• 제목/요약/키워드: 접촉융해

검색결과 15건 처리시간 0.02초

원형 및 사각단면을 가지는 수평캡슐에서의 접촉용해에 관한 실험적 연구 (An Experimental Study on Close-Contact Melting in Horizontal Capsules with Circular or Rectangular Cross Sections)

  • 김시범;이치우
    • 태양에너지
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    • 제13권1호
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    • pp.39-48
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    • 1993
  • 본 연구는 원 및 여러가지 종횡비의 사각단면을 가지는 수평캡슐에서의 접촉융해에서 융해현상의 진행모습, 융해율 및 상부에서의 자연대류의 정성적인 경향을 고찰한 실험적 연구이다. 본 연구의 결과 Stefan수에 따라서 융해율이 증가하며, 동일한 단면적의 경우 원보다는 사각단면의 경우에 융해율이 크고, 사각단면의 경우에는 종횡비가 작을수록 융해율이 커짐을 알 수 있다. Stefan수가 각각 0.0772, 0.1287 및 0.1802일 때 원통캡슐의 경우 상부에서 자연대류가 융해율에 미치는 영향은 각각 6.1%, 8.6% 및 11.2%이다.

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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.

수평원관내 부분적으로 채원진 상변화물질의 융해과정 (Experimental Study of Close-Contact Melting of Phase-Change Medium Partially Filled in a Horizontal Cylinder)

  • 서정세;노승탁
    • 대한기계학회논문집
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    • 제19권9호
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    • pp.2249-2260
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    • 1995
  • An experiment of close contact melting of phase-change medium partially filled in an isothermally heated horizontal cylinder is performed which involves the volume expansion of liquid induced by the solid-liquid density difference. The solid-liquid interface motion and the free surface behavior of liquid were reported photographically. The experimental results show that the curvature of upper solid-liquid interface varied to flat as melting progresses. In addition to the varying interface shape, the melting rate increases with the lower initial height of solid and the free surface height of liquid increases linearly. The experimental results of molten mass fraction were expressed in a function of dimensionless time Fo.Ste$^{3}$4/ and agreed well with the analytical solutions.

대류가열 비정상 접촉융해에 대한 해석해 (An Analytical Solution for the Unsteady Close-Contact Melting by Convective Heating)

  • 유호선
    • 대한기계학회논문집B
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    • 제24권3호
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    • pp.450-458
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    • 2000
  • This study deals with the unsteady close-contact melting of solid blocks on a flat surface subject to convective heating. Normalizing the model equations in reference to the steady solution successfully leads them to cover constant heat flux and isothermal limits at small and large extremes of the Biot number, respectively. The resulting equations admit a compactly expressed analytical solution, which includes the previous solutions as a subset. Based on the steady solution, the characteristics of close-contact melting can be categorized into constant heat flux, transition, and isothermal regimes, the boundaries of which appear to be nearly independent of the contact force. The unsteady solutions corresponding to Biot numbers in the transition regime show intermediate behaviors between those of the two limits. With a proper approximation, the present solution procedure can cope with the case of variable fluid temperature and heat transfer coefficient. Regardless of imposed conditions, the mean normalized Nusselt number during the unsteady process asymptotically approaches to a constant value as the Biot number comes close to each limit.

등열유속에 의한 평판위 비정상 접촉융해에 대한 근사적 해석해 (An Approximate Analytical Solution for the Unsteady Close-Contact Melting on a Flat Surface with Constant Heat Flux)

  • 유호선
    • 대한기계학회논문집B
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    • 제22권12호
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    • pp.1726-1734
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    • 1998
  • This paper focuses on the unsteady close-contact melting phenomenon occurring between a phase change material kept at its melting temperature and a flat surface on which constant heat flux is imposed. Based on the same simplifications and framework of analysis as the case of constant surface temperature, an approximate analytical solution which depends only on the liquid-to-solid density ratio is successfully derived. In order to keep consistency with the known solution procedure, both the dimensionless wall heat flux and the Stefan number are properly redefined. The obtained solution proves to agree quite well with the published numerical data and to be capable of resolving the fundamental features of unsteady close-contact melting, especially in the presence of the solid-liquid density difference. The density ratio directly affects the film growth rate and the initial value of solid descending velocity, thereby controlling the duration of unsteady process. The effects of other parameters can be evaluated readily from the steady solution which is implied in the normalized result. Since the dimensionless surface temperature for the present boundary condition increases from zero to unity along the evolution path of the liquid film thickness, the unsteady process lasts longer than that for the case of isothermal heating.

