• 제목/요약/키워드: SST k-${\omega}$ model

검색결과 133건 처리시간 0.021초

CFD Study on the Influence of Atmospheric Stability on Near-field Pollutant Dispersion from Rooftop Emissions

  • Jeong, Sang Jin;Kim, A Ra
    • Asian Journal of Atmospheric Environment
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    • 제12권1호
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    • pp.47-58
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    • 2018
  • The aim of this work is to investigate the effect of atmospheric stability on near-field pollutant dispersion from rooftop emissions of a single cubic building using computational fluid dynamics (CFD). This paper used the shear stress transport (here after SST) k-${\omega}$ model for predicting the flow and pollutant dispersion around an isolated cubic building. CFD simulations were performed with two emission rates and six atmospheric stability conditions. The results of the simulations were compared with the data from wind tunnel experiments and the result of simulations obtained by previous studies in neutral atmospheric condition. The results indicate that the reattachment length on the roof ($X_R$) obtained by computations show good agreement with the experimental results. However, the reattachment length of the rooftop of the building ($X_F$) is greatly overestimated compared to the findings of wind tunnel test. The result also shows that the general distribution of dimensionless concentration given by SST k-${\omega}$ at the side and leeward wall surfaces is similar to that of the experiment. In unstable conditions, the length of the rooftop cavity was decreased. In stable conditions, the horizontal velocity in the lower part around the building was increased and the vertical velocity around the building was decreased. Stratification increased the horizontal cavity length and width near surface and unstable stratification decreased the horizontal cavity length and width near surface. Maintained stability increases the lateral spread of the plume on the leeward surface. The concentration levels close to the ground's surface under stable conditions were higher than under unstable and neutral conditions.

초음속 유동장 내 이중 수직분사의 특성에 관한 연구 II-연소특성 (Characteristics of Dual Transverse Injection in Supersonic Flow Fields II-Combustion Characteristics)

  • 신훈범;이상현
    • 한국항공우주학회지
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    • 제30권6호
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    • pp.61-68
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    • 2002
  • 초음속 유동장 내 수소 연료의 이중 분사가 갖는 연소 특성에 대한 수치연구를 수행하였다. 연료 이중 분사 유동 구조를 수치적으로 모사하기 비평형 화학반응을 포함한 3차원 Navier-Stokes 방정식과 k-$\omega$ SST난류 모델을 사용하였다. 이중 분사기 사이의 변화에 따른 연소특성의 변화를 이해하기 위해서 파라메터 연구를 수행하였다. 이중 수직분사의 연소특성은 단일 수직분사의 연소특성과 상당히 다른 양상을 보이는 것으로 나타났다. 이중 분사에서 두 분사유동의 연소특성은 서로 다른 것으로 나타났는데, 후방 분사류의 연소 특성은 전방 분사류의 유동 및 연소특성에 크게 영향을 받는 것으로 밝혀졌다. 분사기 사이의 거리가 어떤 특정 거리가 되기 전까지 증가할수록 연소율이 증가하는 것으로 나타났다. 하지만, 그 이후에는 연소율의 증가가 관찰되지 않았으며 오히려 정체압력의 감소가 커져서 전체적인 연소특성은 악화되는 것으로 나타났다. 이는 최적의 연소특성을 위한 두 분사기 사이의 거리가 존재함을 의미하는 것으로 판단된다.

A CFD Study of Near-field Odor Dispersion around a Cubic Building from Rooftop Emissions

  • Jeong, Sang Jin
    • Asian Journal of Atmospheric Environment
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    • 제11권3호
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    • pp.153-164
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    • 2017
  • Odor dispersion around a cubic building from rooftop odor emissions was investigated using computational fluid dynamics (CFD). The Shear Stress Transport (here after SST) $k-{\omega}$ model in FLUENT CFD code was used to simulate the flow and odor dispersion around a cubic building. The CFD simulations were performed for three different configurations of cubic buildings comprised of one building, two buildings or three buildings. Five test emission rates were assumed as 1000 OU/s, 2000 OU/s, 3000 OU/s, 4000 OU/s and 5000 OU/s, respectively. Experimental data from wind tunnels obtained by previous studies are used to validate the numerical result of an isolated cubic building. The simulated flow and concentration results of neutral stability condition were compared with the wind tunnel experiments. The profile of streamline velocity and concentration simulation results show a reasonable level of agreement with wind tunnel data. In case of a two-building configuration, the result of emission rate 1000 OU/s illustrates the same plume behavior as a one-building configuration. However, the plume tends to the cover rooftop surface and windward facet of a downstream building as the emission rate increases. In case of a three-building configuration, low emission rates (<4000 OU/s) form a similar plume zone to that of a two-building configuration. However, the addition of a third building, with an emission rate of 5000 OU/s, creates a much greater odorous plume zone on the surface of second building in comparison with a two-building configuration.

