• 제목/요약/키워드: Discrete-ordinates method

검색결과 67건 처리시간 0.02초

2차원 직각좌표계에서 DEM을 이용한 방사선차폐해석 프로그램개발 (Development of Radiation Shielding Analysis Program Using Discrete Elements Method in X-Y Geometry)

  • Park, Ho-Sin;Kim, Jong-Kyung
    • Nuclear Engineering and Technology
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    • 제25권1호
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    • pp.51-62
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    • 1993
  • 입자수송방정식의 각분할해석법에서 입자흐름방향을 묘사하는 각방향에 대한 각분할집합이 고정된 값이 아니고 각입자속으로 조종되는 각요소법에 근거하여 방사선차폐해석 목적의 전산프로그램(TDET)를 2차원직각좌표계에 대해서 개발하였다. 산란선원항의 각의존성은 Spherical Harmonics Series Expansion으로 해석하였고 입자의 에너지 의존성은 다중에너지군으로 처리하였다. 3 종류의 Benchmark 시험을 통해서 TDET 프로그램을 검증하였다. 평판형 등방적 선원을 가진 사방흡수체에 대한 해석에서 TDET 해석결과가 MORSE-CG 해석결과에 잘 일치하고. 각분할법으로 해석할때 나타나는 Ray effect를 DOT 4.3 보다 잘 치 유하고 있다. 차폐체 내에 좁은 Vacuum duct가 있는 문제의 해석에서 TDET는 MORSE-CG와 마찬가지로 duct를 통한 streaming leak-age에 대해서 분명하고 현저한, 그리고 DOT 4.3보다 매우 훌륭한 해석결과를 보여주고 있다. 원자로차폐구조물 규모에 대해, 2 에너지군, 등방적 산란 및 선형 비등방 산란의 경우에 대해서 해석한 결과 각분할법으로 계산하여 제시하고 있는 기준치에서는 여러 mesh들에 걸쳐 넓은 규모의 Ray effect를 나타내고 있는데, TDET에 의한 해석결과에서는 이웃 mesh들 간에 미세한 Ray effect를 나타내고 있다.

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동축 공기다단 LPG화염의 NOx 생성특성에 관한 연구 (Characteristics of NOB Formation in a Coaxial Multi-Air Staged LPG Flame)

  • 김한석;안국영;김호근;유명종;백승욱
    • 대한기계학회논문집B
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    • 제27권2호
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    • pp.215-226
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    • 2003
  • Experimental and numerical studies have been done to examine the effects of excess air ratio and tertiary air swirl number on the formation characteristics of NOx in a pilot scale combustor adopting a multi-air staged burner. In numerical calculation the mathematical models for turbulence, radiation and nitric oxide chemistry were taken into account. The radiative transfer equation was solved using the discrete ordinates method with the weighted sum of gray gases model. In the NOx chemistry model, the chemical reaction rates for thermal and prompt NOx were statistically averaged using a probability density function. The results were validated by comparison with measurements. For the experiment, a 0.2 MW pilot multi-staged air burner has been designed and fabricated. Using the numerical simulation developed here, a variation of thermal and prompt NOx formation was predicted by changing the excess air ratio and tertiary air swirl number. As the excess air ratio increased up to 1.9, the formation of the total as well as thermal NOx at exit increased while the prompt NOx decreased. The formation of thermal NOx was more affected by concentration of $O_2$ and $N_2$ than gas temperature. When the tertiary air swirl number increased, the formation of the total as well as the prompt NOx slightly decreased.

아트리움에서 화재 발생시 복사가 고려된 연기거동에 대한 수치해석 연구 (A Numerical Study of Smoke Movement with Radiation in Atrium Fires)

  • 정진용;유홍선;홍기배
    • 한국화재소방학회논문지
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    • 제15권1호
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    • pp.7-15
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    • 2001
  • 본 연구는 3차원 아트리움 공간(일본의 SIVANS 아트리움)내에서 화재 발생시 복사가 고려된 연기의 거동을 알아보기 위해 자체개발한 SMEP(Smoke Movement Estimating Program) Held 모델을 사용하여 수치해석하였다. PISO 알고리즘과 부력항을 포함한 수정 k-$\\varepsilon$ 난류모델을 사용한 SMEP은 연속, 운동, 에너지, 농도 그리고 복사 열 전달 방정식을 풀었으며, 복사 열 전달 방정식의 해석을 위하여 S-N 구분종좌표법을 채택하여 사용하였다. 수치해석 결과 연기의 온도분포는 복사와 대류를 힘께 고려했을 경우가 대류만을 고려했을 경우 보다 실험결과와 근사한 경향을 나타내었다. 이것은 연기속에 포함되어 있는 연소생성을 중 $H_2$O와 $CO_2$ 가스의 복사 영향 때문이며, 따라서 좀더 실제적인 화재해석에 있어서 연기의 복사 영향을 고려하는 것이 필요하다. 또한 연층의 하강 복도는 약 0.l m/s이었으며 피난수준인 바닥 1.5m까지 연층이 도달하는 데에는 56 kW의 Ultra Fast Fire의 경우 약 450초의 시간이 걸렸다.

