• 제목/요약/키워드: Numerical Tracer Model

검색결과 35건 처리시간 0.028초

홍적지대에 있어서의 지하수의 3차원적 유동-3차원 정상류모델에 의한 지하수 유동해석 (Three-dimensional groundwater water flow in an upland area-groundwater flow analysis by steady state three-dimensional model)

  • 배상근
    • 한국수자원학회:학술대회논문집
    • /
    • 한국수자원학회 1987년도 제29회 수공학연구발표회논문초록집
    • /
    • pp.113-122
    • /
    • 1987
  • A numerical simulation technique of three-dimensional finite difference model is developed to study the groundwater flow system in Dcjima, an upland area which faces Kasumigaura Lake. For general perspectives of the groundwater flow system, a steady state three-dimentional model is simulated. For the sedimentary mud formations which are found in the representative formation, three situations of hydraulic conductivity are considered, representing an isotropic condition and situations where the horizontal permeability is equal to 10 times and 100times of the vertical one. The finite difference grid used in the simulation has 60x50x30=90,000 nodes. A converged solution with a tolerance of 0.001 meter of hydraulic head is set. Having determined the flow net by using a steady state three-dimensional model. the results for the three cases of hydraulic conductivity are compared with the results of tracer methods (Bae and Kayane 1987) With the aid of four representative vertical cross-sections, groundwater flow systems in the study area are assumed. Water balances for the three cases indicate very good agreement between total recharge and discharge in each case Analyses of groundwater flow system based on the tritium concentrations and water quality measurements (Bae and Kayane 1987) are confirmed by the numerical simulation and the results obtained by these two methods appeared to be in close agreement.

  • PDF

Lagrangian 입자추적모형을 이용한 부유성 오염물질의 혼합해석 (Mixing Analysis of Floating Pollutant Using Lagrangian Particle Tracking Model)

  • 서일원;박인환;김영도;한은진;추민호;문현생
    • 한국물환경학회지
    • /
    • 제29권3호
    • /
    • pp.383-392
    • /
    • 2013
  • In this research, mixing behavior of the floating pollutant such as oil spill accidents was analyzed by studying the advection-diffusion of GPS floaters at water surface. The LPT (Lagrangian Particle Tracking) model of EFDC (Environmental Fluid Dynamics Computer Code) was used to simulate the motion of the GPS floater tracer. In the field experiment, 35 GPS floaters were injected at the Samun Bridge of Nakdong River. GPS floaters traveled to downstream about 700 m for 90 minutes. The field data by the GPS floater experiments were compared with the simulation in order to calibrate the parameter of LPT model. The turbulent diffusion coefficient of LPT model was determined as $K_H/hu^*$ = 0.17 from the scatter diagram. The arrival time of peak concentration and transverse diffusion from the simulation results were similar with the experiments from the concentration curves. Numerical experiments for anticipation of damage from floating pollutant were conducted in the same reach of the Nakdong River and the results show that the pollutant cloud transported to the left bank where the Hwawon pumping station is located. For this reason, it is suggested that the proper action should be needed to maintain the safety of the water withdrawal at the Hwawon pumping station.

EFDC모형을 이용한 새만금호 내 해수유통량에 따른 오염물질 혼합 변화 모의 (Simulations of Pollutant Mixing Regimes in Seamangeum Lake According to Seawater Exchange Rates Using the EFDC Model)

  • 정희영;류인구;정세웅
    • 한국농공학회논문집
    • /
    • 제51권6호
    • /
    • pp.53-62
    • /
    • 2009
  • The EFDC (Environmental Fluid Dynamics Code), a numerical model for simulating three-dimensional (3D) flow, transport, and biogeochemical processes in surface water systems including rivers, reservoirs, and estuaries, was applied to assess the effect of sea water and fresh water exchange rates ($Q_e$) on the mixing characteristics of a conservative pollutant (tracer) induced from upstreams and salinity in Saemangeum Lake, Korea. The lake has been closed by a 33 km estuary embankment since last April of 2006, and now seawater enters the lake partially through two sluice gates (Sinsi and Garyuk), which is driving the changes of hydrodynamic and water quality properties of the lake. The EFDC was constructed and calibrated with surveyed bathymetry data and field data including water level, temperature, and salinity in 2008. The model showed good agreement with the field data and adequately replicated the spatial and temporal variations of the variables. The validated model was applied to simulated the tracer and salinity with two different gate operation scenarios: RUN-1 and RUN-2. RUN-1 is the case of real operation condition ($Q_e=25,000,000\;m^3$) of 2008, while RUN-2 assumed full open of Sinsi gate to increase $Q_e$ by $120,000,000\;m^3$. Statistical analysis of the simulation results indicate that mixing characteristics of pollutants from upstream can be significantly affected by the amount of $Q_e$.

