• Title/Summary/Keyword: equation-of-state effects

검색결과 235건 처리시간 0.028초

댐 붕괴 유동에서 갇힌 공기의 압축성에 의한 물의 압력 진동 모사 (Simulation of Pressure Oscillation in Water Caused by the Compressibility of Entrapped Air in Dam Break Flow)

  • 신상묵
    • 대한조선학회논문집
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    • 제55권1호
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    • pp.56-65
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    • 2018
  • Pressure oscillation caused by the compressibility of entrapped air in dam break flow is analyzed using an open source code, which is a two-phase compressible code for non-isothermal immiscible fluids. Since compressible flows are computed based on a pressure-based method, the code can handle the equation of state of barotropic fluid, which is virtually incompressible. The computed time variation of pressure is compared with other experimental and computational results. The present result shows good agreements with other results until the air is entrapped. As the entrapped air bubbles pulsate, pressure oscillations are predicted and the pressure oscillations damp out quickly. Although the compressibility parameter of water has been varied for a wide range, it has no effects on the computed results, because the present equation of state for water is so close to that of incompressible fluid. Grid independency test for computed time variation of pressure shows that all results predict similar period of pressure oscillation and quick damping out of the oscillation, even though the amplitude of pressure oscillation is sensitive to the velocity field at the moment of the entrapping. It is observed that as pressure inside the entrapped air changes quickly, the pressure field in the neighboring water adjusts instantly, because the sound of speed is much higher in water. It is confirmed that the period of pressure oscillation is dominated by the added mass of neighboring water. It is found that the temperature oscillation of the entrapped air is critical to the quick damping out of the oscillations, due to the fact that the time averaged temperature inside the entrapped air is higher than that of surrounding water, which is almost constant.

침투성 구형 모델에 관한 분자 전산 연구: I. 상태 방정식 (Molecular Simulation Studies for Penetrable-Sphere Model : I. Equation of State)

  • 김춘호;서숭혁
    • 폴리머
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    • 제35권4호
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    • pp.325-331
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    • 2011
  • 침투 가능한 수형 모델 유체의 방정식을 고찰하는 다양한 범위의 입자 충전 분을 ${\phi}$ 및 척력적 에너지 상수 ${\varepsilon}^*$에 대하여 분자 동력학 방법을 이용한 전산 모사를 수행하였다. 전산 모사로부터 얻어진 결과는 문헌에 보고된 고침투 근사식 및 저침투 근사식으로 알려진 두 가지의 한계적 이론식들과 직접 비교하였다. 낮은 척력적 에너지를 갖는 ${\varepsilon}^*$ <3.0의 경우 전산 모사 결과는 이들 두 이론식들과 일치하였으나, 반면 입자간 상호 포텐셜 에너지가 입자 자체 평균 운동 에너지의 두 배 이상 높은 척력적 에너지를 갖는 ${\varepsilon}^*{\geqq}3.0$의 경우 이들 이론식들 모두 전산 모사 결과를 재현하지 못하였다. 이는 특히 높은 입자 밀도와 높은 척력적 에너지를 갖는 ${\phi}{\geqq}0.7$${\varepsilon}^*$=6.0의 경우 입자들의 클라스터 형성 및 자체 입자 배제 부피에 따른 비연속적 크기 효과에 기인되었다.

Analytical Development of a Robust Controller for Smart Structural Systems

  • Park Chul Hue;Hong Seong Il;Park Hyun Chul
    • Journal of Mechanical Science and Technology
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    • 제19권5호
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    • pp.1138-1147
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    • 2005
  • This paper aims at demonstrating the feasibility of active control of beams with a multiobjective state-feedback control technique. The multiobjective state-feedback controller is de­signed on a linear matrix inequality (LMI) approach for the multiobjective synthesis. The design objectives are to achieve a mix of Hoo performance and H2 performance satisfying constraints on the closed-loop pole locations in the face of model uncertainties. The controller is also designed to reject the effects of the noise and external of disturbances. For the theoretical analysis, the governing equation of motion is derived by Hamilton's principle to describe the dynamics of a smart structural system. Numerical examples are presented to demonstrate the effectiveness of the integrated robust controller in damping out the multiple vibration modes of the piezo/beam system.

