• 제목/요약/키워드: laminar

검색결과 1,406건 처리시간 0.026초

Laminar Burning Velocities of Atmospheric Coal Air Mixtures

  • Park, Ho Young;Park, Yoon Hwa
    • KEPCO Journal on Electric Power and Energy
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    • 제2권1호
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    • pp.89-96
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    • 2016
  • The mechanism for laminar dust flame propagation can only be elucidated from a comprehensive mathematical model which incorporates conduction and radiation, as well as the chemical kinetics of particle devolatilization and gas phase and char reaction. The mathematical model for a flat, laminar, premixed coal-air flame is applied to the atmospheric coal-air mixtures studied by Smoot and co-workers, and comparisons are made with their measurements and predictions. Here the principal parameter for comparison is the laminar burning velocity. The studies of Smoot and co-workers are first reviewed and compared with those predicted by the present model. The effects of inlet temperature and devolatilization rate constants on the burning velocities are studied with the present model, and compared with their measurements and predictions. Their measured burning velocities are approximately predicted with the present model at relatively high coal concentrations, with a somewhat increased inlet temperature. From the comparisons, their model might over-estimate particle temperature and rates of devolatilization. This would enable coal-air mixtures to be burned without any form of preheat and would tend to increase their computed values of burning velocity.

탄화수소/수소/일산화탄소-공기의 예혼합화염에서 층류화염전파속도와 화염안정성 (Laminar Burning Velocities and Flame Stability Analysis of Hydrocarbon/Hydrogen/Carbon Monoxide-air Premixed Flames)

  • ;송원식;박정;이기만
    • 한국연소학회지
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    • 제16권2호
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    • pp.23-32
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    • 2011
  • To investigate cell formation in hydrocarbon/hydrogen/carbon monoxide-air premixed flames, the outward propagation and cellular instabilities were experimentally studied in a constant pressure combustion chamber at room temperature and elevated pressures. Unstretched laminar burning velocities and Markstein lengths of the mixtures were obtained by analyzing high-speed schlieren images. In this study, hydrodynamic and diffusional- thermal instabilities were evaluated to examine their effects on flame instabilities. The experimentally-measured unstretched laminar burning velocities were compared to numerical predictions using the PREMIX code. Effective Lewis numbers of premixed flames with methane addition decreased for all of the cases; meanwhile, effective Lewis numbers with propane addition increased for lean and stoichiometric conditions and increased for rich and stoichiometric cases for hydrogen-enriched flames. With the addition of propane, the propensity for cell formation significantly was diminished, whereas cellular instabilities for hydrogen-enriched flames were promoted. However, similar behavior of cellularity was obtained with the addition of methane to the reactant mixtures.

FRP 보강근의 계면전단강도에 대한 임계온도와 노출시간의 영향 (Critical Temperature for Inter-Laminar Shear Strength and Effect of Exposure Time of FRP Rebars)

  • 문도영
    • 콘크리트학회논문집
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    • 제25권1호
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    • pp.45-51
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    • 2013
  • 고온에 노출된 GFRP와 CFRP 보강근의 단지간보 실험을 통해 계면전단강도를 측정하였다. 1차 실험으로서, 노출시간과 온도를 변수로 하였으며, 적용된 고온 조건하에서 강도의 변화를 고찰하였으다. 1차 실험의 결과로부터 두가지 보강근에 대하여 임계온도가 $270^{\circ}C$로 동일한 것을 확인하였다. 이 연구에서 임계온도는 상온에서의 계면전단강도의 50%의 손실을 발생시키는 온도로 정의하였다. 계면전단강도에 대한 임계온도는 섬유의 종류가 아닌 레진이 성능에 지배된다는 것이다. 2차 실험에서는 임계온도하에서 0.25시간의 간격으로 노출시간에 대한 영향을 고찰하였다. 모든 실험 결과로부터, 노출시간의 영향은 노출온도에 비하여 그 영향이 크진 않지만 무시할 정도는 아닌 것으로 나타났다. 더욱이, 그 영향은 임계온도하에서 매우 중대함을 확인하였다.

PIV 기법을 이용한 Streamwise Corner 층류 경계층 측정 연구 (Measurement of the Laminar Boundary Layer in a Streamwise Corner by using PIV Technique)

  • 박동훈;박승오;권기정;심호준
    • 한국항공우주학회지
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    • 제37권12호
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    • pp.1165-1172
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    • 2009
  • 두 개의 평판이 직각으로 만나는 corner에서 형성되는 층류 경계층을 입자영상유속계 기법을 이용하여 측정하였다. 자유류 유속은 2.96 ~ 3.0 m/s, 층류 경계층이 형성 될 수 있도록 모델에 대한 유동의 입사각을 1.2도로 하여 작은 순 압력구배를 제공하였다. 모델의 앞전은 둥근 형상으로 처리하였으며 모델의 길이는 약 1000mm이다. 측정 결과는 이등분면에서 corner 경계층의 전형적인 특징인 변곡점을 가지는 박리형 속도 분포를 보여주었다. 이등분면에서 멀어져 감에 따라 속도 분포는 평판의 Blasius 분포로 변해가고, 이등분면 경계층 두께의 약 절반만큼 평판을 따라 멀어지면 변화가 완료된다. 앞전에서부터 하류로 감에 따라 이등분면에서의 경계층 성장 및 속도 분포의 유사 상사성을 측정 결과로부터 확인하였다.

