• 제목/요약/키워드: mixing front

검색결과 118건 처리시간 0.024초

$NO_x$ 선단 예혼합 연소기의 화염 및 $NO_x$ 배출 특성 연구 (An Experimental Study on Flame and $NO_x$ Emission Characteristics of Front Mixing Premix Combustor)

  • 신명철;김세원;문민욱
    • 한국연소학회지
    • /
    • 제11권2호
    • /
    • pp.22-27
    • /
    • 2006
  • This experimental study has been mainly motivated to obtain generally applicable design correlation for the front mixing premix combustor. The design concept of the front mixing premix combustor is to minimize thermal $NO_x$ and prompt $NO_x$ formation by maintaining low peak flame temperature, and nearly uniform flame temperature through rapid mixing process near the ignition point. The present experimental results clearly indicate that the front mixing premix combustor yields the $NO_x$ level lower than 43 ppm $NO_x$ emissions and the nearly uniform temperature distribution.

  • PDF

황해 중부의 조석전선과 연관된 해양학적 연구 : 물리적 특성 (Oceanographic Studies Related to the Tidal front in the Mid-Yellow Sea off Korea: Physical Aspects)

  • 송영호;정정호;박용철
    • 한국해양학회지
    • /
    • 제25권2호
    • /
    • pp.84-95
    • /
    • 1990
  • CTD, 해류계, 인공위성 영상사진을 이용하여 황해 중부의 조석전선 주변역을 조사 한 결과 몇 가지 물리적 특성을 알 수 있었다. 전선은 태안반도 끝 부분을 중심으로 하여 4월 중에 태양열에 의한 해표면 가열과 함께 나타나기 시작하여 8월에 가장 뚜렷 하며 11월에는 표층냉각과 함께 소멸한다. 전선의 북측에서는 전선을 가로지르는 조류 에 의하여 수온 염분의 조석주기 변화가 나타남으로써 전선구조를 보여준다. 경기만에 서 나타나는 전선은 통최상의 조석전선과 달리 한강에서 유출된 담수와 외양수의 만남 에 의하여 형성된다. 표층냉수의 중심에서는 조석혼합역이 연안으로부터 약 50 km 외 양하지 분포한다. 전선의 남측에서도 전선의 구조는 비슷하나 전반적으로 혼합 정도가 약하게 나타난다. 이 연안 혼합역의 연안쪽에서는 금강유출된 담수에 의하여 염분전선 이 좁은 범위에서 흥성된다. 이 염분전선 부근의 일부에서는 용승과 같은 현상이 관측 되었다.

  • PDF

혼합율 개념을 이용한 서해 중부 조석전선의 수치모델 (A Numerical Modelling of the tidal front in the Mid-yellow sea off Korea using a concept of Mixing rate)

  • 신상익;승영호
    • 한국해양학회지
    • /
    • 제28권2호
    • /
    • pp.121-131
    • /
    • 1993
  • 연구에서는 서해 중부역(태안반도 부근)에 형성되는 조석전선을 3차원 해수유동 모델(Semtner, 1974) 과 Simpson & Hunter (1974)의 혼합효율(mixing efficiency)개념 을 발전시킨 혼합을 개념을 이용하여 계산하였다. 모델을 구성하는데 있어서 모델 영 역의 남·북에 위치한 개방경계에는 간단한 radiation condition을 적용하였으며, 동 계 외양조건을 초기조건으로 하여 표층의 지속적인 열에너지 공급 및 공간적으로 상이 한 수직혼합 작용에 의해 형성되는 조석전선을 계산하였다.

