• 제목/요약/키워드: Numerical Model Simulation

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지열 시스템의 도입이 지중온도환경에 미치는 영향에 대한 해석적 검토 (Numerical Analysis of the Effect of Ground Source Heat Pump Systems on the Underground Temperature)

  • 남유진
    • 설비공학논문집
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    • 제25권8호
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    • pp.427-431
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    • 2013
  • Ground heat pump systems utilize the annually stable underground temperature to supply heat for space heating and cooling. The underground temperature affects not only the underground ecosystem, but also the performance of these systems. However, in spite of the widespread use of these systems, there have been few researches on the effect of the systems on underground temperature. In this research, case studies with numerical simulation have been conducted, in order to estimate the effect of ground heat pump systems on underground temperature. The simulation was coupled with the ground water-ground heat transfer model and the ground surface heat transfer model. In the result, it was found that the underground change depends on the heat transfer from the ground surface, the heat exchange rate, and the heat conductivity of soil.

효율적 수치해석을 위한 오픈소스 프로그램 기반 해석 플랫폼 구축 및 사례 연구 (Construction of Open-source Program Platform for Efficient Numerical Analysis and Its Case Study)

  • 박찬희;김태현;박의섭;정용복;방은석
    • 터널과지하공간
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    • 제30권6호
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    • pp.509-518
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    • 2020
  • 본 연구에서는 실제 지질구조를 반영한 실규모 수치해석을 효율적으로 수행하고자 탐사 자료를 바탕으로 한 메쉬 생성, 해석수행, 결과분석을 위한 후처리의 일련의 과정을 포함한 해석 플랫폼을 구축하였다. 해석 플랫폼 구축을 위하여 연구자의 필요에 따른 코드 수정 및 다양한 수치해석 프로그램과 호환이 가능할 수 있도록 소스코드가 공개되어 있는오픈소스 프로그램을 활용하였다. 먼저 드론을 활용하여 촬영한 탐사 정보를 바탕으로 3차원 모델을 획득한 후, 오픈소스 3차원 창작 소프트웨어인 Blender를 활용하여 도메인의 메쉬 밀도를 해석 가능한 수준으로 조정하였다. 다음 단계로는 유한요소 메쉬 생성 프로그램인 Gmsh를 활용하여 도메인 내부에 사면체 기반의 메쉬를 생성하여 3차원 모델을 생성하였다. Gmsh를 통해 획득된 메쉬 정보를 수치해석 프로그램에 활용하기 위해서 메쉬 생성 규약에 적합하도록 변환하는 과정이 필요하며, 이는 Python을 통해 코드를 작성하여 수행하였다. 안정성 해석이 완료된 뒤에는 자료의 후처리 작업을 위해 시각화 및 데이터 분석 프로그램인 ParaView를 활용하여 다양한 시각화 자료를 생성하였다. 구성된 플랫폼의 활용성을 확인하기 위해 드론 탐사자료를 바탕으로 생성한 실규모 독도 모델을 대상으로 예비 안정성 분석을 성공적으로 수행하였으며, 예비해석을 통해 구축된 해석플랫폼이 향후 다양한 해석 과정에 활용될 수 있음을 확인하였다.

사면구조 격자를 이용한 홍수범람 모의 (Numerical Simulation of Flood Inundation with Quadtree Grid)

  • 김종호;김형준;이승오;조용식
    • 한국방재학회 논문집
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    • 제7권2호통권25호
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    • pp.45-52
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    • 2007
  • 본 연구에서는 사면구조(quadtree) 격자기법을 이용하여 경상남도 의령군과 함안군을 통과하는 남강 유역에서의 홍수범람을 모의하였다. Saint Venant 방정식을 지배방정식으로 사용하였으며, 제방선을 따라 적합화 된 계층적 사면구조 격자를 이용하여 leap-frog 기법으로 양해적 유한차분하였다. 본 모형과 상용 프로그램인 HEC-RAS 및 FLUMEN과의 수치결과를 서로 비교하였고, 빈도에 따른 홍수 사상을 다르게 하여 홍수범람을 모의하였다. 그 결과 세 모형의 결과가 거의 일치함을 보였다. 그리고 500년 빈도의 홍수 사상에서 제내지로 홍수가 범람함을 본 연구의 결과에서 알 수 있었다.