이상적인 중립 대기경계층에서 라그랑지안 단일입자 모델의 평가 (Evaluation of One-particle Stochastic Lagrangian Models in Horizontally - homogeneous Neutrally - stratified Atmospheric Surface Layer)

  • 김석철
    • 한국대기환경학회지
    • /
    • 제19권4호
    • /
    • pp.397-414
    • /
    • 2003
  • The performance of one-particle stochastic Lagrangian models for passive tracer dispersion are evaluated against measurements in horizontally-homogeneous neutrally-stratified atmospheric surface layer. State-of-the-technology models as well as classical Langevin models, all in class of well mixed models are numerically implemented for inter-model comparison study. Model results (far-downstream asymptotic behavior and vertical profiles of the time averaged concentrations, concentration fluxes, and concentration fluctuations) are compared with the reported measurements. The results are: 1) the far-downstream asymptotic trends of all models except Reynolds model agree well with Garger and Zhukov's measurements. 2) profiles of the average concentrations and vertical concentration fluxes by all models except Reynolds model show good agreement with Raupach and Legg's experimental data. Reynolds model produces horizontal concentration flux profiles most close to measurements, yet all other models fail severely. 3) With temporally correlated emissions, one-particle models seems to simulate fairly the concentration fluctuations induced by plume meandering, when the statistical random noises are removed from the calculated concentration fluctuations. Analytical expression for the statistical random noise of one-particle model is presented. This study finds no indication that recent models of most delicate theoretical background are superior to the simple Langevin model in accuracy and numerical performance at well.

연직배수재를 이용한 오염지반 복원의 영향인자 분석 (Analysis of Influence Factors for Remediation of Contaminated Soils Using Prefabricated Vertical Drains)

  • 박정준;신은철
    • 한국지반환경공학회 논문집
    • /
    • 제9권2호
    • /
    • pp.39-46
    • /
    • 2008
  • 개발사업과 산업발달로 인하여 발생되는 유해화학물질과 유류사용량이 늘면서 화학물질과 유류를 저장하는 지하저장탱크에서의 오염물질 유출로 토양 및 지하수 오염이 심각해지고 있다. 또한, 산업지역, 공장지대가 밀집된 매립 지반에서는 투수계수가 낮아 오염물질 추출에 한계가 있다. 이러한 문제해결 방안의 하나로 연약지반 개량공법에서 사용되고 있는 연직배수재를 이용하여 기존의 복원기술인 토양세정공법의 효율을 증진시킨 연직배수시스템에 대한 연구를 수행하였다. 오염된 지반의 복원을 목적으로 사용한 연직배수시스템의 적용성 평가를 위하여 오염토양 복원시 오염지반에 영향을 주는 인자에 대한 유효성 등을 분석하였다. 본 연구에서는 연직배수시스템의 적용성을 위하여 오염토양 복원시 오염지반에 영향을 주는 인자에 대한 공학적 특성을 바탕으로 파일럿 규모의 실내 오염복원 실험을 통한 오염물질의 복원효율 등을 분석하였다. 또한, 염화나트륨을 복원실험의 추적자로 사용하였고, 도출된 결과를 바탕으로 SEEP/W와 CTRAN/W 유한요소해석 프로그램을 이용하여 압력수두와 지속시간에 따른 농도변화, 각각의 지반조건에 대한 복원률의 오염물질 흐름 해석을 통한 유효성을 평가하였다. 결과, 오염지반의 투수계수는 흐름속도와 연직배수재를 통한 추출률과 관계되며, 흐름속도와 추출률은 분산지수에 영향을 미치게 되어 결국 원위치 오염복원 과정시 중요한 역할을 하게 된다.

  • PDF

시화지구의 대기오염물질 확산에 관한 전산모사 (Simulation of the Dispersion of Air Pollutants in the Shihwa Area)

  • 송은석;류진복;김병수;이성철;홍민선;장영기
    • 환경영향평가
    • /
    • 제7권1호
    • /
    • pp.35-48
    • /
    • 1998
  • Gaussian type models have limitations on predicting a detailed description of the near flow and pollution leads over complex terrains under neutral atmospheric conditions. Also, most models used recently have lack of ability to include atmospheric reactions. The model based on the numerical solution of the time-averaged Navier-Stokes equations and conservation equations needs to be developed to improve the limitations mentioned above. When the model was applied to the Shihwa area where the tracer experiment had been carried out, the simulation results have a great difference from the experimental results. There are two reasons that make the difference between the results by the model and the experiment. First, the Shihwa area is not a complex terrain. Second, meteorological data is insufficient. Therefore, the model should be applied to predict the dispersion of air pollutants over complex terrain rather than flat terrain in order that the model could be verified because the model was developed for the prediction of the dispersion over a complex terrain.

  • PDF

Experimental and CFD Simulations of Polluted Air Behavior in Rectangular Tunnels

  • Lee, Yong-Ho
    • Journal of Advanced Marine Engineering and Technology
    • /
    • 제35권5호
    • /
    • pp.608-615
    • /
    • 2011
  • The objective of this study is to investigate the flow characteristics of polluted air behavior in rectangular tunnels using a PIV system and a commercial CFD program. The PIV experiments are simulated by using the olive oil as the tracer particles in scaled rectangular tunnels. Each model has one of four different outlet vents, each dimensionless L/H ratio of which is 0, 0.375, 0.75 and 1.125, respectively as the locations of each outlet are away from the vertical centerline through the inlet. A commercial CFD program, ANSYS CFX, was used to examine the velocity fields and the pressure distributions in numerical simulations. The kinematic viscosity of the air flow of $1.51{\times}10^{-5}m^2/s$ and the flow velocity of 0.3 m/s at the inlet are given under the same conditions in order to analyze the polluted air flow characteristics experimentally and computationally. This study is considered to examine the effect of the outlet locations in the naturally ventilated tunnel models.