  • PDF

수영만의 담${\cdot}$염수의 혼합특성에 관한 연구 (The Characteristics on the Mixing of Freshwater in Suyoung Bay)

  • 박철석;김종규;장선덕
    • 한국수산과학회지
    • /
    • 제26권4호
    • /
    • pp.353-362
    • /
    • 1993
  • Behaviors of effulent are observed and discussed with reference to the tide and freshwater discharge in the estuary of Suyoung Bay. The esturine front is located at $0.5{\sim}1.3km$ seaward from of the Suyoung Bridge at the spring tide, and $0.8{\sim}1.0km$ at the neap tide. After the heavy precipitations, the front moved seaward and was located at $1.3{\sim}2.5km$ southeast of the Suyoung Bridge. Internal Froude numbers in the estuarine salinity front are estimated approximately to be 1 both at the spring and neap tide. Entrainment coefficient decreases down stream to the estuarine front, and then increases seaward from the estuarine front due to the tidal mixing.

  • PDF

초음속 유동장 내 연료 다중 분사의 혼합 특성 (Mixing Characteristics of Multiple Injection in Supersonic Flow)

  • 이종환;이상현
    • 한국추진공학회:학술대회논문집
    • /
    • 한국추진공학회 2004년도 제23회 추계학술대회 논문집
    • /
    • pp.53-56
    • /
    • 2004
  • The mixing characteristics of a multiple transverse injection system in a scramjet combustor were studied with numerical methods. The distance among injectors on mixing characteristics were investigated. The three-dimensional Wavier-Stokes equations including k-w SST turbulence model were solved. It was shown that the mixing characteristics of a multiple transverse injection system were very different from those of a single and a dual injection system; the rear injection flow was strongly influenced by blocking effect due to the momentum flux of the front injection flow and thus had higher expansion and penetration than the front injection flow. The multiple injection system had higher mixing rate, higher penetration but had more losses of stagnation pressure than the single injection system.

  • PDF

Tidal Front in the Main Tidal Channel of Kyunggi Bay, Eastern Yellow Sea

  • Lee, Heung-Jae;Lee, Seok;Cho, Cheol-Ho;Kim, Cheol-Ho
    • Journal of the korean society of oceanography
    • /
    • 제37권1호
    • /
    • pp.10-19
    • /
    • 2002
  • The detailed structure of a tidal front and its ebb-to flood variation in the main tidal channel of the Kyunggi Bay in the mid-west coast of Korea were investigated by analyzing CTD data and drifter trajectories collected in late July 1999. A typical tidal front was formed in water about 60 m deep at the mouth of the channel. Isotherms and isohalines in the upper layer above the seasonal pycnocline in the offshore stratified zone inclined upward to the sea surface to form a surface front, while those in the lower layer declined to the bottom front. The location of the front is consistent with $100 S^3/cm^2$ of the mixing index H/U defined by Simpson and Hunter (1974), where H is the water depth and U is the amplitude of tidal current. The potential energy anomaly in the frontal zone varied at an ebb-to flood tidal cycle, showing a minimum at slack water after ebb but a maximum at slack water after flood. This ebb-to flood variation in potential energy anomaly is not accounted for by the mixing index. We conclude that on- and offshore displacement of the water column by tidal advection is responsible for the ebb-to-flood variation in the frontal zone.

냉각 파일런 분사를 이용한 스크램제트 연소기 내 혼합증대 (Mixing Augmentation with Cooled Pylon Injection in Scramjet Combustor)

  • 이상현
    • 한국추진공학회:학술대회논문집
    • /
    • 한국추진공학회 2009년도 제33회 추계학술대회논문집
    • /
    • pp.594-597
    • /
    • 2009
  • The mixing characteristics of pylon injection in a Scramjet combustor and effects of film cooling to protect pylon from air-heating. Three-dimensional Navier-Stokes equations with $k-{\omega}$ SST turbulence model were used. Fuel hydrogen and air were considered as coolants. There were remarkable improvements of penetration and mixing rate with the pylon injection. There also over-heating on the front surface of pylon without film cooling. The coolant injected parallel to the front surface of the pylon protect the pylon from over-heating.

