• 제목/요약/키워드: Total flow velocity

검색결과 382건 처리시간 0.028초

극초음속 추진기관의 특성 및 초음속 연소 풍동 기초 설계 (Characteristics of Hypersonic Airbreathing Propulsion System and Preliminary Design of Supersonic Combustion Tunnel)

  • 김정용;허환일
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2001년도 제16회 학술발표회 논문초록집
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    • pp.35-38
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    • 2001
  • 차세대 추진 기관으로 연구되고 있는 스크램제트 엔진의 열역학적 특성들을 검토하였다. 유동이 엔진을 통과하면서 연소에 의해 전압력이 손실되고 노즐 출구 마하수가 감소하지만, 고온 연소 가스가 배출되기 때문에 실질적인 속도는 증가하게 되고 추력이 발생한다. 초음속 연소를 모사하기 위해 blowdown 형태의 초음속 연소 풍동 설계를 위한 개념 설계가 이루어졌다. 초음속 풍동 시험부에서 마하 2.5의 속도를 유지하기 위한 작동 압력과 질유량이 계산되었다.

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UBET를 이용한 리브-웨브형 링 단조에 관한 연구 (A study on rib-web shaped ring forging using UBET)

  • Kim, Y.H.;Bae, W.B.;Nam, K.H.
    • 한국정밀공학회지
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    • 제11권5호
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    • pp.134-142
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    • 1994
  • An upper bound elemental technique (UBET) is applied to predict variations of neutral plane and optimal position of the initial billet for rib-wep shaped ring forging. In the analysis, the neutral plane position and velocity fields are determined by minimizing the total power consump- tion with respect to chosen parameters. The degree of die-cavity filling by initial billet-position and the variations of neutral plane by friction condition are investigated. Experiments have been carried out with pure plasticine billets at room temperature. The theoretical predictions of the forging load and the flow pattern are in good agrement with the experimental results.

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전향각이 큰 선형터빈 익렬을 통하는 난류유동의 수치해석 (Numerical simulation of turbulent flows through linear turbine cascades with high turning angles)

  • 이훈구;유정열;윤준원
    • 대한기계학회논문집B
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    • 제20권12호
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    • pp.3917-3925
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    • 1996
  • A numerical analysis on three dimensional turbulent incompressible flows through linear cascades of turbine rotor blades with high turning angles has been performed by using a generalized k-.epsilon. model which is a high Reynolds number form and derived by RNG(renormalized group) method to account for the variation of the rate of strain. A second order upwind scheme is used to suppress numerical diffusion in approximating the convective terms. Body-fitted coordinates are adopted to represent the complex blade geometry accurately. For the case without tip clearance, velocity vectors and static pressure contours are shown to be in good agreement with previous experimental results. For the case with tip clearance, the effects of the passage vortex and tip clearance flow on the total pressure loss as well as their interactions are discussed.

와류증폭기에서의 압력강하에 관한 고찰 (A Study on Pressure Drop in Vortex Amplifier)

  • 박준상
    • 한국유체기계학회 논문집
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    • 제20권1호
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    • pp.29-34
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    • 2017
  • An analysis on pressure drop in vortex amplifier has been performed. Based on theoretical approach with flow physics on well-known firm ground from previous studies, two dimensional flow model, which is very useful to calculate pressure drop of vortex amplifier, is proposed. Parametric studies on inlet and outlet boundary conditions also have been performed so that it found the most influential parameter is the inlet swirl velocity condition. Finally, a simple formulation is given to calculate total pressure drop.

Wake Effect on HAT Tidal Current Power Device Performance

  • Jo, Chul-Hee;Lee, Kang-Hee;Lee, Jun-Ho;Nichita, Cristian
    • International Journal of Ocean System Engineering
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    • 제1권3호
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    • pp.144-147
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    • 2011
  • The rotor that initially converts the flow energy into rotational energy is a very important component that affects the efficiency of the entire tidal current power system. Rotor performance is determined by various design variables. Power generation is strongly dependent on the incoming flow velocity and the size of the rotor. To extract a large quantity of power, a tidal current farm is necessary with a multi-arrangement of devices in the ocean. However, the interactions between devices also contribute significantly to the total power capacity. Therefore, rotor performance, considering the interaction problems, needs to be investigated to maximize the power generation in a limited available area. The downstream rotor efficiency is affected by the wake produced from the upstream rotor. This paper introduces the performance of a downstream rotor affected by wakes from an upstream rotor, demonstrating the interference affecting various gabs between devices.

