• 제목/요약/키워드: Bubble layer

검색결과 160건 처리시간 0.021초

초음속 유동 내 벤트 혼합기의 형상적 특성에 따른 성능 연구 (A Performance Study of Vent Mixer with Geometric Characteristics in Supersonic Flow)

  • 김채형;정인석
    • 한국항공우주학회지
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    • 제37권1호
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    • pp.69-75
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    • 2009
  • 본 논문은 새로운 개념의 초음속 혼합기인 벤트 혼합기의 형상적 특성에 따른 공력 특성을 연구하였다. 홀의 크기는 2 mm이며 혼합기 벽면에서 2 mm 떨어진 곳에 위치한 모델(case 1)과 혼합기 벽면 뒤쪽에 위치한 모델(case 2)의 경우 같은 전압력 회복율을 보였으며, 홀의 크기를 반으로 줄인 1 mm(case 3) 모델은 cases 1, 2에 비해 낮은 전압력 회복율을 보였다. 재순환 영역의 크기는 cases 1-3은 같지만 전단층 두께는 cases 1, 2가 case 3 보다 두꺼웠다. 재순환 영역 내 압력 손실의 경우 cases 1, 2은 case 3에 비해 낮은 압력 손실과 높은 속도 구배를 보였으며, 이는 재순환 영역 내 공기와 연료의 혼합을 증대시키는 요인이다. 재순환 영역 내로 유입 되는 유동에 의해 형성되는 박리 버블은 연소기의 전압력 회복율과 재순환 영역 내 압력 분포와 순환 유동에 영향을 미친다. 따라서 박리 버블 형성에 영향을 주는 유입 공기 유량이 벤트 혼합기 성능에 주요한 영향을 미치는 것을 알 수 있다.

음파전달에 미치는 풍성기포의 영향 (Effects of Wind-Generated Bubbles on Sound Propagation)

  • 이원병;김영신;주종민;이창원;나정열
    • 한국음향학회지
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    • 제25권8호
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    • pp.395-402
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    • 2006
  • 능동-소나를 이용하여 수중표적을 탐지하는데 있어 소나탐지 성능은 잔향음에 많은 제한을 받는다. 해상풍은 해양에서 기포 형성에 중요한 역할을 한다. 그리고 기포는 유효한 산란체로서 잔향음에 기여한다. 본 연구에서는 중주파수 선저 고전형 능동소나를 운용 시 풍성기포가 음파전달에 미치는 영향을 연구하였다. 주파수 5, 7.5, 10kHz에 대해 기포층을 고려한 음원수심 3, 5, 10m에서의 능동 신호초과비 (Active Signal Excess:ASE)를 계산하였다. 해수면 부근의 음속변화는 해수면 잔향음 준위를 증가시키며, 능동 신호초과비를 변화시킨다 풍속이 10m/s에서 해수면 부근의 최대 탐지거리가 3km 이상 감소하였다. 그 원인은 풍성기포에 의한 해수면 방향으로의 굴절로 분석되었다.

Micro to Nano-scale Electrohydrodynamic Nano-Inkjet Printing for Printed Electronics: Fundamentals and Solar Cell Applications

  • 변도영
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.3.2-3.2
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    • 2011
  • In recent years, inkjet printing technology has received significant attention as a micro/nanofabrication technique for flexible printing of electronic circuits and solar cells, as well for biomaterial patterning. It eliminates the need for physical masks, causes fewer environment problems, lowers fabrication costs, and offers good layer-to-layer registration. To fulfill the requirements for use in the above applications, however, the inkjet system must meet certain criteria such as high frequency jetting, uniform droplet size, high density nozzle array, etc. Existing inkjet devices are either based on thermal bubbles or piezoelectric pumping; they have several drawbacks for flexible printing. For instance, thermal bubble jetting has limitations in terms of size and density of the nozzle array as well as the ejection frequency. Piezoelectric based devices suffer from poor pumping energy in addition to inadequate ejection frequency. Recently, an electrohydrodynamic (EHD) printing technique has been suggested and proposed as an alternative to thermal bubble or piezoelectric devices. In EHD jetting, a liquid (ink) is pumped through a nozzle and a strong electric field is applied between the nozzle and an extractor plate, which induce charges at the surfaces of the liquid meniscus. This electric field creates an electric stress that stretches the meniscus in the direction of the electric field. Once the electric field force is larger than the surface tension force, a liquid droplet is formed. An EHD inkjet head can produce droplets smaller than the size of the nozzle that produce them. Furthermore, the EHD nano-inkjet can eject high viscosity liquid through the nozzle forming tiny structures. These unique features distinguish EHD printing from conventional methods for sub-micron resolution printing. In this presentation, I will introduce the recent research results regarding the EHD nano-inkjet and the printing system, which has been applied to solar cell or thin film transistor applications.

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Breakdown Characteristics for Insulation Design of HTS Transformer in Liquid Nitrogen

  • J.M. Joung;S.M. Baek;Kim, S.H.
    • 한국초전도ㆍ저온공학회논문지
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    • 제5권3호
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    • pp.38-42
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    • 2003
  • HTS transformer is promising one of HTS power applications to be commercialized in the near future. To realize the applications, insulation technology in the coolant, liquid nitrogen, should be established. So breakdown characteristics should be considered at insulation components; turn-to-turn, layer-to-layer, winding-to-winding, were investigated. Firstly breakdown strengths of Kapton films were compared with Kraft paper these are as turn insulator. And next the characteristics of surface flashover on FRP were measured and the influence on breakdown strength of bubble generated with joule heat was discussed with the shape of cooling channel between layers. Finally barrier effect at winding-to-winding was discussed.