CFRP 적층쉘의 적층구성 및 곡률 변화에 따른 관통 특성 (Penetration Characteristics of CFRP Laminated shells according to Stacking Sequence and Curvature)

  • 조영재;김영남;양인영
    • 한국정밀공학회지
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    • 제22권2호
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    • pp.164-171
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    • 2005
  • This study aims to examine an effect of stacking sequence and curvature on the penetration characteristic of a composite laminated shell. For the purpose, we manufactured specimens with different stacking sequences and curvatures, and conducted a penetration test using an air-gun. To examine an influence according to stacking sequence, as flat plate and curvature specimen had more plies, their critical penetration energy was higher, Critical penetration energies of specimen A and C with less interfaces somewhat higher than those of B and D with more interfaces. The reason that with less interfaces, critical penetration energy was higher is pre-impact bending stiffness of composite laminated shell with less interfaces was lower than that of laminated shell with more interfaces, but bending stiffness after impact was higher. And it is because interface, the weakest part of the composite laminated shell, was influenced by transverse impact. As curvature increases, critical penetration energy increases linearly. It is because as curvature increases, resistance to in-plane deformation as well as bending deformation increases, which need higher critical penetration energy. Patterns of cracks caused by penetration of composite laminated shells include interlaminar crack, intralaminar crack, and laminar fracture. A 0$^{\circ}$ply laminar had a matrix crack, a 90$^{\circ}$ply laminar had intralaminar crack and laminar fracture, and interface between 0$^{\circ}$and 90$^{\circ}$laminar had a interlaminar crack. We examined crack length and delamination area through a penetration test. For the specimen A and C with 2 interface, the longest circumferential direction crack length and largest delamination area were observed on the first interface from the impact point. For the specimen B and D with 4 interface, the longest crack length and largest delamination area were observed on the third interface from the impact point.

섬유 구성인자에 의한 지오텍스타일의 수리학적 특성 평가 (Assessments of Hydraulic Properties of Geotextiles with Fiber Composition Factors)

  • 전한용;정진교;장용채
    • 한국지반신소재학회논문집
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    • 제2권1호
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    • pp.47-55
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    • 2003
  • 14가지 니들펀치 부직포 지오텍스타일의 섬유구성인자인 두께, 기공도, 섬유장 및 직경 등이 수평투수성에 미치는 영향을 평가하였으며, 두께변화, 수평투수도, 압축 하중 하에서의 수평투수성을 구성방정식에 의해 분석, 평가하였다. 그리고 섬유 패킹 밀도가 다른 라미나(laminar) 지오텍스타일 복합재료를 제조하여 라미나 구조가 수직투수성에 미치는 영향을 평가하였다. 수평투수도는 부직포 지오텍스타일의 두께가 증가할수록 커졌으며, 기공도와 섬유직경이 커질수록 수평투수계수는 증가하였다. 수직응력이 증가할수록 기공도의 영향은 감소하였으며, 섬유장이 길수록 수평투수계수는 약간 크게 나타났다. 구성섬유의 직경이 클수록 수평 투수계수는 커지며, 직경의 비슷할수록 유사한 투수계수를 나타내었다. 라미나 지오텍스타일의 수직 투수성은 내부 경계면에서의 손실 수두에 영향을 받으며, 경계면에서 투수로의 연결형상은 bell mouth형이거나 부드러운 유입관 형태로 평가 되었다.

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기존모델과 실험자료의 통계적 분석에 의해 유도한 층류 및 난류 막응축에 대한 새로운 자연대류 열전달 관계식 (A New Natural Convection Heat Transfer Correlation for Laminar and Turbulent Film Condensation Derived from a Statistical Analysis of Existing Models and Data)

  • Chun, Moon-Hyun;Kim, Kyun-Tae
    • Nuclear Engineering and Technology
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    • 제23권2호
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    • pp.200-209
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    • 1991
  • 수칙표면 위에서 일어나는 충류 및 난류응축 모두에 사용할 수 있는 새로운 반경험적 열전달 관계식을 제안하였다. 본 관계식의 함수 형태는 층류와 난류 막응축 유동에 대한 기존의 대표적 관계식에 근거를 두었고, 한편 본 관계식의 수치계수는 공개된 문헌에서 수집한 실험자료를 사용하여 최소자승법에 의해 결정하였다. 또한, 본 관계식과 기존 7개의 관계식 (즉 층류에 대한 관계식 4개 와 난류에 대한 관계식 3개 )의 성능을 정확도와 적용 범위에 대해서 평가하였다. 그 결과 층류 막응축에 대하여는 Zazuli의 관계식과 본 관계식이 가장 작은 평균 오차를 가져오고, 난류 영역에서는 Kirkbride와 Badger의 관계식과 본 관계식이 가장 작은 평균 오차를 가져오는 것을 보여 준다.