An Experimental Study of the Airside Performance of Slit Fin-and-Tube Heat Exchangers under Dry and Wet Conditions

  • Chang, Keun-Sun;Long, Phan-Than
    • International Journal of Air-Conditioning and Refrigeration
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    • 제17권1호
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    • pp.7-14
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    • 2009
  • Water condensate accumulated on the surface of a fin-and-tube heat exchanger significantly affects its thermal and hydraulic performances. The purpose of this study is to investigate the effects of condensate retention on the air-side heat transfer performance and flow friction for various flow and geometric conditions. Total of twelve samples of slit and plate fin-and-tube heat exchangers are tested under dry and wet conditions. The thermal fluid measurements are made using a psychrometric calorimeter. Frontal air velocity varies in the range from 0.7 m/s to 1.5 m/s. Using the experimental data, presented are heat transfer coefficients in terms of Colburn j-factors and friction factors, and these data are compared with the existing correlations.

베어링레이스의 온간성형에서 UBET 해석에 의한 공정개선 및 유동구속조건의 향상 (The Improvement of Bearing-Race Forming Process Using UBET Analysis)

  • 김영호;배원병;박재우
    • 한국정밀공학회지
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    • 제14권8호
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    • pp.92-100
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    • 1997
  • An upper-bound elemental technique (UBET) analysis is carried out to improve the material flow and to reduce the load of bearing-race forming process. The UBET analysis, which adapts the advantages of stream function and finite element method, is useful for predicting the profile of complex geometric bound- ary. From the UBET analysis, the forming load, the velocity distribution and the stream line of the deformed billet are determined by minimizing the total power consumption with respect to chosen parameters. The results of present UBET analysis are better than those of previous UBET analysis. Experiments have been carried out with model material plasticine billets at room temperature. The theoretical predictions for forming load and flow pattern(stream line) are in good agreement with the experimental results.

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Unsteady 2-D flow field characteristics for perforated plates with a splitter

  • Yaragal, Subhash C.
    • Wind and Structures
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    • 제7권5호
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    • pp.317-332
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    • 2004
  • Wind tunnel experiments were conducted under highly turbulent and disturbed flow conditions over a solid/perforated plate with a long splitter plate in its plane of symmetry. The effect of varied level of perforation of the normal plate on fluctuating velocities and fluctuating pressures measured across and along the separation bubble was studied. The different perforation levels of the normal plate; that is 0%, 10%, 20%, 30%, 40% and 50% are studied. The Reynolds number based on step height was varied from $4{\times}10^3$ to $1.2{\times}10^4$. The shape and size of the bubble vary with different perforation level of the normal plate that is to say the bubble is reduced both in height and length up to 30% perforation level. For higher perforation of the normal plate, bubble is completely swept out. The peak turbulence value occurs around 0.7 to 0.8 times the reattachment length. The turbulence intensity values are highest for the case of solid normal plate (bleed air is absent) and are lowest for the case of 50% perforation of the normal plate (bleed air is maximum in the present study). From the analysis of data it is observed that $\sqrt{\overline{u^{{\prime}2}}}/(\sqrt{\overline{u^{{\prime}2}}})_{max}$, (the ratio of RMS velocity fluctuation to maximum RMS velocity fluctuation), is uniquely related with dimensionless distance y/Y', (the ratio of distance normal to splitter plate to the distance where RMS velocity fluctuation is half its maximum value) for all the perforated normal plates. It is interesting to note that for 50% perforation of the normal plate, the RMS pressure fluctuation in the flow field gets reduced to around 60% as compared to that for solid normal plate. Analysis of the results show that the ratio [$C^{\prime}_p$ max/$-C_{pb}(1-{\eta})$], where $C^{\prime}_p$ max is the maximum coefficient of fluctuating pressure, $C_{pb}$ is the coefficient of base pressure and ${\eta}$ is the perforation level (ratio of open to total area), for surface RMS pressure fluctuation levels seems to be constant and has value of about 0.22. Similar analysis show that the ratio $[C^{\prime}_p$ max/$-C_{pb}(1-{\eta})]$ for flow field RMS pressure fluctuation levels seems to be constant and has a value of about 0.32.