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개구부가 있는 밀폐공간내 화재의 복합열전달 및 연소가스 분석에 관한 연구 (A Study on the Combined Heat Transfer and Analysis Fire Induced Combustion Gas in a partially Open Enclosure)

  • 박찬국;추병길;김철
    • 한국화재소방학회논문지
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    • 제11권1호
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    • pp.21-35
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    • 1997
  • The natural convection and combined heat transfer induced by fire in a rectangular enclosure is numerically studied. The model for this numerical analysis is partially opened right wall. The solution procedure includes the standard k-$\varepsilon$ model for turbulent flow and the discrete ordinates method (DOM) is used for the calculation of radiative heat transfer equation. In numerical study, SIMPLE algorithm is applied for fluid flow analysis, and the investigations of combustion gas induced by fire is performed by FAST model of HAZARD I program. In this study, numerical simulation on the combined naturnal convection and radiation is carried out in a partial enclosure filled with absorbed-emitted gray media, but is not considered scattering problem. The streamlines, isothermal lines, average radiation intensity and kinetic energy are compared the results of pure convection with those of the combined convection-radiation, the combined heat transfer. Comparing the results of pure convection with those of the combined convection-radiation, the combined heat transfer analysis shows the stronger circulation than those of the pure convection. Three different locations of heat source are considered to observe the effect of heat source location on the heat transfer phenomena. As the results, the circulation and the heat transfer in the left region from heating block are much more influenced than those in the right region. It is also founded that the radiation effect cannot be neglected in analyzing the building in fire. And as the results of combustion gas analysis from FAST model, it is found that O2 concentration is decreased according to time. While CO and CO2 concentration are rapidly increased in the beginning(about 100sec), but slowly decreased from that time on.

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공기 다단 연소기 화염의 NO 발생특성에 관한 연구 (Investigation of NO Formation Characteristics in Multi Staged Air Combustor)

  • 김한석;안국영;백승욱;유명종
    • 대한기계학회논문집B
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    • 제25권11호
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    • pp.1594-1605
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    • 2001
  • In this study, a numerical simulation was developed which was capable of predicting the characteristics of NO formation in pilot scale combustor adopting the air-staged burner flame. The numerical calculation was constructed by means of establishing the mathematical models fur turbulence, turbulent combustion, radiation and turbulent nitric oxide chemistry. Turbulence was solved with standard k-$\xi$ model and the turbulent combustion model was incorporated using a two step reaction scheme together with an eddy dissipation model. The radiative transfer equation was calculated by means of the discrete ordinates method with the weighted sum of gray gases model for CO$_2$and H$_2$O. In the NO chemistry model, the chemical reaction rates for thermal and prompt NO were statistically averaged using the $\beta$ probability density function. The results were validated by comparison with measurements. For the experiment, a 0.2 MW pilot multi-air staged burner has been designed and fabricated. Only when the radiation was taken into account, the predicted gas temperature was in good agreement with the experimental one, which meant that the inclusion of radiation was indispensable for modeling multi-air staged gas flame. This was also true of the prediction of the NO formation, since it heavily depended on temperature. Subsequently, it was found that the multi-air staged combustion technique might be used as a practical tool in reducing the NO formation by controlling the peak flame temperature.

파장별 회체가스중합모델을 이용한 대향류 화염에서의 복사 흡수 예측에 관한 연구 (A Study on the Prediction of Self-absorption in Opposed Flames Using WSGGM-Based Spectral Model)

  • 김욱중
    • 대한기계학회논문집B
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    • 제25권4호
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    • pp.600-609
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    • 2001
  • WSGGM based low-resolution spectral model for calculating radiation transfer in combustion gases is applied to estimate self-absorption of radiation energy in one-dimensional opposed flow flames. Development of such a model is necessary in order to enable detailed chemistry-radiation interaction calculations including self-absorption. Database of band model parameters which can be applied to various one-dimensional opposed flow diffusion and partially premixed flames is created. For the validation of the model and database, low resolution spectral intensities at fuel exit side are calculated and compared with the results of a narrow band model with those based on the Curtis-Godson approximation. Good agreements have been found between them. The resulting radiation model is coupled to the OPPDIF code to calculate the self-absorption of radiant energy and compared with the results of an optically thin calculation and the results of a discrete ordinates method in conjunction with the statistical narrow band model. Significant self-absorption of radiation is found for the flames considered here particularly for the fuel side of the reacting zone. However, the self-absorption does not have significant effects on the flame structure in this case. Even in the case of the low velocity diffusion flame and the partially premixed flame of low equivalence ratio, the effects of self-absorption of radiation on the flame temperature and production of minor species are not significant.

실내화재에서 연기거동에 미치는 복사영향에 대한 수치해석적 연구 (A Numerical Study of Radiation Effect under Smoke Movement in Room Fire)

  • 정진용;유홍선;홍기배
    • 한국화재소방학회논문지
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    • 제14권3호
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    • pp.6-12
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    • 2000
  • 본 연구는 두 가지 유형의 3차원 실내 공간 내에서 화재 발생시 연기거동에 미치는 복사영향을 알아보기 위해 자체개발한 SMEP(Smoke Movement Estimating Program) Seld 모델을 사용하여 수치해석하였다. PISO 알고리즘과 부력항을 포함한 수정 k - e 난류모델을 사용한 SMEP은 연속, 운동, 에너지, 농도 그리고 복사 열 전달 방정식을 풀었으며, 복사 열 전달 방정식의 해석을 위하여 S-N 구분종좌표법을 채택하여 사용하였다. 수치해석 결과 연기의 온도분포는 복사를 고려하지 않고 대류만을 고려했을 경우 실험치와 많은 오차를 보였으나 복사를 함께 고려했을 경우는 실험치와 작은 오차범위로 비슷한 경향을 나타내었다. 이것은 연기속에 포함되어 있는 연소생성물 중 H2O와 CO2 가스의 복사 영향 때문이며, 따라서 좀더 실제적인 화재해석에 있어서 복사는 반드시 고려되어야만 한다.

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