• Title/Summary/Keyword: CFD 모사

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Numerical modeling of ICP-nitriding system using CFD-ACE+ (CFD-ACE+를 이용한 ICP-nitriding system의 수치 모델링)

  • Ju, Jeong-Hun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2009.05a
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    • pp.268-268
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    • 2009
  • 고밀도 유도 결합 플라즈마를 이용한 연료 전기 분리판용 질화 장치를 플라즈마를 모사할 수 있는 3차원 전산 유체 역학 프로그램인 CFD-ACE+를 이용하여 해석하였따. 내장형 안테나 타입의 유도 결합 플라즈마의 전자 온도, 밀도 균일성, 가스 유동, 얇은 기판이 촘촘히 적재 되었을 경우의 플라즈마 특성을 모사하였다.

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Multiscale Simulation for Adsorption Process Development: A Case Study of n-Hexane Adsorption on Activated Carbon (흡착공정 개발을 위한 다중규모 모사: 활성탄에서의 n-Hexane 흡착에 관한 사례연구)

  • Son, Hae-Jeong;Lim, Young-Il;Yoo, Kyoung-Seun
    • Korean Chemical Engineering Research
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    • v.46 no.6
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    • pp.1087-1094
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    • 2008
  • This article presents a multi-scale simulation approach starting from the molecular level for the adsorption process development, specifically, in n-hexane adsorption on activated carbon. A grand canonical Monte-Carlo(GCMC) method is used for the prediction of adsorption isotherms of n-hexane on activated carbon at the molecular level. Geometric effects and hydrodynamic properties of the adsorption column are examined by means of the two dimensional CFD(computational fluid dynamics) simulation. The adsorption isotherms from the molecular simulation and the axial diffusivity from the CFD simulation are exploited for the process simulation where the elution curve of n-hexane is obtained. For the first moment(mean residence time) of the pulse-response with respect to temperature and flowrate, the process simulation results obtained from this three-steps multiscale simulation approach show a good agreement with experimental data within 20% of maximum difference. The multi-scale simulation approach addressed in this study will be useful to accelerate the adsorption process development, while reducing the number of experiments required.

Fluid Flow CFD Simulation in Lake during Summer Stratification (성층기 저수지 수체 인공순환 모사)

  • Lee, Yo-Sang;Ban, Yang-Jin;Sohn, Byeong-Yong;Kim, Young-Sung
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.952-956
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    • 2010
  • 저수지에 설치된 물순환장치는 저수지 수문상황과 자연조건의 변화에 따라 유동특성이 상이하므로 연구자가 고려하는 다양한 조건에서 현장 측정하기는 불가능하다. 이런 문제를 대체하는 방안으로 전산유체유동(CFD) 모형을 적용한 모사를 실시함으로서 다양한 조건에 따른 효과를 평가할수 있게 된다. 본 연구에서는 전산유체유동을 통한 대류식 물순환장치의 유동영향범위와 수질변화 등을 평가하고, 다양한 조건에서 모사를 실시하여 최적운영방안을 도출하고 실제운영에 활용토록 하고자 한다. 수체거동을 모사하기 위해 실제 저수지를 형상화한 Domain을 3가지로 구성하였다. 첫번째는 반경 20m, 깊이 40m Domain에 물순환장치를 중앙에 설치한 것이며(D20), 두 번째는 반경 40m, 깊이 40m에 두 개의 물순환장치를 양쪽에 설치하였고(D40), 세 번째는 반경 100m, 깊이 40m로 설정(D100)하였고 양쪽에 두 개의 물순환장치를 설치한 것으로 구성하였다. CFD에 의한 개별 대류식 순환장치의 유동모사결과 D20은 시간의 경과에 따라 수온성층이 하강하는 현상이 나타났으며 이러한 결과로 판단할때 40m 간격으로 대류식 순환장치를 설치하여 운영하면 탈성층이 나타날 수 있을것으로 판단되었다. D40에 대하여 CFD에 의한 유동모사를 실시하였으며 시간의 경과에 따라 수온성층의 변화는 나타나지 않았다. 이러한 결과로 판단할때 40m 간격으로 한줄로 대류식 순환장치를 설치하여 운영하면 성층을 깨는 현상은 나타나지 않을 것으로 평가되었다. 반면 Dye테스트시 심층에서 상승한 수체는 수온성층 표면에서 수평방향으로 계속 퍼져 나가면서 옆장치에서 상승된 수체와 혼합이 활발히 이루어 지는 현상을 나타내었다. 장치간 거리가 100m인 대류식 물순환장치에 의한 유동모사시 수온성층의 변화는 전혀 나타나지 않았으며, Dye테스트시 심층에서 상승한 수체는 수온성층 위에서 수평방향으로 퍼져 나가면서 옆에서 가동되는 장치에서 상승된 수체와 혼합 현상을 나타내기는 하나 D40보다 혼합시간이 더 걸리는 것으로 나타났다.