연엽산 산지계류에 있어서 저서성 대형무척추동물의 서식특성 (Habitat Characteristics of Benthic Macroinvertebrates at a Headwater Stream in the Yeonyeopsan (Mt.))

  • 장수진;남수연;김석우;구효빈;김지현;이윤태;전근우
    • 한국환경생태학회지
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    • 제34권4호
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    • pp.334-344
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    • 2020
  • 연엽산 산지계류의 저서성 대형무척추동물은 총 24과 44종 658개체가 확인되었으며, 참납작하루살이(Ecdyonurus dracon Kluge)가 13%로 우점하였다. 서식습성군으로는 붙는 무리(56%), 굴파는 무리(19%), 헤엄치는 무리(14%) 및 기는 무리(56%)의 총 4군집이 확인되었고, 1개소(UP1)를 제외한 모든 조사지점에서 붙는 무리가 우점한 것으로 나타났다. 그리고 서식특성은 서식처의 유속, 수심, 계상재료 등 수리학적 요인과 용존산소, 수온 등 수질 요인에 따라 달라지며, 유수가 정체하는 소(pool)보다는 유속이 빠른 여울(riffle, step-riffle)에서 그 차이가 나타났다. 즉, 여울에서는 수심과 관계없이 계상의 유속이 빠르고 계상재료의 중앙입경과 최대입경이 클수록 서식처에서 붙는 무리가, 유속이 느리고 계상재료의 중앙입경과 최대입경이 작은 서식처에서 굴파는 무리와 기는 무리가 우점하였다. 또한, 용존산소와 유속은 정의 상관관계(y = 0.6666x - 0.659, R2 = 0.0851)에 있으며, 굴파는 무리가 기는 무리와 붙는 무리보다 더 넓은 범위에 서식하는 것으로 나타났다. 수심이 얕을수록 일사량에 대한 수온의 민감도가 크기 때문에 수심과 수온은 부의 상관관계(y = -26.397x + 283.87, R2 = 0.1802)를 보였으며, pH와 수온은 정의 상관관계가 나타났다. 한편, pH와 용존산소의 관계를 상·하류로 구분하여 서식특성을 파악한 결과, 군집과 상관없이 울페도가 68%로 높았던 상류에서는 높은 용존산소값과 낮은 pH를, 울페도가 51%로 상대적으로 낮았던 하류에서는 낮은 용존산소값과 높은 pH가 나타나, 계안림에 의한 부착조류의 증식과 수온상승을 억제하는 역할을 한 것으로 판단된다. 이 연구는 산지계류에 있어서 저서성 대형무척추동물의 서식특성을 파악함으로써, 산지계류가 청정지역으로 인식되어 연구 대상으로서의 관심도가 낮았던 부분의 자료를 보완하였다. 따라서 향후 산지계류의 보호 및 관리 측면에서의 연구 방안 마련과 학술적인 가치를 높이기 위한 기초자료로 활용될 것으로 기대된다.

Dynamic and static structure analysis of the Obermeyer gate under overflow conditions

  • Feng, Jinhai;Zhou, Shiyue;Xue, Boxiang;Chen, Diyi;Sun, Guoyong;Li, Huanhuan
    • Computers and Concrete
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    • 제29권4호
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    • pp.209-217
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    • 2022
  • In order to analyze the static and dynamic structural characteristics of the Obermeyer gate under overflow conditions, the force characteristics and vibration characteristics of the shield plate structure are studied based on the fluid-solid coupling theory. In this paper, the effects of the flow rate, airbag pressure and overflow water level on the structural performance of shield plate of air shield dam are explored through the method of controlling variables. The results show that the maximum equivalent stress and total deformation of the shield plate decrease first and then increase with the flow velocity. In addition, they are positively correlated with the airbag pressure. What's more, we find that the maximum equivalent stress of the shield plate decreases first and then increases with the overflow water level, and the total deformation of the shield plate decreases with the overflow water level. What's more importantly, the natural frequency of the shield structure of the Obermeyer gate is concentrated at 50 Hz and 100 Hz, so there is still the possibility of resonance. Once the resonance occurs, the free edge of the shield vibrates back and forth. This work may provide a theoretical reference for the safe and stable operation of the shield of the Obermeyer gate.