• 제목/요약/키워드: Inlet Flow Resistance

검색결과 74건 처리시간 0.022초

저온 출구의 배압조건에 따른 볼텍스 튜브의 온도분리 특성 연구 (Temperature Separation Characteristics of a Vortex Tube Based on the Back Pressure of the Cold Air Exit)

  • 임석연
    • Tribology and Lubricants
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    • 제32권5호
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    • pp.166-171
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    • 2016
  • Electric vehicle ownership is expanding for two reasons: its technology features have enhanced fuel economy, and the number of vehicle emissions regulations is increasing. Battery performance has a large influence on the capability of electric vehicles, and even though battery thermal management has been actively researched, specific technological improvements to battery performance are not being presented. For instance, many industrial applications utilize vortex tubes as components for refrigeration machines because of their numerous intrinsic benefits. If electric vehicles incorporate vortex tubes for battery cooling, performance and efficiency advancements are possible. This study uses a counter-flow vortex tube to investigate its temperature separation characteristics, based on the back pressure of the cold air exit and the difference between the inlet and back pressures. The experiment uses a vortex tube with the following parameters: six nozzle holes, a 20 mm inner vortex diameter (D), a 14D tube length, a 0.7D cold exit orifice diameter, and a nozzle area ratio of 0.142. The measurements prove that the temperature difference between the hot air and cold air decreased because of the flow resistance of the hot air and the backflow phenomenon at the cold air exit. The flow resistance causes the temperature difference to decrease, and the back pressure of the cold air exit influences the flow resistance. The results show that the back pressure significantly influences the efficiency of temperature separation.

A FLOW AND PRESSURE DISTRIBUTION OF APR+ REACTOR UNDER THE 4-PUMP RUNNING CONDITIONS WITH A BALANCED FLOW RATE

  • Euh, D.J.;Kim, K.H.;Youn, Y.J.;Bae, J.H.;Chu, I.C.;Kim, J.T.;Kang, H.S.;Choi, H.S.;Lee, S.T.;Kwon, T.S.
    • Nuclear Engineering and Technology
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    • 제44권7호
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    • pp.735-744
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    • 2012
  • In order to quantify the flow distribution characteristics of APR+ reactor, a test was performed on a test facility, ACOP ($\underline{A}$PR+ $\underline{C}$ore Flow & $\underline{P}$ressure Test Facility), having a length scale of 1/5 referring to the prototype plant. The major parameters are core inlet flow and outlet pressure distribution and sectional pressure drops along the major flow path inside reactor vessel. To preserve the flow characteristics of prototype plant, the test facility was designed based on a preservation of major flow path geometry. An Euler number is considered as primary dimensionless parameter, which is conserved with a 1/40.9 of Reynolds number scaling ratio. ACOP simplifies each fuel assembly into a hydraulic simulator having the same axial flow resistance and lateral cross flow characteristics. In order to supply boundary condition to estimate thermal margins of the reactor, the distribution of inlet core flow and core exit pressure were measured in each of 257 fuel assembly simulators. In total, 584 points of static pressure and differential pressures were measured with a limited number of differential pressure transmitters by developing a sequential operation system of valves. In the current study, reactor flow characteristics under the balanced four-cold leg flow conditions at each of the cold legs were quantified, which is a part of the test matrix composing the APR+ flow distribution test program. The final identification of the reactor flow distribution was obtained by ensemble averaging 15 independent test data. The details of the design of the test facility, experiment, and data analysis are included in the current paper.

