• Title/Summary/Keyword: Riverbed

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Numerical Simulation Analysis of Riverbed Changes Considering Riverbed Vegetation and River Bank Erosion in the Lower Reaches of the Seomjin River (섬진강 하류에서 하도식생과 하안침식을 고려한 하도변화 수치모의 분석)

  • David Oh;Chang-Lae Jang;Min Jin Ahn
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.480-480
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    • 2023
  • 본 연구에서는 섬진강 하류에서 2차원 흐름 모형인 Nays2DH 활용하여 섬진강댐 하류, 송정 구간의 식생밀도를 고려한 부등류 계산을 통해 하도의 수위 및 유속을 예측 모의하는 방법론을 제시하고 모의결과를 분석하였다. 현장조사를 실시하여 하도의 식생밀도를 산정하였으며. 식생밀도는 섬진강댐 하류 1.15 m-1, 송정 0.35 m-1로 조사되었다. 모의결과, 섬진강댐 하류에서 원심력에 의해 만곡부 외측에서 수심이 가장 깊게 나타났으며(최대 7.48 m), 최대유속도 동일지점에서 5.58 m/s로 형성되었고 하안침식으로 인한 하도변화 예측결과, 유속이 빠른 만곡부 외측에서 세굴되었으며, 내측에서는 퇴적되었고 만곡부가 끝난 지점부터 중앙사주가 발달하며 흐름이 하도 좌안으로 집중하여 세굴이 진행되었다. 송정구간에서 저수로 폭이 좁아지는No.40+200 지점에서 수심이 가장 깊으며(15.8 m), 유속은 하폭이 좁고 경사가 급해지는 No.39+800 지점에서 최대 7.97 m/s 로 나타났다. 하안침식으로 인한 하도변화 예측결과, 하폭이 넓어지는 No.40+800에서 유속이 감소하여 사주가 발달하였다. 본 연구에서는 섬진강 하류의 실제 식생밀도를 반영하여 수치모의를 하였기 때문에 흐름과 식생관리에 따른 실무적 대책방안 마련에 도움이 될 것으로 판단되며, 본 연구에서 활용한 분석방법과 결과들은 섬진강 유역의 하천관리 방안을 구축하기 위한 기초자료로 활용될 수 있을 것으로 기대된다.

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A Study on the Permeability Reduction Methods of the Riverbed Ground during Urban Railway Tunnel construction (도시철도터널공사 시 하저통과구간의 지반투수저하 공법에 대한 연구)

  • Kim, Joon-Jeong;Cho, Kook-Hwan;Lee, Jun-Seok
    • Proceedings of the KSR Conference
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    • 2007.11a
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    • pp.551-557
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    • 2007
  • This paper describes a study on the permeability reduction of the riverbed ground during urban railway tunnel construction. The research is mainly concentrated on the study of the grouting or injection methods among permeability reduction methods which can be adapted in the riverbed ground. Firstly, the various grouting methods are theoretically reviewed and compared based on the previous research papers and case study results. It is also evaluated the grouting methods in view of a safe construction of the river crossing railway tunnel. Baced on the literature review and previous construction data, the design technology of grouting methods considering the long term hydro-geological behaviour in the riverbed, is suggested. Two injection methods namely, Natural Durable Stabilizer(N.D.S) and Space-Multi Injaction Grouting(S.M.I) methods, are introduced as new approach methods which can be adopted to modify the riverbed ground. In order to evaluate the ground that grouted and modified by the N.D.S and S.M.I method, the pilot test programmes including the field and laboratory permeability tests, are carried out in the river crossing tunnel construction sites. The results obtained from pilot test programme, are also reviewed. In conclusion, the grouting efficiency of the S.M.I method using the non-alcalimeter silica sol is better than that of NDS method using cement. In addition, it hopes that the research results are contributed to develop the grouting design technology.

