• 제목/요약/키워드: suspension flows

검색결과 27건 처리시간 0.023초

HISTORIC BEHAVIOR FOR FLOWS WITH THE GLUING ORBIT PROPERTY

  • de Santana, Heides Lima
    • 대한수학회지
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    • 제59권2호
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    • pp.337-352
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    • 2022
  • We consider the set of points with historic behavior (which is also called the irregular set) for continuous flows and suspension flows. In this paper under the hypothesis that (Xt)t is a continuous flow on a d-dimensional Riemaniann closed manifold M (d ≥ 2) with gluing orbit property, we prove that the set of points with historic behavior in a compact and invariant subset ∆ of M is either empty or is a Baire residual subset on ∆. We also prove that the set of points with historic behavior of a suspension flows over a homeomorphism satisfyng the gluing orbit property is either empty or Baire residual and carries full topological entropy.

An Analytical Study on the Gas-Solid Two Phase Flows

  • ;김희동
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2012년도 제38회 춘계학술대회논문집
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    • pp.356-363
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    • 2012
  • This paper addresses an analytical study on the gas-solid two phase flows in a nozzle. The primary purpose is to get recognition into the gas-solid suspension flows and to investigate the particle motion and its influence on the gas flow field. The present study is the primal step to comprehend the gas-solid suspension flow in the convergent-divergent nozzle. This paper try to made a development of an analytical model to study the back pressure ratio, particles loading and the particle diameter effect on gas-solid suspension flow. Mathematical model of gas-solid two phase flow was developed based on the single phase flow models to solve the quasi-one-dimensional mass, momentum equations to calculate the steady pressure field. The influence of particles loading and particle diameter is analyzed. The results obtained show that the suspension flow of smaller diameter particles has almost same trend as that of single phase flow using ideal gas as working fluid. And the presence of particles will weaken the strength of the shock wave; the bigger particle will have larger slip velocity with gas flow. The thrust coefficient is found to be higher for larger particles/gas loading or back pressure ratio, but it also depends on the ambient pressure.

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Heat Transfer Characteristics of Liquid-Solid Suspension Flow in a Horizontal Pipe

  • Ku, Jae-Hyun;Cho, Hyun-Ho;Koo, Jeong-Hwan;Yoon, Suk-Goo;Lee, Jae-Keun
    • Journal of Mechanical Science and Technology
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    • 제14권10호
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    • pp.1159-1167
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    • 2000
  • Particles in liquid-solid suspension flow might enhance or suppress the rate of heat transfer and turbulence depending on their size and concentration. The heat transfer characteristics of liquid-solid suspension in turbulent flow are not well understood due to the complexibility of interaction between solid particles and turbulence of the carrier fluid. In this study, the heat transfer coefficients of liquid-solid mixtures are investigated using a double pipe heat exchanger with suspension flows in the inner pipe. Experiments are carried out using spherical fly ash particles with mass median diameter ranging from 4 to $78{\mu}m$. The volume concentration of solids in the slurry ranged from 0 to 50% and Reynolds number ranged from 4,000 to 11,000. The heat transfer coefficient of liquid-solid suspension to water flow is found to increase with decreasing particle diameter. The heat transfer coefficient increases with particle volume concentration exhibiting the highest heat transfer enhancement at the 3% solid volume concentration and then gradually decreases. A correlation for heat transfer to liquid-solid flows in a horizontal pipe is presented.

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음속 및 초음속 노즐을 통한 Gas-Solid Suspension 유동에 대한 해석적 연구 (Analytical Study on the Gas-Solid Suspension Flows through Sonic and Supersonic Nozzles)

  • ;;김희동
    • 한국추진공학회지
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    • 제17권1호
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    • pp.9-17
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    • 2013
  • Gas-solid suspension 유동에서의 입자운동과 그 운동이 유동장에 미치는 영향을 명시하고, 이 유동에 대한 이해를 얻기 위해 많은 연구가 수행 되어 왔다. 본 논문에서는 gas-solid suspension 유동에 대한 노즐의 입구/출구 압력비, 입자/기체 부하, 입자의 직경에 따른 영향 등을 연구하기 위한 분석적 모델을 개발 하였다. 노즐을 통한 유량, Mach수, 추력계수 및 정압 변화에 대한 입자/기체 부하의 영향을 분석하였다. 그 결과로부터 입자의 존재로 인해 충격파의 강도가 줄어드는 것으로 판단되며, 입자직경이 커질수록 속도는 작아지고, slip velocity는 커지게 될 것이다. 또한, 더 작은 직경의 입자에 대한 suspension 유동은 이상기체에 대한 단상유동의 결과와 같은 경향이 나타나며, 주위 압력에 따라 더 큰 입자/기체 부하나 배압비에 대한 추력계수가 더 크게 나타났다.