등온가열에 의한 접촉융해의 초기 과도과정에 대한 근사적 해석해 (An approximate analytical solution for the initial transient process of close-contact melting on an isothermal surface)

  • 유호선
    • 대한기계학회논문집B
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    • 제21권12호
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    • pp.1710-1719
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    • 1997
  • An approximate analytical solution for the initial transient process of close-contact melting occurring between a phase change material kept at its melting temperature and an isothermally heated flat surface is derived. The model is so developed that it can cover both rectangular and circular cross-sectional solid blocks. Normalization of simplified model equations in reference to the steady solution enables the solution to be expressed in a generalized form depending on the liquid-to-solid density ratio only. A selected result shows an excellent agreement with the previously reported numerical data, which justifies the present approach. The solution appears to be capable of describing all the fundamental characteristics of the transient process. In particular, dependence of the solid descending velocity oft the density ratio at the early stage of melting is successfully resolved. The effects of other parameters except the density ratio on the transient behaviors are efficiently represented via the steady solution implied in the normalized result. A simple approximate method for estimating the effect of convection on heat transfer across the liquid film is also proposed.

구형용기내 상부면가열에 의한 유동빙의 융해열전달 (Melting Heat Transfer of Liquid Ice in a Rectangular Vessel with Heated Top Wall)

  • 김명환;김경근
    • Journal of Advanced Marine Engineering and Technology
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    • 제19권1호
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    • pp.36-44
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    • 1995
  • Melting characteristics of unrestrained liquid ice in a rectangular vessel with heated top wall were investigated experimentally. The liquid ice, a mixture of ice particles and ethylene-glycol aqueous solution, was adopted as a testing material. During the melting process the liquid ice was drawn by buoyancy to the heated top wall of the rectangular vessel where close-contact melting occured. The melting behavior and melting rate of the liquid ice as well as local/mean heat-transfer coefficient at the heated top wall were observed and measured under a variety of conditions of heat flux and various initial concentration of the aqueous binary solution. It was found that the heat transfer of the heated top wall is remarkably promoted by the close-contact melting, and that the dendritic frozen layer at the lower interface of the liquid ice is formed. Photographic evidence demonstrated that plumes containing solute-rich liquid issued from isolated chimneys within the liquid ice layer where segregation of interstitial channel took place.

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종방향대류 및 고액밀도차가 고려된 접촉융해에 대한 해석해 (An analytical solution for the close-contact melting with vertical convection and solid-liquid density difference)

  • 유호선;홍희기;김찬중
    • 대한기계학회논문집B
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    • 제21권9호
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    • pp.1165-1173
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    • 1997
  • The steady state close-contact melting phenomenon occurring between a phase change material and an isothermally heated flat plate with relative motion is investigated analytically, in which the effects of vertical convection in the liquid film and solid-liquid density difference are incorporated simultaneously. Not only the scale analysis is conducted to estimate a priori qualitative dependence of system variables on characteristic parameters, but also an analytical solution to a set of simplified model equations is obtained to specify the effects under consideration. These two results are consistent with each other, in that the vertical convection affects both the solid descending velocity and the film thickness, and that the density difference alters only the solid descending velocity. While the effect of vertical convection can be characterized conveniently by a newly introduced temperature gradient factor which asymptotically approaches the unity/zero with decreasing/increasing the Stefan number, that of density difference is represented by the liquid-to-solid density ratio. It is shown that the solid descending velocity depends linearly on the density ratio, and that the ratios of solid descending velocity, film thickness and friction coefficient to the conduction solution are proportional to 3/4, 1/4 and -1/4 powers of the temperature gradient factor, respectively. Also, established is the fact that the effect of convection can be legitimately neglected in the analysis for the range of the Stefan number less than 0.1.

