• 제목/요약/키워드: Square enclosure

검색결과 71건 처리시간 0.027초

화재실내 자연대류의 수치해석 (Numerical Analysis of Natural Convection in Room Fire)

  • 정길순;이승만;이병곤
    • 한국화재소방학회논문지
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    • 제19권4호
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    • pp.18-25
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    • 2005
  • 자연대류유동 형태의 실내화재 해석은 Zone 모델과 Field 모델로 대별된다. Zone 모델은 화염과 연소가스로 인한 상부의 고온 연기층과 하부의 찬 공기층의 온도를 균일하게 간주하고, 실험값을 대입한 간단한 대수식으로 계산하여 간편하나 각각의 위치에 대한 온도와 유속 등을 구할 수 없다. Field모델은 해석영역을 다수의 격자로 구성하고 운동량, 에너지방정식 등을 수치해석하는 방법으로 많은 계산시간 및 컴퓨터 용량이 필요하나 각각의 위치에서의 유동 및 온도분포 등을 자세히 규명 할 수 있다. 열유동 수치해석에는 기존의 상용 프로그램들이 있어 강제대류에는 잘 적용되나, 자연대류에는 대부분 만족할 만한 결과를 주지 못하고 있다. 이에 본 연구에서는 실내화재해석의 기초연구로, 바닥면이 부분적으로 가열될 때 우측벽의 경계조건을 변화시켜 가면서 실내의 층류 자연대류로 인한 유동장과 온도장을 SIMPLE 수치해석방법을 이용하여 직접 수치해석 하였다.

사각 전도체가 존재하는 수평 밀폐계 내부의 자연대류 현상에 대한 수치적 연구 (Numerical Simulation of Natural Convection in a Horizontal Enclosure with a Conducting Square Body)

  • 이재룡;하만영
    • 대한기계학회논문집B
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    • 제29권2호
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    • pp.189-196
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    • 2005
  • The physical model considered here is a horizontal layer of fluid heated below and cold above with a conducting body placed at the center of the layer. The body has dimensionless thermal conductivities to the fluid of 0.1, 1 and 50. Two-dimensional solution for unsteady natural convection is obtained using an accurate and efficient Chebyshev spectral methodology for different Rayleigh numbers. Multi-domain technique is used to handle a square-shaped conducting body. The results for the case of a conducting body are also compared to those of adiabatic and neutral isothermal bodies. When the dimensionless thermal conductivity is 0.1, a pattern of fluid flow and isotherms and the corresponding time-averaged surface Nusselt number are almost the same as the case of an adiabatic body. When the dimensionless thermal conductivity is 50, a pattern of flow and isotherm and the corresponding surface and time-averaged Nusselt number are similar to those of neutral body. The results for the case of dimensionless thermal conductivity of unity are also compared to those of pure natural convection.

무중력 상태하의 밀폐 용기 내에서 g-jitter에 의한 자연 대류 (Natural Convection Induced by g-jitter in an Enclosure under Null Gravity)

  • 김기현;현재민;곽호상
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집D
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    • pp.522-527
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    • 2001
  • Comprehensive numerical computations are made of side-heated squire cavity which is exposed to zero mean g-jitter. Numerical solutions are acquires to the governing two-dimensional Navier-Stokes equations for a Boussinesq fluid. When the system is exposed to pure sinusoidal g-jitter inclined to the vertical axis, in spite of zero mean gravity there exist non zero net flow fields [8]. The resonance phenomenon are observed in moderate Rayleigh number. And, by comprehensive numerical work, unlike[5], it is found that they are related with the overshoot phenomenon of the sudden gravity up problem.

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Hermite 3차, 4차 및 5차 유동함수에 의한 비압축성 유동계산 (INCOMPRESSIBLE FLOW COMPUTATIONS BY HERMITE CUBIC, QUARTIC AND QUINTIC STREAM FUNCTIONS)

  • 김진환
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2009년 추계학술대회논문집
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    • pp.49-55
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    • 2009
  • This paper evaluates performances of a recently developed divergence-free finite element method based on Hermite interpolated stream functions. Velocity bases are derived from Hermite interpolated stream functions to form divergence-free basis functions. These velocity basis functions constitute a solenoidal function space, and the simple gradient of the Hermite functions constitute an irrotational function space. The incompressible Navier-Stokes equation is orthogonally decomposed into a solenoidal and an irrotational parts, and the decoupled Navier-Stokes equations are projected onto their corresponding spaces to form proper variational formulations. To access accuracy and convergence of the present algorithm, three test problems are selected. They are lid-driven cavity flow, flow over a backward-facing step and buoyancy-driven flow within a square enclosure. Hermite interpolation functions from cubic to quintic are chosen to run the test problems. Numerical results are shown. In all cases it has shown that the present method has performed well in accuracies and convergences. Moreover, the present method does not require an upwinding or a stabilized term.

