• 제목/요약/키워드: Flame dynamics

검색결과 131건 처리시간 0.028초

NUMERICAL SIMULATION OF WIND-DRIVEN FIRE FLUMES

  • Kohyu Satoh;Yang, K.T.
    • 한국화재소방학회:학술대회논문집
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    • 한국화재소방학회 1997년도 International Symposium on Fire Science and Technology
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    • pp.327-334
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    • 1997
  • In many large urban-fire scenarios one of the critical issues is to attempt to protect the lives of fire fighters in helicopters deployed to flying over the fires and also the lives of people trapped in open areas downwind of the fires such as in parks. The strategies of such protection measures depend significantly on our knowledge of the size and extent of such fires as affected by the prevailing winds. In this study, the shape or profile of the fire plume typical of large urban fires, as affected by a steady unidirectional wind with or without imposing a shear flow on the fire plume, has been simulated numerically by a field model. The results show that the simulations provide realistic flame profiles and at least qualitatively, the same flame dynamics when compared to those from the experiments, and that the fire plumes are sensitive to small variations in the asymmetry of the wind shears, including the appearance of swirling flames within the fire plumes.

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대향류 확산화염에서 확산-전도 불안정의 비선형 거동에 대한 수치해석 (Numerical Simulations on Nonlinear Behaviors of Diffusional-Thermal Instabilities in Counterflow Diffusion Flames)

  • 이수룡;김종수
    • 대한기계학회논문집B
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    • 제26권5호
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    • pp.695-702
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    • 2002
  • Nonlinear dynamics of striped diffusion flames, by the diffusional-thermal instability with Lewis numbers sufficiently less than unity, is numerically investigated by examining various two-dimensional flame-structure solutions. The Lewis numbers for fuel and oxidizer are assumed to be identical and an overall single-step Arrhenius-type chemical reaction rate is employed in the model. Particular attention is focused on identifying the flame-stripe solution branches corresponding to each distinct stripe pattern and hysteresis encountered during the transition. At a Damkohler number slightly greater than the extinction Damkohler number, eight-stripe solution first emerges from one dimensional solution. The eight-stripe solution survives Damkohler numbers much smaller than the extinction Damkohler number until the transition to four-stripe solution occurs at the first forward transition Damkohler number. At the second forward transition Damkohler number, somewhat smaller than the first transition Damkohler number, the transition to two-stripe solution occurs. However, anu further transition from two-stripe solution to one-stripe solution is not always possible even if one-stripe solution can be independently accessed for particular initial conditions. The Damkohler number ranges for two-stripe and one-stripe solutions are found to be virtually identical because each stripe is an independent structure if distance between stripes is sufficiently large. By increasing the Damkohler number, the backward transition can be observed. In comparison with the forward transition Damkohler numbers, the corresponding backward transition Damkohler numbers are always much greater, thereby indicating significant hysteresis between the stripe patterns of strained diffusion flames.

화염 전달 함수를 이용한 열음향 연소 불안정 해석 모델 소개 (Introduction to Thermoacoustic Models for Combustion Instability Prediction Using Flame Transfer Function)

  • 김대식
    • 한국추진공학회지
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    • 제15권6호
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    • pp.98-106
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    • 2011
  • 본 논문에서는 많은 가스터빈 산업체 및 연구기관에서 연소불안정 현상과 관련된 변수들을 예측하기 위해 가장 보편적으로 이루어지고 있는 열음향 해석 모델에 대한 기술 소개 및 최근의 연구 동향을 분석하였다. 선형 시스템 해석을 통하여 연소 불안정이 발생하는 고유 주파수 및 불안정 초기 성장률의 예측이 가능하다. 이를 위하여 정의된 시스템에서의 음향파와 열발생율 섭동간의 선형 관계식을 선형 음향 이론으로부터 유도할 수 있고, 이 관계식의 해를 구하기 위해서 가장 중요한 부분은 화염 전달 함수로부터 n-${\tau}$ 함수를 구하여 열발생율 섭동 결과에 대한 정보를 얻는 것이다. 현재까지의 연구 결과로부터 선형 특성 해석에는 상당한 진보가 이루어져 왔고, 실제 가스터빈 연소기에 적용하는 노력이 있었으나, 한계 진폭과 과도기 현상 예측을 위해서 요구되는 비선형 동적 특성 모델링 기술 개발은 현재 간단한 연소기와 버너의 적용에 머물러 있는 실정이다. 실제 복잡한 가스터빈과 같은 연소 시스템에 적용되기 위해서는 비선형 경계 조건을 고려한 시스템 동적 특성 연구와 화염의 비선형 거동을 더욱 정확히 설명할 수 있는 전달 함수에 대한 예측 기술이 선행되어야 한다.

