• 제목/요약/키워드: Combustion system

검색결과 2,153건 처리시간 0.028초

알루미늄 분말 연소를 위한 고체 화학수소화물 기반 수소 점화 시스템 (Solid Chemical Hydride-Based Hydrogen Ignition System for Aluminum Powder Combustion)

  • 박길수;김태규
    • 한국추진공학회지
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    • 제23권3호
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    • pp.88-95
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    • 2019
  • 수소 토치 점화 시스템은 순수한 알루미늄을 이용하여 점화가 가능하고 점화 방법이 간단해 알루미늄 연소 시스템으로 많이 사용되고 있다. 하지만 기존의 수소 토치 점화 시스템은 수소 공급을 위해 고압의 수소탱크가 필요해 무게가 무거워지는 단점이 있다. 이러한 문제를 해결하기 위해 본 연구에서는 고체 화학수소화물인 $NaBH_4$를 이용한 수소 점화 시스템을 설계하였다. $NaBH_4$는 약 $500^{\circ}C$에서 열분해가 시작되고 수소가 발생한다. $NaBH_4$ 열분해 특성에 영향을 미치는 변인들을 분석하고, $NaBH_4$ 기반 수소 점화 시스템을 이용해 알루미늄 연소 실험을 수행하여 실제 시스템 적용 가능성에 대해 검증 하였다.

1MWth 실험연소로를 이용한 석탄의 연소특성 연구 (Study on Coal Combustion Characteristics with 1MWth Test Facility)

  • 장길홍;장인갑;정석용
    • 대한기계학회논문집B
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    • 제23권11호
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    • pp.1464-1472
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    • 1999
  • Design and operation of $1MW_{th}$ pulverized coal combustion testing facility are described. Also the influence of air staging on NOx emission and burnout of coal flames was investigated in this facility. The test facility consisted of coal feeding system, firing system and flue gas treatment system. A top-fired externally air staging burner was adopted in order to avoid influence of gravity on the coal particles and for easy maintenance. Distribution of temperature and chemical species concentration of coal flames could be measured in vertical pass of furnace. Main fuel was pulverized (83.4% less than $80{\mu}m$) Australian high bituminous coal. From variety of test conditions, overall excess air ratio was selected at 1.2(20% excess air). Tho study showed that increasing the staged air resulted in lower NOx omission, and it was suggested to be more than 40% of the total combustion air for the substantial NOx reduction. Sufficient burnout was not achievable when NOx emission was less than 500ppm. Also, the amount of core air did not influence tho NOx reduction.

촉매연소를 이용한 동 열처리용 환원로에 관한 연구 (A Study on Reductive Furnace for Copper Annealing Using Catalytic Combustion)

  • 정남조;강성규;송광섭;조성준;유상필;유인수
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2001년도 제23회 KOSCO SYMPOSIUM 논문집
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    • pp.83-89
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    • 2001
  • Most technologies of reduction process used in the heat treatment of existent metal products are related to metals applied to bolts and parts of automobiles, and nonmetal such as copper. Heating conditions and reduction gases produced in above processes depend on types of products to be treated thermally but heating systems employ electricity commonly and the reduction gases are separated into additional production equipment and a gas dryer and inefficiently provided into the system. Electrical heating system has the advantage of convenient temperature-control but is not economical because of disadvantages of high electricity-running cost and extra installation cost of a transformer. Accordingly, development of the system which has economical heating mode in which provision of reduction gas and heating conditions are unified is necessary for improvement of economy and efficiency in current reduction processes. This study aimed to develop a new advanced heat treatment furnace using catalytic combustion. thereby minimizing the cost during heating, supplying heat and reductive gas at the same time and controlling operating condition freely by changing electrical heating system to heating system by the gas combustion and regeneration of wasted heat.