착상조건하에서 평행 평판 열교환기의 열 및 물질전달 (Heat and Mass Transfer of Parallel Plate Heat Exchanger under Frosting Condition)

  • 이관수;이태희;김우승
    • 설비공학논문집
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    • 제6권2호
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    • pp.155-165
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    • 1994
  • In this study, the following factors are investigated from experiments for a vertical parallel plate heat exchanger under the frosting condition ; the growth of frost layer, the characteristics of heat and mass transfer, the change of mass flow rate of the air passing through the heat exchanger, and the pressure drop of the air in the heat exchanger. The amount of heat and mass flux of water vapor transferred from the air stream to the heat exchanger surface is large at the early stage of frosting and then decreases dramatically, and the extent of decreasing rate becomes moderate with time. The frost layer formed near the inlet of the heat exchanger is thicker and denser than that formed near the outlet. It is found that the gradient of the amount of frost along the flow direction increases with time. In the early period of frost formation, the thermal resistance between the air and the cooling plate increases dramatically and then the extent of change decreases with time. Initially the convective thermal resistance is dominant. Then, while the convective thermal resistance decreases with time, the conductive thermal resistance continues to increase with time and finally the conductive thermal resistance becomes dominant.

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자동차 스포일러의 형상에 따른 유동해석 (Flow Analysis due to the Configuration of Automotive Spoiler)

  • 한문식;조재웅
    • 한국자동차공학회논문집
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    • 제24권6호
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    • pp.677-683
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    • 2016
  • In this study, the pressures due to air resistances on the models of 1, 2, 3 and 4 as the automotive bodies grafted on various spoilers are investigated through the flow analysis. Model 1 has the flat type and model 2 has the shape that a flat plane is projected. Model 3 is attached with the slanted plate and model 4 has the shape that two slanted plates are installed on both sides. At the flow streams on the models of 1, 2, 3 and 4, the flow velocities are shown to become highest above the roofs of automotive bodies. The maximum flow velocities are also shown at the beginning points at the roofs of car bodies on the side planes of automotive bodies. The maximum pressures of 102,500 to 102,553 Pa as air resistances are shown at the bumpers of the front car bodies. The flow velocities on the inlet and middle planes become nearly same at the models of 1, 2, 3 and 4. But these velocities on the inlet plane at model 2 projected with the spoiler of flat plate become lower than the models of 1, 3 and 4. The air streams throughout the models become uniform at all models. The flow stream is shown most uniformly at model 2 projected with the spoiler of flat plate. But the flow stream is shown most irregularly at model 3 projected with the spoiler of slanting plate. By using the result of this flow analysis, it is thought to reduce the power of car effectively in driving by changing the configuration of automotive spoiler.

해빈경사에 따른 잠제 개구부의 3차원적인 흐름특성에 관한 연구 (A Study on Effect of Beachface Gradient on 3-D Currents around the Open Inlet of Submerged Breakwaters)

  • 이우동;허동수;박종배;안성욱
    • 한국해양공학회지
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    • 제23권1호
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    • pp.7-15
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    • 2009
  • The aim of this study was to survey the effects of the beachface gradient on 3-D currents around the open inlets of submerged breakwaters. First, the numerical model was validated by a comparison with existing experimental data. This model is able to consider the flow through a porous medium with inertial, laminar, and turbulent resistance terms, i.e. simulate directly WAve?Structure?Seabed/Sandy beach interaction, and can determine the eddy viscosity with a LES turbulent model in a 3-Dimensional wave field (LES-WASS-3D). Using the numerical results of this model, the 3-D currents around the open inlets of submerged breakwaters were examined in relation to the beachface gradient. Moreover, the wave height distribution and mean flow around them are also discussed, as well as the distribution of the wave breaking points over the crest.

고 흡입저항을 가진 원심 송풍기 (Centrifugal Blower with High Inlet Resistance)

  • 김재원
    • 한국유체기계학회 논문집
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    • 제6권2호
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    • pp.15-22
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    • 2003
  • Comprehensive study on a centrifugal blower for air-purifier involving a few physical filters for percolation process has been accomplished for an optimal design of the air handling system. The filtering media causes a flow resistance for induced flows by a rotating impeller. The present methodology is to adopt PIV system for velocity measurements and wind tunnel connected with an anechoic chamber for total performance test of the blower. Trial prototypes for the blades of a rotor and casing are presented for satisfaction of both flow rate and noise level set by design objectives. Tapered blades with a special casing for a fan show good performance data. The results of velocity fields also explain the reason of improvements of the blower performance.