소형 액체로켓엔진 지상연소시험용 초음속 노즐의 성능해석 (Performance Analysis of the Supersonic Nozzle Employed in a Small Liquid-rocket Engine for Ground Firing Test)

  • 감호동;김정수;배대석;이재원
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2011년도 제37회 추계학술대회논문집
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    • pp.321-324
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    • 2011
  • 지상연소시험용 소형 액체로켓엔진 초음속 노즐의 성능해석을 위하여 노즐내 유동특성 및 플룸 구조를 $k-{\omega}$ SST모델을 사용한 Reynolds-averaged Navier-Stokes 방정식으로 해석하였다. 해석기법의 검증을 위하여 2차원 축소-확대 노즐 초음속 유동의 해석값과 실험치를 비교하고, 검증된 기법으로 2차원 축대칭 노즐의 성능해석을 수행하였다. 그 결과 노즐 내부에 유동박리 및 역류현상의 발생이 확인되었으며, 이 해석결과는 소형 액체로켓엔진 노즐 최적설계에의 기초자료로 제시되었다.

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Improved version of LeMoS hybrid model for ambiguous grid densities

  • Shevchuk, I.;Kornev, N.
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제10권3호
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    • pp.270-281
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    • 2018
  • Application of the LeMoS hybrid (LH) URANS/LES method for the wake parameters prediction is considered. The wake fraction coefficient is calculated for inland ship model M1926 under shallow water conditions and compared to results of PIV measurements. It was shown that due to lack of the resolved turbulence at the interface between LES and RANS zones the artificial grid induced separations can occur. In order to overcome this drawback, a shielding function is introduced into LH model. The new version of the model is compared to the original one, RANS $k-{\omega}$ SST and SST-IDDES models. It is demonstrated that the proposed modification is robust and capable of wake prediction with satisfactory accuracy.

Robustness Improvement and Assessment of EARSM k-ω Model for Complex Turbulent Flows

  • Zhang, Qiang;Li, Dian;Xia, ZhenFeng;Yang, Yong
    • International Journal of Aerospace System Engineering
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    • 제2권2호
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    • pp.67-72
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    • 2015
  • The main concern of this study is to integrate the EARSM into an industrial RANS solver in conjunction with the $k-{\omega}$ model, as proposed by Hellsten (EARSMKO2005). In order to improve the robustness, particular limiters are introduced to turbulent conservative variables, and a suitable full-approximation storage (FAS) multi-grid (MG) strategy is designed to incorporate turbulence model equations. The present limiters and MG strategy improve both robustness and efficiency significantly but without degenerating accuracy. Two discretization approachs for velocity gradient on cell interfaces are implemented and compared with each other. Numerical results of a three-dimensional supersonic square duct flow show that the proper discretization of velocity gradient improves the accuracy essentially. To assess the capability of the resulting EARSM $k-{\omega}$ model to predict complex engineering flow, the case of Common Research Model (CRM, Wing-Body) is performed. All the numerical results demonstrate that the resulting model performs well and is comparable to the standard two-equation models such as SST $k-{\omega}$ model in terms of computational effort, thus it is suitable for industrial applications.

초음속 유동장 내 이중 수직분사의 특성에 관한 연구 I-혼합특성 (Characteristics of Dual Transverse Injection in Supersonic Flow Fields I-Mixing Characteristics)

