한다. 즉 산업체 활성화, 실무 사용자의 편의 도모, 디자인 교육 활성화를 위한 정보제공 등 산업계 및 교육계에 많은 도움이 될 것이다.

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댐군의 연계운영을 위한 수학적 모형 (A Mathematical Model for Coordinated Multiple Reservoir Operation)

  • 김승권
    • 한국수자원학회논문집
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    • 제31권6호
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    • pp.779-793
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    • 1998
  • 본 연구에서는 용수공급을 위한 이수관점에서 수력발전의 경제적 운영과 더불어 용수수요에 효과적으로 대처할 수 있는 댐군의 경제적 연계운영 최적화 모형을 제안한다. 제안된 모형은 댐군의 연계운영을 통한 발전방류의 최대화, 용수 수요량에 대한 물부족량(shortfall)의 최소화, 불필요한 여수로 방류량의 최소화, 홍수기를 대비한 저수지의 여유공간 확보, 그리고 발전효율을 높일 수 있는 저수위의 확보 등을 고려하였다. 제안된 최적화 모형은 구조적으로는 최적화 모형이지만, 실질적으로는 댐군의 연계운영의 행태를 표현한 시뮬레이션 모형이라 할 수 있으며, 용수공급계획 수립시 최대 용수공급 가용량 산정에 활용하기 위해서 개발된 모형이다. 최적화모형은 약 3,920개의 혼합정수변수와 약 7만$\times$13만 Node-Arc Incidence Matrix로 표현되는 네트워크 모형을 포함하는 여러 기간에 걸친 혼합정수계획 문제 (multi-period mixed integer programming)로 설계되었으며, 대형문제로부터 야기되는 수많은 자료를 효과적으로 처리하기 위하여 DBMS를 활용하였다. 본 모형의 효과를 검토하기 위하여 한강수계에 위치한 댐들 중에서 2개의 다목적 댐과 3개의 발전용 댐들의 연계운영에 실험하여 보았다. 실험결과, 본 연구에서 수립된 모형의 현실적인 이용을 위한 수정 보완과, 효과적인 댐 유역별 중장기 유입량 예측시스템이 개발되어 실시간으로 운영될 수 있도록 수정, 보완된다면 현재의 운영방법보다 더 좋은 운영방안을 제시하므로써, 환경보존에 따른 이득은 물론 용수공급 능력을 증대시킬 수 있는 대안이 될 수 있다.

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