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On the Visualization of Turbulent Structures Using CFD Technique (CFD 데이터를 이용한 난류구조의 가시화)

  • Na Yang
    • Journal of the Korean Society of Visualization
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    • v.2 no.2
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    • pp.20-24
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    • 2004
  • Recent advances in CFD technique along with a rapid growth of computer resources provide valuable opportunities for developing an accurate way of visualizing turbulent structures. Not only this visualization technique made it possible to check the validity of many of theoretical achievements of the past but also it pushes the current turbulence research to a new paradigm. A brief history of visualization study will be summarized and discussed.

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Computational Fluid Dynamics(CFD) Simulation and in situ Experimental Validation for the Urea-Based Selective Non-Catalytic Reduction(SNCR) Process in a Municipal Incinerator (생활폐기물 소각장 2차 연소로에서 요소용액을 이용한 선택적무촉매환원 공정에 대한 전산유체역학 모사 및 현장 검증)

  • Kang, Tae-Ho;Nguyen, Thanh D.B.;Lim, Young-Il;Kim, Seong-Joon;Eom, Won-Hyeon;Yoo, Kyung-Seun
    • Korean Chemical Engineering Research
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    • v.47 no.5
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    • pp.630-638
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    • 2009
  • A computational fluid dynamics(CFD) model is developed and validated with on-site experiments for a urea-based SNCR(selective non-catalytic reduction) process to reduce the nitrogen oxides($NO_x$) in a municipal incinerator. The three-dimensional turbulent reacting flow CFD model having a seven global reaction mechanism under the condition of low CO concentration and 12% excess air and droplet evaporation is used for fluid dynamics simulation of the SNCR process installed in the incinerator. In this SNCR process, urea solution and atomizing air were injected into the secondary combustor, using one front nozzle and two side nozzles. The exit temperature($980^{\circ}C$) of simulation has the same value as in situ experiment one. The $NO_x$ reduction efficiencies of 57% and 59% are obtained from the experiment and CFD simulation, respectively at NSR=1.8(normalized stoichiometric ratio) for the equal flow rate ratio from the three nozzles. It is observed in the CFD simulations with varying the flowrate ratio of the three nozzles that the injection of a two times larger front nozzle flowrate than the side nozzle flowrate produces 8% higher $NO_x$ reduction efficiency than the injection of the equal ratio flowrate in each nozzle.

Case study on Remodeling Clearwell Hydraulic Structure using Transient CFD Simulation Technique (Transient CFD 모사기법을 이용한 정수지 최적설계 사례연구)

  • Kim, Seon-Jin;Kim, Seong-Su;Park, No-Suk;Cha, Min-Whan;Wang, Chang-Keun
    • Journal of Korean Society of Water and Wastewater
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    • v.24 no.4
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    • pp.425-432
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    • 2010
  • From the results of tracer test for the existing clearwell in Y water treatment plant, $T_{10}$ and T10/T were calculated as 150 min and 0.24, respectively. Therefore it required the modification schemes for improving hydraulic efficiency, surrogated by $T_{10}$ and $T_{10}$/T, and disinfection performance. In this study, using transient CFD(Computational Fluid Dynamics) simulation technique, tracer tests on dynamic condition for the suggested schemes were simulated. From the results of simulation, it was revealed that 8~6 baffles are necessary to guarantee the disinfection ability in the existing clearwell. Also, installing orifice baffle in the vicinity of inlet could increase plug flow fraction within clearwell.