스탠딩컬럼웰(SCW)을 적용한 지열히트펌프의 수치적 모델링과 검증 (A numerical simulation and validation of heat pump using standing column well(SCW))

  • 장재훈;박두희
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.785-790
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    • 2010
  • Geothermal energy is gaining wide attention as a highly efficient renewable energy and being increasingly used for heating/cooling systems of buildings. The standing column well (SCW) is especially efficient, cost-effective, and suitable for Korean geological and hydrological conditions. However, a numerical model that simulates the SCW has not yet been developed and applied in Korea. This paper describes the development of the SCW numerical model using a finite-volume analysis program. The model performs the hydro-thermal coupled analyses and simulates heat transfer through advection, convection, and conduction. The accuracy of the model was verified through comparisons with field data measured at SCWs in Korea. Comparisons indicated that the SCW numerical model can closely predict the performance of a SCW.

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Modified Cam-Clay Model을 이용한 피에조콘 시험의 수치해석 (Numerical Analysis of Piezocone Test using Modified Cam-Clay Model)

  • 김대규;이우진
    • 한국지반환경공학회 논문집
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    • 제2권3호
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    • pp.89-99
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    • 2001
  • 본 연구에서는 가장 널리 사용되고 있는 지반모델인 Modified Cam-Clay 모델을 이용하여 피에조콘 관입 및 소산시험의 수치해석을 수행하였다. Modified Cam-Clay 모델 및 관련 유한요소 식들을 피에조콘 관입의 대변형 현상을 고려하기 위하여 Updated Lagrangian frame에서 formulation 하였다. 유한요소 해석 결과 얻어진 콘 관입저항치, 간극수압 및 소산곡선을 양산지역 현장 시험결과와 비교 분석하였다. 수치해석 결과는 시험결과와 비교적 잘 부합하는 것으로 고찰되었으나 보다 현실에 근접한 simulation을 위하여 연속적인 깊은 관입의 적절한 수치해석적 modeling이 요구되는 것으로 고찰되었다.

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Numerical Simulation of Buoyant flume Dispersion in a Stratified Atmosphere Using a Lagrangian Stochastic Model

  • Kim, Hyun-Goo;Noh, Yoo-Jeong;Lee, Choung-Mook;Park, Don-Bum
    • Journal of Mechanical Science and Technology
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    • 제17권3호
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    • pp.440-448
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    • 2003
  • In the present paper, numerical simulations of buoyant plume dispersion in a neutral and stable atmospheric boundary layer have been carride out. A Lagrangian Stochastic Model (LSM) with a Non-Linear Eddy Viscosity Model (NLEVM) for turbulence is used to generate a Reynolds stress field as an input condition of dispersion simulation. A modified plume-rise equation is included in dispersion simulation in order to consider momentum effect in an initial stage of plume rise resulting in an improved prediction by comparing with the experimental data. The LSM is validated by comparing with the prediction of an Eulerian Dispersion Model (EDM) and by the measured results of vertical profiles of mean concentration in the downstream of an elevated source in an atmospheric boundary layer. The LSM predicts accurate results especially in the vicinity of the source where the EDM underestimates the peak concentration by 40% due to inherent limitations of gradient diffusion theory. As a verification study, the LSM simulation of buoyant plume dispersions under a neutral and stable atmospheric condition is compared with a wind-tunnel experiment, which shows good qualitative agreements.