UNSTEADY SUPERSONIC INLET DIFFUSER FLOWS WITH SINUSOIDAL PRESSURE OSCILLATIONS

  • Jong Yun Oh
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 1996년도 제7회 학술강연회논문집
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    • pp.107-116
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    • 1996
  • Numerical simulations have been conducted to characterize unsteady flow structures in an axisymmetric supersonic inlet diffuser with sinusoidal pressure oscillations at the diffuser exit. The formulation is based on the unsteady Navier-Stokes equations and turbulence closure is achieved using a two-layer model with a too-Reynolds-number scheme for the near-wall treatment. The governing equations are formulated in an integral form, and are discretized by the four-stage Runge-Kutta scheme for temporal terms and the Harten-Yee upwind TVD scheme for convective terms. Results indicated that the inlet shock characteristics are significantly modified by acoustic oscillations originating from the combustor. The characteristics of shock/boundarv-layer interactions (such as the size of separation bubble, terminal shock shape, and vorticity intensity) are also greatly iufluenced by the shock oscillation due to acoustic waves.

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NACA0012 천이 유동의 저속 공력 특성 해석 (LOW-SPEED AERODYNAMIC CHARACTERISTIC OF TRANSITION FLOW OVER THE NACA0012)

  • 전상언;박수형;김상호;변영환;정경진;강인모
    • 한국전산유체공학회지
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    • 제15권3호
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    • pp.1-8
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    • 2010
  • Laminar separation bubble and transitional flow over the NACA0012 are investigated at a moderate range of Reynolds numbers. A Reynolds-Averaged Navier-Stokes code is coupled with an empirical transition model that can predict transition onset points and the length of transition region. Without solving the boundary layer equations, approximated e-N method is directly applied to the RANS code and iteratively solved together. The computational results are compared with the experimental data for the NACA0012 airfoil. Results of transition onset point and the length are compared well with experimental data and Xfoil prediction. The present RANS results show at high angles of attack better agreement with experimental data than Xfoil results using the boundary layer equations.

난류 경계층에 잠긴 수직벽 주위 유동의 2차원성 연구 (Experimental Investigation of Two-dimensionality of Flow around the Vertical Fence Submerged in a Turbulent Boundary Layer)

  • 차재은;김형우;김형범
    • 한국가시화정보학회지
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    • 제8권1호
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    • pp.13-18
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    • 2010
  • An experimental investigation of the flow around a vertical fence was carried out using a PIV velocity field measurement technique. The vertical fence was embedded in a turbulent boundary layer. The instantaneous velocity fields measured at cross-sectional planes reveal complex longitudinal vortices that vary in size and strength, developing from the upstream location. In the instantaneous vorticity and velocity field data, the shear flow separated from the fence top is highly turbulent and shows unsteady flow characteristics. The topography of the ensemble averaged velocity fields, especially the separation bubble formed behind the fence, shows that the spatial distributions of streamwise velocity (U) and vertical (V) are symmetric, the spanwise velocity (W) is skew-symmetric with respect to the central xy-plane(z=0).

Theoretical Prediction Method of Subcooled Flow Boiling CHF

  • Kwon, Yong-Min;Cahng, Soon-Heung
    • 한국원자력학회:학술대회논문집
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    • 한국원자력학회 1998년도 춘계학술발표회논문집(1)
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    • pp.449-456
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    • 1998
  • A theoretical critical heat flux (CLE) model. based on lateral bubble coalescence on the heated wall, is proposed to predict the subcooled flow boiling CHF in a uniformly heated vertical tube. The model is based on the concept that a single layer of bubbles contacted to the heated wall events a bulk liquid from reaching the wall at near CHF condition. Comparisons between the model predictions and experimental data result in satisfactory agreement within less than 9.73 % root-mean-square error by the appropriate choice of the critical void fraction in the bubbly layer. The present model shows comparable performance with the CHF look-up table of Groeneveld et al.

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Lift Enhancement and Drag Reduction on an Airfoil at Low Reynolds Number using Blowing and Distributed Suction

  • Chao, Song;Xudong, Yang
    • International Journal of Aerospace System Engineering
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    • 제2권1호
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    • pp.6-11
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    • 2015
  • An active flow control technique using blowing and distributed suction on low Reynolds airfoil is investigated. Simultaneous blowing and distributed suction can recirculate the jet flow mass, and reduce the penalty to propulsion system due to avoiding dumping the jet mass flow. Energy is injected into main flow by blowing on the suction surface, and the low energy boundary flow mass is removed by distributed suction, thus the flow separation can be successfully suppressed. Aerodynamic lift to drag ratio is improved significantly using the flow control technique, and the energy consumption is quite low.

점토와 조류입자의 제타전위가 부상분리 효율에 미치는 영향 (Effect of Zeta Potential of Clay and Algae Particles on Flotation Efficiency)

  • 최도영;김성진;정흥조;이세일;백도현;이재욱;곽동희
    • 상하수도학회지
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    • 제19권4호
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    • pp.437-445
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    • 2005
  • Zeta potential is a key parameter of double layer repulsion for individual particles and can usually be used to interpret the trend of coagulation efficiency. This study focused on the measurement of zeta potential of algae and clay under various experimental conditions including water characteristics (pure water, stream water, reservoir water) and coagulant dose (10~50 mg/L). Results showed that the variation of zeta potential was highly sensitive depending on the water characteristics and coagulation conditions. Zeta potential of two genera of algae (anabaena sp. and microcystis sp.) were changed highly with coagulant dosage, especially. On the basis of trajectory analysis, bubble-floc collision efficiency simulated in terms of zeta potential was fitted well with removal efficiency of chlorophyll-a from algae particles. It was found that the control of zeta potential was important for effective removal of algae particles.