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Design Parameters of Riverbed Filtration Estimated from Geochemical Data (지구화학적 해석을 이용한 하상여과 설계인자에 대한 연구)

  • Cho, Kang-Hee;Kim, Bong-Ju;Ahn, Joong-Hyuk;Rhim, Ki-Sung;Choi, Nag-Choul;Park, Cheon-Young
    • The Journal of Engineering Geology
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    • v.23 no.4
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    • pp.493-502
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    • 2013
  • This study investigates the design parameters for riverbed filtration (RBF) based on the geochemistry of river water and groundwater. The study area consists of alluvium, and the area is readily affected by non-point sources of chemical contaminants in the surface environment; this is expected to affect the design parameters for RBF. River and groundwater samples were collected at three points along the river flow and at nine points along a transect normal to the river, respectively. The geochemical data indicate that the sources of individual chemical contaminants are industrial facilities and agricultural activity near the study area. In addition, The samples are mainly Ca-Na-$HCO_3$, Ca-Cl, and Ca-$HCO_3$-Cl type waters. The design parameters of RBF in the study area should consider K, $HCO_3$, $NO_3$, and Cl. We divided the study area into three regions based on the concentrations of stable nitrogen isotopes: Region A, the origin of the river and denitrification; Region B, denitrification in the flow direction of tributaries; and Region C, the origin of natural soil, sewage, and anthropogenic pollution.

Population Dynamics of Salix nipponica and S. koreensis during the Riverbed Sedimentation in the Wetland of the Nam-River (남강 습지에서 하상의 퇴적에 따른 선버들 (Salix nipponica)과 버들나무 (S. koreensis)의 개체군 동태)

  • Lee, Pal-Hong;Son, Sung-Gon;Kim, Cheol-Soo;Oh, Kyung-Hwan
    • Journal of Wetlands Research
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    • v.2 no.1
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    • pp.95-107
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    • 2000
  • The population dynamics of Salix nipponica and S. koreensis and the sediment factors were investigated in the wetland of the Nam-River. Chinju. Gyongsangnam-do, Korea. Each population of S. nipponica and S. koreensis was divided into four stages during the riverbed sedimentation: the first stage of establishment by S. nipponica, the second stage of coexistence by S, nipponica and S. koreensis, the third stage of dominated by S. koreensis, while S. nipponica was decreased during the increase of the water table in the sediment, and the fourth stage of the climax by S. koreensis, while S. nipponica almost died when the water table was twice to the third stage. Tree height, age, and density of S. nipponica were decreased, while S. koreensis increased along the sedimentation. And the composition of understory species showed no differences in each stage. The water table and the clay content affected on the distribution of Salix spp. in each stage, according to the PCA. The water table and the clay content increased during the sedimentation, while the other factors were almost the same.

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A Study on the Improvement of River Management System Based on Riverbed Change Data Management Program for Utilization of Advanced Bathymetry Data (선진화된 하천측량자료 활용 및 관리를 위한 하상변동 자료관리 프로그램 기반의 하도유지관리체계 개선에 관한 연구)

  • Jo, Myung-Hee;Kim, Kyung-Jun;Kim, Hyun-Jung
    • Journal of the Korean Association of Geographic Information Studies
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    • v.16 no.3
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    • pp.115-125
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    • 2013
  • The systematic management of river is difficult due to various environmental factors such as season and terrain deformation. Especially, river terrain are rapidly changing by natural and anthropogenic factors such as torrential rain during the summer and river development projects. Thus in this conditions, building the advanced river management system is an essential condition to support the ongoing management of survey data and to acquire data regularly through river terrain survey in order to maintain an active river. The need to build an efficient system have been increased through the enhancement and advancement of River Management Geographic Information Systems(RIMGIS). In this study, database design system and Riverbed Change Data Management Program was developed for systematic management of new river terrain survey data and the efficient use of river data dynamic changes. The key features are construction of river survey data, cross and longitudinal section monitoring and analysis of riverbed change data. Maintenance tasks which can be utilized in river-based architecture was constructed. The expected results are to be able to manage river systematically, and utilization of river topographic survey data efficiently for river maintenance work.

