• Title/Summary/Keyword: 침식.퇴적

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Analysis of Soil Erosion in Agricultural Lands using Physics-based Erosion Model (물리기반 침식모형을 활용한 필지의 토양침식 분석)

  • Yeon, Min Ho;Van, Linh Nguyen;Lee, Seul Chan;Lee, Gi Ha
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.84-84
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    • 2021
  • 전 지구적 기후변화로 세계 곳곳은 이례적인 홍수와 가뭄 등으로 많은 재산 및 인명 피해가 발생하고 있다. 우리나라의 경우, 강우 강도가 크고 단기간 많은 양의 비가 내리는 집중호우의 빈도가 급격히 증가하고 있다. 또한, 우리나라의 국토는 약 70%가 산지로 이루어져 있고, 경사가 험준한 지형을 지니고 있어 강우 시 유출이 급격히 발생하는 것이 특징이다. 이러한 기후 패턴과 지형적 특성으로 인하여 토양침식이 가중되고 있으며, 그중 강원도의 경우 산지 곳곳에 위치한 고랭지 밭으로 인해 강우 시 많은 양의 토사가 유실되어 농경지가 감소하고 있으며, 유실된 토사의 하천 유입으로 인한 하천 통수능력의 저하와 수질 악화 등 다양한 문제를 발생시키고 있다. 본 연구에서는 물리기반 모형인 SSEM (SSORii Erosion Model)을 이용하여 강원도 평창군에 위치한 도암댐 유역의 필지를 중심으로 침식과 퇴적의 양상을 분석해보고자 하였다. SSEM은 단기 강우 사상을 모의할 수 있고, 침식과 퇴적의 시·공간적 변동성을 반영할 수 있어 침식이 언제, 어디서, 얼마나 발생하였는지 식별이 가능한 모형이다. 연구분석 결과, 대부분의 필지에서 침식과 퇴적이 발생하였으며, 그중 도심지 주변에 위치한 필지에서 많은 토양침식이 발생하는 것으로 분석되었다. 이는 본 유역의 현장 조사 당시 육안으로 확인한 침식의 실태와 상당 부분 일치하고 있음을 보여준다.

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Analysis on Spatiotemporal Variability of Erosion and Deposition Using a Distributed Hydrologic Model (분포형 수문모형을 이용한 침식 및 퇴적의 시.공간 변동성 분석)

  • Lee, Gi-Ha;Yu, Wan-Sik;Jang, Chang-Lae;Jung, Kwan-Sue
    • Journal of Korea Water Resources Association
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    • v.43 no.11
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    • pp.995-1009
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    • 2010
  • Accelerated soil erosion due to extreme climate change, such as increased rainfall intensity, and human-induced environmental changes, is a widely recognized problem. Existing soil erosion models are generally based on the gross erosion concept to compute annual upland soil loss in tons per acre per year. However, such models are not suitable for event-based simulations of erosion and deposition in time and space. Recent advances in computer geographic information system (GIS) technologies have allowed hydrologists to develop physically based models, and the trend in erosion prediction is towards process-based models, instead of conceptually lumped models. This study aims to propose an effective and robust distributed rainfall-sediment yield-runoff model consisting of basic element modules: a rainfall-runoff module based on the kinematic wave method for subsurface and surface flow, and a runoff-sediment yield-runoff model based on the unit stream power method. The model was tested on the Cheoncheon catchment, upstream of the Yongdam dam using hydrological data for three extreme flood events due to typhoons. The model provided acceptable simulation results with respect to both discharge and sediment discharge even though the simulated sedigraphs were underestimated, compared to observations. The spatial distribution of erosion and deposition demonstrated that eroded sediment loads were deposited in the cells along the channel network, which have a short overland flow length and a gentle local slope while the erosion rate increased as rainfall became larger. Additionally, spatially heterogeneous rainfall intensity, dependant on Thiessen polygons, led to spatially-distinct erosion and deposition patterns.

Late Quaternary Transgressive Stratigraphy and its Depositional History in the Southeastern Continental Shelf, Korea (한국 남동해역 대륙붕 후 제4기 해침퇴적층서 및 퇴적역사)

  • Yoo, Dong-Geun;Lee, Chi-Won;Kim, Seong-Pil;Park, Soo-Chul
    • Geophysics and Geophysical Exploration
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    • v.13 no.4
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    • pp.349-356
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    • 2010
  • Analysis of high-resolution seismic profiles acquired from the southeastern continental shelf of Korea reveals that the late Quaternary transgressive deposits consist of six seismic units created in response to sea-level rise. These units with different seismic facies and geometry can be grouped into two distinct depositional wedges (paralic and marine) bounded by a ravinement surface. The paralic component underlying the ravinement surface consists of the sediment preserved from shoreface erosion and contains incised-channel fill, ancient beach-shoreface deposit and estuarine deposit. The top of paralic unit is truncated by a ravinement surface and overlain by marine component. The marine component consists of the sediment produced through shoreface erosion during landward transgression and contains mid-shelf sand sheet, mid-shelf sand ridge and inner shelf sand sheet. Such transgressive stratigraphic architecture of six sedimentary units is controlled by a function of lateral changes in the balance among rates of relative sea-level rise, sediment input and marine processes at any given time.

