• Title/Summary/Keyword: 파압분포

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Numerical Simulation of Wave Pressure Acting on Caisson and Wave Characteristics near Tip of Composite Breakwater (for One Directional Irregular Waves) (혼성방파제 케이슨에 작용하는 파압과 선단 주변에서 파랑특성에 관한 수치모의(일방향불규칙파에 대해))

  • Jun, Jae-Hyoung;Choi, Goon-Ho;Lee, Kwang-Ho;Kim, Do-Sam
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.32 no.6
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    • pp.531-552
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    • 2020
  • In the previous study, both the wave characteristics at the tip of composite breakwater and on caisson were investigated by applying olaFlow numerical model of three-dimensional regular waves. In this paper, the same numerical model and layout/shape of composite breakwater as applied the previous study under the action of one directional irregular waves were used to analyze two and three-dimensional spatial change of wave force including the impulsive breaking wave pressure applied to trunk of breakwater, the effect of rear region, and the occurrence of diffracted waves at the tip of caisson located on the high crested rubble mound. In addition, the frequency spectrum, mean significant wave height, mean horizontal velocity, and mean turbulent kinetic energy through the numerical analysis were studied. In conclusion, the larger wave pressure occurs at the front wall of caisson around the still water level than the original design conditions when it generates the shock-crushing wave pressure in three-dimensional analysis condition. Which was not occurred by two-dimensional analysis. Furthermore, it was confirmed that the wave pressure distribution at the caisson changes along the length of breakwater when the same significant incident wave was applied to the caisson. Although there is difference in magnitude, but its variation shows the similar tendency with the case of previous study.

Linear and Nonlinear Wave Pressure Distributions Acting on Vertical Caisson of Large Size in 3-Dimensional Wave Fields (3차원파동장에 있어서 대형연직케이슨에 작용하는 선형 및 비선형의 파압분포특성에 관한 연구)

  • 김도삼;신동훈;이봉재
    • Journal of Ocean Engineering and Technology
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    • v.15 no.3
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    • pp.114-119
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    • 2001
  • Goda formula (Goda, 1973) has been used in the determination of wave pressures acting on a large size caisson such as the pier of the cable stayed bridge at sea. Goda formula, however, is to evaluate the wave pressures acting the infinite vertical caisson of composite breakwater so that it can`t be applied to a large caisson with finite width and length because of diffraction effects. In the present study, three dimensional nonlinear frequence domain method based on perturbation method and boundary integral method is applied to the computation of the linear and nonlinear wave pressures acting on the front of a large size caisson under the variation of its width and length, and angle of incident wave. The numerical results are compared to Goda\`s ones, and then the characteristics of wave pressure distributions acting on a large size caisson are discussed.

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Pressure Distribution and Caisson Stability of Perforated Breakwaters (유공 방파제의 파압분포특성과 안정도)

  • 전인식;박우선;이달수
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.5 no.2
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    • pp.66-75
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    • 1993
  • Hydraulic experiments were performed in order to gain an insight into the quantitative differences between the perforated wall caisson and its solid wall counterpart in the local pressure distribution and caisson stability. The results showed that the wave forces acting on local walls were smaller in the perforated wall caisson than in the solid wall caisson. For the caisson stability, the critical weights of the perforated wall caisson also turned out to be smaller than those of the solid wall caisson. The Phenomenon was attributed to the dual effects inherent to the perforated wall caisson, which are the decrease of total horizontal force and the phase difference between the total horizontal and vertical forces.

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The Experimental Study of Distribution Characteristics of Lift-force Acting under Pier Deck (잔교상판(棧橋床板)에 작용(作用)하는 양압력(揚壓力) 분포특성(分布特性)에 관한 실험적(實驗的) 연구(硏究))

  • Park, Sang Kil;Park, Hyun Soo;Ahn, Ik Seong;Kim, Woo Saeng
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.29 no.1B
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    • pp.83-90
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    • 2009
  • This study describes the characteristics of distribution of lift-force acting under pier deck through physical experiment. The shape of peak wave pressure was sharp when compressed air existed but was not sharp without that. Values of lift-force was different between edge point and center point in the same block. Distribution of lift-force was expressed differently owing to dimensionless of deck length (l/L), wave steepness (H/L), clearance height per wave height (D/H). The dimensionless factor of D/H affected on the lift-force the clearance between still water surface and decks. This decided the maximum of lift-force. In the case of the same values of D/H, the lift-force are changed by the wave steepness (H/L). Because (D/H) become smaller as the wave steepness (H/L) is increased the height of decks must be decided with the condition which don't have the clearance with $D_{max}$ for the stable design of deck of pier. Effect of reducing lift force was greater in the on-shore than the off-shore according to compressed air existence. This researches points out that design of deck should retain compressed air in order to reduce wave lift force.

