• Title/Summary/Keyword: Solid-Liquid-Solid

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고/액 계면에서의 Peltier 열 측정 및 결정성장에의 응용 I : 이론적 접근 (Measurement of Peltier Heat at the Solid/Liquid Interface and Its Application to Crystal Growth I : Theoretical Approach)

  • 김일호;장경욱;이동희
    • 한국재료학회지
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    • 제9권11호
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    • pp.1108-1111
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    • 1999
  • 결정성장 도중 전류에 의해 고/액 계면에서 발생하는 Peltier 열을 이용하면 온도구배의 증가와 이에 따른 성장속도의 증가 및 결정성의 향상에 기여할 것이라 예상되어, 고/액 계면에서 복합적으로 발생하는 Peltier 효과를 조사하였다. 전류 밀도, 극성 및 온도구배의 변화에 따른 고상과 액상 및 그 계면에서의 온도변화로부터 이론적 추론에 의해 Peltier 열, Thomson 열 및 Joule 열만의 영향으로 분류할 수 있었고, 고상/액상 계에 대한 Peltier 계수 및 Thomson 계수도 구할 수 있었다.

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곡률이 있는 모서리 주변에서의 액막 거동에 대한 수치해석적 연구 (A NUMERICAL ANALYSIS ON THE BEHAVIOR OF LIQUID FILM AROUND A CURVED EDGE)

  • 이건강;허남건;손기헌
    • 한국전산유체공학회지
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    • 제17권4호
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    • pp.75-80
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    • 2012
  • Due to the effect of surface tension, liquid film around a curved edge of solid surface moves from the corner to the flat surface. During this behavior of liquid film, film sagging phenomenon is easily occurred at the solid surface. Behavior of liquid film is determined with the effects of the properties of liquid film and the geometric factors of solid surface. In the present study, 2-D transient CFD simulations were conducted on the behavior of liquid film around a curved edge. The two-phase interfacial flow of liquid film was numerically investigated by using a VOF method in order to predict the film sagging around a curved edge. In the steady state of behavior of liquid film, the liquid film thickness of numerical result showed a good agreement with experimental data. After verifying the numerical results, the characteristics of behavior of liquid film were numerically analyzed with various properties of liquid film such as surface tension coefficient and viscosity. The effects of geometric factors on film sagging were also investigated to reduce the film sagging around a curved edge.

알루미늄합금의 반용융 단조 및 주조공정에 관한 수치해석 (Numerical Analysis on Semi-Solid Forging and Casting Process of Aluminum Alloys)

  • 강충길;임미동
    • 소성∙가공
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    • 제6권3호
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    • pp.239-249
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    • 1997
  • The behaviour of alloys in the semi-solid state strongly depends on the imposed stress state and on the morphology of the phase which can vary from dendritic to globular. To optimal net shape forging of semi-solid materials, it is important to investigate for filling phenomena in forging process of arbitrarily shaped dies. To produce a automotive part which has good mechanical property, the filling pattern according to die velocity and solid fraction distribution has to be estimated for arbitrarily shaped dies. Therefore, the estimation of filling characteristic in the forging simulation with arbitrarily shaped dies of semi-solid materials are calculated by finite element method with proposed algorithm. The proposed theoretical model and a various boundary conditions for arbitrarily shaped dies is investigated with the coupling calculation between the liquid phase flow and the solid phase deformation. The simulation process with arbitrarily shaped dies is performed to the isothermal conditions of two dimensional problems. To analysis of forging process by using semi-solid materials, a new stress-strain relationship is described, and forging analysis is performed by viscoelastic model for the solid phase and the Darcy's law for the liquid flow. The calculated results for forging force and filling limitations will be compared to experimental data. The filling simulation of simple products performed with the uniform billet temperature(584$^{\circ}C$) from the induction heating by the commercial package MAGMAsoft. The initial step of computation is the touching of semi-solid material with the end of die gate and the initial concept of proposed system just fit with the capability of MAGMAsoft.