Analysis of Sedimentation and Erosion Environment Change around the Halmi-island, Anmyeondo in West Coast of Korea (안면도 할미섬 주변의 침식·퇴적환경 변화 분석)

  • KIM, Jang-soo;JANG, Dong-Ho
    • Journal of The Geomorphological Association of Korea
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    • v.19 no.2
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    • pp.123-132
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    • 2012
  • In this study, we analyzed sedimentation and erosion environment around Halmiseom on Anmyeon Island using wind direction and wind speed data, gain size analysis data and datum-point measured values. To observe changes in sedimentation and erosion environment around Halmiseon, we installed datum points at 12 locations around Halmiseom and carried out at total of 32 field measurements from May 16th, 2010 to May 8th, 2012. The field measurement results showed that H-3, H-4, H-5 and H-9 points are dominated by sedimentation environment, and H-7, H-8, H-10, H-11 and H-12 points are dominated by erosion environment. Meanwhile, sedimentation and erosion appeared alternately at H-2 and H-6 points. These results indicate that a bank installed in the southwest side of Halmiseom prevented sand of the beach from moving to the northeast side, leaving the sand of the beach being deposited at the sites, and the northeast side, where sand was not provided from beach ridge of Halmiseon was dominated by sedimentation. That is, the southwest side of Halmiseom was dominated by sedimentation, but the northeast side was dominated by erosion in general. However, the opposite trends were observed at H-9 point of the northeast side and H-12 point of the southwest side. According to analysis, since H-9 point is located at the end of sand spit connected to Halmiseom, the supply of sediments by a tidal current is possible. On the other hand, it was difficult to analyze the cause of erosion in case of H-12 point located at the sand dune due to the short measurement period.

Analysis of Liquefied Layer Activities Considering Erosion and Sedimentation of Debris Flow (토석류의 침식 및 퇴적을 고려한 유동층의 거동 분석)

  • Kim, Sungduk;Lee, Hojin
    • Journal of the Korean GEO-environmental Society
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    • v.20 no.4
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    • pp.23-29
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    • 2019
  • Heavy rainfall is in causing debris flow by recent climate change and causes much damage in the downstream. The debris flow from the mountainous area runs to the downstream, repeating sedimentation and erosion, and appears as a fluidized soil-water mixture. Continuity equation and momentum equation were applied to analyze the debris flow with strong mobility, and the sedimentation and erosion velocity with fine particle fractions were also applied. This study is to analyze the behavior of debris flow at the downstream end for the variation of the amount of sediments can occur in the upstream of the mountain. Analysis of sediment volume concentration at the downstream end of the channel due to the variance of the length of pavement of the granulated soils resulted in the higher the supply flow discharge and the longer the length of pavement, the greater the difference in the level of sediment concentration and the earlier the point of occurrence of the inflection point. The results of this study will provide good information for determining the erosion-sedimentation velocity rate which can detect erosion and sedimentation on steep slopes.

An Experimental Study on Erosion and Deposition of Estuarial Cohesive Sediment (하구점성토의 침식 및 퇴적에 관한 실험적 연구)

  • 안수한;김재중
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.1 no.1
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    • pp.44-49
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    • 1989
  • Cohesive sedimentation mechanism is affected by various physico-chemical factors. Thus, the field observations and the laboratory experiments for cohesive sediment have been reported for decades. Erosion and deposition test was carried out with cohesive sediment material sampled in the Keum River Estuary in this study. The change of the suspended cohesive sediment concentration was measured for various flow conditions, which have the purpose to determine the critical shear stress and the coefficients for erosion and deposition . The critical shear stress and the coefficient for erosion were determined in the flume test. The equilibrium concentration was determined for each shear stress and the relationship between the normalized equilibrium cocentration with the initial cocentration (Ceq/co) and the equivalent shear stress was obtained. The experimental results were compared with the other results and showed fairly well agreements with them.

