• 제목/요약/키워드: Two-layer Turbulence Model

검색결과 104건 처리시간 0.023초

항공기용 가스터빈의 고압 냉각터빈 노즐에 대한 복합열전달 해석 (Conjugate Heat Transfer Analysis for High Pressure Cooled Turbine Vane in Aircraft Gas Turbine)

  • 김진욱;박정규;강영석;조진수
    • 한국유체기계학회 논문집
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    • 제18권2호
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    • pp.60-66
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    • 2015
  • Conjugate heat transfer analysis was performed to investigate the flow and cooling performance of the high pressure turbine nozzle of gas turbine engine. The CHT code was verified by comparison between CFD results and experimental results of C3X vane. The combination of k-${\omega}$ based SST turbulence model and transition model was used to solve the flow and thermal field of the fluid zone and the material property of CMSX-4 was applied to the solid zone. The turbine nozzle has two internal cooling channels and each channel has a complex cooling configurations, such as the film cooling, jet impingement, pedestal and rib turbulator. The parabolic temperature profile was given to the inlet condition of the nozzle to simulate the combustor exit condition. The flow characteristics were analyzed by comparing with uncooled nozzle vane. The Mach number around the vane increased due to the increase of coolant mass flow flowed in the main flow passage. The maximum cooling effectiveness (91 %) at the vane surface is located in the middle of pressure side which is effected by the film cooling and the rib turbulrator. The region of the minimum cooling effectiveness (44.8 %) was positioned at the leading edge. And the results show that the TBC layer increases the average cooling effectiveness up to 18 %.

Large eddy simulation of wind loads on a long-span spatial lattice roof

  • Li, Chao;Li, Q.S.;Huang, S.H.;Fu, J.Y.;Xiao, Y.Q.
    • Wind and Structures
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    • 제13권1호
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    • pp.57-82
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    • 2010
  • The 486m-long roof of Shenzhen Citizens Centre is one of the world's longest spatial lattice roof structures. A comprehensive numerical study of wind effects on the long-span structure is presented in this paper. The discretizing and synthesizing of random flow generation technique (DSRFG) recently proposed by two of the authors (Huang and Li 2008) was adopted to produce a spatially correlated turbulent inflow field for the simulation study. The distributions and characteristics of wind loads on the roof were numerically evaluated by Computational Fluid Dynamics (CFD) methods, in which Large Eddy Simulation (LES) and Reynolds Averaged Navier-Stokes Equations (RANS) Model were employed. The main objective of this study is to explore a useful approach for estimations of wind effects on complex curved roof by CFD techniques. In parallel with the numerical investigation, simultaneous pressure measurements on the entire roof were made in a boundary layer wind tunnel to determine mean, fluctuating and peak pressure coefficient distributions, and spectra, spatial correlation coefficients and probability characteristics of pressure fluctuations. Numerical results were then compared with these experimentally determined data for validating the numerical methods. The comparative study demonstrated that the LES integrated with the DSRFG technique could provide satisfactory prediction of wind effects on the long-span roof with complex shape, especially on separation zones along leading eaves where the worst negative wind-induced pressures commonly occur. The recommended LES and inflow turbulence generation technique as well as associated numerical treatments are useful for structural engineers to assess wind effects on a long-span roof at its design stage.

Wind-induced responses and dynamic characteristics of a super-tall building under a typhoon event

  • Hua, X.G.;Xu, K.;Wang, Y.W.;Wen, Q.;Chen, Z.Q.
    • Smart Structures and Systems
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    • 제25권1호
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    • pp.81-96
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    • 2020
  • Wind measurements were made on the Canton Tower at a height of 461 m above ground during the Typhoon Vincente, the wind-induced accelerations and displacements of the tower were recorded as well. Comparisons of measured wind parameters at upper level of atmospheric boundary layer with those adopted in wind tunnel testing were presented. The measured turbulence intensity can be smaller than the design value, indicating that the wind tunnel testing may underestimate the crosswind structural responses for certain lock-in velocity range of vortex shedding. Analyses of peak factors and power spectral density for acceleration response shows that the crosswind responses are a combination of gust-induced buffeting and vortex-induced vibrations in the certain range of wind directions. The identified modal frequencies and mode shapes from acceleration data are found to be in good agreement with existing experimental results and the prediction from the finite element model. The damping ratios increase with amplitude of vibration or equivalently wind velocity which may be attributed to aerodynamic damping. In addition, the natural frequencies determined from the measured displacement are very close to those determined from the acceleration data for the first two modes. Finally, the relation between displacement responses and wind speed/direction was investigated.

수치 모사된 뇌우 유출의 구조와 진화 (Structure and Evolution of a Numerically Simulated Thunderstorm Outflow)

  • 김연희;백종진
    • 한국지구과학회지
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    • 제28권7호
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    • pp.857-870
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    • 2007
  • 명시적 액체-얼음상 미시물리 과정을 포함하는 구름 분해 모형(ARPS: Advanced Regional Prediction System)을 이용하여 2차원 그리고 주변 바람이 없는 경우에 뇌우 유출의 구조와 진화를 조사하였다. 고해상도 격자 간격(50m)을 이용하여 유출의 난류 구조를 명시적으로 분해하였다. 모사된 단세포 스톰과 스톰과 연관된 Kelvin-Helmholtz(KH) 빌로우(billow)는 발달, 성숙, 소멸의 생애 단계를 가졌다. 구름 역학과 미시물리 사이의 상호작용으로 야기된 이차 맥동과 대류 세포의 분활이 관측되었다. 상대적으로 건조한 하층 대기를 낙하하는 빗방울과 우박의 증발에 기인한 찬 하강류는 뇌우 찬 공기 유출을 야기시켰다. 유출 머리는 거의 일정한 속도로 이동하였다. KH 불안정에 의해 생성된 KH 빌로우는 유출 상부에서 난류 혼합을 야기하였으며 유출의 구조를 지배하였다. KH 빌로우는 유출 머리에서 생성되었고 돌풍 전선에 상대적으로 뒤쪽으로 이동함에 따라 성장하고 소멸하였다. 가장 빨리 성장하는 섭동의 수평 파장과 임계 시어층 깊이의 비 그리고 KH 빌로우의 수평 파장과 최대 진폭의 비에 대한 수치 모사 결과는 다른 연구 결과와 잘 일치하였다.