  • PDF

메탄/순산소 혼합층에서 edge flame의 구조 (Structure of Edge Flame in a Methane-Oxygen Mixing Layer)

  • 최상규;김준홍;정석호;김종수
    • 한국연소학회:학술대회논문집
    • /
    • 한국연소학회 2006년도 제32회 KOSCO SYMPOSIUM 논문집
    • /
    • pp.149-156
    • /
    • 2006
  • Structure of edge flame established in a mixing layer, formed between two uniformly flowing pure $CH_4$ and pure $O_2$ streams, is numerically investigated by employing a detailed methane-oxidation mechanism. The numerical results exhibited the most outstanding distinction of using pure oxygen in the fuel-rich premixed-flame front, through which the carbon-containing compound is found to leak mainly in the form of CO instead of HC compounds, contrary to the rich $CH_4-air$ premixed flames in which $CH_4$ as well as $C_2H_m$ leakage can occur. Moreover, while passing through the rich premixed flame, a major route for CO production, in addition to the direct $CH_4$ decomposition, is found to be $C_2H_m$ compound formation followed by their decomposition into CO. Beyond the rich premixed flame front, CO is further oxidized into $CO_2$ in a broad diffusion-flame-like reaction zone located around moderately fuel-rich side of the stoichiometric mixture by the OH radical from the fuel-lean premixed-flame front. Since the secondary CO production through $C_2H_m$ decomposition has a relatively strong reaction intensity, an additional heat-release branch appears and the resulting heat-release profile can no longer be seen as a tribrachial structure.

  • PDF

메탄/순산소 혼합층에서 Edge Flame의 구조 (Structure of Edge Flame in a Methane-Oxygen Mixing Layer)

  • 최상규;김준홍;정석호;김종수
    • 한국연소학회지
    • /
    • 제11권1호
    • /
    • pp.19-26
    • /
    • 2006
  • Structure of edge flame established in a mixing layer, formed between two uniformly flowing pure $CH_4$ and pure $O_2$ streams, is numerically investigated by employing a detailed methane-oxidation mechanism. The numerical results exhibited the most outstanding distinction of using pure oxygen in the fuel-rich premixed-flame front, through which the carbon-containing compound is found to leak mainly in the form of CO instead of HC compounds, contrary to the rich $CH_4-air$ premixed flames in which $CH_4$ as well as $C_2H_m$ leakage can occur. Moreover, while passing through the rich premixed flame, a major route for CO production, in addition to the direct $CH_4$ decomposition, is found to be $C_2H_m$ compound formation followed by their decomposition into CO. Beyond the rich premixed flame front, CO is further oxidized into $CO_2$ in a broad diffusion-flame-like reaction zone located around moderately fuel-rich side of the stoichiometric mixture by the OH radical from the fuel-lean premixed-flame front. Since the secondary CO production through $C_2H_m$ decomposition has a relatively strong reaction intensity, an additional heat-release branch appears and the resulting heat-release profile can no longer be seen as a tribrachial structure.

  • PDF

난류 혼합층 확산화염에서 부상선단의 난류전파속도에 대한 연구 (Study on the Turbulent Edge Propagation Speed of a Lifted Diffusion Flame in Turbulent Mixing Layer)

  • 김준홍;정석호;안국영;김종수
    • 한국연소학회:학술대회논문집
    • /
    • 한국연소학회 2004년도 제29회 KOSCI SYMPOSIUM 논문집
    • /
    • pp.55-61
    • /
    • 2004
  • Leading front of a lifted diffusion flame in turbulent mixing layer was investigated in order to find a appropriate definition of the turbulent edge propagation speed. The turbulent lifted diffusion flame was simulated by employing the flame hole dynamics combined with level-set method which yields a temporally evolving turbulent extinction process. By tracing the leading front locations of the temporal flame edges, temporal variations of the liftoff height, local flow velocity, and edge propagation speed at the leading front were investigated and they demonstrated the flame-stabilization condition of the turbulent lifted flame. Finally, a turbulent edge propagation speed was defined and its temporal variation from the simulation was discussed.

  • PDF