• 제목/요약/키워드: Fuel evaporation rate

검색결과 75건 처리시간 0.025초

FGR 시스템 공력 플랜트 보일러의 성능 및 배기 배출물에 미치는 재순환 배기의 영향 (Effect of Recirculated Exhaust Gas upon Performance and Exhaust Emissions in Power Plant Boilers with FGR System)

  • 배명환;정광호;최승철;조용수;김이석
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.1686-1691
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    • 2004
  • The effect of recirculated exhaust gas on performance and exhaust emissions with FGR rate are investigated by using a natural circulation, pressurized draft and water tube boiler with FGR system operating at several boiler loads and over fire air(OFA) damper openings. The purpose of this study is to apply the FGR system to a power plant boiler for reducing $NO_{x}$ emissions. To activate the combustion, the suction damper of two stage combustion system installed in the upper side of wind box is opened by handling the lever between $0^{\circ}$ and $90^{\circ}$ , and the OFA with 0 to 20% into the flame is supplied, as the combustion air supplied to burner is reduced. It is found that the fuel consumption rate divided by evaporation rate does not show an obvious tendency to increase or decrease with rising the FOR rate, and $NO_{x}$ emissions are decreased, at the same OF A damper opening, as FOR rates are elevated and boiler loads are dropped.

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나트륨 염이 첨가된 미분무수의 액체 pool fire소화특성 (Extinguishing Characteristics of Liquid Pool Eire by Water Mist Containing Sodium Salt)

  • 박재만;신창섭
    • 한국화재소방학회논문지
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    • 제19권3호
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    • pp.13-19
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    • 2005
  • 본 논문에서는 금속염 첨가제를 함유한 미분무수의 소화성능을 연구하고자 아세트산 나트륨을 함유한 단일 액적의 증발속도를 측정하였으며, small-scale 챔버내에서의 헵탄 pool fire에 대한 소화실험을 실시하여, 화염의 온도를 분석함으로써 첨가제에 의한 미분무수 소화특성을 분석하였다. 순수물과 수용액의 증발특성을 비교한 결과 핵비등 영역에서 온도가 높을수록 용해된 첨가제의 석출 및 표면장력의 변화 등 물리적 영향으로 순수물에 비해 수용액의 증발속도가 현저히 느리게 나타났다. 소화실험 결과, 저압에서는 물 액적이 화염의 플림을 뚫지 못하기 때문에 소화는 이루어지지 않았고 단순히 화염의 크기를 작아지게 하였다. 중압에서는 첨가제를 넣었을 경우 액적의 운동량 증가에 따른 물리적 소화효과와 첨가제의 화학적 소화효과가 상승작용을 하여 화염을 억제하였고, 고압에서는 미분무수 시스템의 주요 소화 메커니즘 이외에도 blowing효과에 의해서 화염이 소화되는 것을 관찰할 수 있었다.

EXPERIMENTAL STUDY ON THE STRATIFIED COMBUSTION CHARACTERISTICS ACCORDING TO COMPRESSION RATIO AND INTAKE TEMPERATURE IN A DIG ENGINE

  • Lee, C.H.;Lee, K.H.
    • International Journal of Automotive Technology
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    • 제7권6호
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    • pp.675-680
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    • 2006
  • In the direct injected gasoline engine, atomized spray is desired to achieve efficient mixture formation needed to good engine performance because the injection process leaves little time for the evaporation of fuels. Therefore, substantial understanding of global spray structure and quantitative characteristics of spray are decisive technology to optimize combustion system of a GDI engine. The combustion and emission characteristics of gasoline-fueled stratified-charge compression ignition(SCCI) engine according to intake temperature and compression ratio was examined. The fuel was injected directly to the cylinder under the high temperature condition resulting from heating the intake port. With this injection strategy, the SCCI combustion region was expanded dramatically without any increase in NOx emissions, which were seen in the case of compression stroke injection. Injection timing during the intake temperature was found to be an important parameter that affects the SCCI region width. The mixture stratification and the fuel reformation can be utilized to reduce the required intake temperature for suitable SCCI combustion under each set of engine speed and compression ratio conditions.

