• 제목/요약/키워드: Liquid Phase Burning

검색결과 18건 처리시간 0.024초

AP추진제의 연소면 형성 및 전파 모델링 연구 (Modeling of burning surface growth and propagation in AP-based composite propellant combustion)

  • 정태용;김기홍;유지창;도영대;김형원;여재익
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2009년도 춘계학술대회 논문집
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    • pp.191-195
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    • 2009
  • 고체추진제가 연소될 때, 고체상에서 기체상으로의 상변화가 일어난다. 액체상과 기체상의 혼합으로 인하여 거품이 형성되는데 이를 거품층(Foam Layer) 혹은 용융층(Melting Layer)이라고 한다. 일반적으로 고체추진제가 연소될 때 생성되는 거품층의 두께는 1기압에서 약 1마이크론 정도이다. 거품층의 윗부분, 즉 액체상과 기체상 사이에는 연소면(Buring Surface)이 존재하는데, 본 연구에서는 연소면의 형성과 전파를 모사하였다. 연소면의 전파 속도는 연소율과 같다.

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2유체 분무의 연소특성에 관한 실험 및 수치 해석적 연구 (Experimental and Numerical Study on Characteristics of Air-assisted Spray and Spray Flames)

  • 김동일;오상헌
    • 한국연소학회지
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    • 제3권2호
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    • pp.51-63
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    • 1998
  • Air-assisted atomizer flames are investigated numerically to study spray structures in nonburning and burning conditions based on experimental data. A PDA is used to measure droplet size, velocity, and number density for both nonburning and burning spray. Computations utilize time-averaged gas-phase equations and $k-{\varepsilon}$ turbulence model for simplicity. The major features of the liquid-phase model are that a SSF approach is used to represent the effect of gas-phase turbulence on droplet trajectories and vaporization, an infinite-diffusion model is employed to represent the transient liquid-phase process. Computation and experiment results show that the droplet acceleration and evaporation proceed quickly in near the atomizer, characterizing high number densities and a strong convective effect. The primary combustion zone, however, is dorminated by the gas phase reaction and exhibits a sheath combustion.

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AP추진제의 연소면 형성 및 전파 모델링 연구 (A phase transformation model for burning surface in AP/HTPB propellant combustion)

  • 정태용;도영대;유지창;여재익
    • 한국항공우주학회지
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    • 제38권4호
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    • pp.363-368
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    • 2010
  • 고체추진제의 연소가 진행될 때, 고체상에서 액체상으로, 액체상에서 기체상으로의 상변화가 일어난다. 이 때 추진제 표면에서는 액체상, 기체상이 동시에 존재하게 된다. 액체상과 기체상의 중간에서는 액체상과 기체상의 혼합으로 인하여 거품이 형성되는데, 이 구간을 용융층(Melt Layer)이라고 한다. 용융층의 윗부분, 즉 액체상과 기체상 사이에는 연소면(Burning Surface)이 존재한다. 일반적으로 고체추진제가 연소될 때 생성되는 용융층의 두께는 1기압에서 약 1마이크론 정도이다. 본 연구에서는 물리적인 상변화 현상을 상방정식을 이용하여 액체에서 기체로의 상변화 현상을 모사하였다. 이를 통하여 연소면의 두께, 형성과 전파를 모사하였다.

초기 직경이 n-heptane 액적 연소 특성에 미치는 영향 (Influence of Initial Diameter on the Combustion Characteristics of n-heptane Droplet)

  • 서현규
    • 한국분무공학회지
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    • 제18권2호
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    • pp.94-99
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    • 2013
  • The spherically-symmetric burning of an isolated droplet is a dynamic problem that involves the coupling of chemical reactions and multi-phase flow with phase change. For the improved understanding of these phenomena, this paper presents the numerical results on the n-heptane droplet combustion conducted at a 1 atm ambient pressure in three different initial droplet diameter ($d_0$). The main purpose of this study is to provide basic information of droplet burning, extinction and flame behavior of n-heptane and improve the ability of theoretical prediction of these phenomena. To achieve these, the numerical analysis was conducted in terms of normalized droplet diameter ($d/d_0$), flame diameter ($d_f$) and flame standoff ratio (FSR) under the assumptions that the droplet combustion can be described by both the quasi-steady behavior for the region between the droplet surface and the flame interface and the transient behavior for the region between the flame interface and ambient surrounding.

Hardening Properties of Activated Calcium Dialuminate Clinker with Phosphoric Acid Solution

  • Song, Tae-Woong;Kim, Sei-Gi
    • The Korean Journal of Ceramics
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    • 제3권4호
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    • pp.235-238
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    • 1997
  • Basic properties of new cement pastes based on the system $CaO-Al_2O_3-P_O_5-H_2O$were studied Phosphoric acid solutions and calcium dialuminate clinkers synthesized by the hydration-burning method were used for liquid and powder components of the paste, respectively Variation in the compositions of the paste was achieved by changing the liquid/powder ratio and the concentration of phosphoric acid solution. The hardening rate of the paste was so largely affected by the amount of phosphoric acid that hardening was inhibited with the low-concentrated solution but was explosively accelerated with the high-concentrated solution. The phosphoric acid solutions of concentration of 45~50% and the liquid/powder ratio of 0.5~1.5 were favoured for the high early-strength cement paste with the reasonable hardening rate and high strength. The binding phase of hardened paste was the dense amorphous gel of the system $CaO-Al_2O_3-P_O_5-H_2O$. in which the unreacted calcium dialuminate grains were embeded.

