• 제목/요약/키워드: sediment model

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FRACTAL DIMENSION OF SIMULATED SEDIMENTS (모의류사의 쪽거리 차원)

  • 김형수;윤용남
    • Water for future
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    • v.27 no.3
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    • pp.115-121
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    • 1994
  • Cohesie sediment movement in estuarine systems is strongly affected by the phenomena of aggregation and flocculation. Aggregation is the process where primary particles are clustered together in tightly-packed formations; flocculation is the process where aggregates and single particles are bonded together to form large particle groups of very low specific density. The size, shape and strength of the flocculants control the rate of deposition and the processes of pollutant exchange between suspended sediments and ambient water. In estuarine waters, suspended sediments above the lutocline form the mobile suspension zone while below the lutocline they form the stationary suspension zone. Suspended particles in the mobile zone are generally in a dispersed state and the controlling forces are the Brownian motion and the turbulent flow fluctuations. In the stationary suspension zone, the driving force is the gravity. This paper discusses the settling and particle flocculation characteristics under quiescient flow conditions. Particles are entering the study domain randomly. Particles in the mobile suspension zone are simulated by using the Smoluchowski's model. Flocs created in the mobil suspension zone are moving into the stationary suspension zone where viscosity and drag effects are important. Utilizing the concepts of the maximum Feret's diameter and the Minkowski's sausage logic, the fractal dimension of the flocs within the stationary suspension is estimated and then compared with results obtained by other studies.

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Analysis of the Effect of Dredging and Weirs on Bed Change in the Nakdong River and its Tributary using HEC-6 (HEC-6를 이용한 준설 및 보로 인한 낙동강 본류 및 지류 하상변화 분석)

  • Ahn, Jung Min;Kwak, Sunghyun;Lyu, Siwan
    • Journal of Korea Water Resources Association
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    • v.48 no.9
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    • pp.743-756
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    • 2015
  • It is necessary to evaluate the effect of dredging and weir operation on the flow and long-term bed change for river management. Especially, large scale river treatment project, with dredging or weir installation and operation, can increase the instability of riverbed in tributaries as well as mainstream. This study focuses on the effect of weir installation and dredging on the long-term bed change in Nakdong river (Gangjeong- Goryeong Weir~Dalseong Weir) and its tributary (Geumho river). HEC-6 model has been used to analyze the amount of long-term bed change and sediment transport resulted from the river treatment including dredging or weir installation. From the result, it was concluded that a large scale river treatment can accelerate and increase the long-term bed change both in mainstream and tributary.

Development and Application of Integrated Model Using SATEEC, USPED and nLS for Gully-erosion Evaluation (걸리 침식 평가를 위한 SATEEC, nLS, USPED 연계 모형의 개발 및 적용)

  • Kang, Hyun-Woo;Park, Youn-Shik;Kim, Nam-Won;Lim, Kyoung-Jae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.605-609
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    • 2010
  • 기상변화와 지구온난화로 인해 국지성 호우의 강도와 빈도가 늘어나고 있으며 이로 인해 소양강, 도암댐, 임하댐 유역의 탁수 문제 등, 토양 유실에 관한 문제가 심각해지고 있다. 정확한 토양 유실 모의를 위하여 지난 수 십 년간 Universal Soil Loss Equation(USLE) 등의 모형이 사용되었지만 이러한 모형들에 관한 연구 중 강한 집중 호우에 의해 발생하는 걸리 침식(Gully Erosion)을 적용한 경우는 많지 않다. 이에 본 연구에서는 걸리 침식을 고려한 토양 유실량 및 유사량 산정을 위하여 입력자료가 간단하고 ArcView GIS를 기반으로 융합이 가능한 Sediment Assessment Tool for Effective Erosion Control (SATEEC) system, nLS, Unit Stream Power-based Erosion/Deposition (USPED) 연계 모형을 개발하여 강원도 양구군 해안면 유역에 적용하였다. 기존 SATEEC system에서는 강우 시 유역에서 발생하는 면상 침식(Sheet Erosion), 세류 침식(Rill Erosion)의 모의만이 가능하였지만, 본 연구에서 개발한 연계모형에서는 nLS 모형을 이용한 걸리 헤드 발생 지역 선정과 USPED 모형을 이용한 걸리 발생 지역에서의 토양 유실량 산정이 가능하기 때문에, 걸리 침식을 고려한 토양 유실량 산정이 가능하다. 연계 모형의 모의 결과 해안면 유역의 최종 유출구에서 발생하는 평균 유사량은 101,933 ton/year 로 산정 되었다. 토양 유실량과 유사량을 모의함에 있어, 면상, 세류, 걸리 침식을 종합적으로 고려해야 실제 지형에서 발생하는 토양 유실량 및 유사량을 좀 더 정확하게 예측할 수 있을 것이며, 본 연구에서 개발된 연계 모형을 이용한다면 실제 유역에서 발생하는 여러 형태의 토양 유실을 모의 할 수 있을 것이라 판단된다.