Transient thermal stress of CFRP propellant tank depending on charging speed of cryogenic fluid

  • Jeon, Seungmin;Kim, Dongmin;Kim, Jungmyung;Choi, Sooyoung;Kim, Seokho
    • 한국초전도ㆍ저온공학회논문지
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    • 제22권4호
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    • pp.51-56
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    • 2020
  • In order to increase thrust of the space launch vehicle, liquid oxygen as an oxidizer and kerosene or liquid hydrogen as a fuel are generally used. The oxidizer tank and fuel tanks are manufactured by composite materials such as CFRP (Carbon Fiber Reinforced Plastic) to increase pay load. The thermal stress of the cryogenic propellant tank should be considered because it has large temperature gradient. In this study, to confirm the design integrity of the oxidizer tank of liquid oxygen, a numerical analysis was conducted on the thermal stress and temperature distribution of the tank for various charging speed of the cryogenic fluid from 100 ~ 900 LPM taking into account the evaporation rate of the liquid nitrogen by convective heat transfer outside the tank and boiling heat transfer inside the tank. The thermal stress was also calculated coupled with the temperature distribution of the CFRP tank. Based on the analysis results, the charging speed of the LN2 can majorly affects the charging time and the resultant thermal stress.

쓰레기 소각로 자동 연소를 위한 퍼지 제어기의 개발 (Development of Fuzzy Logic Controller for Automatic Combustion of Refuse Incinerator)

  • Song, Young-Seuk;Park, Jang-Geon;Kim, Yong-Tae;Lee, He-Young;Zeungnam Bien
    • 한국지능시스템학회:학술대회논문집
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    • 한국퍼지및지능시스템학회 1996년도 추계학술대회 학술발표 논문집
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    • pp.123-128
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    • 1996
  • In this paper, a fuzzy controller is proposed for the operation of stoker-type refuse incinerator with many kinds of uncertain factors. To build the exact mathematical model is very difficult because of the variation of physical/chemical properties of refuse as a fuel and the complexity of the combusiton process. The fuzzy controller consists of fuzzy sensor, fuzzy decision maker and tracking part. The rules based on the professional operators empirical knowledge are made for the control of the boiler evaporation rate, emission gas and refuse throughput. For the performance measure of the proposed fuzzy controller, the model of the incinerator is constructed and the simulation results are given.

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극초고압 디젤분무의 충돌면 온도거동에 관한 연구 (A Study on the Temperature Behavior on Impinging Plate of Diesel Spray with Ultra High Pressure)

  • 이종태;정대용
    • 대한기계학회논문집B
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    • 제29권3호
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    • pp.402-408
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    • 2005
  • The instantaneous temperature behaviors on impinging plate in case of ultra high pressure have been measured and analyzed by using the instantaneous temperature probe and ultra high pressure injection equipment. The temperature drop was largest at P1 which is center of impinging spray and decreased with propagation of spray to the radius direction. The temperature drop was bigger in case of higher temperature of impinging plate. The temperature drop decreased with increase of injection pressure. But decreasing rate of temperature drop was slight over 2,500 bars. Therefore, it was predicted that the fuel evaporation versus the increase of injection pressure was maximum at around 2,500 bars.

Mie 산란 방법과 엔트로피 해석 방법을 이용한 혼합연료비에 따른 분무 균질도 특성에 관한 연구 (A Study on the Macro-Scopic Spray Characteristic of Homogeneous Degree for the GDI Injector According to Mixture(Gasoline-Diesel) Ratio Using Mie-Scattering Method and the Entropy Analysis)

  • 이창희;이기형;이창식;배재일
    • 대한기계학회논문집B
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    • 제27권1호
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    • pp.69-75
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    • 2003
  • In this study, his technique was applied to a GDI spray in order to investigate the mixture distribution. In addition, the homogeneity degree and diffusion effect according to ambient temperature in the high pressure chamber were analyzed by using an entropy analysis method. From this experiment, we could find that entropy analysis is very effective method for the analysis of mixture formation, and the entropy values increase with the progress of uniformity in diffusion Process. we tried to provide the fundamental data for parameter which effects on the spray macroscopic characteristics with mixture ratio of diesel and gasoline. In addition, the mixture formation was analyzed by using entropy analysis. The entropy analysis is based on the concept of statistical entropy, and it identifies the degree of homogeneity in the fuel concentration. From the entropy analysis results we could find that the direct diffusion phenomena is a dominant factor in the formation of a homogeneous mixture at downstream of GDI spray especially in vaporizing conditions. As to increasing ambient temperature and increasing gasoline rate, the entropy intensity using the statistic thermodynamics method is increased because evaporation rate is higher gasoline than diesel.

