• 제목/요약/키워드: earth dam

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Earth Dam의 가상파괴로 인한 홍수파의 예측모형 (A Forecasting Model for the Floodwave Propagation from the Hypothetical Earth Dam-Break)

  • 이종태;한건윤;이정식
    • 대한토목학회논문집
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    • 제6권4호
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    • pp.69-78
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    • 1986
  • 본 연구에서는 earth dam의 파괴로부터 야기되는 유출수문곡선을 유도하고, 홍수파가 자연하도를 통하여 하류로 전파되어 나가는 과정을 추적하기 위하여 dynamic wave equation을 구성하고, 이 식을 Preissmann scheme과 double sweep법을 이용하여 해석하는 DBF(Dam Break Floodwave) 요형을 개발하였다. 본 모형을 Teton dam에 적용하여 댐 파괴로 인한 홍수파의 첨두수위, 청두유량, 도달시간 및 범람 범위 등을 계산하였고, 실측자료와의 비교검토를 통하여 본 모형의 적용성을 입증하였다.

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Earth Dam의 파괴로 인한 유출수문곡선의 해석 (An Analysis of Outflow Hydrograph Resulting from an Earth Dam-Break)

  • 한건연;이종태;이원환
    • 대한토목학회논문집
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    • 제5권2호
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    • pp.41-50
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    • 1985
  • 본(本) 연구(硏究)에서는 earth dam 파괴로 인한 유출수문곡선(流出水文曲線)의 해석(解析)을 실시(實施)하였다. Earth dam의 파괴에 대하여 이제까지 연구(硏究), 조사(調査) 파괴양상 및 저류방정식등(貯溜方程式等) 바탕으로 DBFW(Dam Break Flood Wave) 모형(模型)을 개발(開發)하였고 개발(開發)된 모형(模型)을 Teton과 Buffalo-Creek 댐에 적용(適用)하여 유출수문곡선(流出水文曲線)을 해석(解析)하였는데 그 결과(結果)는 유출수문곡선(流出水文曲線)의 형상(形狀)이나 첨두유량(尖頭流量) 및 첨두발생시간(尖頭發生時間) 등에 대하여 NWS의 조사결과(調査結果)와 매우 작은 편차(偏差)로 일치(一致)하고 있어 본(本) 모형(模型)의 적용성(適用性)을 입증(立證)하였다. 파괴양상이 유출수문곡선(流出水文曲線)에 미치는 영향은 저수지(貯水池)의 지형학적(地形學的) 특성(特性), 파괴부의 형태(形態), 파괴폭 및 파괴지속시간등이 큰 것으로 나타났으며, 국내 earth dam을 지형학적(地形學的) 특성(特性)에 의하여 4가지 type으로 구분(區分)하고 각각에 대한 수위(水位)-수표면적(水表面積) 관계식(關係式)을 도출(導出)한 후 임의의 댐 높이와 파괴지족시간에 대한 첨두유출량(尖頭流出量) 및 유출수문곡선(流出水文曲線) 구할 수 있는 도표(圖表)를 제시(提示)하였다.

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Optimal design of homogeneous earth dams by particle swarm optimization incorporating support vector machine approach

  • Mirzaei, Zeinab;Akbarpour, Abolfazl;Khatibinia, Mohsen;Siuki, Abbas Khashei
    • Geomechanics and Engineering
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    • 제9권6호
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    • pp.709-727
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    • 2015
  • The main aim of this study is to introduce optimal design of homogeneous earth dams with oblique and horizontal drains based on particle swarm optimization (PSO) incorporating weighted least squares support vector machine (WLS-SVM). To achieve this purpose, the upstream and downstream slopes of earth dam, the length of oblique and horizontal drains and angle among the drains are considered as the design variables in the optimization problem of homogeneous earth dams. Furthermore, the seepage through dam body and the weight of dam as objective functions are minimized in the optimization process simultaneously. In the optimization procedure, the stability coefficient of the upstream and downstream slopes and the seepage through dam body as the hydraulic responses of homogeneous earth dam are required. Hence, the hydraulic responses are predicted using WLS-SVM approach. The optimal results of illustrative examples demonstrate the efficiency and computational advantages of PSO with WLS-SVM in the optimal design of homogeneous earth dams with drains.