  • 신훈범;이상현
    • 한국항공우주학회지
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    • 제30권6호
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    • pp.53-60
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    • 2002
  • 단일 분사 노즐을 갖는 연소기 내부의 혼합과정에 대한 이해를 바탕으로 연료 분사 노즐을 이중으로 갖는 연소기의 혼합과정에 대한 수치연구를 수행하였다. 수치연구를 위하여 3차원 Navier-Stokes 방정식과 k-$\omega$ SST난류 모델을 이용하여 연료 이중 분사 유동을 모사하였다. 이중 분사구 사이의 거리 변화에 따른 혼합특성의 변화를 살펴보기 위하여 파라메터 연구를 수행하였다. 연료 이중 수직분사에서 두 분사기의 유동 및 혼합특성은 서로 상당히 다른 경향을 보이며, 후방 분사기의 유동 및 혼합특성은 전방 분사류의 영향을 받아 더 크게 팽창하고 침투거리가 증가하는 것으로 나타났다. 어떤 특정 거리가 되기 전까지 분사기 사이의 거리가 증가할수록 전체적인 혼합률과 침투거리가 증가하는 등 혼합특성이 개선되지만, 특정 거리보다 크게되면 오히려 혼합특성이 악화되는 것으로 나타났다. 이는 이중분사기에서 최적인 혼합특성을 위한 두 분사기 사이의 거리가 존재함을 의미하는 것으로 판단된다.

지상연소시험평가용 추력기 노즐의 성능해석과 형상설계 (Performance Analysis and Configuration Design of the Thruster Nozzle for Ground-firing Test and Evaluation)

  • 감호동;김정수;배대석
    • 한국추진공학회지
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    • 제16권2호
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    • pp.10-16
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    • 2012
  • 지상연소시험용 추력기 노즐의 성능해석을 위하여 노즐유동 특성 및 플룸 구조를 해석한다. 2차원 축소확대 노즐유동을 해석하고, 이를 실험값과 비교하여 해석기법 검증 및 난류모델 선정을 수행한다. k-${\omega}$ SST 난류모델을 사용한 Reynolds-averaged Navier-Stokes 방정식으로 2차원 축대칭 지상연소시험용 노즐을 해석한 결과, 초기 설계된 노즐내부에서 충격파 및 유동박리에 의한 성능저하가 관찰되었다. 이에 노즐 확대부분의 형상을 수정하여 성능 향상을 확인하였다.

PREDICTION OF A HEAT TRANSFER TO CO2 FLOWING IN AN UPWARD PATH AT A SUPERCRITICAL PRESSURE

  • Cho, Bong-Hyun;Kim, Young-In;Bae, Yoon-Yeong
    • Nuclear Engineering and Technology
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    • 제41권7호
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    • pp.907-920
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    • 2009
  • This study was performed to evaluate the prediction capability of a commercial CFD code and to investigate the effects of different geometries such as a 4.4 mm tube and an 8/10 mm annular channel on the detailed flow structures. A numerical simulation was performed for the conditions, at which the experimental data was produced by the test facility SPHINX. A 2-dimensional axisymmetric steady flow was assumed for computational simplicity. The RNG $\kappa-\varepsilon$ turbulence model (RNG) with an enhanced wall treatment option, SST $\kappa-\omega$ (SST) and low Reynolds Abid turbulence model (ABD) were employed and the numerical predictions were compared with the experimental data generated from the experiment. The effects of the geometry on heat transfer were investigated. The flow and temperature fields were also examined in order to investigate the mechanism of heat transfer near the wall. The local heat transfer coefficient predicted by the RNG model is very close to the measurement result for the tube. In contrast, the local heat transfer coefficient predicted by the SST and ABD models is closer to the measurement for the annular channel.

항공기용 가스터빈 엔진의 고압터빈에서 열유동 특성해석을 위한 전산해석기법 연구 (A Study on the Numerical Analysis Methodology for Thermal and Flow Characteristics of High Pressure Turbine in Aircraft Gas Turbine Engine)

  • 김진욱;박정규;강영석;조이상;조진수
    • 한국유체기계학회 논문집
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    • 제17권3호
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    • pp.46-51
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    • 2014
  • In this study, a numerical analysis methodology is studied to predict thermal and flow characteristics of C3X vane with internal cooling. Effects of turbulence models, transition models and viscous work term on temperature and pressure distributions on the vane surface are investigated. These optional terms have few effects on the pressure distributions over the vane surface. However, they have great influence on prediction of the temperature distributions on the vane surface. The combination of k-${\omega}$ based SST turbulence model, ${\gamma}$ transition model and viscous work term are better than RSM turbulence model on prediction of the surface temperature. The average temperature difference between CFD results and experimental results is calculated 2 % at the pressure side and 1 % at the suction side. Furthermore computing time of this combination is half of the RSM turbulence model. When k-${\omega}$ based SST turbulence model and ${\gamma}$ transition model with viscous work term are applied, more accurate predictions of thermal and internal flow characteristics of high pressure turbine are expected.