직접분사엔진의 분사압력 변화에 따른 유동장 및 분무특성에 대한 수치해석적 연구 (Numerical Simulations of the Injection Pressure Effect on the Flow Fields and the Spray Characteristics in Direct Injection Engine)

  • 양희천;정연태;유홍선
    • 대한기계학회논문집
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    • 제17권9호
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    • pp.2339-2358
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    • 1993
  • Since the rate and completeness of combustion in direct injection engines were controlled by the characteristics of gas flow fields and sprays, an understanding of those was essential to the design of the direct injection engines. In this study the numerical simulations of injection pressure effects on the characteristics of gas flow fields and sprays were preformed using the spray model that could predict the interactions between gas fields and spray droplets. The governing equations were discretized by the finite volume method and the modified k-.epsilon. model which included the compressibility effects due to the compression/expansion of piston was used. The results of the numerical calculation of the spray characteristics in the quiescent environment were compared with the experimental data. There were good agreements between the results of calculation and the experimental data, except in the early stages of the spray. In the motoring condition, the results showed that a substantial air entrainment into the spray volume was emerged and hence the squish motion was relatively unimportant during the fuel injection periods. It was found that as the injection pressure increased, the evaporation rate of droplets was decreased due to the narrow width of spray and the increased number of droplets impinged on the bottom of the piston bowl.

우라늄 전착물의 염증류에 대한 우라늄 공정(共晶) 형성 및 열해석 연구 (Study of the Formation of Eutectic Melt of Uranium and Thermal Analysis for the Salt Distillation of Uranium Deposits)

  • 박성빈;조동욱;황성찬;강영호;박기민;전완기;김정국;이한수
    • 방사성폐기물학회지
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    • 제8권1호
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    • pp.41-48
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    • 2010
  • 전해정련공정을 통해 생산된 우라늄 전착물은 약 30%의 용융염을 포함하고 있으므로, 순수한 우라늄을 회수하여 금속 잉곳으로 용이하게 제조하기 위해서는 용융염을 먼저 제거하는 공정이 필요하다. 우라늄 전착물의 염증류 거동을 고찰하기 위해서는 염증류의 주요 공정변수인 유지온도와 진공압의 염제거율에 대한 영향를 고찰해야 한다. 이전 연구에서 우라늄전착물에 대한 염증류 거동에 대해 Hertz-Langmuir 관계식을 적용하여 각 용융염의 휘발 조건에 대해 염휘발계수를 얻을 수 있었으며 이로부터 우라늄 전착물에 대해 99% 이상의 염제거율을 나타내는 염증류공정의 조업조건을 도출하였다[1]. 한편, 염증류 장치에서 사용되는 재질인 스테인리스강에 대해 우라늄 전착물에서 염휘발된 우라늄 금속이 스테인리스강의 주성분인 철, 니켈, 크롬 등과 공정(eutectic melt)을 형성하지 않는 온도에서 염증류공정을 수행해야 하는 제한 조건이 따른다. 이번 연구에서는 우라늄 금속과 스테인리스강과의 반응성을 검토함으로써 우라늄 전착물의 염을 99% 이상 제거할 수 있는 조건을 확인하였다. 그리고 염증류 속도를 증진시키며 휘발된 염을 더 효율적으로 회수하기 위해 공급되는 알곤 흐름에 의한 염증류 장치의 열해석을 수행함으로써 알곤 흐름에 의한 우라늄 전착물에 대한 염증류 거동을 고찰하였다.

반탄화 환경변화에 따른 바이오매스의 수분증발에 관한 연구 (Investigation of Water Evaporation from Biomass with Different Torrefaction Environments)

  • 고건영;김만영;이창엽;김세원
    • 대한기계학회논문집B
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    • 제37권10호
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    • pp.901-909
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    • 2013
  • 화석연료의 사용량이 증가함에 따라 전 세계적으로 환경오염문제에 대한 관심이 높아지고 있다. 이에 대한 해결책으로 신재생에너지에 대한 관심이 집중되고 있는 가운데 목질계 바이오매스의 연료화가 그 해결책의 하나로 떠오르고 있다. 따라서 본 연구에서는 목질계 바이오매스의 에너지 효율에 큰 영향을 미치는 수분증발 모델을 제시하고 반탄화 온도, 나무의 수분율, 그리고 바이오매스 종류에 따른 특성을 분석하였다. 그 결과, 반탄화 온도가 상승함에 따라 나무의 온도와 수분율은 빠르게 감소하였다. 그리고 반탄화 온도가 423K 이하인 경우에는 나무 수분율의 변화가 거의 나타나지 않았다. 또한 나무의 초기 수분율이 높을수록 숯(charcoal)이 더 느리게 생성될 뿐만 아니라, 아몬드쉘(almond shell)의 경우 가장 많은 숯이 생성되는 것을 확인하였다.