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배기가스 재순환을 적용한 하이브리드 연소시스템에 대한 기초 연구 (A Fundamental Study of Hybrid Combustion System Applying Exhaust Gas Recirculation)

  • 오휘성;유병훈;박태준;이창언
    • 에너지공학
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    • 제25권1호
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    • pp.100-107
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    • 2016
  • 본 연구에서는 예혼합 화염과 비예혼합 화염을 동시에 구현하는 하이브리드 연소시스템에 배기가스 재순환 방법(FI-EGR and FPI-EGR)을 적용하여 공해물질 저감 효과를 확인하였다. 그 결과, 배기가스 재순환을 적용한 경우 상당량의 NOx 배출지수가 감소하는 것을 확인 할 수 있었으며, 추가적으로 배기가스 재순환을 적용한 하이브리드 연소시스템의 배출성능이 동일한 배기가스 재순환율을 가지는 비예혼합 화염의 배출성능보다 우수함을 확인하였다. 특히, 비예혼합 화염과 예혼합 화염의 비율이 50: 50인 하이브리드 연소시스템의 연료 측에 25% 까지 배기가스를 재순환 시킬 경우(FI-EGR), 배기가스 재순환을 적용하지 않은 비예혼합 화염에 비해 NOx 배출지수가 59% 저감되는 것을 확인하였으며, 혼합비율이 70:30인 하이브리드 연소시스템의 예혼합기와 연료측에 15%까지 배기가스를 재순환 시킬 경우(FPI-EGR), 배기가스를 재순환하지 않은 하이브리드 화염에 비해 NOx 배출지수가 48% 저감되는 것을 확인하였다.

연소기연소시험설비(CCTF) 연료공급시스템 해석 (Modeling and Simulation of CCTF Fuel Supply System)

  • 정용갑;이광진;조남경;한영민
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2011년도 제37회 추계학술대회논문집
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    • pp.892-897
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    • 2011
  • 우주발사체 추진기관은 일반적으로 산화제와 연료를 연소실로 공급하여 추진력을 얻게 된다. 개발중에 있는 한국형 발사체(KSLV-II) 2단 엔진의 경우 산화제로는 액체산소(Liquid Oxygen)를 사용하고 연료로는 JET-A1이 사용될 예정이다. 터보펌프 공급방식인 2단 엔진의 주요 구성은 연소기와 터보펌프, 엔진공급시스템 등으로 구성되어 있다. 액체 추진 엔진 개발을 위해서는 서브시스템인 연소기 개발이 선행되어야 하고 설계 및 제작된 연소기의 성능 검증은 연소기 연소시험설비(CCTF)에서 수행된다. 우주센터에 구축 예정인 연소기 연소시험설비에 대한 상세설계가 수행되었으며, 본 설계 결과를 기준으로 AMESim을 사용하여 연료공급시스템에 대한 모델링을 수행하여 연료 공급특성을 해석하였다.

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충돌벽면이 직분식 LPG의 분무 및 연소 특성에 미치는 영향에 관한 실험 연구 (A Experimental Study on the Effects of the Impingement-wall on the Spray and Combustion Characteristics of Direct-Injection LPG)

  • 황성일;정성식;염정국
    • 동력기계공학회지
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    • 제19권2호
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    • pp.49-56
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    • 2015
  • As an alternative fuel that can be used in SI engine, LPG is one of clean fuels with larger H/C ratio compared to gasoline, low $CO_2$ emission, and small amount of pollutants such as sulfur compounds. When LPG is used in spark ignition engine, volumetric efficiency of the engine can be improved and pumping loss can be reduced by performing direct injection into the combustion chamber instead of port fuel injection. LPG-DI engine allows for lean combustion and stratified combustion under low load. In case of stratified combustion, air fuel ratio can be greatly increased compared to theoretic mixture ratio combustion. Improved thermal efficiency of the engine and reduced pumping loss can be expected from stratified combustion. Accordingly in this study, an experimental apparatus for visualization was designed and manufactured to study the combustion process of LPG after injection and ignition, intended to examine ignition probability and combustion characteristics of spark ignition direct injection(SIDI) LPG fuel. Ambient pressure, ambient temperature and fuel injection pressure were found as important variables that affect ignition probability and flame propagation characteristics of LPG-air mixture. Also, it was verified that the injected LPG fuel can be directly ignited by spark plug under appropriate ambient conditions.