固體粒子 가 浮上된 벤츄리管 流動 의 解析 (Analysis of Turbulent Gas-Particle Suspension Flows in a Venturi)

  • 성형진;정명균
    • 대한기계학회논문집
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    • 제8권2호
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    • pp.133-140
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    • 1984
  • 본 연구에서는 이러한 2유체방정식모델을 Stokes의 저항력 뿐만 아니라 벽면 의 영향을 함께 노고하여 벤츄리관에서의 정압강하가 공기류량과 고체유량, 그리고 입 자의 크기에 어떻게 의존하는가를 해석하였다. 본 연구의 수치해석결과를 Farbar와 Lee와 Crowe의 실험과 비교하였으며, 만족할 만한 일치를 얻었다.

나노 진동 흡수기의 모델링 및 열역학적 특성 해석에 대한 이론적 연구 (Modeling and Theoretical Analysis of Thermodynamic Characteristic of Nano Vibration Absorber)

  • 문병영;정성원
    • 한국지진공학회논문집
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    • 제7권6호
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    • pp.93-99
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    • 2003
  • 구조물은 지진, 풍랑 등과 같은 외부의 충격에 대해서 노출되어 있기 때문에 대규모의 피해가능성이 항상 존재한다. 이러한 외부에 대한 충격흡수 장치는 여러 가지가 있다. 이러한 기구 중에서 널리 사용되고 있는 것이 기계적 에너지를 소산시키는 유압 감쇠기이다 본 논문에서는 유압 감쇠기의 단점을 보완하고 보다 효율이 높은 감쇠기를 나노기술을 응용하여 새로운 감쇠기에 대한 기초적 이론연구를 하였다. 새로운 감쇠기는 내부에 점성 유체 대신에 무기재료의 입자를 유체와 혼합하여 사용하였고 오리피스를 생략함으로 해서 보다 간단한 구조로 설계하였다. 나노 단위 기공에서의 유동 현상을 설명하기 위해서는 기존의 유체역학에 대한 지배방정식 및 가설들이 더 이상 적용이 되지 않는 단점이 있다. 본 연구에서는 지금까지 명확하게 규명되지 않았던 감쇠기의 열 발생, 나노 유동, 그리고 에너지 소산에 대한 이론적 해석을 수행하였다. 그리고 다공 입자 구조에 따른 에너지 소산에 대한 영향을 모델링하여 조사하였다. 감쇠 효과를 검토하기 위해 기존의 유압 감쇠기와 에너지 소산효율을 비교하였다. 또한 감쇠 효율을 수치적인 해석결과와 실험 결과를 서로 비교하여 검토하였다.

미립자를 포함한 현탁액의 전단율에 의존적인 열전도율 측정 (Measurement of the Shear Rate-Dependent Thermal Conductivity for Suspension with Microparticles)

  • 이성혁;신세현
    • 대한기계학회논문집B
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    • 제22권8호
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    • pp.1141-1151
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    • 1998
  • An effective thermal conductivity measurement for suspensions of microparticles in oil mixture is conducted in order to evaluate the shear rate-dependence of the thermal conductivity of suspensions. Measurements are made for rotating Couette flows between two concentric cylinders. The rotating outer cylinder is immersed into a constant temperature water bath while the stationary inner cylinder is subject to a uniform heat fluff. Test fluids are made to be homogeneous suspensions, in which neutrally buoyant microparticles ($d=25{\sim}300{\mu}m$) are uniformly dispersed. The present measurements show strong shear-rate dependent thermal conductivities for the suspensions, which are higher than those at zero shear rate. The shear rate dependent thermal conductivity increases with the particle size and volume concentration.4 new model for shear rate-dependent thermal conductivity of microparticle suspensions is proposed; the correlation covers from zero shear rate value to asymptotic plateau value at moderately high shear rates.

Hydrodynamic interaction between two cylinders in planar shear flow of viscoelastic fluid

  • Jung, Hyun-Wook;Daejin Won;Kim, Chongyoup
    • Korea-Australia Rheology Journal
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    • 제14권4호
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    • pp.203-207
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    • 2002
  • Particle-particle interaction is of great importance in the study of suspension rheology. In this research we have investigated the hydrodynamic interaction between two identical cylinders in viscoelastic fluids numerically as a model problem for the study of viscoelastic suspension. We confine two neutrally buoyant cylinders between two parallel plates and impose a shear flow. We determine the migration velocity of two cylinders. The result shows that cylinders move toward or away from each other depending upon the initial distance between them and that there is an equilibrium distance between two cylinders in viscoelastic fluids regardless of the initial distance. In the case of Newtonian fluid, there is no relative movement as expected. The results partly explain the chaining phenomena of spherical particles in shear flows of viscoelastic fluids.

물-미립자 현탁액의 난류 열전달 향상에 관한 수치해석적 연구 (Numerical Study about Heat Transfer Enhancement of Water-Microparticles Suspension)

  • 정세훈;손창현
    • Journal of Advanced Marine Engineering and Technology
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    • 제24권3호
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    • pp.29-35
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    • 2000
  • The present numerical study investigates heat transfer enhancement mechanism for suspensions of polystyrene particles in water. Numerical simulations were done for turbulent hydrodynamic fully developed flows in a circular duct with constant wall heat flux. The experimental result of microparticle suspensions show 25∼45% heat transfer enhancement over those of water. The present numerical results show the main parameter for the heat transfer enhancement of microparticle suspension in a circular duct is the change of velocity profile by the non-Newtonian fluid behavior.

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