• 제목/요약/키워드: 유동안정성

검색결과 603건 처리시간 0.022초

타의 크기가 조종운동시 선미 유동 특성에 미치는 영향 (The Effects of Rudder Size on Characteristics of Fluid Flow around Ship's Stern in Manoeuvring Motion)

  • 손경호;김용민
    • 한국항해학회지
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    • 제25권1호
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    • pp.1-9
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    • 2001
  • 1993년 IMO가 채택한 조종성 잠정기준에서 요구되는 4가지 항목 중, 특히 비대 선박의 경우, 침로 안정성이 문제시될 수 있다는 것은 잘 알려진 사실이다. 본 연구에서는 비대 선박의 조종운동시 타의 크기에 따른 선미 유동 특성을 조사하기 위해서 회류수조에서 사항상태의 조건 하에 두 종류의 모형실험을 수행하였다. 즉, 첫번째 실험은 타에 유입하는 흐름의 정류효과 측정에 대한 것이고, 두번째 실험은 타 상부와 선미오버행 하부 공간 주위의 흐름가시화에 대한 것이다. 실험결과, 타의 크기에 따른 선미 유동 특성과 타에 유입하는 흐름의 정류효과의 상관관계를 규명하였고, 타 상부와 선미오버행 하부의 공간은 침로 안정성에 있어서 중요한 역할을 한다는 것을 알 수 있었으며, 특히 타 상부와 선미오버행 하부의 공간이 작을수록 침로 안정성이 저하될 가능성이 높다는 것을 확인하였다.

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오징어 간유 미세캡슐의 유동층 코팅에 따른 품질 특성 (Stability and Processing Characteristics of Microencapsulated Squid Liver Oil by Fluidized Bed Coating)

  • 황성희;윤광섭
    • 한국식품과학회지
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    • 제40권6호
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    • pp.621-625
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    • 2008
  • 오징어 간유 미세캡슐화 분말을 HPMC-FCC, zein-DP로 코팅하여 유동층 코팅 특성을 살펴본 결과, 유동층 코팅 효율은 HPMC-FCC, zein-DP 모두 90%의 효율을 나타내었다. 겉보기 밀도는 zein-DP 코팅분말이 0.6 g/mL로 높게 나타나 코팅 분말의 비중이 커져 흐름성이 개선되었음을 확인할 수 있었다. 인공위액과 인공장액에 대한 용해성을 살펴본 결과, HPMC-FCC는 각각 59.9%와 0%를 나타내었고 zein-DP는 각각 0%와 31.0%를 나타내어 코팅재료에 따라 용해성을 조절할 수 있었다. 저장 안정성은 zein-DP나 HPMC-FCC로 코팅한 분말이 미세캡슐화 분말보다 높은 PUFA/SFA 잔존율을 보여, 유동층 코팅 기술이 유지식품의 안정성을 확보할 수 있는 새로운 기술이 될 수 있음을 확인할 수 있었다.

유체유동에 의한 복합재료 파이프의 안정성 해석 (Stability Analysis of Composite Material Pipes Conveying Fluid)

  • 최재운;송오섭
    • 한국소음진동공학회논문집
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    • 제11권8호
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    • pp.314-321
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    • 2001
  • Static and oscillatory loss of stability of composite pipes conveying fluid is Investigated. The theory of than walled beams is applied and transverse shear. rotary inertia, primary and secondary warping effects are incorporated. The governing equations and the associated boundary conditions are derived through Hamilton's variational principle. The governing equations and the associated boundary conditions are transformed to an eigenvlaue problem which provides the Information about the dynamic characteristics of the system. Numerical analysis is performed by using extended Gelerkin method. Variation of critical velocity of fluid with fiber angles and mass patios of fluid to pipe Including fluid is investigated.

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유체유동에 의한 다중벽 탄소나노튜브의 안정성 해석 (Stability Analysis of Multi-wall Carbon Nanotubes Conveying Fluid)

  • 송오섭;윤경재
    • 한국소음진동공학회논문집
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    • 제20권6호
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    • pp.593-603
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    • 2010
  • In this paper, vibration and flow-induced flutter instability analysis of cantilever multi-wall carbon nanotubes conveying fluid and modelled as a thin-walled beam is investigated. Non-classical effects of transverse shear and rotary inertia and van der Waals forces between two walls are incorporated in this study. The governing equations and the associated boundary conditions are derived through Hamilton's principle. Numerical analysis is performed by using extend Galerkin method which enables us to obtain more exact solutions compared with conventional Galerkin method. Cantilevered carbon nanotubes are damped with decaying amplitude for flow velocity below a certain critical value, however, beyond this critical flow velocity, flutter instability may occur. Variations of critical flow velocity with both radius ratio and length of carbon nanotubes are investigated and pertinent conclusion is outlined.

유체유동 회전 외팔 파이프의 안정성 해석 (Stability Analysis of a Rotating Cantilever Pipe Conveying Fluid)

  • 손인수;윤한익;김동진
    • 한국소음진동공학회논문집
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    • 제17권8호
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    • pp.701-707
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    • 2007
  • In this paper the vibration system is composed of a rotating cantilever pipe conveying fluid. The equation of motion is derived by using the Lagrange's equation. Generally, the system of pipe conveying fluid becomes unstable by flutter. Therefore, the influence of the rotating angular velocity, mass ratio and the velocity of fluid flow on the stability of a cantilever pipe by the numerical method are studied. The influence of mass ratio, the velocity of fluid, the angular velocity of a cantilever pipe and the coupling of these factors on the stability of a cantilever pipe are analytically clarified. The critical fluid velocity ($u_{cr}$) is proportional to the angular velocity of the cantilever pipe. In this paper Flutter(instability) is always occurred in the second mode of the system.