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Nonlinear Acoustic-Pressure Responses of Oxygen Droplet Flames Burning in Gaseous Hydrogen

  • Chung, Suk-Ho;Kim, Hong-Jip;Sohn, Chae-Hoon;Kim, Jong-Soo
    • Journal of Mechanical Science and Technology
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    • 제15권4호
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    • pp.510-521
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    • 2001
  • A nonlinear acoustic instability of subcritical liquid-oxygen droplet flames burning in gaseous hydrogen environment are investigated numerically. Emphases are focused on the effects of finite-rate kinetics by employing a detailed hydrogen-oxygen chemistry and of the phase change of liquid oxygen. Results show that if nonlinear harmonic pressure oscillations are imposed, larger flame responses occur during the period that the pressure passes its temporal minimum, at which point flames are closer to extinction condition. Consequently, the flame response function, normalized during one cycle of pressure oscillation, increases nonlinearly with the amplitude of pressure perturbation. This nonlinear response behavior can be explained as a possible mechanism to produce the threshold phenomena for acoustic instability, often observed during rocket-engine tests.

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강한 음향장에 구속된 고압 액적의 연소 (Unsteady Vaporization of Burning Droplet at High Pressure Environments With Linear Acoustic Mode)

  • 김성엽;신현호;윤웅섭
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.1122-1127
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    • 2004
  • an isolated droplet combustion exposed to pressure perturbations in stagnant gaseous environment is numerically conducted. Governing equations are solved for flow parameters at gas and liquid phases separately and thermodynamic parameters at the interfacial boundary are matched for problem closure. For high-pressure effects, vapor-liquid interfacial thermodynamics is rigorously treated. A series of parametric calculations in terms of mean pressure level and wave frequencies are carried out employing a n-pentane droplet in stagnant gaseous air. Results show that the operating pressure and driving frequency have an important role in determining the amplitude and phase lag of a combustion response. Mass evaporation rate responding to pressure waves is amplified with increase in pressure due to substantial reduction in latent heat of vaporization. Phase difference between pressure and evaporation rate decreases due to the reduced thermal inertia at high pressure. In addition to this, augmentation of perturbation frequency also enhances amplification of vaporization rate because the time period for the pressure oscillation is much smaller than the liquid thermal inertia time. The phase of evaporation rate shifts backward due to the elevated thermal inertia at high acoustic frequency.

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대형 액상분사식 LPG 엔진의 희박연소특성에 관한 연구 (Lean Burn Characteristics in a Heavy Duty Liquid Phase LPG Injection SI Engine)

  • 오승묵;김창업;강건용;우영민;배충식
    • 한국자동차공학회논문집
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    • 제12권4호
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    • pp.1-11
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    • 2004
  • Combustion and fuel distribution characteristics of heavy duty engine with the liquid phase LPG injection(LPLI) were studied in a single cylinder engine, Swirl ratio were varied between 1.2, 2.3, and 3.4 following Ricardo swirl number(Rs) definition, Rs=2.3 showed the best results with lower cycle-by-cycle variation and shorter burning duration in the lean region while strong swirl(Rs=3.4) made these worse for combustion enhancement. Excessive swirl resulted in reverse effects due to high heat transfer and initial flame kernel quenching. Fuel injection timings were categorized with open valve injection(OVI) and closed valve injection(CVI). Open valve injection showed shorter combustion duration and extended lean limit. The formation of rich mixture in the spark plug vicinity was achieved by open valve injection. With higher swirl strength(Rs=3.4) and open valve injection, the cloud of fuel followed the flow direction and the radial air/fuel mixing was limited by strong swirl flow. It was expected that axial stratification was maintained with open-valve injection if the radial component of the swirling motion was stronger than the axial components. The axial fuel stratification and concentration were sensitive to fuel injection timing in case of Rs=3.4 while those were relatively independent of the injection timing in case of Rs=2.3.

고압 상태에서의 연료 분무의 증발 및 연소 특성 해석 (Numerical Studies on Vaporization Characterization and Combustion Processes in High-Pressure Fuel Sprays)

  • 문윤완;김용모;김세원;김주연;윤인용
    • 한국분무공학회지
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    • 제3권3호
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    • pp.49-59
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    • 1998
  • The vaporization characteristics and spray combustion processes in the high-pressure environment are numerically investigated. This study employ the high-pressure vaporization model together with the state-of-art spray submodels. The present high-pressure vaporization model can account for transient liquid heating, circulation effect inside the droplet forced convection, Stefan flow effect, real gas effect and ambient gas solubility in the liquid droplets. Computations are carried out for the evaporating sprays, the evaporating and burning sprays, and the spray combustion processes of the turbocharged diesel engine. Numerical results indicate that the high-pressure effects are quite crucial for simulating the spray combustion processes including vaporization, spray dynamics, combustion, and pollutant formation.

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화염유도로 냉각수 분사방식에 따른 로켓 플룸의 CO와 NO 반응의 수치해석 (Numerical Study on the CO and NO of Rocket Plume as the Type of Water Injection in the Flame Guiding Duct)

  • 김성룡;김승한;한영민
    • 한국추진공학회지
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    • 제19권3호
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    • pp.39-46
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    • 2015
  • 로켓 플룸에 냉각수 분사하여 일산화탄소 재연소와 질소산화물 생성 과정을 포함한 유동장의 변화를 전산 해석하였다. 연구 결과 플룸에 분사된 냉각수는 질소산화물 생성을 억제하고 CO 재연소를 촉진시켰다. 그러나 냉각수 분사 방식에 따라 그 효과는 달랐다. 냉각수를 플룸의 측면에서 분사할 경우 질소산화물 생성은 크게 억제하였지만, 일산화탄소 재연소는 약간 증가하였다. 반면에 냉각수를 플룸 중심과 측면에서 동시에 분사하는 경우 질소산화물 생성의 억제와 일산화탄소 재연소를 크게 촉진시켰다.