• 제목/요약/키워드: Newtonian flow

검색결과 326건 처리시간 0.023초

용융 폴리우레탄의 완화 스펙트럼에 의한 자체확산분포 결정 (Determination of Self Diffusion Distributions of Molten Polyurethanes by Relaxation Spectra)

  • 김남정
    • 대한화학회지
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    • 제50권3호
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    • pp.196-202
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    • 2006
  • 점탄성 용융 폴리우레탄의 자체확산분포가 완화스펙트럼과 자체확산분포 관계식으로부터 얻어졌다. ester, PCL PCL dyed 형의 용융 폴리우레탄의 완화스펙트럼은 실험적인 응력완화 곡선을 Ree-Eyring and Maxwell non-Newtonian model(REM 모델)이론식에 적용시켜서 얻는다. 용융폴리우레탄의 응력완화 실험은 온도조절 장치가 있는 physica 레오메타를 이용하여 여러 온도에서 수행되었다. 이론적인 완화스펙트럼은 REM model로부터 유도한 이론적인 완화스펙트럼식을 프로그램화한 컴퓨터 계산에서 구하였다. 폴리우레탄 시료의 자체확산과 비결정 영역의 홀거리가 응력완화 실험에 의해서 연구 조사되었다. 비결정 영역에서의 유동단위의 확산을 연구하기 위해서 확산계수와 홀부피가 유변학적인 파라메타와 결정크기로부터 계산되었다. 폴리우레탄 시료의 완화스펙트럼과 자체확산은 유동 단위의 분자량분포, 점도, 홀부피, 활성화에너지와 밀접한 관계가 있는 것을 알 수 있다.

하이솔리드 도료용 80% 고형분인 아크릴수지의 합성 (Synthesis of Acrylic Resins with 80% Solid Contents for High-Solid Coatings)

  • 박홍수;조혜진;심일우;김승진;김영찬;함현식
    • 한국응용과학기술학회지
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    • 제22권4호
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    • pp.362-370
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    • 2005
  • Copolymers (HSA-98-20, HSA-98-0, HSA-98+20) which are acrylic resin containing 80% solid content were synthesized by the reaction of monomers, including methyl methacrylate, n-butyl acrylate, and 2-hydroxyethyl acrylate with a functional monomer, such as acetoacetoxyethyl methacrylate (AAEM), which may improve in cross-linking density and physical properties of films. The physical properties of prepared acrylic resins, containing AAEM, are as follows : viscosity, $1420{\sim}5760cps$ ; number average molecular weight, $2080{\sim}2300$ ; polydispersity index, $2.07{\sim}2.19$ ; conversions, $88{\sim}93%$, respectively. To prepare acryl resins, four kinds of initiators including ${\alpha},{\alpha}'-azobisisobutyronitirile$ (AIBN), di-tert-butyl peroxide (DTBP), t-amylperoxy-2-ethyl hexanoate (APEH), benzoyl peroxide (BPO) were used. The viscosity of the acrylic resins prepared with these initiators was increased in the order of DTBP>APEH>AIBN>BPO. APEH was proved as a suitable initiator in this study. Shear rates of acrylic resins were constant in respect to viscosity. From these results, it would appear that the resins have Newtonian flow characteristics and good workability.

와도를 기저로 한 초기 순간 출발하는 실린더 주위의 점성유동해석 (Vorticity Based Analysis of the Viscous Flow around an Impulsively Started Cylinder)

