• 제목/요약/키워드: Flow Regime Analysis

검색결과 198건 처리시간 0.026초

정압기지내의 안전밸브 분출용량 관계식 검증을 위한 유동해석(I) - 정압기 유동 해석 및 질량 유량 검증 - (Numerical Analysis for Evaluation of Ejection Capacity Relationship of Safety Valves in Pressure Regulating Station(I) - Flow Analysis and Mass Flow Rate Verification of Pressure Regulator -)

  • 권혁록;노경철;김영섭;이성혁
    • 한국가스학회지
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    • 제12권2호
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    • pp.99-104
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    • 2008
  • 가스 정압기지 내의 가스 정압기는 배관 내의 높은 가스의 압력을 일정한 압력으로 낮추는 역할을 한다. 가스 정압기는 흐르는 가스의 유동을 제어할 뿐 아니라, 하류의 압력을 제어하는 데도 사용한다. 가스 정압기지의 안전성을 위해서 정압기와 정압기에 연결되어 있는 안전밸브의 유동 특성을 파악하는 것은 필수적이다. 따라서 본 연구에서는 정압기의 질량 유량 및 유동 특성을 다양한 입구 및 출구 압력 조건, 그리고 개도율에 대하여 수치해석 방법을 이용하여 알아보았다. 이러한 질량 유량에 대한 수치해석 결과는 정압기 제조사로부터 제안되는 실험 수식을 통하여 검증하였다. 결론적으로, 수치해석 결과와 실험 수식을 통해 얻어진 결과가 잘 일치함을 알 수 있다.

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금속의 펨토초 어블레이션의 수치해석 (Numerical analysis of fs laser ablation of metals)

  • 오부국;김동식;김재구;이제훈
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 춘계학술대회 논문집
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    • pp.657-658
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    • 2006
  • Although there are many numerical models to simulate fs laser ablation of metals, no model can analyze the ablation phenomena over a wide range of fluence. In this work, a numerical code for simulating the fs laser ablation phenomena of metals has been developed. The two temperature model is employed to predict the ablation rate and the crater shape of metals using phase explosion mechanism in the relatively high fluence regime. Also, the ultrashort thermoelastic model is used for the low fluence regime to account for spallation of the sample by high strain rate. It has been demonstrated that the thermoelastic stress generated within the sample can exceed the yield stress of the material even near the threshold fluence. Numerical computation results are compared with the experiment for Cu and Ni and show good agreement. Discussions are made on the hydrodynamic model considering phase change and hydrodynamic flow.

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회전원판형 CVD 장치의 유동 재순환을 억제하는 출구부 형상 설계를 위한 전산해석 (A COMPUTATIONAL ANALYSIS FOR OUTLET SHAPE DESIGN TO SUPPRESS FLOW RECIRCULATION IN A ROTATING-DISK CVD REACTOR)

  • 박장진;김경진;곽호상
    • 한국전산유체공학회지
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    • 제18권4호
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    • pp.74-81
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    • 2013
  • A numerical design analysis is conducted to search for an optimal shape of outlet in a rotating-disk CVD reactor. The goal is to suppress flow recirculation that has been found in a reactor having a sudden expansion of flow passage outside of the rotating disk. In order to streamline gas flow, the sidewall at which the flow in the Ekman layer is impinged, is tilted. The axisymmetric laminar flow and heat transfer in the reactor are simulated using the incompressible ideal gas model. For the conventional vertical sidewall, the flow recirculation forming in the corner region could be expanded into the interior to distort the upstream flow. The numerical results show that this unfavorable phenomenon inducing back flow could be dramatically suppressed by tilting the sidewall at a certain range of angle. The assessment of deviation in deposition rate based on the characteristic isotherm illustrates that the sidewall tilting may expand the domain of stable plug-like flow regime toward higher pressure. A physical interpretation is attempted to explain the mechanism to suppress flow recirculation.