Modelling and Simulation of H2 separation in Pd Membrane System with Co-current and Current-current Flow (병류와 향류 흐름에서 수소분리를 위한 Pd 분리막 시스템의 모델링 및 모사)

  • Yi, Yong;Noh, Seunghyo;Oh, Min
    • Korean Chemical Engineering Research
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    • v.48 no.5
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    • pp.598-602
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    • 2010
  • In this paper, we carried out CFD modelling and simulation for the membrane system to separate H2 gas from the multi-component feed gas. The membrane system is of the annulus tubular type consisting of the external lumen side for the feed gas and the internal permeation side for the sweeping gas. The operating temperature and pressure of the lumen side inlet flow are $374^{\circ}C$ and 7 bar respectively and those of the sweeping gas are $374^{\circ}C$ and 3 bar, and considering these conditions, Pd membrane system was employed. CFD simulations were performed for the co-current flow and counter-current flow membrane system based on the flow directions between the feed and the sweeping gas. Comparisons and discussions were made for the H2 partial pressure, H2 mole fraction and H2 flux for both cases. Furthermore, we executed CFD simulations for the each case of the various inlet flow rates of the feed gas at the lumen side. Accordingly, we reviewed the effects of the flow rate and residence time on the performance of the membrane system.

CFD Simulation of Pd-Ag Membrane Process for $CO_2$ Separation (이산화탄소 분리를 위한 Pd-Ag 분리막 공정의 CFD 모사)

  • Oh, Min;Park, Junyong;Noh, Seunghyo;Hong, Seong Uk
    • Applied Chemistry for Engineering
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    • v.20 no.1
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    • pp.104-108
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    • 2009
  • In this study, for the flow of carbon dioxide/hydrogen mixture through a tubular type Pd-Ag membrane, hydrogen partial pressure, velocity profile, and concentration profile were simulated as a function of inlet flow rate using computational fluid dynamics (CFD) technique. The simulation results indicated that the mole fraction of carbon dioxide increased slowly in the longitudinal direction as the flow rate increased. In addition, the effects of inlet flow rate and the length of membrane on hydrogen recovery were investigated. At lower flow rate and for longer membrane, the hydrogen recovery was larger.

Evaluation of Coagulants Dispersion in Pump Diffusion Mixer for Water Treatment (CFD모사 기법을 이용한 Pump Diffusion Mixer내의 응집체 확산분포에 대한 평가)

  • Park, Young-Oh;Park, No-Suk;Kim, Seong-Su;Kim, Ki-Don;Lim, Kyung-Ho
    • Journal of Korean Society of Water and Wastewater
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    • v.22 no.1
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    • pp.49-63
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    • 2008
  • The objectives of this research were to evaluate the pressurized/the main inlet water flowrate ratio which have been used as the most important parameter for operating the pump diffusion mixer until now, to suggest the alternative operating parameter and the relating criteria if the flowrate ratio was not inadequate. For the objectives of this research, computational fluid dynamics (CFD) simulation was conducted for 21 cases of flowrate ratio in full-scaled pump diffusion mixer. From the results of CFD simulation, the local velocity gradient values were calculated in each case in order to analyze the simulation results in more detail. For verifying CFD simulation, wet test was conducted. The wet test was to measure the factual coagulant dispersion distribution at a distance of 5.4m from deflector. From both results of CFD simulation and wet test, flowrate ratio was inadequate as operating parameter or criteria, on the other hand the pressurized/the main inlet velocity ratio(dimensionless) was useful in predicting the performance of pump diffusion mixer. Also, the injected coagulant could be dispersed evenly in overall cross section on the condition that pressurized/the main inlet velocity ratio(dimensionless) is over at least 20.

The Effect of Turbine Blade Pitch on the Gas Turbine Engine Performance (터빈의 피치 간격이 가스터빈 엔진 성능에 미치는 영향)

  • Kim, Jae-Min;Kim, Kui-Soon;Choi, Jeong-Yeol;Jung, Yong-Wun;Hwang, In-Hee
    • Journal of the Korean Society of Propulsion Engineers
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    • v.12 no.6
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    • pp.48-55
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    • 2008
  • We have simulated the performance of a simple engine model with a gas turbine engine simulation program based on CFD. 2-dimensional Navier-Stokes code for the viscous flow was applied to simulate a compressor and a turbine, and the chemical equilibrium code with the lumped method was applied to simulate the combustor. Unsteady-flow phenomenon between rotor and stator of the compressor and the turbine was analyzed by steady mixing-plane method. In this way, the influence of the turbine blade pitch on the engine was investigated. It was shown that the compressor is operated at more higher pressure conditions as narrower the pitch distance of the turbine.