• 제목/요약/키워드: two phases model

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A novel meso-mechanical model for concrete fracture

  • Ince, R.
    • Structural Engineering and Mechanics
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    • 제18권1호
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    • pp.91-112
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    • 2004
  • Concrete is a composite material and at meso-level, may be assumed to be composed of three phases: aggregate, mortar-matrix and aggregate-matrix interface. It is postulated herein that although non-linear material parameters are generally used to model this composite structure by finite element method, linear elastic fracture mechanics principles can be used for modelling at the meso level, if the properties of all three phases are known. For this reason, a novel meso-mechanical approach for concrete fracture which uses the composite material model with distributed-phase for elastic properties of phases and considers the size effect according to linear elastic fracture mechanics for strength properties of phases is presented in this paper. Consequently, the developed model needs two parameters such as compressive strength and maximum grain size of concrete. The model is applied to three most popular fracture mechanics approaches for concrete namely the two-parameter model, the effective crack model and the size effect model. It is concluded that the developed model well agrees with considered approaches.

비등온 난류 제트의 이상유동에 대한 수치모델 (Numerical Modeling of Two-Phase Non-Isothermal Turbulent Jet)

  • 황득리엔;김명관;권오붕
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집E
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    • pp.783-788
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    • 2001
  • Choosing the most suitable mathematical model and relating this to turbulent tangential tensions model are very important in the investigations of turbulent two-phase flow. This paper considers two-fluid scheme. According to it, two phases have their own densities, velocities, and temperatures at any spatial point and at any moment. The equations of motion and heat transfer for each phase are linked with the forces of interaction between two phases. These forces are considered as predominant for the flow. As a closure in the system of motion equations, one modification of $K - {\epsilon}$ turbulent model is worked out. The modification uses two equations for turbulent kinetic energy of the phases and one - for the turbulent energy loss of main phase. This model can be set as a $K_g - K_p -{\epsilon}$ model. The modified model has been tested for both a two-phase non-isothermal flat jet and axially symmetrical jet. The numerical results are compared with the reference data revealing a good agreement between them.

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Sequential Assessment in Contests among Common Freshwater Goby, Rhinogobius brunneus(Pisces, Gobiidae)

  • Suk, Ho-Young;Choe, Jae-C.
    • Animal cells and systems
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    • 제5권4호
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    • pp.313-317
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    • 2001
  • The sequential assessment model describes a fight between two conspecific as an ongoing statistical sampling process, which makes it possible to predict fight length or repetition number of a behavioral element depending on relative RHP (resource holding potential: e.g. weight or fighting ability). We staged contests between males of common freshwater gobies to test some predictions of this model. Fights proceeded in a consistent sequence of phases. Most contests began with two contestants adopting lateral display, and then escalated to intense physical contacts. The length of contests was negatively correlated with weight difference between the contestants. The duration of complete phases was, however, independent of weight, and the prior information gained during complete phases did not appear to affect subsequent phases of the fight. Our results show that the contests of common freshwater gobies are well predicted by the sequential assessment model.

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새로운 달 위상 모형의 개발과 그 적용 (The Development and Application of the New Model of Moon Phases)

  • 채동현
    • 한국초등과학교육학회지:초등과학교육
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    • 제27권4호
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    • pp.385-398
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    • 2008
  • 본 연구의 목적은 달 위상 변화 모형이 예비 초등 교사들의 개념 변화에 미치는 효과를 알아보는 것이다. 연구자는 연구 참여에 동의한 2명의 예비 초등 교사들과의 사전 면담 직후에 달 위상 변화 모형을 이용한 수업을 실시하였다. 한 달 뒤 사전면담 내용과 똑같은 내용은 '달 모양을 그림으로 그려 설명해 보세요.', '달 모양에 따른 태양, 지구, 달의 위치관계를 그림으로 그려 설명해 보세요.', '달의 위상 변화 원인을 무엇이라고 생각합니까?', '달이 한 쪽 면만 보이는 이유를 그림을 그려 설명해 보세요.'로 구성되었다. 연구 결과는 다음과 같다. 첫째, 달 위상 변화 모형을 이용한 수업은 태양, 지구, 달을 평면이 아닌 입체적으로 생각하도록 하여 달의 모양이 지구의 그림자 때문이라는 오개념을 바꾸는데 도움을 주었다. 둘째, 달 위상 변화 모형을 이용한 수업은 예비 초등 교사들로 하여금 달의 모양에 따른 태양, 지구, 달의 위치관계를 바르게 이해하는데 도움을 주었다. 셋째, 달 위상 변화 모형을 이용한 수업은 예비 초등 교사들에게 달 위상 변화 원인에 대한 과학적 개념을 형성하게 하는데 도움을 주었다. 넷째, 달이 한쪽 면만 보이는 이유에 대한 학습은 달 위상 변화 모형을 이용하여 설명하기에는 부적절한 것으로 나타났다. 이상의 연구 결과를 토대로 연구자는 본 모형이 가진 한계점을 인식하고 좌표계에 대한 명확한 구분과 이해를 바탕으로 달 위상 변화 모형을 수업에 이용할 경우, 학습자의 공간지각력 향상 및 달의 위상 변화를 이해하는데 도움을 줄 수 있다는 것을 제안하였다.