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Numerical Analysis of Flow and Bed Changes due to Tributary Inflow Variation at the Confluence of the Namhan River and the Geumdang Stream (남한강과 금당천 합류부 구간에서의 지류 유입유량 변화에 따른 흐름특성 및 하상변동 수치모의)

  • Ji, Un;Jang, Eun Kyung
    • Journal of Korea Water Resources Association
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    • v.47 no.11
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    • pp.1027-1037
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    • 2014
  • Flow and bed changes due to tributary inflow variation at the confluence of the Namhan River and the Geumdang Stream were analyzed in this study using a two-dimensional numerical model. As a result of the numerical analysis, the velocity downstream of the confluence was greater than the velocity upstream of the confluence in the main channel regardless of the magnitude of tributary inflow. However, as tributary discharge increased, the channel erosion was accelerated and the dry area was produced at the tributary. Due to the bed erosion at the tributary, sediment transport was increased and the eroded sediments were deposited in the confluence area. The deposition in the confluence area changed the flow direction at the main channel to the left side and the localized flow eroded the channel bed at the left side. Therefore, it is expected that bank failure due to continuous bed degradation is possible in this area.

Dispersion Stability Determination of Saengshik Beverage by Optical Methods (광학적 방법에 의한 생식음료의 분산 안정성 측정)

  • Lee, Ju-Yeon;Mok, Chulkyoon
    • Food Engineering Progress
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    • v.14 no.1
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    • pp.41-48
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    • 2010
  • An optical method was introduced to investigate the dispersion stability of Saengshik beverages (SB) containing 3.7-11.7% Saengshik powder (SP). Time course changes in backscattering light flux (BSLF) from SB were monitored by a Turbiscan. BSLF in the bottom and top layers of SB increased by forming sediment and foam, respectively, while that in the middle layer decreased by clarifying. With SP levels, sedimentation in SB was retarded, but the height of total sedimentation layer was increased. A logarithmic model was developed to fit to the changes in BSLF with time, showing determination coefficients of 0.979-0.988. The levels of SP in SB influenced the migration speed of the clarification front as well as the numbers of separated layers; 2 layers in SB containing 3.7% SP, 3 in 5.7-9.7%, and 4 in 11.7%. Formation of clear layers started after 17-29 min and continued for 22-53 min. The clarification was retarded most in SB containing 7.7% SP, indicating the most stable SP level for the SB preparation.

