• 제목/요약/키워드: detonation

검색결과 325건 처리시간 0.028초

병렬 처리를 이용한 3차원 테토네이션 파 수치해석 (NUMERICAL STUDY OF THREE-DIMENSIONAL DETONATION WAVES USING PARALLEL PROCESSING)

  • 조덕래;최정열
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2005년도 제31회 KOSCO SYMPOSIUM 논문집
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    • pp.15-19
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    • 2005
  • Three-dimensional structures of unsteady detonation wave propagating through a square-shaped tube is studied using computational method and parallel processing. Inviscid fluid dynamics equations coupled with variable-${\gamma}$ formulation and simplified one-step Arrhenius chemical reaction model were analysed by a MUSCL-type TVD scheme and four stage Runge-Kutta time integration. Results in three dimension show the two unsteady detonation wave propagating mode, the Rectangular and diagonal mode of detonation wave instabilities. Two different modes of instability showed the same cell length but different cell width and the geometric similarities in smoked-foil record.

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초음속 연소 탄체 가속기 내의 폭굉파 진행에 관한 수치해석 (Numerical Analysis of Detonation Wave Propagation in SCRam-Accelerator)

  • 최정열;정인석;이수갑
    • 한국연소학회지
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    • 제1권1호
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    • pp.83-91
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    • 1996
  • A numerical study is carried out to examine the ignition and propagation process of detonation wave in SCRam-accelerator operating in superdetonative mode. The time accurate solution of Reynolds averaged Navier-Stokes equations for chemically reacting flow is obtained by using the fully implicit numerical method and the higher order upwind scheme. As a result, it is clarified that the ignition process has its origin to the hot temperature region caused by shock-boundary layer interaction at the shoulder of projectile. After the ignition, the oblique detonation wave is generated and propagates toward the inlet while constructing complex shock-shock interaction and shock-boundary layer interaction. Finally, a standing oblique detonation wave is formed at the conical ramp.

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탄소성 금속관 내 가스 폭굉의 수치적 연구 (Numerical investigation of gaseous detonation observed in the elasto-plastic metal tubes)

  • 곽민철;도영대;박정수;여재익
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2012년도 제45회 KOSCO SYMPOSIUM 초록집
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    • pp.85-87
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    • 2012
  • We present a numerical investigation on gaseous (ethylene-air mixture) detonation in the elastoplastical metal tubes to understand the wall effects associated with the developing detonation instability. The acoustic disturbances originating from the rapidly expanding tube walls reach the detonating flame surface, thereby causing flame distortions and total energy losses. The compressible Navier-Stokes equations with equation of state for gas and elasto-plastic deformation field equations for inert tubes are solved simultaneously to understand the complex multi-material interaction in the rapidly expanding gas pipe. In order to track governing variables across the material interface, we use the hybrid particle level-set and ghost fluid methods to precisely estimate the interfacial quantities. Features observed from the deforming (thin) tube show substantially different behavior when a detonation propagates in the rigid (thick) tube with no acoustically responding wall conditions.

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폭약변수에 따른 폭발속도 변화에 관한 연구 (A Study on the Change of Detonation Velocity with Explosive Variables)

  • 김희진;강봉용
    • Journal of Welding and Joining
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    • 제14권2호
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    • pp.65-70
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    • 1996
  • Detonation velocity of domestic expolsives was measured using the Dautriche method. The variables employed in this study were the thickness of explosive and the amount of salt added in the ammonium nitrate(AN) explosive. As the results of this study, it was shown that the detonation velocity increases with an increase of explosive thickness but decreases with an increase of salt content. It was further demonstrated that the detonation velocity decreases rather rapidly when the salt content increases over 20 percent. In addition, the accuracy of Dautriche method was evaluated as a preliminary study and its result showed that this method is quite reliable with an experimental error of less than 10 pct.

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후방 발열이 있는 경사 충격파의 불안정성 (INSTABILITY OF OBLIQUE SHOCK WAVES WITH HEAT ADDITION)

  • 최정열;신재렬;조덕래
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2007년도 추계 학술대회논문집
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    • pp.232-235
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    • 2007
  • A comprehensive numerical study was carried out to identify the on-set condition of the cell structures of oblique detonation waves (ODWs). Mach 7 incoming flow was considered with all other flow variables were fixed except the flow turning angles varying from 35 to 38. For a given flow conditions theoretical maximum turning angle is $38.2^{\circ}$ where the oblique detonation wave may be stabilized. The effects of grid resolution were tested using grids from $255{\times}100$ to $4,005{\times}1,600$. The numerical smoked foil records exhibits the detonation cell structures with dual triple points running opposite directions for the 36 to 38 turning angles. As the turning angle get closer to the maximum angle the cell structures gets finer and the oscillatory behavior of the primary triple point was observed. The thermal occlusion behind the oblique detonation wave was observed for the $38^{\circ}$ turning angle.

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수소 예혼합기의 정상 및 이상연소에 관한 수치해석 (A Numerical Study on Normal and Abnormal Combustion in Hydrogen Premixture)

  • 손채훈;정석호
    • 대한기계학회논문집
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    • 제19권8호
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    • pp.1989-1998
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    • 1995
  • Characteristics of the flame propagation for normal and abnormal combustion in hydrogen premixture in a cylindrical constant-volume combustion chamber are studied numerically. A detailed hydrogen oxidation kinetic mechanism, mixture transport properties and a model describing spark ignition process are used. The calculated pressure-time history of the stable deflagration wave propagation agrees well with the experiment. The ignition of the premixture in the unburned gas, initiated by the hot spot, causes a transition from deflagration to detonation under some initial temperature and pressure. Under the initial conditions with high temperature and pressure, excessive ignition energy initiates a strong blast wave and a detonation wave that follows. The chemical reaction in the detonation wave is much more vigorous than that in the deflagration wave and the peak pressure in the detonation wave is much higher than the equilibrium value.