파향선 좌표계에 의한 해암구조물 주변에서의 파랑변형 모형 (Wave Deformation Model in Orthogonal Curvilinear Coordinate System around the Coastal Structure)

  • 이동수;이종섭;장선덕
    • 한국해안해양공학회지
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    • 제1권1호
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    • pp.22-30
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    • 1989
  • 파랑은 천해역을 진행하면서 천수효과에 의한 굴절 및 구조물에 의한 회절, 흐름의 영향, 반사등에 의한 변형을 일으킨다. 굴절 및 회절에 의한 파랑변형을 예측하기 위하여 흐름이 고려된 비정상 상태의 Kirby(1986a)의 식을 이용하여 회절이 고려된 기초방정식을 유도하고, 좌표계를 파향선식에 의한 직교곡선 좌표계로 변환한 후 양해법으로 반복계산을 행하여 해를 구하는 수치 모형을 개발하였다. 수치 모형의 적용성을 검토하기 위하여 다음과 같은 조건에서 계산하였으며, 기존의 계산결과 및 실험결과와 비교 검토하였다. 1) 일정 수심상에서 원형 천퇴 주변의 파랑변형 2) 사면상에서 타원형 천퇴 주변의 파랑변형 3) 사면상에서 파랑이 입사각을 갖고 입사할 경우 구조물 주변의 파랑변형 본 모형의 수치해를 검토한 결과 기존의 연구결과와 잘 일치하였다.

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폴리싱 고속화를 위한 연마헤드의 회전 안정성과 윤활 상태 평가 (Rotational Stability and Lubrication State Evaluation of the Polishing Head for High Speed Polishing)

  • 이호철;최민석
    • 한국생산제조학회지
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    • 제25권4호
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    • pp.301-306
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    • 2016
  • High speed polishing can kinematically increase the polishing removal rate by using the conventional Preston equation, especially for hard substrates such as sapphire or diamond. However, high speed effects should be clarified beforehand considering the lubrication state and process parameter variations. In this paper, we developed a polishing experimental method and apparatus to determine the lubrication state by measuring the real time friction coefficient using two load cells. Through experiments, we obtained a boundary lubrication state above 0.35 of the friction coefficient by using low table speed and high polishing load, indicating a synchronized stable behavior in polishing head rotation. However, larger Stribeck indexes by a high speed above 200 rpm can generate a hydrodynamic lubrication state below 0.25 of the low friction coefficient. This causes the polishing head rotation to stop. A forced and synchronized head rotation is required for high speed polishing.

이동질량을 가진 유체유동 회전 외팔 파이프의 동특성 (Dynamic Behavior of Rotating Cantilever Pipe Conveying Fluid with Moving Mass)

  • 윤한익;손인수
    • 한국소음진동공학회논문집
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    • 제15권5호
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    • pp.586-594
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    • 2005
  • In this paper, we studied about the effects of the rotating cantilever pipe conveying fluid with a moving mass. The influences of a rotating angular velocity, the velocity of fluid flow and moving mass on the dynamic behavior of a cantilever pipe have been studied by the numerical method. The equation of motion is derived by using the Lagrange's equation. The cantilever pipe is modeled by the Euler-Bernoulli beam theory. When the velocity of a moving mass is constant, the lateral tip-displacement of a cantilever pipe is proportional to the moving mass and the angular velocity. In the steady state, the lateral tip-displacement of a cantilever pipe is more sensitive to the velocity of fluid than the angular velocity, and the axial deflection of a cantilever pipe is more sensitive to the effect of a angular velocity. Totally, as the moving mass is increased, the frequency of a cantilever pipe is decreased in steady state.