Open Pulled Straws, EM Grid, Nylon Loop법에 의한 돼지성숙난자의 유리화동결 비교

  • 안미현;김인덕;석호봉
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2003년도 학술발표대회 발표논문초록집
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    • pp.83-83
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    • 2003
  • 돼지 난자의 유리화 동결 처리 방법 중 난자를 담는 용기(loading vessel)의 재료로 최근에 알려진 것으로 open-pulled straws(OPS)[Vajta등, Mol Reprod Dev, 51:53-58, (1998)], electron microscope grids(EMG) [Martino등,Biol Reprod, 54:1059-1069, (1996)〕, nylon loop system(NLS) [Lane등, Fertil Steril,72: 1073-1078, (1999)] 등이 보고되고 있다. OPS는 1/4cc straws를 열을 가하여 길게 뽑아 내벽을 얇게 함으로써 filing된 난자나 수정란이 액체 질소와 접촉했을 때 유리화가 신속하게 되도록 하는 방법으로 돼지에서는 별로 보고된 것이 없다. EMG는 열전도가 예민한 전자현미경용 copper grid를 이용한 방법으로 최근 국내 기술진의 연구성적을 포함한 몇몇 학자들에 의하여 보고되었고 NLS는 0.5mm직경의 nylon loop를 이용하여 급속 동결한 성적이 보고되었으나, 돼지 난자에 응용 된 것은 없다. 따라서 이와 같은 동결 재료는 사람과 반추류, mouse외에 돼지 난자에 대하여는 전혀 시도되지 않았지만 유리화 동결기술에서 가장 중요한 실험으로 생각된다. 성공적인 유리화 동결을 위해서는 수정란이 냉각의 전도성이 빠르고, 작은 용액을 수정란과 같이 filling해야 하며 모든 동작이 신속 간편해야 하며 융해 방법도 초급속도의 융해가 요구되므로 이에 부합되어야 한다. 연구 목적은 돼지 난자를 유리화 동결/융해 시 동결 재료-straw/glass, copper grid, nylon 3가지에 대한 제작 방법, 난자 loading, 동결 처리, 보관 방법, 융해 방법 등을 난자의 회수, 수정 후 생존율을 비교 조사하여 가장 우수한 방법을 선택할 목적이었다. 수행 내용은 3가지의 재료의 sample을 제작하고 소독한 다음 준비된 돼지 COCs을 40시간동안 IVM한 후 난자를 5~l5개 정도로 선정 하여 준비된 VS 용액에 평형처리 하였다. 각 재료의 용기에 loading 한 후 동결/보관하였고, 융해는 역순으로 평형하여 maturation 배지에 3~4시간 배양한 다음 경검하고 IVF한 후 NCSU-23 배지에 담아 IVC 배양하면서 cell cleavage상태를 확인하였다.

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지반환경 변화에 따른 화강토의 동적특성 (Dynamic Characteristics of Decomposed Granite Soils by Changing Geoenvironment)

  • 이진수;이강일;김경진
    • 한국지반신소재학회논문집
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    • 제13권1호
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    • pp.41-52
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    • 2014
  • 화강토는 우리나라에서 널리 분포하는 흙으로써 공기에 노출되거나 물과 접촉하면 강도특성이 쉽게 변화하는 흙으로 건설기술자가 가장 많이 당면하고 있는 지반재료이다. 특히, 이러한 재료는 계절적 환경변화를 거치게 되면서 토류구조물의 주 구성요소인 배면지반은 습윤-건조, 동결-융해 및 자연 또는 인공적인 풍화과정을 거치게 된다. 따라서 본 연구는 이러한 지반환경변화 후 화강토의 동적거동 특성에 미치는 지반환경 및 풍화조건이 무엇인지를 공진주 실험을 통해 연구하였다. 본 연구결과 화강토의 동적특성에 가장 큰 영향 미치고 있는 지반환경 조건은 습윤-건조 풍화조건이며, 다음으로 인공풍화 조건이 초기에는 큰 영향을 미치다가 동결-융해 사이클 횟수가 증가할수록 동결-융해 조건이 더 큰 영향을 미치는 것으로 나타났다.