Impact of the Mekong River Flow Alteration on the Tonle Sap Lake in Cambodia

  • Lee, Giha;Kim, Joocheol;Jung, Kwansue;Lee, Hyunseok
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.231-231
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    • 2015
  • Rapid development in the upper reaches of the Mekong River, in the form of construction of large hydropower dams and reservoirs, large irrigation schemes, and rapid urban development, is putting water resources under stress. Many scientific reports have pointed out that cascade dams along the Mekong River lead to serious problems: not only hydrologically but also a decline of agricultural productivity due to a decrease of sediment supply in the Mekong Delta and a change of fish amount due to drastic change of the water environment. Cambodia and Vietnam, located in the lowest Mekong basin, are gravely affected by radical changes of hydrologic regime due to Mekong River developments. In particular, the Tonle Sap Lake in Cambodia is very sensitive to the flood cycle and flow variation of the Mekong River as well as inflow water quality from the Mekong River. More than 50% of Cambodian GDP depends on the primary industries such as agriculture, fishing, and forestry, and the Tonle Sap Lake plays an important role to support the national economy in Cambodia. In addition, Cambodian people usually take nourishment from the fish of Tonle Sap Lake. This research aims to assess the impacts of the Mekong river flow alternation on the hydrologic regime of the Mekong River - Tonle Sap Lake. We carried out rainfall-runoff-inundation simulation using CAESER-LISFLOOD for integrated water resource management in the Tonle Sap Basin and then analyze flood inundation variation of the Tonle Sap Lake due to the scenarios. Furthermore, the simulated inundation maps were compared to MODIS satellite images for model verification and hydrologic prediction.

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Development of a New Munk-type Breaker Height Formula Using Machine Learning (머신러닝을 이용한 새로운 Munk-type 쇄파파고 예측식의 제안)

  • Choi, Byung-Jong;Nam, Hyung-Sik;Lee, Kwang-Ho
    • Journal of Navigation and Port Research
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    • v.45 no.3
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    • pp.165-172
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    • 2021
  • Breaking wave is one of the important design factors in the design of coastal and port structures as they are directly related to various physical phenomena occurring on the coast, such as onshore currents, sediment transport, shock wave pressure, and energy dissipation. Due to the inherent complexity of the breaking wave, many empirical formulas have been proposed to predict breaker indices such as wave breaking height and breaking depth using hydraulic models. However, the existing empirical equations for breaker indices mainly were proposed via statistical analysis of experimental data under the assumption of a specific equation. In this study, a new Munk-type empirical equation was proposed to predict the height of breaking waves based on a representative linear supervised machine learning technique with high predictive performance in various research fields related to regression or classification challenges. Although the newly proposed breaker height formula was a simple polynomial equation, its predictive performance was comparable to that of the currently available empirical formula.

Simulation of Sediment Reduction Effects of VFS in Saemangeum Watershed (새만금유역 초생대 유사저감효과 모의)

  • Lee, Seul-Gi;Iang, Jeong-Ryeol;Choi, Kyung-Sook
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.272-272
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    • 2015
  • 본 연구는 초생대 필지단위 모의프로그램인 VFSMOD-W(Vegetative Filter Strip MODel-W) 모형을 이용하여 새만금 유역의 밭경지 특성을 반영한 다양한 시나리오에 기반하여 초생대기법을 적용 하였을 경우의 유사저감효과에 대해 모의해 보았다. '새만금유역 농업비점오염 저감기법 개발'과제의 일환으로 초생대 현장실험을 위해 조성된 익산 밭경지 시험포의 실측치를 이용하여 모형의 보정이 이루어졌으며, 결과는 유출량의 경우 NSE=0.833와 $R^2=0.99$를, 유사량의 경우 NSE=0.794와 $R^2=0.99$로 각각 매우 높게 나타났다. 모의를 위한 시나리오는 새만금유역의 밭경지 특성을 고려하여 1ha, 5ha, 10ha의 밭규모에, 밭경사는 7%와 15%으로, 토성은 양토인 정방형 형태의 밭경지를 대상으로 하였다. 초생대 초종은 Grass mixture로 적용하였고, 규모는 밭경지 면적의 10%로 고정하여, 50mm, 100mm, 150mm, 200mm의 일강우량에 대해 초생대 유출 및 유사에 대한 모의를 실시하였다. 그 결과 새만금유역에 초생대 적용 시 유출저감효과는 밭경사 7%와 15%일 때 1.5~13.5%와 1.4~12.1%의 범위로 각각 나타났으며, 경사에 따른 차이는 미비하였으나 강우량과 밭경지 규모에 따른 유출저감효과의 차이가 크게 나타났다. 유사의 경우에는 밭경사 7%와 15%일 때 20.4~97.0%와 15.7~86.0%의 저감효과를 각각 보였으며, 유출에 비해 초생대 적용에 따른 유사저감효과가 월등히 높게 나타났다. 강우량의 차이에 따른 유사저감효과는 50mm일 때 58.4~97.0%, 200mm일 때 15.7~32.9%를 나타내어 강우인자의 영향이 밭규모와 경사 등의 밭경지 특성에 비해 유사 발생량 및 저감효과에 가장 크게 미침을 알 수 있었다. 본 모의 결과를 통해 새만금유역의 초생대기법 적용은 새만금호의 수질오염저감 및 개선에 기여할 수 있을 것으로 기대되며, 현장 실용화를 위해서는 다양한 현장인자들에 적합한 세부적인 설계기술 개발이 요구된다.