Combustion Instability Mechanism of a Lean Premixed Gas Turbine Combustor

  • Seo, Seonghyeon
    • Journal of Mechanical Science and Technology
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    • 제17권6호
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    • pp.906-913
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    • 2003
  • Lean premixed combustion has been considered as one of the promising solutions for the reduction of NOx emissions from gas turbines. However, unstable combustion of lean premixed flow becomes a real challenge on the way to design a reliable, highly efficient dry low NOx gas turbine combustor. Contrary to a conventional diffusion type combustion system, characteristics of premixed combustion significantly depend on a premixing degree of combusting flow. Combustion behavior in terms of stability has been studied in a model gas turbine combustor burning natural gas and air. Incompleteness of premixing is identified as significant perturbation source for inducing unstable combustion. Application of a simple convection time lag theory can only predict instability modes but cannot determine whether instability occurs or not. Low frequency perturbations are observed at the onset of instability and believed to initiate the coupling between heat release rate and pressure fluctuations.

Investigation of Self-Excited Combustion Instabilities in Two Different Combustion Systems

  • Seo, Seonghyeon
    • Journal of Mechanical Science and Technology
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    • 제18권7호
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    • pp.1246-1257
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    • 2004
  • The objective of this paper is to characterize dynamic pressure traces measured at self-excited combustion instabilities occurring in two combustion systems of different hardware. One system is a model lean premixed gas turbine combustor and the other a fullscale bipropellant liquid rocket thrust chamber. It is commonly observed in both systems that low frequency waves at around 300㎐ are first excited at the onset of combustion instabilities and after a short duration, the instability mode becomes coupled to the resonant acoustic modes of the combustion chamber, the first longitudinal mode for the lean premixed combustor and the first tangential mode for the rocket thrust chamber. Low frequency waves seem to get excited at first since flame shows the higher heat release response on the lower frequency perturbations with the smaller phase differences between heat release and pressure fluctuations. Nonlinear time series analysis of pressure traces reveals that even stable combustion might have chaotic behavior with the positive maximum Lyapunov exponent. Also, pressure fluctuations under combustion instabilities reach a limit cycle or quasi-periodic oscillations at the very similar run conditions, which manifest that a self-excited high frequency instability has strong nonlinear characteristics.

반응물 분사조건에 따른 무화염 연소특성 연구 (Combustion Characteristics of Flameless Combustion by Reactants Injection Conditions)

  • 홍성원;이필형;황상순
    • 한국연소학회지
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    • 제18권2호
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    • pp.8-16
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    • 2013
  • The flameless combustion has been considered as one of the promising combustion technology for high thermal efficiency, reducing NOx and CO emissions. In this paper, the effect of air and fuel injection condition on formation of flameless combustion was analyzed using three dimensional numerical simulation. The results show that the high temperature region and the average temperature was decreased due to increase of recirculation ratio when air velocity is increased. The average temperature was also affected by entrainment length. Generally mixing effect was enhanced at low entrainment length and dilution was dominated at high entrainment length. This entrainment length was greatly affected by air and fuel injection velocity and distance between air and fuel. It is also found that the recirculation ratio and dilution effect were generally increased by entrainment length and the recirculation ratio, mixing and dilution effect are the significant factor for design of flameless combustion system.

연소기 연소시험설비 고압가스 공급시스템 설계 (Design of Compressed Gas Supply System for Combustion Chamber Test Facility)

  • 정용갑;조남경;한영민
    • 한국추진공학회지
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    • 제18권1호
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    • pp.85-90
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    • 2014
  • 액체 추진 엔진 개발을 위해서는 서브시스템인 연소기 개발이 선행되어야 하고 설계 및 제작된 연소기의 성능 검증은 연소기 연소시험설비(CCTF)에서 수행된다. 연소기 연소시험설비는 로켓 엔진의 연소기를 개발하기 위한 시험 설비로 산화제로는 액체산소(Liquid Oxygen)를 사용하고 연료로는 케로신(Kerosene)을 사용한다. 이러한 추진제는 질소가스를 사용하여 고압으로 추진제 런탱크를 가압하여 연소실로 공급하게 된다. 우주센터에 구축 예정인 연소기 연소시험설비에 대한 상세설계가 수행되었으며, 본 논문에서는 고압가스 공급시스템에 대한 설계 결과를 소개하고자 한다.