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The relationships of erosion and river channel change in the Geum river basin (금강유역의 침식과 하상변동과의 관계)

  • 양동윤;짐주용;이진영;이창범;정혜정
    • The Journal of Engineering Geology
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    • v.10 no.2
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    • pp.52-74
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    • 2000
  • The basement rock of upper stream of Keum River Valley consists of Precambrian gneiss which is resistant to weathering. That of mid and lower stream valley, however, is mainly composed of Mesozoic granites which are vulnerable to weathering. The upstream part of Geum River Basin is typified by the deeply-incised and steep meandering streams, whereas mid and lower part is characterized by wide floodplain and gently dipping river bottom toward the Yellow Sea. In particular flooding deposits, in which are imprinted a number of repetitions of erosion and sedimentation during the Holocene, are widely distributed in the lower stream of Geum River Basin. For understanding of erosions in the mid and lower stream of Geum River Basin, the rate of erosion of each small basins were estimated by using the data of field survey, erosional experiments and GIS ananlysis. It was revealed that erosion rate appeared highest in granite areas, and overall areas, in this field survey were represented by relatively high erosion rates. By implemeatation of remote sensing and imagery data, the temporal changes of river bed sediments for about last 11 years were successfully monitored. Observed as an important phenomenon is that the river bed has been risen since 1994 when an embankment (Dyke) was constructed in the estuarine river mouth. From the results derived from the detailed river bed topographical map made in this investigation, the sedimentation of the lower river basin is considered to be deposited with about 5 cm/year for the last 11 years. Based on this river bed profile analysis by HEC-6 module, it is predicted that Geum River bed of Ganggyeong area is continuously rising up in general until 2004. Although extraction of a large amount of aggregates from Gongju to Ganggyung areas, the Ganggyung lower stream shows the distinct sedimentation. Therefore, it is interpreted that the active erosions of tributary basins Geum drainage basins can affect general river bed rising changes of Geum River.

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A Laboratory Study on Erosional Properties of the Deposit Bed of Kaolinite Sediments (고령토 퇴적저면의 침식특성에 대한 실험적 연구)

  • Kim, Yong-Muk;Kim, Hyun-Min;Hwang, Kyu-Nam;Yang, Su-Hyun
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.34 no.4
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    • pp.1181-1190
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    • 2014
  • In this study, the erosional parameters for deposit beds were quantitatively estimated domestically for the first time through the erosion tests using an annular flume. Four erosion tests were carried out for the deposit beds with different consolidation structures, which were obtained by consolidating the kaolinite slurries for a given time durations. Results of erosion tests showed that the bed shear strength ${\tau}_s$ increased with the consolidation time and bed depth. The erosion rate ${\epsilon}$ was also shown to be related well with the excess shear stress ${\tau}_b-{\tau}_s$ which was given by the difference between flow shear stress ${\tau}_b$ and bed shear strength ${\tau}_s$. While the logarithm of the erosion rate was linearly related with the excess shear stress as ${\tau}_b-{\tau}_s{\geq}0.1N/m^2$, however, the erosion rate decreased rapidly with it when ${\tau}_b-{\tau}_s{\leq}0.1N/m^2$. These erosion test results were also shown to be good enough to verify by comparing with the test results from previous studies and a new equation was suggested to describe the erosion rate more well in the region of ${\tau}_b-{\tau}_s{\leq}0.1N/m^2$.

정동진 해변 연안정비사업 설계사례

  • Park, Won-Gyeong
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2018.05a
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    • pp.214-216
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    • 2018
  • 강원도 정동진해변은 이상시 고파랑에 의한 연안침식피해가 상시 발생하고 있기 때문에 이에 대한 해안복원을 위하여, 정밀 조사, 실험을 통해 연안침식원인을 분석하고 해안 안정을 위한 근본적인 대책을 수립하였으며, 자연재해로 인한 연안침식 예방과 연안시설에 대한 지속적인 유지관리로 연안환경을 보전하고자 하였다. 이를 위하여 수중방파제, 돌제, 양빈 등의 대책을 마련하였으며, 제언하여 이후 퇴적환경 모니터링을 지속화 시킬 필요가 있을 것으로 판단된다.

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An Experimental Study on the Sediment Transport Characteristics Through Vertical Lift Gate (연직수문의 퇴적토 배출특성에 관한 실험적 연구)

  • Lee, Ji Haeng;Choi, Heung Sik
    • Ecology and Resilient Infrastructure
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    • v.5 no.4
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    • pp.276-284
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    • 2018
  • In order to analyze sediment transport characteristics of knickpoint migration, sediment transport length, and sediment transport weight through the under-flow type vertical lift gate, the hydraulic model experiment and dimensional analysis were performed. The correlations between Froude number and sediment transport characteristics were schematized. The multiple regression formulae for sediment transport characteristics with non-dimensional parameters were suggested. The determination coefficients of multiple regression equations appeared high as 0.618 for knickpoint migration, 0.632 for sediment transport length, and 0.866 for sediment transport weight. In order to evaluate the applicability of the developed hydraulic characteristic equations, 95% prediction interval analysis was conducted on the measured and the calculated by multiple regression equations, and it was determined that NSE (Nash-Sutcliffe Efficiency), RMSE (root mean square), and MAPE (mean absolute percentage error) are appropriate, for the accuracy analysis related to the prediction on sediment transport characteristics of kickpoint migration, sediment transport length and weight.