• 제목/요약/키워드: Three-dimensional hydraulic model

검색결과 173건 처리시간 0.023초

경사식방파제의 피복재 안정성에 대한 비교 실험 (Hydraulic Model Test for Armor Stability of Rubble-Mound Breakwaters)

  • 이종인
    • 한국해안해양공학회지
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    • 제15권4호
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    • pp.249-258
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    • 2003
  • 본 연구에서는 사석, cube및 tetrapod를 대상으로 불규칙파를 적용하여 경사식방파제의 피복재 안정성에 대한 2차원 실험을 수행하였다. 파복재 중량산정식으로는 Hudson식과 van der Meer식을 대상으로 하였으며, Hudson식은 규칙파, van der Meer식은 불규칙파를 적용한 실험으로부터 얻어진 식이다. 본 연구의 목적은 실험결과를 이용하여 Hudson식과 van der Meer식을 비교 검토하는 것이다

조류와 충격파가 혼재한 해역의 3차원적 수리특성 분석 (Identifying Three-Dimensional Hydraulic Characteristics of the Sea Region Under Combined Tidal Current and Shock Waves)

  • 강민구
    • 대한토목학회논문집
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    • 제29권4B호
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    • pp.339-346
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    • 2009
  • 본 연구에서는 조류와 충격파가 혼재한 해역의 흐름 특성을 3차원 수치모형(Princeton Ocean Model, POM)을 사용하여 파악하였다. 1994년에 완공된 시화방조제의 끝막이 공사 동안 개방구간과 그 주변 해역의 흐름을 모의하기 위하여 POM 모형을 선정하였다. 모의결과는 큰 내 외수위차와 적은 통수단면적으로 인해 발생한 충격파가 창조시와 낙조시에 각각 방조제 내측과 외해로 전파되는 것으로 나타났다. 또한, 충격파 주변에서 흐름분리가 발생하며, 충격파가 개방구간을 통과한 후 더 넓은 지역으로 퍼짐에 따라 충격파의 조류에 대한 영향은 약화되는 것으로 나타났다. 흐름의 종방향 유속분포는 충격파의 영향을 받는 것으로 밝혀졌다. 또한, 낙조시 개방구간 전방에서 수위강하가 발생했으며, 내외수위차가 가장 큰 모의조건에서는 도수현상이 발생하였다. 따라서 충격파가 지배적인 해역의 흐름 특성을 파악하기 위해서는 3차원적 수리해석이 필요하며, 해석결과는 대상해역에서 수행되는 해상공사 및 시설물 관리에 필요한 정보를 제공할 것으로 기대된다.

Verification and improvement of dynamic motion model in MARS for marine reactor thermal-hydraulic analysis under ocean condition

  • Beom, Hee-Kwan;Kim, Geon-Woo;Park, Goon-Cherl;Cho, Hyoung Kyu
    • Nuclear Engineering and Technology
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    • 제51권5호
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    • pp.1231-1240
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    • 2019
  • Unlike land-based nuclear power plants, a marine or floating reactor is affected by external forces due to ocean conditions. These external forces can cause additional accelerations and affect each system and equipment of the marine reactor. Therefore, in designing a marine reactor and evaluating its performance and stability, a thermal hydraulic safety analysis code is necessary to consider the thermal hydrodynamic effects of ship motion. MARS, which is a reactor system analysis code, includes a dynamic motion model that can simulate the thermal-hydraulic phenomena under three-dimensional motion by calculating the body force term included in the momentum equation. In this study, it was verified that the dynamic motion model can simulate fluid motion with reasonable accuracy using conceptual problems. In addition, two modifications were made to the dynamic motion model; first, a user-supplied table to simulate a realistic ship motion was implemented, and second, the flow regime map determination algorithm was improved by calculating the volume inclination information at every time step if the dynamic motion model was activated. With these modifications, MARS could simulate the thermal-hydraulic phenomena under ocean motion more realistically.