MODELING OF A BUOYANCY-DRIVEN FLOW EXPERIMENT IN PRESSURIZED WATER REACTORS USING CFD-METHODS

  • Hohne, Thomas;Kliem, Soren
    • Nuclear Engineering and Technology
    • /
    • 제39권4호
    • /
    • pp.327-336
    • /
    • 2007
  • The influence of density differences on the mixing of the primary loop inventory and the Emergency Core Cooling (ECC) water in the downcomer of a Pressurised Water Reactor (PWR) was analyzed at the ROssendorf COolant Mixing (ROCOM) test facility. ROCOM is a 1:5 scaled model of a German PWR, and has been designed for coolant mixing studies. It is equipped with advanced instrumentation, which delivers high-resolution information for temperature or boron concentration fields. This paper presents a ROCOM experiment in which water with higher density was injected into a cold leg of the reactor model. Wire-mesh sensors measuring the tracer concentration were installed in the cold leg and upper and lower part of the downcomer. The experiment was run with 5% of the design flow rate in one loop and 10% density difference between the ECC and loop water especially for the validation of the Computational Fluid Dynamics (CFD) software ANSYS CFX. A mesh with two million control volumes was used for the calculations. The effects of turbulence on the mean flow were modelled with a Reynolds stress turbulence model. The results of the experiment and of the numerical calculations show that mixing is dominated by buoyancy effects: At higher mass flow rates (close to nominal conditions) the injected slug propagates in the circumferential direction around the core barrel. Buoyancy effects reduce this circumferential propagation. Therefore, density effects play an important role during natural convection with ECC injection in PWRs. ANSYS CFX was able to predict the observed flow patterns and mixing phenomena quite well.

사행하천에서 오염물질의 2차원 거동특성 해석 (Analysis of Two-Dimensional Pollutant Transport in Meandering Streams)

  • 오정선;서일원;김영한
    • 한국수자원학회논문집
    • /
    • 제37권12호
    • /
    • pp.979-991
    • /
    • 2004
  • 본 연구에서는 사행하는 자연하천에 유입된 오염물질의 2차원 확산 특성을 모의하기 위하여 2차원 수심적분 모형인 RMA2와 RMA4를 사용하였다. 먼저 2차원 동수역학적인 모형인 RMA2를 사용하여 흐름장을 모의한 후 이 결과를 2차원 수질모형인 RMA4에 입력하여 농도장을 모의하였다. 수치모형을 S자형 사행수로에서 측정한 흐름 및 추적자 농도자료를 이용하여 검증한 결과, RMA4 모형은 최대유속선이 만곡의 내측에 치우쳐 나타나는 현상을 잘 모의하고 있었으며, RMA4 모형은 오염운의 전반적인 확산 특성과 분리 현상을 적절하게 모의하고 있었다. 수치모형을 실제 하천에 적용하여 현장 실험 결과를 비교한 결과, RMA2 모형은 전체적인 흐름 특성 및 만곡의 외측 제방으로 치우치는 최대유속선의 경향 등을 잘 모의하였으며, RMA4모형은 오염운이 최대유속선을 따라 이동하는 경향 등을 적절하게 재현하는 것으로 밝혀졌다. 본 연구에서 분산계수는 실측 농도분포로부터 계산한 값을 미세 조정하여 사용하였으며, 이는 기존의 추정식에 의한 추정치와도 잘 부합하는 것으로 밝혀졌다.

공장에서 퍼지는 냄새에 관한 수치계산적 연구 (Numerical Simulation of the Odor Spreading in a Factory)

  • ;송은화;남현규;신춘식;김희동
    • 대한기계학회:학술대회논문집
    • /
    • 대한기계학회 2008년도 추계학술대회B
    • /
    • pp.2540-2543
    • /
    • 2008
  • Liquid crystal displays (LCD's) are continuously coated with some chemicals in the clean room of a factory. Spreading of these chemicals is causing serious problems both in controlling clean room quality as well as to the workers inside the factory. It is required to alleviate or properly control the offensive odor which is mainly composed of propylene glycol mono ethyl acetate, novolak resin and photo active compound. The control strategy employed is to bleed the offensive odor gas out the clean room. A full scale 3D CFD model was created with anisotropic porous media, chemical species transport with no volumetric reaction, and thermal diffusion with propane gas (tracer gas) to simulate the odor spreading. A segregated implicit solver with standard k-$\varepsilon$ model is employed. The detailed CFD analysis made it possible to develop an effective method of ventilating the coater room and optimizing their capacities.

  • PDF