• 제목/요약/키워드: Exhaust performance

검색결과 1,186건 처리시간 0.035초

마이크로 가스터빈 열병합장치 성능특성 연구 (Study on the Performance Characteristics of Micro Gas Turbine (MGT) Co-generation System)

  • 허광범;김재훈
    • 한국소음진동공학회논문집
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    • 제16권9호
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    • pp.964-970
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    • 2006
  • Micro gas turbine(MGT) has received attention recently as small-scale distributed power sources. With characteristics such as their small size, lightweight, low maintenance cost and minimal vibrations during operation, they are expected to become widespread in a wide range of ' applications, including residential and small-scale industrial use. It is very easier to start-up and stop the MGT system which is the friendly environmental power system has just below the 9ppm NOx emmission and good quality of noise level. The exhaust heat emitted by the MGT is in the form of about $300^{\circ}C$ clean exhaust gas. The exhaust gas is suitable for absorption chiller/heater system. 1 has researched performance characteristics of the 60 kW class MGT-absorption chiller-heater system in the local condition. Variations of heat recovery from exhaust gas has measured according to micro gas turbine output of 15, 30, 45, 60kW. From those results, the performance of the MGT-absorption chiller/heater system has been evaluated.

점화시기 및 당량비 변화에 따른 CNG 기관의 성능 및 배출가스에 관한 연구 (A Study on Performance and Exhaust Emission in CNG Engine by Ignition Timing and Equivalent Ration Change)

  • 한영출;오용석;박봉규;김대열;김미수
    • 한국공작기계학회논문집
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    • 제10권4호
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    • pp.65-69
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    • 2001
  • Research on the development of CNG dedicated engine that has important meaning both as a clean fuel and an alterna- tive energy to reduce the exhaust emission from diesel engine are actively going on these days. In this study, in order to present the direction and application of CNG engine, we tested the CNG engine performance experimented by changing the parameters such as ignition timing, equivalent ratio. The engine performance experimented by changing the parameters such as ignition timing, equivalent ratio. The engine performance and exhaust emission were measured by engine performance model at maximum load condition with increasing the rpm in the range of 1,000∼2,200rpm. Also, the testing engine was heavy-duty CNG dedicated engine with displacement of 11,050cc.

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흡배기구 손실예측 및 이를 고려한 항공기 가스터빈의 장착 성능모사 연구 (Study on Installed Performance Simulation of Aircraft Gas-Turbine Engine Considering Inlet and Exhaust Losses)

  • 공창덕
    • 한국추진공학회지
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    • 제10권4호
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    • pp.100-108
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    • 2006
  • 실험적인 연구가 흡입구와 배기구 성능을 평가하는 일반적인 방법이나 이는 고가이며 많은 시간이 소요된다. 따라서 소요 시간과 계산을 절약하는 방법으로 전산 유체 역학적 수치 모사가 실험적 연구로 대체할 수 있다. 그러므로 본 연구는 3차원 형상 모델을 이용하여 흡입구와 배기구의 구성품 성능을 연구하는 것을 목표로 하였다. 본 연구에서 특정한 흡입구 및 배기구를 유동가시화 기능을 갖는 전산유체 역학적 프로그램을 이용하여 손실 및 유동장을 예측하기 위해 모델링 및 해석이 수행되었다. 모델링된 기하학적 자료를 필요로 하는 과정이 설계과정에서 설계 개선 가능성을 위해 요구되었다. 또한 특정 터보축 엔진의 장착 성능이 예측된 흡입구, 배기구 및 기타 보기 손실을 가지고 평가되었다.