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Effect of Installing a Selective Withdrawal Structure for the Control of Turbid Water in Soyang Reservoir (탁수조절을 위한 소양호 선택취수설비 설치 효과 분석)

  • Chung, Se Woong;Park, Hyung Seok;Yoon, Sung Wan;Ryu, In Gu
    • Journal of Korean Society on Water Environment
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    • v.27 no.6
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    • pp.743-753
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    • 2011
  • One of the most important water management issues of Soyang Reservoir, located in North Han River in Korea, is a long term discharge of turbid water to downstream during flood season. Installation of a selective withdrawal structure (SWS) is planned by the reservoir management institute as a control measure of outflow water quality and associated negative impacts on downstream water use and ecosystem. The objective of the study was to explore the effectiveness of the SWS on the control of outflow turbidity under two different hydrological years; one for normal flood year and another for extreme flood year. A two-dimensional (2D), laterally averaged hydrodynamic and water quality model (CE-QUAL-W2) was set up and calibrated for the reservoir and used to evaluate the performance of the proposed SWS. The results revealed that the SWS can be an effective method when the ${\Theta}$ value, the ratio between the amount of turbid water that containing suspended sediment (SS) greater than 25 mg/L and the total storage of the reservoir, is 0.59 during the normal flood year. However, the effectiveness of the SWS could be marginal or negative in the extreme flood year when ${\Theta}$ was 0.83. The results imply that the SWS is an effective alternative for the control of turbid water for moderate flood events, but not a sufficient measure for large flood events that are expected to happen more often in the future because of climate change.

Safety estimation of check dam in Muju region according to debris yield (토사유출에 따른 무주지역 사방댐의 안전성 평가)

  • Kwon, Hyuk Jae;Kim, Hyeong Gi
    • Journal of Korea Water Resources Association
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    • v.54 no.11
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    • pp.915-924
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    • 2021
  • In this study, the probability of exceeding capacity for 4 check dams in Muju mountain region have been estimated. From the results, optimum design of check dam and safety according to wild fire have been discussed. Reliability model has been established by using MSDPM for calculating debris yield to estimate the probability of exceeding capacity of check dam. Probability of exceeding capacity for 4 check dams has been estimated according to maximum rainfall intensity of return periods (10year, 50year, 100year, and 200year). It was found that 1 check dam of Samga-ri basin and 1 check dam of Jeungsan-ri basin were designed by overestimation and 61% and 47% of capacity should be reduced, respectively. Furthermore, probability of exceeding capacity according to burned area has been estimated and compared. It was found that check dam of Sanga-ri basin is the weakest for the wild fire effect in this study area.