극한지 자원이송망 볼밸브 수치모델 및 성능평가장치 개발 (Development of Numerical Model and Experimental Apparatus for Analyzing the Performance of a Ball Valve used for Gas Pipeline in Permafrost Area)

  • 이상문;장춘만
    • 한국수소및신에너지학회논문집
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    • 제25권5호
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    • pp.550-559
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    • 2014
  • Hydraulic performance of the 1 inch ball valve have been analyzed based on the three-dimensional Reynolds-averaged Navier-Stokes analysis and an experiment. The experimental test rig of the 1 inch ball valve has been developed to investigate pressure drop for the 1 inch ball valve. The numerical model, which has reliability and effectiveness, has been constructed through the grid dependency test and validation with the results of the experiment. Shear stress transport turbulence model has been used to enhance an accuracy of the turbulence prediction in the pipeline and ball valve, respectively. Effects of the ball valve angle on the flow characteristics and friction performance have been evaluated.

이어도 종합해양과학기지에 대한 설계파력의 검토 I: 삼차원 수리모형실험 (Investigation of the Design Wave Forces for Ear-Do Ocean Research Station I: Three Dimensional Hydraulic Model Tests)

  • 전인식;심재설;최성진
    • 한국해안해양공학회지
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    • 제12권4호
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    • pp.157-167
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    • 2000
  • 한국해양연구소는 1998년에 이어도 종합해양과학기지의 기본설계를 수행한 바 있으며 심해 설계파에 Morison 식과 Stream function 이론을 적용하여 설계파력을 결정한 바 있다. 본 연구에서는 삼차원 수리모형실험 통하여 이어도 해역에서의 파랑전파를 모의하였으며, 구조물의 파력 및 Air gap를 계측하고 이들을 SACS 프로그램의 계산치와 비교함으로써 기본설계 값들의 타당성을 검토하였다. 그 결과, 시도된 4개의 심해파향 중에서 SSW, S, SE계열의 파향에 대해서는 계측치가 SACS 계산치 보다 작게 나타났다. 그러나, 유일하게 구조물에 미치기 전에 쇄파되는 NNW계열의 파향에서는 전반적으로 SACS 계산치를 상회하였으며, 그방향성 흐름과 파가 복합되어 있는 경우와 매우 유사한 파력변화를 보여주었다. 구조물의 Air gap은 모든 심해파향에 대하여 계측치가 기본설계치보다 작은 것으로 나타났다.

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Analysis of torsional-bending FGM beam by 3D Saint-Venant refined beam theory

  • Guendouz, Ilies;Khebizi, Mourad;Guenfoud, Hamza;Guenfoud, Mohamed;El Fatmi, Rached
    • Structural Engineering and Mechanics
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    • 제84권3호
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    • pp.423-435
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    • 2022
  • In this article, we present torsion-bending analysis of a composite FGM beam with an open section, according to the advanced and refined theory of 1D / 3D beams based on the 3D Saint-Venant's solution and taking into account the edge effects. The (initially one-dimensional) model contains a set of three-dimensional (3D) displacement modes of the cross section, reflecting its 3D mechanical behaviour. The modes are taken into account depending on the mechanical characteristics and the geometrical form of the cross-section of the composite FGM beam. The model considered is implemented on the CSB (Cross-Section and Beam Analysis) software package. It is based on the RBT/SV theory (Refined Beam Theory on Saint-Venant principle) of FGM beams. The mechanical and physical characteristics of the FGM beam continuously vary, depending on a power-law distribution, across the thickness of the beam. We compare the numerical results obtained by the three-beam theories, namely: The Classical Beam Theory of Saint-Venant (Classical Beam Theory CBT), the theory of refined beams (Refined Beam Theory RBT), and the theory of refined beams, using the higher (high) modes of distortion of the cross-section (Refined Beam Theory using distorted modes RBTd). The results obtained confirm a clear difference between those obtained by the three models at the level of the supports. Further from the support, the results of RBT and RBTd are of the same order, whereas those of CBT remains far from those of higher-order theories. The 3D stresses, strains and displacements, obtained by the present study, reflect the 3D behaviour of FGM beams well, despite the initially 1D nature of the problem. A validation example also shows a very good agreement of the proposed models with other models (classical or higher-order beam theory) and Carrera Unified Formulation 1D-beam model with Lagrange Expansion functions (CUF-LE).