Solvent Effects on the Solvolysis of 1-(4-Methoxyphenyl)-1-phenyl-2,2,2-trifluoroethyl Choloride. Influence of an Electron-Withdrawing α-Substituent on Carbonium Ion Center

  • 권정민;김성홍;여수동
    • Bulletin of the Korean Chemical Society
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    • 제17권11호
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    • pp.1056-1061
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    • 1996
  • Solvolysis rates of 1-(4-methoxyphenyl)-l-phenyl-2,2,2-trifiuoroethyl chloride (1) and 1-(4-methoxyphenyl)-1-phenylethyl chloride (2) were measured in a variety of aqueous binary solvents, and the solvent effect was treated with the Grunwald-Winstein equation. The solvent effect on the solvolysis of 1 failed to give a single linear correlations using the ordinary Y or YCl, but exhibited the wide split pattern which could not be related to the solvent nucleophilicity. The improved correlations with YBnCl and extended dual-parameter treatment, log (k/k0)=mYCl+hI (mΔYΔ), were observed for the solvolysis of 1. These results suggest that the incipient cationic charge in the solvolysis of 1 is delocalized strongly into the aryl-rings in the transition state. While the solvent effect on the solvolysis of 2 is better correlated with Y or YCl than YBnCl but the linearity is not satisfactory. The correlation is comparably improved by the use of the extended Grunwald-Winstein equation, log (k/k0)=0.81YCl+0.26NOTs (R=0.994, SD=±0.12), indicating the cationic charge of reaction center of 2 was localized mostly in the transition state.

DME 액적의 증발특성 해석 (Numerical Study on the Droplet Vaporization Characteristics of Dimethyl Ether(DME) Droplet)

  • 유용욱;류종혁;김용모
    • 한국자동차공학회논문집
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    • 제12권2호
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    • pp.69-75
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    • 2004
  • The present study is numerically investigated for the high pressure effects on the vaporization process of the DME droplet. The evaporation rate of DME droplets is about twice that of dodecane droplets at the same chamber condition. The DM droplet vaporization characteristics is parametrically studied for the wide range of the operating conditions encountered with the high pressure combustion process.

Solvent Effect on the Reactions of DANSYL and BANSYL Chlorides with Substituted Pyridines

  • 성대동;강동효;장정아;박성배;류준하
    • Bulletin of the Korean Chemical Society
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    • 제19권5호
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    • pp.561-564
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    • 1998
  • Solvent effects on the reactions of DANSYL and BANSYL chlorides with substituted pyridines have been investigated using two parameters of Taft's solvatochromic correlation and four parameters of Kirkwood-Onsager, Parker, Marcus, Hildebrand equation. The acetonitrile molecules accelerate charge separation of the reactants and stabilize the transition state. The coefficient of the solvent parameters provide a good information to predict and to analyze the reaction mechanism. The nucleophilic substitution reaction of DANSYL and BANSYL chlorides with substituted pyridines are ruled by the contribution of the change in dipole moment term and polarity-polarizability term.

THE IMPACT OF DELAY IN THE TREATMENT OF AUTOINFLAMMATORY DISEASE WITH A MATHEMATICAL MODEL

  • Park, Anna
    • East Asian mathematical journal
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    • 제38권3호
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    • pp.357-363
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    • 2022
  • Immunological imbalance eventually results in the development of various diseases. A typical example is an imbalance of cytokines with immunomodulatory abilities. In this paper, we propose a two-variable delay model to anti-pro-inflammatory cytokine therapy for autoimmune diseases, which are caused by an imbalance between the pro and anti-inflammatory cytokines. The interaction between pro- and anti-inflammatory cytokines were modeled mathematically to investigate the relevance of cytokines in disease processes. The delay time was estimated to maintain the stability of a biologically important steady state. In particular, the effects of delay with anti-pro-inflammatory cytokines therapy in autoinflammatory diseases were studied.