The Experimental Study of Distribution Life-Force Impact on Piles and Landing Pier (잔교식 안벽의 상부와 Pile에 작용하는 파압분포에 관한 실험적 연구)

  • Park, Sang-Kil;Kim, Ki-Hyun;Kim, Woo-Seang;Park, Byung-Yul;Kang, Deok-Hun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2006.05a
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    • pp.552-556
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    • 2006
  • 항만건설에 있어서 항만의 내부시설 중에서 무엇보다도 가장 중요한 시설물은 선박을 안전하게 접안시켜 하역할 수 있는 안벽시설물이다. 안벽구조 형식의 결정은 항만의 이용목적 등에 따라서 달라지지만 항만의 건설입지조건 등에 의해서도 달라진다. 안벽구조형식 중에서 잔교 식 안벽은 무엇보다도 단기간에 건설이 용이하여 지금까지 각국에서 널리 사용되어 왔고 장래에도 이용도가 증가되리라 생각한다. 최근에는 해안선을 이용한 위락시설이 건설되면서 잔교 식 안벽구조물을 설치하여 보조시설물로 이용하는 경우가 많다. 과거에 설계되어 잔교를 설계할 경우는 일반적으로 항내의 정온이 잘 유지되는 경우에 대해서 설치하는 경우가 많기 때문에 파랑에 의한 반사율과 잔교 상부에 작용하는 양압력을 고려해야할 필요성이 거의 없었다. 그러나 최근에는 태풍이 내습할 경우 기존의 항내로 높은 파랑이 침입하는 경우가 발생하고 있어 항내에서도 잔교의 파괴로 인한 자연재해가 대형화되는 경우가 발생하고 있다. 또, 처음부터 안벽을 설계할 때에 대형화의 잔교 식 안벽구조물을 설치하는 경우도 있다. 이런 잔교 식 안벽 구조물을 잔교의 상부 판에 작용하는 양압력 분포와 잔교 전면의 반사율 등이 구조물의 유지관리 등에 미치는 영향이 매우 크기 때문에 반사율 검토와 양압력을 고려한 설계가 필요하다. 본연구의 대상은 일정 해역에 잔교 식 안벽을 설계하고자 할때 최적의 안벽 설계가 될 수 있도록 수리모형실험을 실시하여 구조물의 안전과 항내정온에 기초가 되는 자료를 도출하고자 하였다. 따라서 본 수리모형실험으로 인한 연구는 잔교 식 안벽에 대한 반사율과 상부에 작용하는 양압력, 잔교말뚝(pile)에 작용하는 수평압력을 검토하여 잔교 식 안벽 설계에 기초자료를 제공하고자 한다. 혈청을 이용한 동결보존을 대체할 수 있을 것으로 생각된다.지에 더해주면 세포의 증식이 개선될 것이다. 그래서 몇 가지 첨가물을 이용해 세포의 증식력에 변화가 나타나는지 알아보았다. 첨가물을 이용한 실험에서 IGF-I의 경우 장기간 배양에서 세포의 수를 안정적으로 유지하고 계대 횟수를 증가시키는 효과를 보였다. 이는 IGF-I이 어느정도 세포의 증식을 유지시켜주는 역할을 하기 때문인 것으로 생각된다. 무혈청 배지에서 비적응 CHO 세포의 계대 배양에 한계가 있는 것은 세포주기가 멈추기 때문인 것으로 생각된다. 세포주기가 멈추는 growth factor와 같이 세포의 증식을 지속적으로 유도할 수 있는 물질이 무혈청 배지에서는 부족하기 때문인 것으로 생각되고, IGF-I과 같은 첨가물을 통해 극복할 수 있는 문제라고 여겨진다.관점과 주거교육가치관 요소와의 관계를 알아본 결과, 전통적 관점은 주거교육가치관 요소 중 오직 주거관리적 요소와 관계가 있었으나 그 정도는 낮으며 실천적 관점과 구조적 관점은 주거가치관의 각 요소에 따라 약간 다르기는 했으나 주로 보통의 관계를 보였다.군 순으로 높게 관찰되었다. 이상의 결과를 종합할 때, 임상에서 니켈-티타늄 합금 와이어에 굴곡을 부여하기 위해 열처리하는 경우 초탄성 특성은 유지될 수 있으나, 부하-변위 곡선의 상방 증가가 나타나므로, 와이어에 의한 교정력이 증가될 수 있음에 유의하여야 한다. $day^{-1}$인 인공습지), scenario 2(면적 4.2ha인 저류지)가 각각 연평균 6.9%, 4.8%, 7.1%의 감소를 보였다. TN은 4.7%, 3.4%, 13.4%의 삭감율을 나타내었으며, TP는 5.6%, 3.9%, 7.3%의 삭감율을 나타내었다. 본 연구에서는

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Wave Pressure and Wave Height Distribution around Seawall Structure Constructed by an Array of TSP Circular Piles (TSP 원형 파일 배열로 조성된 호안 구조물에 작용하는 파압 및 파고 분포)