지형자료 해상도에 따른 대기 유동장 변화에 관한 수치 연구 (Numerical Study on Atmospheric Flow Variation Associated With the Resolution of Topography)

  • 이순환;김선희;류찬수
    • 한국환경과학회지
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    • 제15권12호
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    • pp.1141-1154
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    • 2006
  • Orographic effect is one of the important factors to induce Local circulations and to make atmospheric turbulence, so it is necessary to use the exact topographic data for prediction of local circulations. In order to clarify the sensitivity of the spatial resolution of topography data, numerical simulations using several topography data with different spatial resolution are carried out under stable and unstable synoptic conditions. The results are as follows: 1) Influence of topographic data resolution on local circulation tends to be stronger at simulation with fine grid than that with coarse grid. 2) The hight of mountains in numerical model become mote reasonable with high resolution topographic data, so the orographic effect is also emphasized and clarified when the topographic data resolution is higher. 2) The higher the topographic resolution is, the stronger the mountain effect is. When used topographic data resolution become fine, topography in numerical model becomes closer to real topography. 3) The topographic effect tends to be stronger when atmospheric stability is strong stable. 4) Although spatial resolution of topographic data is not fundamental factor for dramatic improvement of weather prediction accuracy, some influence on small scale circulation can be recognized, especially in fluid dynamic simulation.

Preliminary numerical study on long-wavelength wave propagation in a jointed rock mass

  • Chong, Song-Hun;Kim, Ji-Won;Cho, Gye-Chun;Song, Ki-Il
    • Geomechanics and Engineering
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    • 제21권3호
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    • pp.227-236
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    • 2020
  • Non-destructive exploration using elastic waves has been widely used to characterize rock mass properties. Wave propagation in jointed rock masses is significantly governed by the characteristics and orientation of discontinuities. The relationship between spatial heterogeneity (i.e., joint spacing) and wavelength for elastic waves propagating through jointed rock masses have been investigated previously. Discontinuous rock masses can be considered as an equivalent continuum material when the wavelength of the propagating elastic wave exceeds the spatial heterogeneity. However, it is unclear how stress-dependent long-wavelength elastic waves propagate through a repetitive rock-joint system with multiple joints. A preliminary numerical simulation was performed in in this study to investigate long-wavelength elastic wave propagation in regularly jointed rock masses using the three-dimensional distinct element code program. First, experimental studies using the quasi-static resonant column (QSRC) testing device are performed on regularly jointed disc column specimens for three different materials (acetal, aluminum, and gneiss). The P- and S-wave velocities of the specimens are obtained under various normal stress levels. The normal and shear joint stiffness are calculated from the experimental results using an equivalent continuum model and used as input parameters for numerical analysis. The spatial and temporal sizes are carefully selected to guarantee a stable numerical simulation. Based on the calibrated jointed rock model, the numerical and experimental results are compared.

해양유출기름의 확산 시뮬레이션 모델 개발(II) - 유류확산모델의 현장 적용 (Development of Simulation Model for Diffusion of Oil Spill in the Ocean (II) - Application of Simulation model to the Field)

  • 김기철;이중우;강신영;도덕희
    • 한국항만학회지
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    • 제13권2호
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    • pp.427-436
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    • 1999
  • Simulation model for diffusion of oil spill is developed. The model can perform real time simulation in the case of oil spill accident in the ocean. The model consists of three dimensional ocean circulation model and model for diffusion of oil spill. Real time flow fields which are used in the calculation of advection of oil spill are obtained in the three dimensional ocean circulation model. The model for diffusion of oil spill includes the evaporation dissolution emulsification and downward diffusion. For the verification of the model it is applied to the oil spill from the accident of Sea Prince. The results shows good agreement.

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SUBOFF 모형 후방 난류항적의 수치 시뮬레이션 (Numerical Simulation of Turbulent Wake Behind SUBOFF Model)

  • 나영인;방형도;박종천
    • 대한조선학회논문집
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    • 제47권4호
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    • pp.517-524
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    • 2010
  • This paper covers the numerical studies performed to investigate the characteristics of turbulent wake generated by a submarine, SUBOFF model. A SUBOFF model assumed as an axial-symmetric body was used to generate wake. The numerical simulation was performed by using a commercial S/W, FLUENT, with the same condition as the experiments by Shin et al.(2009). Mainly the cross-sectional distribution of the time-averaged mean wake and turbulent kinetic energy was compared with the experiments. Both results are agreed well with each other in the propeller wake section, but the agreement between both is not so satisfied in the far wake field. It means that more numerous number of grid points and their concentration should be required in that field.