벽면으로 둘러싸인 제트 유동장에서의 마일드연소 및 오염물질 배출특성에 관한 전산해석 연구 (Computational Study of the Mild Combustion and Pollutant Emission Characteristics in Wall-confined Jet)

  • 송금미;오창보
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2012년도 제44회 KOSCO SYMPOSIUM 초록집
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    • pp.263-266
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    • 2012
  • The characteristics of mild combustion and pollutant emission were investigated computationally with supplied air stream temperature and dilution rate in jet flame. The air was diluted with main combustion products. As dilution rate increased at fixed air temperature, the temperature distribution of burner inside was uniformed and the maximum mole fraction of CO and NO was decreased. In addition, emission indices for NO, CO, and $CO_2$ were compared with air temperature and dilution rate.

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복사 열손실을 받는 대향류 확산화염의 맥동 불안정성의 비선형 거동 (Nonlinear Behaviors of Pulsating Instabilities in Counterflow Diffusion Flames with Radiation Heat Loss)

  • 이수룡;박성천
    • 한국연소학회지
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    • 제17권3호
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    • pp.9-16
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    • 2012
  • Nonlinear dynamics of pulsating instability in radiating counterflow diffusion flames is numerically investigated by imposing Damk$\ddot{o}$hler number perturbation. Stable limit-cycle solutions occur in small ranges of Damk$\ddot{o}$hler numbers past bifurcation point of instability. Period doubling cascade and chaotic behaviors appear just before dynamic extinction occurs. Nonlinear dynamics is also studied when large disturbances are imposed to flames. For weak steady flames, the dynamic extinction range shrinks as the magnitudes of disturbances are increased. However, strong steady flames can overcome relatively large disturbances, thereby the dynamic extinction range extending. Stable limit-cycle behaviors reappears prior to dynamic extinction when the steady flames are strong enough.

NOx저감을 위한 연료희박 재연소 기법의 실험 및 수치적 연구 (Experimental and Numerical Investigation for NOx Reduction with Fuel Lean Reburning System)

  • 김학영;백승욱;손희;김세원
    • 한국연소학회지
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    • 제14권2호
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    • pp.18-25
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    • 2009
  • Fuel lean reburning method is very attractive way in comparison with conventional reburning method for reducing NOX. Meanwhile, the knowledge of the how flue gas re-circulated, temperature distribution and species concentration is crucial for the design and operation of an effective fuel lean reburning system. For this reason, numerical analysis of fuel lean reburning system is a very important and challenge task. In this work, the effect of fuel lean reburn system on NOX reduction has been experimentally and numerically conducted. Experimental study has been conducted with a 15kW lab scale furnace. Liquefied Petroleum Gas is used as main fuel and reburn fuel. To carry out numerical study, the finite-volume based commercial computational fluid dynamics (CFD) code FLUENT6.3 was used to simulate the reacting flow in a given laboratory furnace. Steady state, three dimensional analysis performed for turbulent reactive flow and radiative heat transfer in the furnace.

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상용 미분탄 보일러 연소해석에서 석탄 탈휘발 모델 및 난류반응속도의 영향 평가 (Effects of coal devolatilization model and turbulent reaction rate in numerical simulations of a large-scale pulverized-coal-fired boiler)