  • Hyun-Ju Han;Woo-Sik Kim;Il-Hyoung Cho
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.36 no.4
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    • pp.129-137
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    • 2024
  • An analytic solution for the interaction between an array of circular piles made by joining trapezoid steel pipes (TSP) and waves was obtained using an eigenfunction expansion method. First, an analytic model for the wave scattering of multiple piles fixed at arbitrary positions was derived, and then a simplified model was obtained assuming that an infinite array of identical piles were deployed perpendicular to the propagating direc- tion of incident waves. A regular wave experiment was conducted using an experimental model with a scale ratio of 1/100 in a two-dimensional wave tank to verify the analytic solutions. The analytic results and experimental results were qualitatively consistent with each other. Using a developed analytic model, we examined the wave force on the multiple piles and the wave deformation in front of the arrayed piles. The period for the installation is greatly reduced as the TSP pile can be prefabricated in a factory. In particular, it is possible to install at the soft seabed. A seawall structure using arrayed TSP piles will be an ideal complement for a concrete seawall in future.

Numerical Simulation of Interaction between Composite Breakwater and Seabed under Regular Wave Action by olaFlow Model (olaFlow 모델에 의한 규칙파작용 하 혼성방파제-해저지반의 상호작용에 관한 수치시뮬레이션)

  • Bae, Ju-Hyun;Lee, Kwang-Ho;Jung, Uk Jin;Kim, Do-Sam
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.30 no.6
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    • pp.270-285
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    • 2018
  • The behavior of wave-induced pore water pressure inside the rubble mound and seabed, and the resultant structure failure are investigated, which are used in design of the composite breakwater representing the coastal and harbor structures. Numerical simulation techniques have been widely used to assess these behaviors through linear and nonlinear methods in many researches. While the combination of strongly nonlinear analytical method and turbulence model have not been applied yet, which can simulate these characteristics more accurately. In this study, olaFlow model considering the wave-breaking and turbulent phenomena is applied through VOF and LES methods, which gives more exact solution by using the multiphase flow analytical method. The verification of olaFlow model is demonstrated by comparing the experimental and numerical results for the interactions of regular waves-seabed and regular waves-composite breakwater-seabed. The characteristics of the spatial distributions of horizontal wave pressure, excess-pore-water pressure, mean flow velocity and mean vorticity on the upright caisson, and inside the rubble mound and seabed are discussed, as well as the relation between the mean distribution of vorticity size and mean turbulent kinetic energy. And the stability of composite breakwater are also discussed.

Consideration on Ways to Reduce a Edge Pressure at Bottom Plate of Caisson Breakwaters (케이슨 방파제 바닥판 단부 지지력 저감방안에 대한 고찰)

  • Park, Woo-Sun;Lee, Byeong Wook
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.32 no.5
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    • pp.331-339
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    • 2020
  • In this study, ways to reduce the edge pressure at the bottom plate of the caisson breakwater were considered. The water depth, freeboard, design wave height and period, and the location of the center of gravity on the super-structure of the breakwater were selected as key design variables that influence the edge pressure, and analyzed how the edge pressure changes according to the change of this key variables. The pressure distribution formulae suggested in the design standard was applied for the calculation of design wave forces. Based on the wave forces, the required effective self-weight of the super-structure and the minimum width of the caisson were determined to have a safety factor of 1.2 against sliding and overturning. From the results, it was found that the edge pressure rapidly increased as the water depth increased, and could exceed the allowable bearing capacity when it reached a certain water depth which is 20 m within the analysis conditions. It was also confirmed that the edge pressure gradually increased linearly as the freeboard increased, but decreased with the increase of the wave height and period. This edge pressure could be significantly reduced up to more than 20% by moving the center of gravity of the super-structure to the seaside, which is 5% of the caisson width. Based on the analysis results and the recently conducted research results, a method was proposed to reduce the edge pressure that can be used in the design.

Proposal of Sliding Stability Assessment Formulas for an Interlocking Caisson Breakwater under Wave Forces (파랑하중에 대한 인터로킹 케이슨 방파제의 미끌림 안정성 평가식 제안)

  • Park, Woo-Sun;Won, Deokhee;Seo, Jihye
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.29 no.2
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    • pp.77-82
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    • 2017
  • Recently, the possibility of abnormal waves of which height is greater than design wave height have been increased due to the climate change, and therefore it has been urgent to secure the stability for harbor structures. As a countermeasure for improving the stability of conventional caisson breakwaters, a method has been proposed in which adjacent caissons are interlocked with each other to consecutively resist the abnormal wave forces. In order to reflect this research trend, the reduction effect of the maximum wave force resulted from introducing a long caisson has been presented in the revision to the design criteria for ports and fishing harbors and commentary. However, no method has been proposed to evaluate the stability of interlocking caisson breakwater. In this study, we consider the effect of the phase difference of the oblique incidence of the wave based on the linear wave theory and apply the Goda pressure formula for considering design wave pressure distribution in the vertical direction. Sliding stability assessment formula of an interlocking caisson breakwater is proposed for regular, irregular, and multi-directional irregular wave conditions.