하천식생 이입 현상에 대한 수문현상 변화와 영양염류 영향의 예비 검증 (A Preliminary Verification of the Influences of Hydrologic Regime Change and Nutrients Influx on Vegetation Recruitment on Riparian Bars)

  • 우효섭;강준구;조형진;최이송;박문형
    • Ecology and Resilient Infrastructure
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    • 제2권4호
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    • pp.284-290
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    • 2015
  • 본 연구는 비 조절하천에서 식생 이입 및 활착 현상에 대해 봄철 강수특성 변화에 따른 식생영향 가설과 질소화합물의 하천유입에 따른 식생영향 가설을 일차적으로 검증하는 것이다. 첫 번째 가설을 검증하기 위해 국내하천에 대해 갈대와 달뿌리풀의 발아기, 유식물기인 3-5월의 강우특성 변화를 분석하였다. 그 결과 최근 35년 동안 연 총 강수량은 약 15% 늘어난 반면에 3-5월의 강수량은 오히려 약 15% 이상 감소한 것으로 나타나서 이러한 가설을 부분적으로 뒷받침하였다. 두 번째 가설을 검증하기 위해 한 쌍의 실험수로에 갈대를 식재 하고 여름 기간 동안 갈대성장을 관찰한 결과 질소화합물이 3.5 mg/L 정도 함유된 오염수를 주기적으로 흘린 수로의 경우 그렇지 않은 경우보다 약 30% 이상 갈대성장이 높은 것을 확인하였다. 비록 강우량 분석 결과와 식생수로 실험결과는 제한된 범위 내에서 수행된 것이지만 국내 비 조절 중소하천의 초본류 번무현상을 일부 설명할 수 있을 것이다.

단열 계면 마찰계수에 대한 준 실험식 (A Semi-Empirical Correlation for an Adiabatic Interfacial Friction Factor)

  • Nam, Ho-Yun;Chun, Moon-Hyun
    • Nuclear Engineering and Technology
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    • 제26권1호
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    • pp.108-118
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    • 1994
  • 긴 수평관에서 공기와 물의 역성층류시 적용할 수 있는 단열계면 마찰계수에 대한 준 실험식을 개발하였다. 둥근관과 사각관으로 된 단열 역성층류 실험장치를 사용하여 물의 수위 및 공기의 속도를 변화시키면서 일련의 실험을 수행하였다. 수평으로 된 원형 및 사각형 실험관속으로 흐르는 유체의 주요 유동 변수들을 동시에 측정한 실험치들과 계면이 물결파에 의해 거칠어진다는 새로운 개념을 도입하여 성층류영역의 계면마찰 계수에 대한 준 실험식을 개발하였다. 이 해석에는 다른 연구자들의 병류실험치 15개를 포함하여 총 201개의 실험치들을 사용하였다. 이 실험치들과 여기서 제안한 준 실험식의 예측치와 비교하면 오차 범위는 $\pm$30% 정도이다.

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Analysis on the performance and internal flow of a tubular type hydro turbine for vessel cooling system

  • Chen, Zhenmu;Kim, Joo-Cheong;Im, Myeong-Hwan;Choi, Young-Do
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권10호
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    • pp.1244-1250
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    • 2014
  • The temperature of the main engine cabin of commercial vessel is very high. The material SS-316L undergoes creep damage at temperatures exceeding $450^{\circ}C$. It is essential to maintain the highly stressed engine cabin below the creep regime. Hence, seawater is employed in this kind of maritime vehicles as cooling liquid. It obtains the thermal energy at the cooling pipe line after passing through main engine cooling system. To harness the energy in the seawater, a turbine can be installed to absorb the energy in the seawater before being released into the sea. In this study, a cooling pipe line is selected to apply the tubular type hydro turbine for transferring the energy. Numerical analysis for investigating the performance and the internal flow characteristics of the tubular turbine is conducted. The results show that the maximum efficiency of 85.8% is achieved although the efficiency drops rapidly at partial flow rate condition. The efficiency descends slowly at the condition of excess flow rate. There is a relatively wide operating range of flow rate of this turbine to keep high efficiency at the excess flow rate condition. For the internal flow of the turbine, there is uniform streamline on the suction and pressure sides of the blade at the design point. However, the secondary flow appears at the suction and pressure sidesat the excess flow rate.In addition, it appears only at pressure side at the partial flow rate condition.

혼합냉매의 환상 유동 증발열전달 해석 (Analysis of Convective Boiling Heat Transfer for Refrigerant Mixtures in Annular Horizontal Flow)

  • 신지영;김민수
    • 대한기계학회논문집B
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    • 제20권2호
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    • pp.720-729
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    • 1996
  • An analysis of convective boiling heat transfer for refrigerant mixtures is performed for an annular flow to investigate the degradation of the heat transfer rate. Annular flow is selected in this study because a great portion of the evaporator in the refrigeration and air conditioning system is known to be in the annular flow regime. Mass transfer effect due to composition difference between liquid and vapor is included in this analysis, which is considered to be one of driving forces for the mass transfer at the interface. Due to the concentration gradient at the interface the mass transfer is interfered, so is the evaporative heat transfer at the interface. The mass transfer resistance makes the interface temperature slightly higher and, as a result, the heat transfer coefficients decrease compared with those without mass transfer effects. The degradatioin of the heat transfer rate reaches its maximum at a certain composition. The composition difference between vapor core and vapor at the interface has a direct effect on the temperature difference between the vapor core and the interface and the degradation of the heat transfer rate. Correction factor $C_{F}$ for the mixture effects is added to the correlation for pure substances and the flow boiling heat transfer coefficients can be calculated using the modified equation.n.