축압기가 부착된 관로의 동특성 수치해석 (Numerical Analysis of the Dynamical Characteristics of Fluid Flow Inside a Pipe with an Accumulator)

  • 서용권
    • 설비공학논문집
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    • 제13권5호
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    • pp.388-397
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    • 2001
  • This paper addresses characteristics of compressible flow dynamics inside a pipe with an accumulator and an inlet orifice. It also presents a simple but stable numerical method associated with the accumulator-orifice calculation. In particular, a focus is given to developing a method of finding an optimum design of the accumulator-orifice system (i.e., the accumulator size and the throttle resistance) that gives the most effective dissipation of the water-hammering problem. It is found that there exists indeed an optimum set of parameter values for the most effective dissipation of the wave energy.

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소형 흡연집진기 내부 유동특성에 관한 수치해석 (Numerical analysis on the inner flow characteristic for small smoke collector)

  • 장성철;김재웅;이중섭
    • 한국기계가공학회지
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    • 제12권5호
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    • pp.67-75
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    • 2013
  • This study is flow analysis on the smoke collector in smoking room. The smoke collector for improving impure air at smoking area is analyzed and the inner flow filed in smoke collector is confirmed on the study result. The velocity with pressure distribution according to suction flow rate at filter entrance is also compared. Pressure characteristic and pressure resistance coefficient are analyzed according to flow analysis result for each other filter. The pressure drop of about 15 Pa occurs at the normal driving mode to strainer inlet from HEPA filter outlet. On the other hand, the pressure drop about 44% increases at turbo mode.

선박용 환기구 루버 개발을 위한 수치해석 (Numerical Analysis on the Development of a Ventilation Opening Louver for Marine)

  • 이중섭;진도훈
    • 한국기계가공학회지
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    • 제16권1호
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    • pp.30-35
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    • 2017
  • This study is about distributions of flow in a ventilation system used in a louver for marine. In this study, to describe the flow in the ventilation opening louver, 3-dimensional steady-state turbulence was assumed to govern the equation. The flow field with pressure distribution according to the inlet velocity at the louver types is also compared. Flow analysis was performed for the louver numerical analysis on two types. The numerical analysis results in the louver blade indicated increased flow resistance at type-1.

이중 블레이드 팬이 장착된 진공청소기 브러쉬의 유동소음 특성 (Characteristics of Flow-Induced Noise in the Suction Nozzle of a Vacuum Cleaner with a Double-Blade Fan)

  • 박이선;손채훈;오장근
    • 대한기계학회논문집B
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    • 제35권2호
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    • pp.205-213
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    • 2011
  • 진공청소기 브러쉬의 소음원인과 소음특성에 관하여 고찰하였다. 먼저, 소음원인을 분석하기위해서 수치해석 결과를 토대로 유동저항을 분석하였다. 그 결과 청소기 브러쉬 소음의 주요 원인은 팬회전에 의한 톤소음이 아니고, 브러쉬 내부의 유체역학적인 특성에 의한 유동저항 증가로 인해서 발생하는 유동소음임을 알 수 있었으며, 그 타당성을 무향실에서 음향파워 측정 실험을 통해서 확인하였다. 다음으로, 소음측정 실험을 통해서 브러쉬의 최적 설계를 통해 저감할 수 있는 최대 소음저감 한계가 4dBA 임을 확인하였다. 팬 블레이드 개수, 공기 흡입구 확장에 따른 소음 특성을 분석하였고, 이로부터 소음저감 한계가 너무 작아서 팬 블레이드 개수, 공기 흡입구 확장에 따른 소음 저감량이 2 dBA 이내로 작은 것을 알 수 있었다.