유체유동 외팔 파이프의 안정성에 미치는 크랙의 영향 (Effects of Crack on Stability of Cantilever Pipe Conveying Fluid)

  • 손인수;윤한익;김동진
    • 한국소음진동공학회논문집
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    • 제17권11호
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    • pp.1119-1126
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    • 2007
  • In this paper, the dynamic stability of a cracked cantilever pipe conveying fluid with tip mass is investigated. The pipe is modelled by the Euler-Bernoulli beam theory in which rotatory inertia and shear deformation effects are ignored. The equation of motion is derived by the energy expressions using extended Hamilton's Principle. The crack section is represented by a local flexibility matrix connecting two undamaged pipe segments. The influence of the crack severity, the position of crack, the mass ratio, and a tip mass on the stability of a cantilever pipe conveying fluid are studied by the numerical method. Besides, the critical flow velocity and the stability maps of the pipe system as a function of mass ratios($\beta$) for the changing each parameter are obtained.

연약지반 위에 시공되는 교대의 측방유동에 대한 안정성 평가 (Evaluation of Stability about Lateral Soil Movement of Bridge Abutment Constructed on Soft Ground)

  • 유남재;김동건;전상현
    • 산업기술연구
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    • 제30권B호
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    • pp.25-32
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    • 2010
  • In this paper stability about lateral soil movement of bridge abutment constructed on the soft ground, reinforced with the sand compaction pile (SCP) and the preconsolidaton methods, was evaluated by using the centrifuge testing facility which stress conditions in field could be reconstructed in the laboratory. The layouts of model such as ground condition, sand compaction piles and abutment was determined on the basis of similitude law with the reduced scale of 1/200. Construction sequences of installing SCP, preparing reclaimed ground, preconsolidating ground and building the piled bridge abutment were reconstructed during centrifuge modelling and measurements of movement were followed in each sequence. From analyzing the results of measuring movements of the model abutment and the ground, measured lateral movement of model abutment was found to be within the allowable value so that stability of abutment against lateral sliding was secured.

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유체유동효과를 고려한 다중벽 탄소나노튜브의 진동 및 안정성 해석 (Vibration Stability Analysis of Multi wall Carbon Nanotubes Considering Conveying Fluid Effect)

  • 윤경재;최종운;송오섭
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2012년도 춘계학술대회 논문집
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    • pp.219-224
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    • 2012
  • In this paper, vibration and flow-induced flutter instability analysis of cantilever multiwall carbon nanotubes conveying fluid and modelled as a thin-walled beam is investigated. Non-classical effects of transverse shear and rotary inertia are incorporated in this study. The governing equations and the associated boundary conditions are derived through Hamilton's principle. Numerical analysis is performed by using extend Galerkin method which enables us to obtain more exact solutions compared with conventional Galerkin method. Cantilevered carbon nanotubes are damped with decaying amplitude for flow velocity below a certain critical value, however, beyond this critical flow velocity, flutter instability may occur. Variations of critical flow velocity with both radius ratio and length of carbon nanotubes are investigated and pertinent conclusion is outlined.

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축방향으로 이송되는 유체유동 단순지지 파이프의 안정성 해석 (Stability Analysis of Axially Moving Simply Supported Pipe Conveying Fluid)

  • 손인수;허관도;이상필;조정래
    • 한국소음진동공학회논문집
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    • 제22권5호
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    • pp.407-412
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    • 2012
  • The dynamic instability and natural frequency of an axially moving pipe conveying fluid are investigated. Thus, the effects of fluid velocity and moving speed on the stability of the system are studied. The governing equation of motion of the moving pipe conveying fluid is derived from the extended Hamilton's principle. The eigenvalues are investigated for the pipe system via the Galerkin method under the simple support boundary. Numerical examples show the effects of the fluid velocity and moving speed on the stability of system. Moreover, the lowest critical moving speeds for the simply supported ends have been presented.

대형 틸팅패드 저어널 베어링에 대한 3차원 열유체해석 (A Three Dimensional Thermohydrodynamic Analysis of Large Tilting Pad Journal Bearings)

  • 하현천;김경웅
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 1992년도 제16회 학술강연회초록집
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    • pp.13-18
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    • 1992
  • 대형 틸팅패드 저어널베어링은 고속안정성 특성이 우수한 베어링으로서 시스템의 안정성이 매우 중요시되는 터빈발전기 등 대형 고속 회전기계에 많이 사용되고 있다. 그런데 이들 대형 저어널베어링에서는 유막의 온도상승이 매우 많고, 유체의 흐름이 거의 난류영역에 이르기 때문에 베어링의 운전특성을 정확하게 예측하기가 어려운 실정이다. Hopf & Schuler는 대형 틸팅패드 저어널베어링에 대한 실험적 연구에서 유동상태에 따라 베어링의 온도분포가 서로 달라진다고 발표하였다. 대형 틸팅패드 저어널베어링은 구조적으로 유동상태가 복잡할 뿐만 아니라 계산과정도 까다로운 편이어서 온도상승과 난류를 고려하여 엄밀하게 운전특성을 예측한 연구는 거의 없다. 따라서 본 연구에서는 대형 틸팅패드 저어널베어리으이 운전특성을 보다 엄밀하게 예측하기 위하여 3차원 적으로 유막의 점도변화 및 패드에서의 열전달을 고려하고, 와점성계수를 이용한 난류윤활이론을 사용하여 유막의 온도상승 및 난류가 베어링의 온도분포, 부하능력, 마찰손실 등의 운전특성에 미치는 영햐을 보다 엄밀하게 제시하고자 한다.

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