필타설치흙댐의 침수에 관한 연구 (A Study of the Seepage through Filter Installed Earth Dams)

  • 강관원;신방웅;이재기
    • 한국농공학회지
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    • 제19권2호
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    • pp.4417-4422
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    • 1977
  • This thesis is a result of theoretical and electrical experimental studies for the shape of Seepage on various Earth Dams. The decrement method of seepage through of water amount to earth Dam's was tested by means of experiment by the model constructed in the water tank. A study of the seepage through earth Dam's is necessary for a satisfactory of the same. An attempt was made in these investigations to study the problem of the seepage through homogeneous earth dams with filters located near the axis of the dam and filters extending in to upstream portion of the dam by the electrical analogy method. The experimental results were at variance with the graphical solution given by A Casagrande method. Some of the results were checked by relaxation method and by the circle criterion for drawing flow nets.

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Three dimensional seismic deformation-shear strain-swelling performance of America-California Oroville Earth-Fill Dam

  • Karalar, Memduh;Cavusli, Murat
    • Geomechanics and Engineering
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    • 제24권5호
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    • pp.443-456
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    • 2021
  • Structural design of the vertical displacements and shear strains in the earth fill (EF) dams has great importance in the structural engineering problems. Moreover, far fault earthquakes have significant seismic effects on seismic damage performance of EF dams like the near fault earthquakes. For this reason, three dimensional (3D) earthquake damage performance of Oroville dam is assessed considering different far-fault ground motions in this study. Oroville Dam was built in United States of America-California and its height is 234.7 m (770 ft.). 3D model of Oroville dam is modelled using FLAC3D software based on finite difference approach. In order to represent interaction condition between discrete surfaces, special interface elements are used between dam body and foundation. Non-reflecting seismic boundary conditions (free field and quiet) are defined to the main surfaces of the dam for the nonlinear seismic analyses. 6 different far-fault ground motions are taken into account for the full reservoir condition of Oroville dam. According to nonlinear seismic analysis results, the effects of far-fault ground motions on the nonlinear seismic settlement and shear strain behaviour of Oroville EF dam are determined and evaluated in detail. It is clearly seen that far-fault earthquakes have very significant seismic effects on the settlement-shear strain behaviour of EF dams and these earthquakes create vital important seismic damages on the swelling behaviour of dam body surface. Moreover, it is proposed that far-fault ground motions should not be ignored while modelling EF dams.

흙댐의 다짐밀도가 안정도에 미치는 영향에 관한 연구 (A Study on the Effect of the Compaction Density on the Stability of Earth Dam)

  • 윤충섭;김시원
    • 한국농공학회지
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    • 제31권1호
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    • pp.82-95
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    • 1989
  • This study was carried out for the stability analysis of earth dam by the variation of compaction density. The test samples were taken from five kinds of soil used for banking material and the degree of compaction for this samples were chosen 100, 95, 90, 85, and 80 percent. The stability problems were analysed by the settlement and camber( extra banking) of dam, strength parameter and dam slope, and coefficient of permeability and seapage flow through dam body. The results of the stability analysis of earth dam are as follows. 1. The more the fine particle increases and lower the compaction degree becomes, the lower the preconsolidation load becomes but the compression index becomes higher. 2. Sixty to eighty percent of settlement of dam occurs during the construction period and the settlement ratio after completion of dam is inversly proportional to the degree of compaction. 3. The camber of dam has heigher value in condition that it has more fine particle(N) and heigher dam height(H) with the relation of H= e(aN-bH-e). 4. The cohesion(C) decreases in proportion to compaction degree(D) and fine particle(N) with the relation of C= aD+ bN-c, but the internal friction angle is almost constant regardless of change of degree of compaction. 5. In fine soil, strength parameter from triaxial compression test is smaller than that from direct shear test but, they are almost same in coarse soil regardless of the test method. 6. The safety factor of the dam slope generally decreases in proportion to cohesion and degree of compaction but, in case of coarse soil, it is less related to the degree of compaction and is mainly afected by internal friction angle. 7. Soil permeability(K) decreases by the increases of the degree of compaction and fine particle with relation of K=e(a-bl)-cN) 8. The more compaction thickness is, the less vertical permeability (Kv) is but the more h6rzontal permeability (KH) is, and ratio of Kv versus KH is largest in range from 85 to 90 percent of degree of corn paction. 9. With the compaction more than 85 percent and coefficient of permeability less than ${\alpha}$X 10-$^3$cm/sec, the earth dam is generally safe from the piping action.