  • 김광수;서정천
    • 대한조선학회논문집
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    • 제35권4호
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    • pp.1-10
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    • 1998
  • 본 논문에서는 비압축성 Newtonian 점성유동에서 초기에 순간 출발하는 2차원 실린더 주위의 유동을 해석하기 위해서, 와도를 기저로 한 수치해석기법을 제안하고 있다. Helmholtz 분리 형태로 표현된 Navier-Stokes방정식에서 유도되는 와도전달방정식과 압력방정식, 그리고 벡터등식에서 유도되는 속도-와도 관계식을 이 문제의 지배방정식으로 택하고, 경계조건으로는 물체표면에서 와도와 압력의 연성관계와 힘의 평형을 고려한 동적와도경계조건과 동적압력조건이 제시된다. 이 지배방정식과 경계조건을 수치적으로 처리하기 위하여, 와도와 압력이 연성되어 있는 경계조건은 Wu등(1994)이 제안한 대로, 연성관계를 유지한 채로 식을 분리하는 방법을 이용하였고, 와도전달 방정식은 유한체적법으로 계산하였으며, 그 식에 포함된 대류항을 처리하는 방법으로 TVD 방법을 이용하였다. 속도는 Biot-Savart적분항이 포함된 벡터등식에서 panel방법으로 구하고, 압력방정식은 형태가 Poisson방정식이므로 역시 panel방법을 이용하였다. 계산에 사용된 격자로 정규격자를 이용하고, 결과를 다른 수치적, 해석적 결과와 비교하여 그 타당성을 검증하였다.

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SiO2계열 젤화제 입자크기에 따른 니트로메탄 젤 추진제의 유변학적 특성 연구 (Rheological Characteristics of Nitromethane Gel Fuel with Nano/Micro Size of SiO2 Gellant)

  • 장진우;김시진;한승주;김진곤;문희장
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2017년도 제48회 춘계학술대회논문집
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    • pp.456-461
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    • 2017
  • 본 연구에서는 이산화규소를 젤화제로 사용한 니트로메탄 젤 추진제의 유변학적 특성을 분석하였다. 니트로메탄 젤은 나노 또는 마이크로 입자 크기의 젤화제를 각각 5 wt%, 6.5 wt%, 8 wt% 함량으로 첨가하여 제작되였으며 점도 측정 실험은 회전형 점도계를 이용하여 측정을 수행하였다. 제작된 젤 추진제는 항복응력이 존재함을 확인하였고 측정 범위 전 구간에서 전단박화 거동을 보이며 나노 크기의 젤화제를 첨가한 젤 추진제의 경우 마이크로 크기 대비 낮은 전단속도(1 ~ 100 1/s) 영역에서 높은 점도를 보였다. 또한 니트로메탄 젤 추진제의 경우, Herschel-Bulkley 모델 보다는 Teipel과 Forter-Barth가 제시한 모델을 사용하는 것이 적합함을 확인하였다.

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Dynamic response of heat and mass transfer in blood flow through stenosed bifurcated arteries

  • Charkravarty S.;Sen S.
    • Korea-Australia Rheology Journal
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    • 제17권2호
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    • pp.47-62
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    • 2005
  • The present study deals with a mathematical model describing the dynamic response of heat and mass transfer in blood flow through bifurcated arteries under stenotic condition. The geometry of the bifurcated arterial segment possessing constrictions in both the parent and the daughter arterial lumen frequently appearing in the diseased arteries causing malfunction of the cardiovascular system, is formulated mathematically with the introduction of the suitable curvatures at the lateral junction and the flow divider. The blood flowing through the artery is treated to be Newtonian. The nonlinear unsteady flow phenomena is governed by the Navier-Stokes equations while those of heat and mass transfer are controlled by the heat conduction and the convection-diffusion equations respectively. All these equations together with the appropriate boundary conditions describing the present biomechanical problem following the radial coordinate transformation are solved numerically by adopting finite difference technique. The respective profiles of the flow field, the temperature and the concentration and their distributions as well are obtained. The influences of the stenosis, the arterial wall motion and the unsteady behaviour of the system in terms of the heat and mass transfer on the blood stream in the entire arterial segment are high­lighted through several plots presented at the end of the paper in order to illustrate the applicability of the present model under study.