배기 출구 개도율이 배기 압력과 온도 및 엔진 성능에 미치는 영향 (The effect of exit opening rate on exhaust gas pressure, temperature, and engine performance)

  • 김철정;최병철;박권하
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권1호
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    • pp.15-22
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    • 2014
  • 엔진 배기 저감이나 열효율 향상을 위하여 배기관에 많은 장치들이 부착되고 있다. 이러한 장치들은 배기구의 개도면적을 줄이게 되고 배기 압력을 증가시킨다. 배기압력의 증가는 원활한 가스 교환을 방해하여 엔진 성능이 저하되는 원인이 된다. 그러나 적당한 배압의 증가는 잔류가스의 효과에 의하여 질소산화물을 감소시킬 수 있다. 본 연구에서는 배기 압력 증가가 엔진 성능에 미치는 영향을 평가하기 위하여 배기관 끝단의 개도량을 변화시켜 배기 압력을 조절하면서 엔진 실험을 수행하였다. 실험 결과 무부하에서 배압이 미소하게 증가된 경우에 연료 소모율이 저감되고 동시에 질소산화물이 저감되었지만 과도하게 배압이 증가하는 경우에는 연소의 악화로 유해 배기가스가 크게 증가되었다.

A Study on Effect of Environmental Characteristics by Intake Mixture Temperature in Scrubber EGR System Diesel Engines

  • Bae, Myung-Whan;Ryu, Chang-Sung
    • 한국반도체및디스플레이장비학회:학술대회논문집
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    • 한국반도체및디스플레이장비학회 2002년도 추계학술대회 발표 논문집
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    • pp.100-111
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    • 2002
  • The effects of intake mixture temperature on performance and exhaust emissions under four kinds of engine loads were experimentally investigated by using a four-cycle, four-cylinder, swirl chamber type, water-cooled diesel engine with scrubber EGR system operating at three kinds of engine speeds. The purpose of this study is to develop the scrubber exhaust gas recirculation(EGR) control system for reducing $NO_x$ and soot emissions simultaneously in diesel engines. The EGR system is used to reduce $NO_x$ emissions. And a novel diesel soot-removal device of cylinder-type scrubber with five water injection nozzles is specially designed and manufactured to reduce soot contents in the recirculated exhaust gas to the intake system of the engine. The influences of cooled EGR and water injection, however, would be included within those of scrubber EGR system. In order to survey the effect of intake mixture temperature on performance and exhaust emissions, the intake mixtures of fresh air and recirculated exhaust gas are heated by a heating device with five heating coils made of a steel drum. It is found that the specific fuel consumption rate is considerably elevated by the increase of intake mixture temperature, and that $NO_x$ emissions are markedly decreased as EGR rates are increased and intake mixture temperature is dropped, while soot emissions are increased with increasing EGR rates and intake mixture temperature. Thus one can conclude that the performance and exhaust emissions are considerably influenced by the cooled EGR.

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조선대학교 사이클로트론 시설의 RI 배기필터 성능평가 및 18F 배출저감 연구 (Performance of the RI Exhaust Filter at Chosun University Cyclotron Facility and 18F Emission Reduction)

  • 정철기;장한;이경진
    • 방사선산업학회지
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    • 제11권1호
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    • pp.13-18
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    • 2017
  • Recently, the number of PET cyclotrons has increased in Korea. A cyclotron mainly produces $^{18}F$, which is used for the production of [$^{18}F$]FDG, a cancer diagnostic radiopharmaceutical. For radiation protection, the discharge control standard under the Nuclear Safety Act limits the radioactive concentration of $^{18}F$ in the exhaust discharged from a nuclear power utilization facility to below $2,000Bq\;m^{-3}$. However, the radioactive concentration of $^{18}F$ discharged during [$^{18}F$]FDG production at the cyclotron facility at Chosun University is maintained at about $1,500Bq\;m^{-3}$ on average, which is 75% of the concentration limit of the discharge control standard, and temporarily exceeds the standard as per the real-time monitoring results. This study evaluated the performance of the exhaust filter unit of the cyclotron facility at Chosun University by assessing the concentration of $^{18}F$ in the exhaust, and an experiment was conducted on the discharge reduction, where $^{18}F$ is discharged without reacting with the FDG precursors during [$^{18}F$]FDG synthesis and is immediately captured by the [$^{18}F$]FDG automatic synthesis unit. Based on the performance evaluation results of the exhaust filter at the cyclotron facility of Chosun University, the measured capture efficiency before and after the filter was found to be 92%. Furthermore, the results of the discharge reduction experiment, where the exhaust $^{18}F$ was immediately captured by the [$^{18}F$]FDG synthesizer, showed a very satisfactory 94.3% reduction in the concentration of discharge compared to the existing discharge concentration.