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정사각단면 $180^{\circ}C$ 곡덕트에서 층류진동유동의 유동 특성에 관한 연구 (A study on flow characteristics of laminar oscillatory flows in a square-sectional $180^{\circ}C$ curved duct)

  • 박길문;조병기;봉태근
    • 대한기계학회논문집B
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    • 제22권2호
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    • pp.139-152
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    • 1998
  • In the present study, the flow characteristics of developing laminar oscillatory flows in a square -sectional 180 deg. curved duct are investigated experimentally. The experimental study using air in a square-sectional 180 deg. curved duct is carried out to measure velocity distributions with a data acquisition and LDV (Laser Doppler Velocimetry) processing system. In this system, Rotating Machinery Resolver (RMR) and PHASE program are used to obtain the results of unsteady flows. The major flow characteristics of developing oscillatory flows are found by analyzing velocity curves, mean velocity profiles, time-averaged velocity distribution of secondary flow, wall shear stress distributions, and entrance lengths. In a lower dimensionless angular frequency, the axial velocity distribution of laminar oscillatory flow in a curved duct shows a convex shape in a central part and axial symmetry. The maximum value of wall shear stress in a lower dimensionless angular frequency is located in an outside wall, but according to increasing the dimensionless angular frequency, the maximum of wall shear stress is moved to inner wall. The entrance lengths of laminar oscillatory flows in a square-sectional 180 deg. curved duct is obtained to 90 deg. of bended angle of duct in this experimental conditions.

넓은 당량비 구간에서 수소함유량에 따른 합성가스(H2/CO)/공기 예혼합화염의 연소속도 및 화염구조에 관한 연구 (A Study on the Laminar Burning Velocity and Flame Structure with H2 Content in a Wide Range of Equivalence Ratio of Syngas(H2/CO)/Air Premixed Flames)

  • 정병규;이기만
    • 한국연소학회지
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    • 제19권1호
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    • pp.17-28
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    • 2014
  • In this study, the laminar burning velocity of syngas fuel($H_2/CO$) and flame structure with various hydrogen contents were studied using both experimental measurements and detailed kinetic analysis. The laminar burning velocities were measured by the angle method of Bunsen flame configuration and the numerical calculations including chemical kinetic analysis were made using CHEMKIN Package with USC-Mech II. A wide range of syngas mixture compositions such as $H_2$ : CO = 10 : 90, 25 : 75, 50 : 50, 75:25 and equivalence ratios from lean condition of 0.5 to rich condition of 5.0 have been considered. The experimental results of burning velocity were in good agreement with previous other research data and numerical simulation. Also, it was shown that the experimental measurements of laminar burning velocity linearly increased with the increment of $H_2$ content although the burning velocity of hydrogen is faster than the carbon monoxide above 10 times. This phenomenon is attributed to the rapid production of hydrogen related radicals such as H radical at the early stage of combustion, which is confirmed the linear increase of radical concentrations on kinetic analysis. Particular concerns in this study are the characteristics of burning velocity and flame structure different from lean condition for rich condition. The decrease of OH radicals and double peaks are observed with $H_2$ content in rich condition once $H_2$ fraction exceeds over threshold.

난류 유동을 갖는 가스 포일 스러스트 베어링의 성능 예측 (Performance Predictions of Gas Foil Thrust Bearings with Turbulent Flow)

  • 문진혁;김태호
    • Tribology and Lubricants
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    • 제35권5호
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    • pp.300-309
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    • 2019
  • Gas foil thrust bearings (GFTBs) support axial loads in oil-free, high speed rotating machinery using air or gas as a lubricant. Due to the inherent low viscosity of the lubricant, GFTBs often have super-laminar flows in the film region at operating conditions with high Reynolds numbers. This paper develops a mathematical model of a GFTB with turbulent flows and validates the model predictions against those from the literature. The pressure distribution, film thickness distribution, load carrying capacity, and power loss are predicted for both laminar and turbulent flow models and compared with each other. Predictions for an air lubricant show that the GFTB has high Reynolds numbers at the leading edge where the film thickness is large and relatively low Reynolds numbers at the trailing edge. The predicted load capacity and power loss for the turbulent flow model show little difference from those for the laminar flow model even at the highest speed of 100 krpm, because the Reynolds numbers are smaller than the critical Reynolds number. On the other hand, refrigerant (R-134a) lubricant, which has a higher density than air, had significant differences due to high Reynolds numbers in the film region, in particular, near the leading and outer edges. The predicted load capacity and power loss for the turbulent flow model are 2.1 and 2.3 times larger, respectively, than those for the laminar flow model, thus implying that the turbulent flow greatly affects the performance of the GFTB.