배리어가 포함된 카오스 마이크로 믹서의 개발 (Development of a Barrier Embedded Chaotic Micromixer)

  • 김동성;이석우;권태헌;이승섭
    • 대한기계학회논문집A
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    • 제28권1호
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    • pp.63-69
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    • 2004
  • It is of great interest to enhance mixing performance in a microchannel in which the flow is usually characterized as a low Reynolds number (Re) so that good mixing is quite difficult to be achieved in this laminar flow regime. In this regard, we present a new chaotic passive micromixer, named Barrier Embedded Micromixer (BEM), of which the mixing mechanism is based on chaotic flows. In BEM, chaotic flow is induced by periodic perturbation of the velocity field due to periodically inserted barriers along the channel wall while a helical type of flow is obtained by slanted grooves on the bottom surface of the channel in the pressure driven flow. To experimentally compare the mixing performance, a T-microchannel and a microchannel with only slanted grooves were also fabricated. All microchannels were made of PDMS (Polydimethylsiloxane) from SU-8 masters that were fabricated by conventional photolithography. Mixing performance was experimentally characterized with respect to an average mixing intensity by means of color change of phenolphthalein as pH indicator. It was found that mixing efficiency decreases as Re increases for all three micromixers. Experimental results obviously indicate that BEM has better mixing performance than the other two. Chaotic mixing mechanism, suggested in this study, can be easily applied to integrated microfluidic systems , such as Micro-Total-Analysis-System, Lab-on-a-chip and so on.

고압하에서 수소-산소의 정체점 점화에 관한 이론적 해석 (Asymptotic Analysis on the Stagnation-Point Ignition of Hydrogen-Oxygen Mixture at High Pressures)

  • 이수룡
    • 대한기계학회논문집B
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    • 제27권10호
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    • pp.1393-1400
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    • 2003
  • Ignition of hydrogen and oxygen in the "third limit" is theoretically investigated in the stagnation point flow with activation energy asymptotics. With the steady-state approximations of H, OH, O and HO$_2$, a two-step reduced kinetic mechanism is derived for the regime lower than the crossover temperature T$_{c}$ at which the rates of production and consumption of all radicals are equal. Appropriate scaling of Damkohler number successfully provides the explicit relationship between pressure, temperature and strain rate at ignition. It is shown that, compared with those for the counterflow, ignition temperatures for the stagnation point flow are considerably increased with increasing the system pressure. This is because ignition in the "third limit" is characterized by the production of reduction of $H_2O$$_2$, which is reduced by wall effect. Strain rate substantially affects ignition temperature because key reaction rates of $H_2O$$_2$ are comparably with its transport rate, while the mixture temperature and the hydrogen composition do not significantly affect ignition temperature.e.

Power upgrading of WWR-S research reactor using plate-type fuel elements part I: Steady-state thermal-hydraulic analysis (forced convection cooling mode)

  • Alyan, Adel;El-Koliel, Moustafa S.
    • Nuclear Engineering and Technology
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    • 제52권7호
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    • pp.1417-1428
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    • 2020
  • The design of a nuclear reactor core requires basic thermal-hydraulic information concerning the heat transfer regime at which onset of nucleate boiling (ONB) will occur, the pressure drop and flow rate through the reactor core, the temperature and power distributions in the reactor core, the departure from nucleate boiling (DNB), the condition for onset of flow instability (OFI), in addition to, the critical velocity beyond which the fuel elements will collapse. These values depend on coolant velocity, fuel element geometry, inlet temperature, flow direction and water column above the top of the reactor core. Enough safety margins to ONB, DNB and OFI must-emphasized. A heat transfer package is used for calculating convection heat transfer coefficient in single phase turbulent, transition and laminar regimes. The main objective of this paper is to study the possibility of power upgrading of WWR-S research reactor from 2 to 10 MWth. This study presents a one-dimensional mathematical model (axial direction) for steady-state thermal-hydraulic design and analysis of the upgraded WWR-S reactor in which two types of plate fuel elements are employed. FOR-CONV computer program is developed for the needs of the power upgrading of WWR-S reactor up to 10 MWth.