Riverbed Structures and Correlationships between Heavy Metals of Sediments in the Naktong River, Western Naktong River, and Suyoung Stream (낙동강, 서낙동강 및 수영천의 하상 구조와 저토중 중금속간의 상관성)

  • 황선출;이봉헌;박원우;이부용;박흥재
    • Journal of Korea Soil Environment Society
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    • v.3 no.1
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    • pp.45-54
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    • 1998
  • The riverbed structures and heavy metal concentrations of the sediments in the Naktong River, Western Naktong River, and Suyoung Stream were investigated, and then the correlationships between heavy metals were examined. Naktong River was the deepest among the three streams. The deepest and the shallowest sites were site 11(11.58m) and 9(3.35m) in Naktong River, site 7(6.25m) and 4(2.06m) in Western Naktong River, add site 8(2.89m) and 1(0.61m) in Suyoung Stream, respectively. The mean concentration of Cd(45.79ppm) was higher in the sediment of Western Naktong River than in other two streams and those of Pb(76.25ppm), Cr(48.13ppm), and Cu(77.50ppm) were higher in the sediment of Suyovng Stream than in other two streams. The analytical results for correlationships between heavy metals showed that Cu was highly correlated with Cr and Pb was very highly correlated with Cr and Cu in Naktong River. Cu was relatively highly correlated with Cd and Cr and Cr was highly correlated with Pb in Western Naktong River Cd was relatively higlky correlated with Pb and Cu and Cr and Cd, Pb, Cu and Pb, Cr were highly correlated in Suyoung Stream.

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Correlation Analysis between Sediment Particle Size and Number of Macromia daimoji (Endangered Species II) Nymphs in Naeseong Stream, Korea (내성천 퇴적물 입도와 노란잔산잠자리(멸종위기야생생물 II급) 약충 개체수와의 상관관계 분석)

  • Park, Jinyoung;Kwon, Hyeok Yeong;Jang, Myeong Seong;Cha, Jin Yeol;Lee, Jong Eun
    • Korean journal of applied entomology
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    • v.59 no.4
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    • pp.325-331
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    • 2020
  • Macromia daimoji nymphs (Endangered Species II) are known to inhabit the Naeseong Stream in Korea. In March 2019, we performed a correlation analysis between sediment particle size and the M. daimoji population using data collected from a 0.2-㎡ area at 37 sites in Naeseong riverbed. Particle size analysis showed different ratios of sediments in the riverbed: Coarse Sand (500-1,000 ㎛) 52.5%; Very Coarse Sand (1,000-2,000 ㎛) 25.6%; Medium Sand (250-500 ㎛) 17.2%; Fine Sand (125-250 ㎛) 3.1%; Very Fine Sand (63-125 ㎛) 1.0%; and Silt (less than 63 ㎛) 0.7%. The number of M. daimoji nymphs showed a positive correlation with Very Fine Sand and Fine Sand and a negative correlation with Coarse Sand, indicating that M. daimoji nymphs inhabit fine sand. These results can be used to monitor changes in the riverbed environment of Naeseong Stream to ensure the conservation of M. daimoji habitat.

Quantitive Evaluation of Reproducibility of Embankment for Full Scale Test through Statistical Analysis of Physical Properties of Soil (지반물성치 통계분석을 통한 실규모 시험용 제방축조의 재현성에 관한 정량적 평가)

  • Lee, Heemin;Moon, Junho;Kim, Minjin;Kim, Younguk
    • Journal of the Korean GEO-environmental Society
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    • v.23 no.6
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    • pp.19-23
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    • 2022
  • For the substantiation and verification of studies related to the construction of a levee using riverbed soil, real-scale levee construction and experimental studies are essential. One of the most important factors in the experimental study is the reproducibility of the multiple levees with the same initial conditions. Quantitative analysis of the reproducibility should be presented. In this study, a number of physical properties (specific gravity test, sieving test, liquid-plastic limit test, compaction test, on-site Density test) for multiple embankments built with fine-grained bed soil was obtained. The collected data then used to obtain the possibility of reproducing levee through statistical analysis to suggest a process of indicating a numeric initial condition of the real-scale test. As a result of statistical analysis to verify the aforementioned process, it was confirmed that it was possible to quantitatively evaluate the reproducibility of the construction under the same conditions of embankments. This is expected to be a basic data for a full-scale embankment test using riverbed soil including other soil based real-scale tests.