3차원 단열망모델링을 위한 단열수리인자 도출 (Determination of the Fracture Hydraulic Parameters for Three Dimensional Discrete Fracture Network Modeling)

  • 김경수;김천수;배대석;김원영;최영섭;김중렬
    • 대한지하수환경학회지
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    • 제5권2호
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    • pp.80-87
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    • 1998
  • 지하수의 유동로가 시설의 성능에 미치는 영향이 큰 방사성폐기물처분시설에서는 암반블럭규모의 흐름은 단열망개념으로 해석하고 있다. 본 연구는 연구지역의 지하수유동 해석을 위하여 3차원 투수성단열망모델을 구축하기 위한 것으로서, 단열의 기하학적 인자 및 수리인자에 대한 확률분포함수를 도출하고, 3차원 단열망모델링과 수리시험 결과를 이용한 모델 교정까지의 과정을 포함한다. 구간별 정압주입시험의 결과를 Cubic law로서 해석한 결과 단열투수량계수는 lognormal분포일 때 6.12$\times$$10^{-7}$ $m^2$/sec이다. 부정류해석에 의한 유동차원은 주로 방사상 내지 구상유동 특성을 보인다. FracMan 코드를 이용해서 추정된 투수성단열밀도는 1.73이고, 이때 암반블럭규모(l00 m$\times$100 m$\times$100 m)로 모사된 투수성단열의 수는 3,080개이다.다.

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Effects of Hydraulic Variables on the Formation of Freshwater-Saltwater Transition Zones in Aquifers

  • Park, Nam-sik
    • Korean Journal of Hydrosciences
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    • 제7권
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    • pp.1-8
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    • 1996
  • The location and the shape of a freshwater transition zone in a coastal aquifer are affected by many hydraulic variables. To data most works to determine the effects of these variables are limited to qualitative comparison of transiton zones. In this work characteristics of transition zones are analyzed quantitatively. The investigation is limited to a steady-state transition zones. Three dimensionless variables are defined to represent characteristics of steady-state transition zones. They are maximum introsion length, thickness, and degree of stratification. Effects of principal hydraulic variables (velocity and dispersivity) on these characteristics are studied using a numerical model. Dimensional analysis is used to systematically analyze entire model results. Effects of velocity and dispersivity are seem clearly. From this study, increase in velocity is found to cause shrinkage of transition zones. This observation contradicts claims by some that, because dispersion is proportional to velocity, increase in velocity would cause expansion of transition zones.

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열성층 배관 유동에 대한 3차원 열전달 해석 (Three Dimensional Heat Transfer Analysis of a Thermally Stratified Pipe Flow)

  • Jo Jong Chull;Kim Byung Soon
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.103-106
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    • 2002
  • This paper presents an effective numerical method for analyzing three-dimensional unsteady conjugate heat transfer problems of a curved pipe subjected to infernally thermal stratification. In the present numerical analyses, the thermally stratified flows in the pipe are simulated using the standard $k-{\varepsilon}$turbulent model and the unsteady conjugate heat transfer is treated numerically with a simple and convenient numerical technique. The unsteady conjugate heat transfer analysis method is implemented in a finite volume thermal-hydraulic computer code based on a non-staggered grid arrangement, SIMPLEC algorithm and higher-order bounded convection scheme. Numerical calculations have been performed far the two cases of thermally stratified pipe flows where the surging directions are opposite each other i.e. In-surge and out-surge. The results show that the present numerical analysis method is effective to solve the unsteady flow and conjugate heat transfer in a curved pipe subjected to infernally thermal stratification.

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