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Simulation of concrete shrinkage taking into account aggregate restraint

  • Tangtermsirikul, Somnuk;Nimityongskul, Pichai
    • Structural Engineering and Mechanics
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    • 제5권1호
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    • pp.105-113
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    • 1997
  • This paper proposes a model for simulating concrete shrinkage taking into account aggregate restraint. In the model, concrete is regarded as a two-phase material based on shrinkage property. One is paste phase which undergoes shrinkage. Another is aggregate phase which is much more volumetrically stable. In the concrete, the aggregate phase is considered to restrain the paste shrinkage by particle interaction. Strain compatibility was derived under the assumption that there is no relative macroscopic displacement between both phases. Stresses on both phases were derived based on the shrinking stress of the paste phase and the resisting stress of the aggregate phase. Constitutive relation of paste phase was adopted from the study of Yomeyama, K. et al., and that of the aggregate phase was adopted from the author's particle contact density model. The equation for calculating concrete shrinkage considering aggregate restraint was derived from the equilibrium of the two phases. The concrete shrinkage was found to be affected by the free shrinkage of the paste phase, aggregate content and the stiffness of both phases. The model was then verified to be effective for simulating concrete shrinkage by comparing the predicted results with the autogeneous and drying shrinkage test results on mortar and concrete specimens.

공학적 관점에서의 다상유동 문제의 수치해석 (Simulation of industrial multiphase flows)

  • Han aehoon;Alajbegovic Ales;Seo Hyeoncheol;Blahowsky Peter
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.389-392
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    • 2002
  • In many industrial applications, multiphase flow analysis is the norm rather than an exception as compared to more-conventional single-phase investigation. This paper describes the implementation of the multiphase flow simulation capability in the general purpose CFD software AVL FIRE/SWIFT. The governing equations are discretized based on a finite volume method (FVM) suitable fur very complex geometry, The pressure field is obtained using the SIMPLE algorithm. Depending on the characteristics of the multiphase flow to be examined, the user can choose either the two-fluid model or an explicit interface-tracking model based on the Volume-of-Fluid approach. For truly 'multi'-phase flow problems, it is also possible to apply a hybrid model where certain phases are explicitly tracked while the other phases are handled by the two fluid model. In order to demonstrate the capability of the method, applications to the Taylor bubble flow simulations are presented.

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임상간호원의 사회화과정단계에 있어서의 역할모델, 직업에 대한 지각향성 및 자아실현성간의 관계 (Nurses단 Role Models, Perceptions Toward Occupation, Self-Actualization Value and the Phases of Socialization Process)