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EARTH DAM의 비탈면 기울기 결정에 관한 연구 (A Study on Side Slope Determination of Earth Dam)

  • 이원희;김시원
    • 한국농공학회지
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    • 제23권1호
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    • pp.86-102
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    • 1981
  • The soil test data of 28 earth dams, scheduled to be constructed in Kore3, were selected for this study. The safety factors of their side slops were computed using Fellenius' "slice Method" by computer. The results summarized in this study are as follows; 1. Dam sections can be easily determined by fig.10 without a time consuming trial and error calculations of assumed sections. 2. For the economical design of earth dam sections, it was found that more cohesive soil was suitable for lower dams(dam height less than 25m) and soils with a higher friction angle was better for higher dams 3. In the case that used soil materials have the same Internal friction angle, side slope increase was almost same. 4. The relationship between side slope and friction angle was found as log.S=a tan ø+b (Fig. 7) 5. The relationship between side slope and cohesion (c) was also found as log. S=a c+b (Fig. 8) 6. The change of safety factors due to the change of central core materials was very little (Table-2) 7. The decrease of safety factors according to the unit weight increase of embankment materials was negligible. 8. In general the relationship between the wet unit weight and the saturated unit weight was r sat = (rt)$^2$+0. 140. This study will contribute to the determination of economic and safe planning and designing of earth dams, embankments and cutting side slopes.

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필댐 안전관리를 위한 계측기 중요도의 평가기법 (Evaluation Technique of Importance of Monitoring Systems for Earth and Rockfill Dam Safety)

  • 이종욱;김재홍;오병현
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 춘계 학술발표회
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    • pp.874-882
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    • 2009
  • Continuous monitoring of dam performance is essential to earth and rockfill dams safety because it has to be guaranteed for safety during construction period of course and from initial impounding to a long term maintenance period of dam. Among the 31 dams managed by Kwater at present, the proportion of dams being over 20 years after completion of construction is 42% and it is estimated that the loss rate of monitoring devices will be increase as times. Monitoring devices would be impossible to repair since those are mostly installed in the dam body and foundation. If repairing of monitoring devices is possible, the expenditure will be expensive. Therefore reasonable decision making for abandonment, repair and alternation for loss of monitoring devices would be needed through the establishment of key instrument for earth and rockfill dam safety. In this study the process of monitoring for safety were modeled by failure modes of dams, adverse conditions related to failure mode, indicators of adverse condition and monitoring devices The relationship between failure mode and monitoring devices were systematically analyzed and established and evaluation technique for qualifying the importance of monitoring devices were presented.

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Transient stochastic analysis of nonlinear response of earth and rock-fill dams to spatially varying ground motion

  • Haciefendioglu, Kemal
    • Structural Engineering and Mechanics
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    • 제22권6호
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    • pp.647-664
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    • 2006
  • The main purpose of this paper is to investigate the effect of transient stochastic analysis on nonlinear response of earth and rock-fill dams to spatially varying ground motion. The dam models are analyzed by a stochastic finite element method based on the equivalent linear method which considers the nonlinear variation of soil shear moduli and damping ratio as a function of shear strain. The spatial variability of ground motion is taken into account with the incoherence, wave-passage and site response effects. Stationary as well as transient stochastic response analyses are performed for the considered dam types. A time dependent frequency response function is used throughout the study for transient stochastic responses. It is observed that stationarity is a reasonable assumption for earth and rock-fill dams to typical durations of strong shaking.

손상된 흙댐 코어의 보수.보강을 위한 CGS 공법의 적용성 (Applicability of CGS for Remediation and Reinforcement of Damaged Earth Dam Core)

  • 천병식;최중근
    • 한국지반공학회논문집
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    • 제19권6호
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    • pp.325-334
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    • 2003
  • 댐체 코어부에 발생한 수압파쇄와 이로 인한 유로의 발달 및 누수량 증대 등의 문제점을 구조적으로 차단하여 댐의 안정성을 확보하고, 장기적으로 댐을 유지관리 운영하는 데에 문제점이 없도록 댐 코어부를 보수.보강한다는 것은 쉬운 일이 아니다. 본 연구에서는 손상된 흙댐 코어의 보수.보강을 위한 CGS 공법(Compaction Grouting System)의 적용성을 천공과 주입과정에 대한 고찰과 그 결과에 대하여 검토하고, 현장에서의 계측치와 FEM 해석 결과의 비교.검토를 통하여 확인하였다. 현장 계측 결과, 공정이 진행되면서 선단 압력은 증가하고 주입량은 감소됨에 따라 느슨한 댐 코어의 공극이 채워진 것으로 나타났으며 동일 수위에 대하여 누수량 및 탁도는 보강 후의 누수량과 탁도가 모두 감소하였으며, FEM 해석 결과 역시 보강으로 인하여 투수계수가 감소하였다. 본 연구에서 CGS 공법을 통하여 기존 댐 코어재료 특성의 변화를 최소화하면서 느슨한 공극을 채워 투수계수와 누수량을 감소시켜서 댐 코어의 차수성을 향상시킬 수 있음을 확인하였다.