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Design and Exergy Analysis for a Combined Cycle of Liquid/Solid $CO_2$ Production and Gas Turbine using LNG Cold/Hot Energy

  • Lee, Geun-Sik
    • International Journal of Air-Conditioning and Refrigeration
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    • 제15권1호
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    • pp.34-45
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    • 2007
  • In order to reduce the compression power and to use the overall energy contained in LNG effectively, a combined cycle is devised and simulated. The combined cycle is composed of two cycles; one is an open cycle of liquid/solid carbon dioxide production cycle utilizing LNG cold energy in $CO_2$ condenser and the other is a closed cycle gas turbine which supplies power to the $CO_2$ cycle, utilizes LNG cold energy for lowering the compressor inlet temperature, and uses the heating value of LNG at the burner. The power consumed for the $CO_2$ cycle is investigated in terms of a solid $CO_2$ production ratio. The present study shows that much reduction in both $CO_2$ compression power (only 35% of the power used in conventional dry ice production cycle) and $CO_2$ condenser pressure could be achieved by utilizing LNG cold energy and that high cycle efficiency (55.3% at maximum power condition) in the gas turbine could be accomplished with the adoption of compressor inlet cooling and regenerator. Exergy analysis shows that irreversibility in the combined cycle increases linearly as a solid $CO_2$ production ratio increases and most of the irreversibility occurs in the condenser and the heat exchanger for compressor inlet cooling. Hence, incoming LNG cold energy to the above components should be used more effectively.

열전도가 주도적인 삼차원 접촉융해에 대한 비정상 해석 (Unsteady Analysis of the Conduction-Dominated Three-Dimensional Close-Contact Melting)

  • 유호선
    • 대한기계학회논문집B
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    • 제23권8호
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    • pp.945-956
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    • 1999
  • This work reports a set of approximate analytical solutions describing the initial transient process of close-contact melting between a rectangular parallelepiped solid and a flat plate on which either constant temperature or constant heat flux is imposed. Not only relative motion of the solid block tangential to the heating plate, but also the density difference between the solid and liquid phase is incorporated in the model. The thin film approximation reduces the force balance between the solid weight and liquid pressure, and the energy balance at the melting front into a simultaneous ordinary differential equation system. The normalized model equations admit compactly expressed analytical solutions which include the already approved two-dimensional solutions as a subset. In particular, the normalized liquid film thickness is independent of all pertinent parameters, thereby facilitating to define the transition period of close-contact melting. A unique behavior of the solid descending velocity due to the density difference is also resolved by the present solution. A new geometric function which alone represents the three-dimensional effect is introduced, and its properties are clarified. One of the representative results is that heat transfer is at least enhanced at the expense of the increase in friction as the cross-sectional shape deviates from the square under the same contact area.

반고상 A356 합금 슬러리의 미세조직에 따른 유동특성에 관한 연구 (Effects of Microstructure Morphology on Fluid Flow Characteristics of A356 Commercial Alloy in Semi-Solid Slurry)

  • 김재민;이승훈;홍준표
    • 한국주조공학회지
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    • 제25권6호
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    • pp.240-248
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    • 2005
  • The rheocasting characteristics are strongly influenced by the microstructural morphology such as particle size, form factor and contiguity. In this study, the effect of structural morphology on fluid flow characteristics of A356 semi-solid alloy was investigated with a vacuum suction fluidity test. Semi-solid metal slurry was made by the mechanical stirring, the liquidus casting, and H-NCM to be analysed. H-NCM could obtain uniform and fine globular microstructures of 0.9 form factor and 55 ${\mu}m$ particle size. Inoculation was found to be effective for reducing particle size, however, for H-NCM it should be avoided due to the cause of increasing contiguity. The fluidity test indicated that the non-stirring method had higher fluidity and smaller liquid segregation in the same solid faction of 0.4 than the stirring method, for smaller particle size and higher form factor. It was observed that liquid segregation decreased as the particle size is smaller and form factor is higher. The results of die-casting experiment were a good agreement with those of fluidity test.

Effects of Geometry and Operating Fluid on the Expansion Behavior of Liquid-Solid Fluidized Beds

  • Mohsen Mozafari-Shamsi;Alireza Malooze;Mohammad Sefid;Mostafa Soroor;Ehsan Mehrabi Gohari
    • Korean Chemical Engineering Research
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    • 제61권2호
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    • pp.312-321
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    • 2023
  • Fluidized beds have been widely used in industrial applications, which in most of them, the operating fluid is non-Newtonian. In this study, the combination of the lattice Boltzmann method (LBM) and the smoothed profile method has been developed for non-Newtonian power-law fluids. The validation of the obtained model were investigated by experimental correlations. This model has been used for numerical studying of changing the operating fluid and geometrical parameters on the expansion behavior in liquid-solid beds with both Newtonian and non-Newtonian fluids. Investigations were performed for seven different geometries, one Newtonian, and two non-Newtonian fluids. The power-law index was in the range of 0.8 to 1, and the results for the Newtonian fluidized beds show more porosity than the non-Newtonian ones. Furthermore, increasing the power-law index resulted in enhancing the bed porosity. On the other hand, bed porosity was decreased by increasing the initial bed height and the density of the solid particles. Finally, the porosity ratio in the bed was decreased by increasing the solid particle diameter.