Gas detonation cell width prediction model based on support vector regression

  • Yu, Jiyang;Hou, Bingxu;Lelyakin, Alexander;Xu, Zhanjie;Jordan, Thomas
    • Nuclear Engineering and Technology
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    • 제49권7호
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    • pp.1423-1430
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    • 2017
  • Detonation cell width is an important parameter in hydrogen explosion assessments. The experimental data on gas detonation are statistically analyzed to establish a universal method to numerically predict detonation cell widths. It is commonly understood that detonation cell width, ${\lambda}$, is highly correlated with the characteristic reaction zone width, ${\delta}$. Classical parametric regression methods were widely applied in earlier research to build an explicit semiempirical correlation for the ratio of ${\lambda}/{\delta}$. The obtained correlations formulate the dependency of the ratio ${\lambda}/{\delta}$ on a dimensionless effective chemical activation energy and a dimensionless temperature of the gas mixture. In this paper, support vector regression (SVR), which is based on nonparametric machine learning, is applied to achieve functions with better fitness to experimental data and more accurate predictions. Furthermore, a third parameter, dimensionless pressure, is considered as an additional independent variable. It is found that three-parameter SVR can significantly improve the performance of the fitting function. Meanwhile, SVR also provides better adaptability and the model functions can be easily renewed when experimental database is updated or new regression parameters are considered.

환형 관내의 데토네이션 파 전파 특성 해석 (Numerical Analysis of Detonation Wave Propagation Characteristics in Annular Channels)

  • 이수한;조덕래;최정열
    • 한국추진공학회지
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    • 제12권2호
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    • pp.66-73
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    • 2008
  • 본 논문에서는 환형 관에서의 데토네이션 파의 전파 특성을 살펴보았다. 이전의 연구에 이용된 수치 기법과 이동 계산 창 기법을 본 연구에 이용하였으며, 관 폭의 값으로 무차원화 된 곡률 반경을 유일한 기하학적 변수로 고려하여 일련의 해석을 수행하였다. 곡률 반경이 작은 환형 관에서 데토네이션 파는 불안정하여 정규적인 데토네이션 셀 구조가 나타나지 않으며 셀 구조가 유지될 수 있는 임계 곡률 반경이 존재함을 알 수 있었다. 곡률의 효과로 관의 내벽 및 외벽은 압력 차가 발생하며, 외벽 쪽에 서는 overdriven 데토네이션의 경향을 가진다. 예상할 수 있는 바와 같이 곡률 반경이 커지면서 직선관의 결과에 수렴한다.

점성 및 난류 효과를 고려한 강한 불안정 데토네이션 파의 수치 해석 (Numerical Analysis of a Highly Unstable Detonation Considering Viscosity and Turbulence Effects)

  • 강기하;신재렬;조덕래;최정열
    • 한국추진공학회지
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    • 제15권4호
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    • pp.57-64
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    • 2011
  • 펄스 데토네이션 엔진에서와 같이 탄화수소를 연료로 하는 데토네이션 파는 강한 불안정성을 가지며 난류 연소 효과를 고려한 연구를 수행하여야 함이 제시된 바 있다. 본 연구에서는 강한 불안정성을 가지는 데토네이션 파의 구조를 이해하기 위하여 비점성 해석, 점성 해석, 난류 모델 및 간단한 난류 연소 모델을 고려한 수치 해석 연구를 수행하였다. 모델링 수준에 따른 연구를 통하여 점성 및 난류는 저주파 특성에는 거의 영향이 없으나, 고주파 특성을 강화하는 경향이 있는 것으로 보인다. 한편, 데토네이션 연구를 위한 난류-연소 상호 작용 모델에는 활성화 에너지의 영향이 고려되어야 하는 것으로 여겨진다.

데토네이션 셀 구조 모사를 위한 수치적 요구 조건 (Numerical Requirements for the Simulation of Detonation Cell Structures)

  • 최정열;조덕래
    • 한국추진공학회지
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    • 제10권2호
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    • pp.1-14
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    • 2006
  • 본 논문은 약한 불안정 데토네이션 영역부터 강한 불안정 데토네이션 영역까지 여러 영역에 걸친 데토네이션 파 셀 구조 모사에 대한 수치적 문제점들을 살펴보았다. 비열 비 값이 변하는 점성 유체 역학 방정식 및 1단계 Arrhenius 반응 모델 해석을 위하여 MUSCL-type TVD 기법을 이용한 공간 차분과 4차 정확도의 Runge-Kutta 시간 적분을 이용하였다. 일련의 수치해석 연구는 여러 반응 상수 및 격자 해상도에 따른 데토네이션 셀 구조를 해석하기 위하여 요구되는 계산 조건을 구하기 위하여 다양한 데토네이션 현상 영역에서 수행되었다. 다른 영역의 데토네이션 현상에서 셀 구조를 포착하기 위한 계산 영역의 크기와 최소 격자 해상도를 찾아내기 위하여 정상 1차원 ZND 해석 결과와 전산 해석 결과를 비교 검토하였다.