• 제목/요약/키워드: cohesive bed material

검색결과 6건 처리시간 0.021초

점착성 하상에서의 교각형상에 따른 국부세굴 연구 (A Study of the Local Scour Considering the Pier Shapes in the Cohesive Bed)

  • 최계운;김기형
    • 한국수자원학회논문집
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    • 제31권5호
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    • pp.539-552
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    • 1998
  • 점착성 하상에 교각을 설치하는 경우, 사용되는 국부세굴심도 산정공식은 대부분이 비점착성 하상을 가진 수로에서의 실험결과에 근거를 두고 있기 때문에, 정확성에 대한 논란이 있다. 본 논문에서는, 점착성 하상재료를 가진 실험수로 내에 5개 형태의 교각을 설치하여 발생되는 세굴심도의 변화에 대하여 연구하였다. 실험결과는 Froude 수와 교각폭에 대한 수심의 변화에 따라 분석되었으며 기존공식에 의한 결과와도 비교하였다. 본 논문에서는 실험 결과를 바탕으로 점착성 하상에서 사용할 수 있는 교각형상계수를 제안하였다. 교각형상계수는 원형교각 주위에서 발생되는 세굴심도에 대한 타형태의 교각주위에서 발생되는 세굴심도의 비율로 나타내었으며, 수심에 따라 2단계로 구분하여 제안하였다. 1단계는 교각폭에 대한 수심이 1.2 이하인 경우로 방정식에 의하여 교각형상계수가 제안된 반면 2단계에서는 상수값으로 교각형상계수가 제안되었다. 본 논문에서 제안된 교각 형상 계수는 본 실험에서 사용된 하상재료와 유사한 점착성 하상에 설치된 교량의 교각 국부세굴심 산정에 효과적으로 이용될 것으로 판단된다.

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기포에 의한 점착성 퇴적물의 부유 (Resuspension of Cohesive Sediment under Presence of Gas Bubbles)

  • 김종우
    • 한국수자원학회논문집
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    • 제38권4호
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    • pp.313-321
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    • 2005
  • 항만 및 저수지에서 점착성 퇴적물의 침식 및 제거는 극도로 큰 에너지를 동반한 기계적인 배출방법으로 단지 가능할 수 있다. 소위 분사방법은 높은 전단력에도 불구하고 점착성 퇴적물을 움직이게 하는데 실효를 거두지 못하고 있다. 그러므로 본 연구는 다목적댐, 항만 그리고 호수 등에서 퇴적된 점착성 미립자들을 저감시키기 위해 기포 투입으로 침전된 미립자($Al_{2}O_3$)의 부유현상을 실험하는데 목적을 두고 있다. 실험을 통해 중요한 매개변수는 투입된 기포의 양과 침전된 퇴적물의 응고시간인 것을 알 수 있었다. 기포 투입없이 높은 pH값에서 빨리 침전되는 미립자 퇴적물(alumina)은 기포의 증가로 입자의 부유현상이 일어난다.

고유속 흐름에서 하상재료에 따른 세굴 영향 연구 (Effects of bed material on scouring under high-velocity flow conditions)

  • 김광수;정동규;김영도;박용성
    • 한국수자원학회논문집
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    • 제52권2호
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    • pp.133-139
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    • 2019
  • 본 연구는 하상재료의 종류와 유속에 따른 세굴변화에 대한 연구를 진행하였고, 유속, 구성방법 및 재료와 세굴에 대한 상관관계를 정의하여 호안 및 제방의 운용성을 검토하고자 실험을 통한 연구를 진행하였다. 본 연구의 실험에 사용된 재료는 제방에 사용되고 있는 재료로 모래, 황토를 이용하였다. 실험실규모 고속수로에서 다양한 계측장비들을 이용하여 유속의 변화에 따른 재료의 세굴을 측정하였다. 이를 통해 세굴 전 후의 재료변화를 수치적으로 분석하였다. 고유속흐름에서 하상재료에 따라 세굴의 정도를 비교 평가하여 안정성에 대한 연구도 진행하였다. 실험 결과 모래의 경우 응집력이 매우 약하여 1.0 m/s 이하에서도 40% 이상의 재료가 유실이 되고 황토의 경우 모래보다 유속이 빠른 2 m/s 이상에서도 6% 이하의 재료가 유실이 되었다. 재료가 유실된 이유중 하나는 강한 응집력으로 건조균열이 발생하여 세굴에 취약한 결과를 보였다. 본 연구에서는 이러한 건조균열의 발생부터 재료가 유실되는 현상을 제거하는 방법부터 재료에 대한 구성과 유실정도를 평가 하였다.