반용융 재료의 압출공정에 관한 유한요소 해석 (Finite Element Analysis of Extrusion Process in Semi-Solid State)

  • 황재호;고대철;민규식;김병민;최재찬
    • 소성∙가공
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    • 제7권4호
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    • pp.364-374
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    • 1998
  • It is the objective of this study to analyze the effect of various process variables on the quality of extruded product and extrusion force for semi-solid extrusion of Al2024 with solid phase structure of globular type by the finite element method. Process variables are initial solid fraction, ram speed, semi-angle of die, and reduction in area. The results of experiment are compared with those of simulation in order to verify the usefulness of the developed finite element program. The flow and deformation of semi-solid alloy are analyzed by coupling by coupling the deformation of porous skeleton and the flow of liquid phase. It is also assumed that initial solid fraction is homogeneous.

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해수로부터 용존 윤기물의 Solid Phase Extraction을 위한 다수 시료 처리 장치 (Multisample Extraction system for Solid Phase Extraction of Dissolved Organic Compounds from Sea Water)

  • 조기웅;정경화;신종헌;김석현;홍기훈
    • 한국해양환경ㆍ에너지학회지
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    • 제3권3호
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    • pp.34-40
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    • 2000
  • 지용성 용존 유기물을 해수로부터 효율적으로 추출할 수 있는 고체상 추출 (solid phase extraction)장치를 새로이 고안하였다. 본 장치는 octadecyl silane (ODS) cartridge와 압력 평형 마개, 96 multifolder, 아스피레타 형 진공 펌프로 구성하였다. 본 장치는 기존의 액체-액체 추출법보다 회수 효율은 1.4 배 이상 증대시켰으며, 최소 시료량을 8 배 이상 감소 시켰다. 따라서 용매의 사용을 5 배 이상 감소시킬 수가 있으므로 나중에 사용된 용매를 제거하는 노력도 크게 감소시켰다. 뿐만 아니라 96 개의 시료(각 1ℓ)를 동시에 처리할 수 있으므로 지용성 용존 유기물의 추출 과정을 반자동화시킨 획기적인 장치이다. 본 장치를 통하여 황해 해수 시료에서 추출된 용존 탄화수소의 정성 및 정량 분석 결과 본 장치가 효율성과 신뢰성에서 기존의 액체-액체 추출법을 대체할 수 있을 것으로 사료된다.

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고/액 계면에서의 Peltier 열 측정 및 결정성장에의 응용 II : 측정과 응용 (Measurement of Peltier Heat at the Solid/Liquid Interface and Its Application to Crystal Growth II : Measurement and Application)

  • 김일호;장경욱;이동희
    • 한국재료학회지
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    • 제9권11호
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    • pp.1112-1116
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    • 1999
  • $\textrm{Bi}_{2}\textrm{Te}_{3}$의 고/액 계면을 통하여 전류밀도와 방향을 달리 하면서 통전시켰을 때 발생하는 고상, 액상 및 고/액 계면에서의 미소 온도변화를 측정하였다. 이 냉각(가열) 효과는 전류밀도, 통전방향 및 시간에 따라 다르게 나타났으며, 온도변화에 미치는 Peltier 열, Thomson 열 및 Joule 열의 영향을 이론 및 실험에 의해 각각 분류하였다. $\textrm{Bi}_{2}\textrm{Te}_{3}$의 고/액상간의 Peltier 계수는 -1.10$\times\textrm{10}^{-1}$V이었으며, 고상과 액상의 Thomson 계수는 각각 7.31\times\textrm{10}^{-4}V/K와 5.77\times\textrm{10}^{-5}V/K이었다. 직류를 통전하면서 Bi$_2$Te$_3$결정을 성장한 결과, 고상에서 액상으로 통전한 경우, Peltier 냉각에 의한 온도구배의 상승으로 방향성이 향상된 결정을 얻을 수 있었지만, 전류의 방향을 반대로 하면, 결정성 향상에 별 도움을 주지 못하였다.

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