협착된 경동맥내 천이 유동 수치 해석 (Numerical Analysis of Transitional Flow in a Stenosed Carotid Artery)

  • 김동민;황진율;민두재;조원민
    • 한국가시화정보학회지
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    • 제20권1호
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    • pp.52-63
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    • 2022
  • Direct numerical simulation of blood flow in a stenosed, patient-specific carotid artery was conducted to explore the transient behavior of blood flow with special emphasis on the wall-shear stress distribution over the transition region. We assumed the blood as an incompressible Newtonian fluid, and the vessel was treated as a solid wall. The pulsatile boundary condition was applied at the inlet of the carotid. The Reynolds number is 884 based on the inlet diameter, and the maximum flow rate and the corresponding Womersley number is approximately 5.9. We found the transitional behavior during the acceleration and deceleration phases. In order to quantitatively examine the wall-shear stress distribution over the transition region, the probability density function of the wall-shear stress was computed. It showed that the negative wall-shear stress events frequently occur near peak systole. In addition, the oscillatory shear stress index was used to further analyze the relationship with the negative wall-shear stress appearing in the systolic phase.

Hemorheology and Cardiovascular Disease

  • Cho, Young-I.;Kensey, Kenneth R.
    • 순환기질환의공학회:학술대회논문집
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    • 순환기질환의공학회 2002년도 제2회 학술대회 초록집
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    • pp.3-18
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    • 2002
  • Hemorheology plays an important role in atherosclerosis. Hemorheologic properties of blood include whole blood viscosity, plasma viscosity, hemaocrit, RBC deformability and aggregation, and fibrinogen concentration in plasma. Blood flow is determine by three parameters (pressure, lumen diameter, and whole blood viscosity), whole blood viscosity is one of the key physiological variables. However, the significance of whole blood viscosity has not yet not been fully appreciated. Whole blood viscosity has a unique property, non-Newtonian shear-thinning characteristics, which is primarily due to the presence of RBCs. Hence, RBC deformability and aggregation directly affect the magnitude of blood viscosity, and any factors or diseases affecting RBC characteristics influence blood viscosity. Therefore, on can see that whole blood viscosity is the causal mechanism by which traditional risk factors such as hypertension, hyperlipidemia, smoking, exercise, obesity, age, and gender are related to atherogenesis. In this regard, we included whole blood viscosity in the three key determinants of injurious pulsatile flow that results in mechanical injury and protective adaptation in the arterial system. Because whole blood viscosity is a potential predictor of cardiovascular diseases, it should be measured in routine cardiovascular profiles. Incorporating whole blood viscosity measurements into a standard clinical protocol could improve our ability to identify patients at risk for cardiovascular disease and its complications.

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Laminar Convective Heat Transfer from a Horizontal Flat Plate of Phase Change Material Slurry Flow

  • Kim Myoung-Jun
    • Journal of Advanced Marine Engineering and Technology
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    • 제29권7호
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    • pp.779-784
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    • 2005
  • This paper presents the theory of similarity transformations applied to the momentum and energy equations for laminar, forced, external boundary layer flow over a horizontal flat plate which leads to a set of non-linear, ordinary differential equations of phase change material slurry(PCM Slurry). The momentum and energy equation set numerically to obtain the non-dimensional velocity and temperature profiles in a laminar boundary layer are solved. The heat transfer characteristics of PCM slurry was numerically investigated with similar method. It is clarified that the similar solution method of Newtonian fluid can be used reasonably this type of PCM slurry which has low concentration. The data of local wall heat flux and convective heat transfer coefficient of PCM slurry are higher than those of water more than 150$\~$200$\%$, approximately.

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.

고무 압출성형 공정에 대한 유한요소 해석 (Finite Element Analysis of Rubber Extrusion Forming Process)

  • 하연식;조진래;김태호;김준형
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회A
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    • pp.762-767
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    • 2007
  • As a macromolecule material, melted rubber flow shows characteristics of shear thinning fluid. The dynamic viscosity of this rubber fluid is influenced by temperature and shear strain rate. In this study, the numerical simulation of rubber extrusion forming process has been performed using commercial CFD code, Polyflow. Power-law model considering the effect of shear rate is used for the computer simulation of this non-Newyonian flow. Also Non-isothermal behavior is considered as Arrhenius-law model. Distributions of velocity and temperature are predicted through the simulation.

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