배기계 압력 변동을 이용한 가솔린 기관의 실화 검출 -단수 실린더 실화- (Fluctuations in the Exhaust System -Single Cylinder Misfire-)

  • 심국상;복중혁;김세웅
    • 한국자동차공학회논문집
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    • 제6권6호
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    • pp.210-217
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    • 1998
  • This paper describes the method for detection of the misfired cylinder using the pressure fluctuations occurred in the exhaust system on an MPI gasoline engine. If misfire is occurred in the cylinder of the gasoline engine, the power of engine gets lost, the fuel consumption and the exhaust emission are increased and the vibration is caused by unsteady torque. Therefore early detection and correction of misfire play a very important role in the proper performance and the exhaust emission. This paper suggests method of misfire detection which affect engine performance. The method is a comparison of average pressure index during the displacement period. Experimental results showed that the method using the pressure fluctuations in the exhaust system is proven to be effective in the detection of misfire on gasoline engine regardless loads and revolutions of the engine. In addition, this method, using the pressure fluctuations in exhaust system is easier than other methods and is not a need of additional reconstruction of engine.

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진공용 공기베어링의 성능해석 (Performance Analysis of a Vacuum-Compatible Air Bearing)

  • 김경호;박천홍;이후상;김승우
    • 한국정밀공학회지
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    • 제23권10호
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    • pp.103-112
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    • 2006
  • This paper describes a theoretical analysis and experimental verification on the performances of a vacuum-compatible air bearing, which is designed with a cascaded exhaust scheme to minimize the air leakage in a vacuum environment. The design of the vacuum-compatible air bearing equipped with the differential exhaust system requires great care because several design parameters, such as the number of exhaust stages, diameter of exhaust tube, pumping speed of a vacuum pump, and bearing clearance greatly influence the air leakage and thus degree of vacuum. In this study, a performance analysis method was proposed to estimate the performances of the air bearing, such as load capacity, stiffness, and air leakage. Results indicate that the load capacity and stiffness of the air bearing was improved as its boundary pressure, which was determined by the $1^{st}$ exhaust method, was lowered, and the dominant factors on the chamber's degree of vacuum were the number of exhaust stages, exhaust tube diameter and bearing clearance. A vacuum chamber and air bearing stage using porous pad were fabricated to verify the theoretical analysis. The results demonstrate that chamber pressure up to an order of $10^{-3}$ Pa was achieved with the air bearing stage operating inside the chamber, and this analysis method was valid by comparing predicted values with experimental data, for the mass flow rates from the porous pad, and pressures at each exhaust port and chamber, respectively.

이중관 배기메니폴드의 HC저감효과 및 열특성에 관한 연구 (A Study on the Reduction of HC and Heat Characteristics of the Dual Pipe Exhaust Manifold)

  • 박경석;허형석
    • 한국자동차공학회논문집
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    • 제9권6호
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    • pp.103-111
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    • 2001
  • During cold-start period, the reduction of exhaust emissions is a challenging task. To decrease harmful gaseous substances such as HC, it is necessary to realize a fast catalyst warm-up. In this study, the performance of dual pipe exhaust system have been carried out through different test mode. From measurement of gas temperature and HC concentration, the following conclusions were derived ; 1) Compared with single pipe, dual pipe exhaust system remarkably increase temperature of exhaust gas going through M.C.C(Main Catalytic Converter). 2) W.C.C.(Warm-up Catalytic Converter) also decreases HC emission. To reduce HC emission, it is helpful to use W.C.C. as well as dual pipe exhaust system. 3) Using finite element method, it is shown that inner parts have much higher distribution of temperature than outer parts.

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