  • 양주향;김정은;류창국
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2014년도 제49회 KOSCO SYMPOSIUM 초록집
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    • pp.59-62
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    • 2014
  • Predicting coal combustion by computational fluid dynamics (CFD) requires a combination of complicated flow and reaction models for turbulence, radiation, particle flows, heterogeneous combustion, and gaseous reactions. There are various levels of models available for each of the phenomena, but the use of advanced models are significantly restricted in a large-scale boiler due to the computational costs and the balance of accuracy between adopted models. In this study, the influence of coal devolatilization model and turbulent mixing rate was assessed in CFD for a commercial boiler at 500 MWe capacity. For coal devolatilization, two models were compared: i) a simple model assuming single volatile compound based on proximate analysis and ii) advanced model of FLASHCHAIN with multiple volatile species. It was found out that the influence of the model was observed near the flames but the overall gas temperature and heat transfer rate to the boiler were very similar. The devolatilization rate was found not significant since the difference in near-flame temperature became noticeable when it was multiplied by 10 or 0.1. In contrast, the influence of turbulent mixing rate (constant A in the Magnussen model) was found very large. Considering the heat transfer rate and flame temperature, a value of 1.0 was recommended for the rate constant.

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버너의 벽면온도와 연소실내 주위공기온도에 따른 매연입자의 열영동 부착 특성에 관한 수치적 연구 (Numerical Study on the Thermophoretic Deposition Characteristics of Soot Particles for Wall Temperature of Burner and Surrounding Air Temperature in Combustion Duct)

  • 최재혁;한원희;윤두호;윤석훈;정석호
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권1호
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    • pp.57-65
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    • 2008
  • The characteristics of soot deposition on the cold wall in laminar diffusion flames have been numerically analyzed with a two-dimension with the FDS (Fire Dynamics Simulator). In particular, the effects of surrounding air temperature and wall temperature have been discussed. The fuel for the flame is an ethylene ($C_2H_4$). The surrounding oxygen concentration is 35%. Surrounding air temperatures are 300K, 600K, 900K and 1200K. Wall temperatures are 300K, 600K and 1200K. The soot deposition length defined as the relative approach distance to the wall per a given axial distance is newly introduced as a parameter to evaluate the soot deposition tendency on the wall. The result shows that soot deposition length is increased with increasing the surrounding air temperatures and with decreasing the wall temperature. And the numerical results led to the conclusion that it is essential to consider the thermophoretic effect for understanding the soot deposition on the cold wall properly.

1 kW급 LNG 스털링 엔진 연소실 수치해석 (CFD STUDY ON THE COMBUSTION CHAMBER OF A 1 kW CLASS STIRLING ENGINE)

  • 안준;이윤식;김혁주
    • 한국전산유체공학회지
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    • 제16권3호
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    • pp.88-94
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    • 2011
  • The availability of the thermal energy has been deeply recognized recently to encourage the cascade usage of thermal energy from combustion. Within the framework, a 1 kW class Stirling engine based cogeneration system has been proposed for a unit of a distributed energy system. The capacity has been designed to be adequate for the domestic usage, which requires high compactness as well as low emission and noise. To develop a highly efficient system with satisfying these requirements, a premixed slot type short flame burner has been proposed and a series of numerical simulation has been performed to establish a design tool for the combustion chamber. The thermal radiation model has been found to highly affect the computational results and a proper resolution to analyze the heat transfer characteristics of the high temperature heat exchanger. Finally, the combustion characteristics of the premixed flame with the metal fiber type burner has been studied.

화염 정면 가시화를 위한 페리스코프 영상 시스템 설계 및 해석 (Periscope Imaging System Design and Analysis for Flame Front Visualization)

  • 신재익
    • 항공우주시스템공학회지
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    • 제13권5호
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    • pp.16-23
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    • 2019
  • 본 논문은 국방과학연구소 엔진 시험장에 설치된 페리스코프 시스템의 설계 및 해석에 대해 다루고 있다. 페리스코프 시스템은 엔진 후단, 디퓨저 상단에 설치되어 있는 잠망경 모양의 관측 시스템이며 엔진 후단 고온(2300 K)의 연소 생성물 등에 직접적으로 영향을 받아서 파손 위험이 높다. 따라서 1차원 열전달 계산 및 2차원, 3차원 CFD 해석을 통해 열유속 및 정온도 분포를 확인하고 이를 통해 냉각 성능을 검증하였다. 현재의 설계에서 페리스코프 시스템을 통해 화염 형상 및 노즐 제어, 배출 유동의 안정성을 가시적으로 확인 가능하다.