  • 한윤복;강윤숙
    • 대한간호학회지
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    • 제17권1호
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    • pp.24-32
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    • 1987
  • This study was designed to investigate the changes of nurses' role model, perceptions toward occupation, and self actualization value in terms of the phases of socialization process. Two hundred and sixty nine nurses working in clinical settings were randomly selected from 15 general hospitals despersed over Seoul and Kyungki province. Data were gathered by the standardized Perceptual Orientation Test, the Self-actualization Test, and Questionnaires on role models and phases of socialization process developed by the investigators from October 1985 to March 1986. The data were analysed by ANOVA and Pearson's Correlation Coefficient. The results were as follows: 1. The average time period required for the shift of phases of socialization process were; phase Ⅰ, role adjustment, took average 10 months of employment: Phase Ⅱ, interpersonal adjustment, 12 months: and Phase Ⅲ, role conflict, 15 months respectively. Conflict resolution, phase Ⅳ, began to take place 18 months of employment; and shifted to phase V, internalization and self-actualization at 25 months of employment. 2. Throughout 5 consecutive phase, the number of immediate superior nurse model was dominantly the highest among the role models. The number of head nurse role model increased at phase Ⅱ, phase Ⅲ, and phase Ⅳ. Respondents with school model in phase I tended to transfer to work model at phase Ⅱ. 3. The perceptions toward occupation were not significantly influenced by the Phases of socialization process. 4. The score of self-actualization value was not significantly influenced by the phases of socialization process. 5. In regard to perceptions toward occupation, nursing director model group showed significantly lower score in phase I (p<.01). 6. The comparison of self-actualization value between the 5 phases revealed significant difference in phase I: in particular among respondents with school model at p<.05. To conclude: 1. The phase Ⅲ of socialization process is the period of role conflict which occur at 15 months of employment, an6 conflict resolution, phase Ⅳ, begins at 18 months of employment on the average in clinical settings. 2. The immediate superior nurse and the head nurse are important role models for nurses all through their socialization process.

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Blood glucose levels, insulin concentrations, and insulin resistance in healthy women and women with premenstrual syndrome: a comparative study

  • Zarei, Safar;Mosalanejad, Leili;Ghobadifar, Mohamed Amin
    • Clinical and Experimental Reproductive Medicine
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    • 제40권2호
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    • pp.76-82
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    • 2013
  • Objective: To compare the blood glucose levels, insulin concentrations, and insulin resistance during the two phases of the menstrual cycle between healthy women and patients with premenstrual syndrome (PMS). Methods: From January of 2011 to the August of 2012, a descriptive cross-sectional study was performed among students in the School of Medicine of Jahrom University of Medical Sciences. We included 30 students with the most severe symptoms of PMS and 30 age frequency-matched healthy controls. We analyzed the serum concentrations of glucose, insulin, and insulin resistance by using the glucose oxidase method, radioimmunometric assay, and homeostasis model assessment of insulin resistance equation, respectively. Results: No significant differences between the demographic data of the control and PMS groups were observed. The mean concentrations of glucose of the two study groups were significantly different during the follicular and luteal phases (p=0.011 vs. p<0.0001, respectively). The amounts of homeostasis model assessment of insulin resistance of the two study groups were significantly different in the luteal phase (p=0.0005). Conclusion: The level of blood glucose and insulin resistance was lower during the two phases of the menstrual cycle of the PMS group than that of the controls.

Thermodynamic Assessment of the PbO-ZrO2 System

  • Koo, Bon-Keup;Ping Liang;Hans Jiirgen Seifert;Fritz Aldinger
    • The Korean Journal of Ceramics
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    • 제5권3호
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    • pp.205-210
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    • 1999
  • The thermodynamic properties and phase diagram of the$ PbO-ZrO_2$ system have been critically assessed using the Thermo-Calc program. Excess Gibbs energies were expressed by Redlich-Kister polynomials for the solid phases, by the two-sublattice ionic liquid model for the liquid phase and by the compound energy model for the solid solution phase. All solid phases were treated as stoichimetric compounds.

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호기-무산소 SBR 반응조를 이용한 ASM No. 1 모델의 간략화 (Simplification of ASM No. 1 Using Aerobic-Anoxic SBR)

  • 김신걸;최인수;구자용
    • 상하수도학회지
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    • 제21권4호
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    • pp.409-420
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    • 2007
  • ASM No. 1 is a very useful model to analyze wastewater treatment system removing organic carbon and nitrogen material. But it isn't adequate to control the wastewater treatment system with real time since it has many material divisions and parameters. So, the purpose of this study is the simplification of ASM No. 1 to control the wastewater treatment system. ASM No. 1 was changed with the model which has 3 material divisions(COD, $NH_4{^+}$, $NO_3{^-}$) and two phases(Aerobic and Anoxic condition). SBR was running with two phases(Phase I and II). Phase II running 20 minutes with aerobic time was used for deciding model parameters and Phase I running 12 minutes with aerobic time was used for proving the simplified model. The simplified model was compared with ASM No. 1 using data of Phase I and II. As a result of model comparison, the simplified model has enough ability to express the variation of $NH_4{^+}$ compound.