A Case Study of Sediment Transport on Trenched Backfill Granular and Cohesive Material due to Wave and Current

  • Choi, Byoung-Yeol;Lee, Sang-Gil;Kim, Jin-Kwang;Oh, Jin-Soo
    • Journal of Advanced Research in Ocean Engineering
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    • 제2권2호
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    • pp.86-98
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    • 2016
  • In this study, after the installation of a subsea pipeline, backfilling was performed in the trenched area. During these operations, a stability problem in the subsea pipeline occurred. The pipeline was directly impacted by environmental loading such as waves and currents that were caused by backfill material when scouring or sediment transport and siltation was carried out. Therefore, this study reviewed whether trenching was necessary, and conducted research into an indigenous seabed property that contains granular soil. A study of cohesive soil was also conducted in order to cross-correlate after calculating the values of the critical Shields parameter relevant to elements of the external environment such as waves and current, and the shear Shields parameter that depends on the actual shearing stress. In case of 1), sedimentation or erosion does not occur. In the case of 2), partial sedimentation or erosion occurs. If the case is 3), full sedimentation or erosion occurs. Therefore, in the cases of 1) or 2), problems in structural subsea pipeline stability will not occur even if partial sedimentation or erosion occurs. This should be reflected particularly in cases with granular and cohesive soil when a reduction in shear strength occurs by cyclic currents and waves. In addition, since backfilling material does not affect the original seabed shear strength, a set-up factor should be considered to use a reduced of the shear strength in the original seabed.

The Increment Of The Local Scour Depth At Piers By Constructing The Bridge Between Existing Bridges

  • Choi, Gye-Woon;Kim, Gee-Hyoung
    • Water Engineering Research
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    • 제1권2호
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    • pp.159-168
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    • 2000
  • In this paper, the increment of the local scour depth at piers by constructing the bridge between existing bridges is examined through the experiments in which 5 piers in the non-cohesive bed material in the experimental flume were installed. In the experiments the maximum distance of 25 times of the pier length and the maximum distortion width of 8 times of the pier width were utilized. Through the experimental studies, it was indicated that low flow, which can be characterized as the flow having low Froude numbers, the maximum bed configuration change is obtained when the piers are installed in the straight line in the flor direction without any distortion. However, In the high flow, which can be characterized as the flow having high Froude numbers, the maximum bed configuration change is obtained when the piers are installed with some distortion from the flow direction. The influence of the bed configuration by interaction between bridge piers is changed depending upon the Froude numbers, the distance between piers, and the distortion width between adjacent bridge piers. Also, because the scour patterns are affected by the bed configuration, the maximum scour should be increased by about 60% compared to that in a single pier if the interaction between bridge piers exists. It can be suggested that the maximum scour depth at bridge piers predicted by applying the existing equations should be increased if the interaction between bridge piers exist. Those cases are found when new bridges are constructed successively in the river in the urban area.

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Numerical analysis on erosion process of replenished sediment on rock bed

  • Takebayashi, Hiroshi;Yoshiiku, Musashi;Shiuchi, Makoto;Yamashita, Masahiro;Nakata, Yasusuke
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2011년도 학술발표회
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    • pp.17-17
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    • 2011
  • As a method of countermeasure to bed degradation and armoring phenomena of bed material in the downstream area of dam reservoirs, sediment augmentation (replenished sediment) has been carried out in many Japanese rivers. In general, bed of the replenished sediment site is composed of rocks, because the site is located in the downstream area of the dams and sediment supply is very small. Bed deformation process has been researched by many researchers. As a method of countermeasure to bed degradation and armoring phenomena of bed material in the downstream area of dam reservoirs, sediment augmentation (replenished sediment) has been carried out in many Japanese rivers. In general, bed of the replenished sediment site is composed of rocks, because the site is located in the downstream area of the dams and sediment supply is very small. Bed deformation process has been researched by many researchers. However, most of them can treat movable bed only and cannot be applied to the bed deformation process of sediment on rocks. If the friction angle between the sediment and the bed surface is assumed to be the same as the friction angle between the sediment and the sediment, sediment transport rate must be smaller without sediment deposition layer on the rocks. As a result, the reproduced bed geometry is affected very well. In this study, non-equilibrium transport process of non-cohesive sediment on rigid bed is introduced into the horizontal two dimensional bed deformation model and the model is applied to the erosion process of replenished sediment on rock in the Nakagawa, Japan. Here, the Japanese largest scale sediment augmentation has been performed in the Nakagawa. The results show that the amounts of the eroded sediment and the remained sediment reproduced by the developed numerical model are $56300m^3$ and $26800m^3$, respectively. On the other hand, the amounts of the eroded sediment and the remained sediment measured in the field after the floods are $56600m^3$ and $26500m^3$, respectively. The difference between the model and field data is very small. Furthermore, the bed geometry of the replenished sediment after the floods reproduced by the developed model has a good agreement with the measured bed geometry after the floods. These results indicate that the developed model is able to simulate the erosion process of replenished sediment on rocks very well. Furthermore, the erosion speed of the replenished sediment during the decreasing process of the water discharge is faster than that during the increasing process of the water discharge. The replenished sediment is eroded well, when the top of the replenished sediment is covered by the water. In general, water surface level is kept to be high during the decreasing process of the discharge during floods, because water surface level at the downstream end is high. Hence, it is considered that the high water surface level during the decreasing process of the water discharge affects on the fast erosion of the replenished sediment.

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