Changes in the Riverbed Landforms Due to the Artificial Regulation of Water Level in the Yeongsan River (인위적인 보 수위조절로 인한 영산강 하도 지형 변화)

  • Lim, Young Shin;Kim, Jin Kwan
    • Journal of The Geomorphological Association of Korea
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    • v.27 no.1
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    • pp.1-19
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    • 2020
  • A river bed which is submerged in water at high flow and becomes part of the river at low flow, serves as a bridge between the river and the land. The channel bar creates a unique ecosystem with vegetation adapted to the particular environment and the water pool forms a wetland that plays a very important role in the environment. To evaluate anthropogenic impacts on the river bed in the Middle Yeongsangang River, the fluvial landforms in the stream channel were analyzed using multi-temporal remotely-sensed images. In the aerial photograph of 2005 taken before the construction of the large weirs, oxbow lakes, mid-channel bars, point bars, and natural wetlands between the artificial levees were identified. Multiple bars divided the flow of stream water to cause the braided pattern in a particular section. After the construction of the Seungchon weir, aerial photographs of 2013 and 2015 revealed that most of the fluvial landforms disappeared due to the dredging of its riverbed and water level control(maintenance at 7.5El.m). Sentinel-2 images were analyzed to identify differences between before and after the opening of weir gate. Change detection was performed with the near infrared and shortwave infrared spectral bands to effectively distinguish water surfaces from land. As a result, water surface area of the main stream of the Yeongsangang River decreased by 40% from 1.144km2 to 0.692km2. A large mid-channel bar that has been deposited upstream of the weir was exposed during low water levels, which shows the obvious influence of weir on the river bed. Newly formed unvegetated point bars that were deposited on the inside of a meander bend were identified from the remotely sensed images. As the maintenance period of the weir gate opening was extended, various habitats were created by creating pools and riffles around the channel bars. Considering the ecological and hydrological functions of the river bed, it is expected that the increase in bar areas through weir gate opening will reduce the artificial interference effect of the weir.

Characteristics of Changes in DOC Concentration according to Concentrations of Organic Matter and Suspended Solids in the Nakdong River (낙동강에서 유기오염 및 SS 농도 변화에 따른 DOC 농도 변화의 특성)

  • Lee, Kyu-Yeol;Kim, Ju-Eon;Lee, Kwon-Chul;Lee, Kyung-Lak;Lee, In-Jung;Im, Tae-Hyo
    • Journal of Korean Society on Water Environment
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    • v.29 no.4
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    • pp.540-550
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    • 2013
  • Temporal increase of SS induces concentrations in various forms of organic matter including BOD, COD, TOC. Consequently, it causes hard to identify sources of water pollution during or after precipitation. The objective of this study is to investigate variations of DOC concentration caused by increase of flow and changes of external factors in river by comparing to SS concentration. In results, monitoring sites (e.g., Banbyeonchen) consisting of hard riverbed showed high correlation between SS and organic matters, except BOD. On the contrary, other sites (e.g., Naesungcheon) where riverbed consists of sand were found in a wide range of annual fluctuation in SS level, whereas these sites showed a narrow range in annual DOC fluctuation. In Gumhogang and Namgang, a lower correlation between SS and other factors was found most likely because of high concentration in organic matter. However, lower annual fluctuation values of DOC were observed in comparison to those of COD and TOC. Similar results were also confirmed in main river sites, Sangju and Mulgeum. In conclusion, DOC concentration is better indicator for monitoring organic matter which cannot be provided by BOD, COD, TOC in the Nakdong river basin.