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Honeycomb을 利용한 太陽熱 集熱器의 熱效率增大에 관한 硏究 (A Study on Increasing Thermal Performance of Solar Collector by Utilizing Honeycomb Structures)

  • 김종보;박영칠
    • 대한기계학회논문집
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    • 제7권4호
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    • pp.392-397
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    • 1983
  • In the present study, improvement of the solar collector performance by utilizing honeycomb structures is being investigated. Installation of honeycomb structures inside of the collector induces the suppression of would-be natural convection phenomena within the collector enclosure spacing. It also minimizes infrared radiation heat loss from the collector absorber plate to the surrounding. Experiments have been carried out a collector with 40*20mm rectangular honeycombs, 20*20mm square honeycombs and without honeycombs. The results are presented for the three cases for comparisons. The collector model has been installed at various tilt angle from 15.deg. to 60.deg. measured from the ground. The influence of the tilt angle to the heat performance of the collector is also presented.

발열 전도체를 가지는 밀폐계 내부의 자연대류 현상에 대한 수치적 연구 (Numerical Study of Thermal Convection in Horizontal Enclosure with Heat Generating Conducting Body)

  • 이재룡;하만영
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.1080-1085
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    • 2004
  • The physical model considered here is a horizontal layer of fluid heated below and cold above with heat-generating conducting body placed at the center of the layer. The dimensionless thermal conductivities of body considered in the present study are 0.01, 1 and 150. The dimensionless temperature difference ratios considered are 0.25, 2.5 and 25. Two-dimensional solution for unsteady natural convection is obtained using an accurate and efficient Chebyshev spectral methodology for variety of Rayleigh number from $10^{3}$ to $10^{6}$. Multi-domain technique is used to handle square-shaped heat-generating conducting body. The results for the case of conducting body with heat generation are also compared to those without heat generation.

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가변 중력장하의 밀폐 용기 내 자연 대류 (Natural Convection in an Enclosure under Time Dependent Gravity)

  • 김기현;현재민;곽호상
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 추계학술대회논문집B
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    • pp.556-561
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    • 2000
  • Comprehensive numerical computations are made of side-heated squire cavity which is exposed to time dependent external mechanical forcing. Numerical solutions are acquires to the governing two-dimensional Navier-Stokes equations for a Boussinesq fluid. Time dependent heat transfer characteristics of interior fluid are analyzed to illustrate resonance phenomenon. When system is exposed to pure sinusoidal mechanical forcing, the numerical results disclose that the basic mechanism of resonance of mechanical forcing is same as that of thermal forcing of Ref. [3, 9]. In comparatively small amplitude of mechanical forcing, thermal characteristics of the system are similar to basic system(${\varepsilon}=0$).

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유토피아의 도시.건축에 관한 연구 (A study on City and Architecture of the Utopia)

  • 이일형
    • 건축역사연구
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    • 제16권3호
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    • pp.21-38
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    • 2007
  • If we take account of the 'Architectural Tradition' which aims a construction of better environment, we can see that this tradition has ended historically toward Utopia. It is a continual trend from ancient Greece to contemporary epoch in each transitional periods and especially in the Renaissance Era. Utopia is an ideal commonwealth in which inhabitants exist under perfect conditions, ideally perfect places or state of things. The plans of utopia are complete projects of image, its goal is an social, political and economical improvement according to the eras. Its plans are characterized by rigid geometrical pattern as circle and square, which contain generally center axis symmetry enclosure. Recent urban and architectural circumstances no longer reflect utopian visions. Since the latter of the 20th century, it appears dystopia on the contrary. Therefore, the utopian ideal city and architecture describes characteristics of the era unlike the continuity of its concept.

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자연대류 열전달을 고려한 Al 용탕 보온로의 수치해석 (Numerical Analysis of Molten Aluminum Furnace Considering Natural Convective Heat Transfer)

  • 박상수;김병민
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2004년도 추계학술대회논문집
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    • pp.107-110
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    • 2004
  • Application of aluminum alloy has been increasing for most of industry area because aluminum has a good mechanical properties and castability, especially automotive field for weight reduction. But, Furnace industry is sluggish. The purpose of this study is numerical analysis of aluminum holding furnace for reasonableness estimation when we design for new model of furnace. The numerical simulation involving fluid flow of inside air and heat transfer to fireproof material is presented in order to improve the understanding of aluminum furnace. First of all, we are carried out numerically for the two dimensional inside convection and surface radiation heat transfer in a square enclosure. Subsequently, we are established the analysis method of aluminum furnace considering natural convective heat transfer

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고차의 무발산 요소를 이용한 비압축성 유동계산 (Computation of Incompressible Flows Using Higher Order Divergence-free Elements)

  • 김진환
    • 한국해양공학회지
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    • 제25권5호
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    • pp.9-14
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    • 2011
  • The divergence-free finite elements introduced in this paper are derived from Hermite functions, which interpolate stream functions. Velocity bases are derived from the curl of the Hermite functions. These velocity basis functions constitute a solenoidal function space, and the gradient of the Hermite functions constitute an irrotational function space. The incompressible Navier-Stokes equation is orthogonally decomposed into its solenoidal and irrotational parts, and the decoupled Navier-Stokes equations are then projected onto their corresponding spaces to form appropriate variational formulations. The degrees of the Hermite functions we introduce in this paper are bi-cubis, quartic, and quintic. To verify the accuracy and convergence of the present method, three well-known benchmark problems are chosen. These are lid-driven cavity flow, flow over a backward facing step, and buoyancy-driven flow within a square enclosure. The numerical results show good agreement with the previously published results in all cases.