• 제목/요약/키워드: intake and exhaust system

검색결과 182건 처리시간 0.033초

Radiant Tube 버너에 있어서 흡기 온도 및 산소분물이 연료 소모에 미치는 영향 (An Experimental Study on Effect of Temperature and Oxygen fraction of Intake Air on Fuel Consumption in Radiant Tube Burner)

  • 김현우;이경환;노동순
    • 에너지공학
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    • 제14권2호
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    • pp.73-81
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    • 2005
  • 강판의 냉간압연 후 소둔을 하기 위한 열처리 공정에서 사용되고 있는 Radiant Tube Burner(이하 RT버너) 연비를 개선하기 위한 효율적인 방법을 실험적으로 조사하였다. 재열기가 설치된 모델 RT버너를 실험에 맞도록 개조하여, 배기 중 산소 농도 조건을 변화시키면서 연료 소모에 대한 흡입공기의 온도와 산소분율의 영향도를 파악하였다. 본 연구의 결과, 흡기 온도를 상승시키면 RT버너의 chamber온도가 상승하나 그 상승폭은 흡기 온도 상승폭의 $10\%$에 지나지 많아, 흡입 공기 온도의 상승만으로는 연료 소모 개선을 기대할 수 없다는 것을 알 수 있었다 그러나, 흡입 공기 중 산소분율 변경 실험 결과, 흡입 공기 중의 산소분율을 $1.5\%$증가시키면 NOx의 배출이 약 $40\%$정도 증가하지만 약 $20\%$의 연비 개선 효과를 보였다. 따라서, NOx 배출 증가를 억제하는 산소 고부하 전용 RT버너는 RT버너 시스템의 연료 소모를 개선하는 효과적인 방법의 하나로 기대된다.

분사조건에 따른 LPG 인젝터의 분무특성에 관한 연구 (A Study on the spray characteristics according to injection conditions for LPG injector)

  • 류재덕;윤용원;이기형;이창식
    • 한국분무공학회지
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    • 제6권3호
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    • pp.17-22
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    • 2001
  • Recently LPG engine is developed to fulfill such new requirements as improved fuel efficiency in additional to further reduced exhaust emission. This experimental study is conducted to analyze spray characteristics for pintle type injector used in a LPLi (Liquid Phase LPG injection) engine. Since spray parameters including penetration length and spray angle make a role to design injector and engine intake system, spray visualization experiment is performed under atmosphere ambient and charging condition using Mie scattering method. From the experimental result under various LPG formation, the increased propane component decreases penetration length because boiling point of propane is lower than butane. To simulate intake charging condition in MPI engine, spray visualization is performed under high pressure condition. As a result, as ambient pressure is increased from atmosphere to 3.0 bar, penetration length is decreased. However, as ambient pressure is increased from atmosphere to 3.0 bar, spray angle is increased.

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PZEV 대응 증발가스 흡착필터의 부탄 흡탈착 능력 평가 (Butane Working Capacity Evaluation of HC Adsorption Filter for Evaporative Gas to Satisfy PZEV Regulation)

  • 김덕중;이기수;김현철;허형석;나병철;최승배;나완용;조용석
    • 한국자동차공학회논문집
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    • 제17권4호
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    • pp.133-138
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    • 2009
  • The continued rise in the number of automobiles on the roads is prompting air pollution to emerge as a serious problem due to the harmful exhaust gas emissions throughout the world. Specifically, based on the exhaust gas regulation in North America represented by PZEV, the regulation on evaporative emission, which originates from the intake manifold system when the engine is stopped, is substantially being intensified. And the technology that can meet and satisfy these regulations has been needed. This study aimed to analyze and evaluate the butane working capacity (BWC) of HC adsorption filter according to the shape of it, which was developed to reduce evaporative emission, and the effect of HC adsorption filter on the engine performance. As a results, HC adsorption filter of the plate type, which was improved compared to that of the corrugated type and also became thinner, indicates higher absorption performance compared to the corrugated one. The absorption performance of the honeycomb type, derived from improving the shape of plate type, is 33.5% higher than that of the corrugated type. However, there was no significant difference in engine performance in all shapes.

압축착화기관용 가변밸브 듀레이션(VVD)시스템의 제어전략에 따른 유동 및 연소성능 해석 (Flow and Combustion Characteristics according Control Strategy of Variable Valve Duration System for Compression Ignition Engine)

  • 조인수;김우택;이진욱
    • 한국분무공학회지
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    • 제25권2호
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    • pp.45-50
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    • 2020
  • Recently, global warming and environmental pollution are becoming more important, and fuel economy is becoming important. Each automobile company is actively developing various new technologies to increase fuel efficiency. CVVD(Continuously Variable Valve Duration) system means a device that continuously changes the rotational speed of the camshaft to change the valve duration according to the state of the engine. In this paper, VVT(Variable Valve Timing) and CVVD were applied to a single-cylinder diesel engine, and the characteristics of intake and exhaust flow rate and in-cylinder pressure characteristics were analyzed by numerical analysis. In order to analyze the effect of CVVD on the actual engine operation, the study was performed by setting the valve control and injection pressure as variables in two sections of the engine operating region. As a result, In the case of applying CVVD, the positive overlap with the exhaust valve is maintained, thus it is possible to secure the flow smoothness of air and increase the volumetric efficiency by improving the flow rate. The section 2 condition showed the highest peak pressure, but the pressure rise rate was similar to that of the VVT 20 and CVCD 20 conditions up to 40 bar due to the occurrence of ignition delay.

급가속 흡기계의 능동소음제어 성능향상을 위한 Moving Bandpass filter 개발 (Development of Moving Bandpass Filter for Improving Control Performance of Active Intake Noise Control under Rapid Acceleration)

  • 전기원;오재응;이충휘;이정윤
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2004년도 추계학술대회논문집
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    • pp.1016-1019
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    • 2004
  • The study of the noise reduction of an automobile has been concentrated on the reduction of the automotive engine noise because the engine noise is the major cause of automotive noise. However, many studies of automotive engine noise led to the interest of the noise reduction of the exhaust and intake system. The method of the reduction of the induction noise can be classified by the method of passive control and the method of active control. However, the passive control method has a demerit to reduce the effect of noise reduction at low frequency (below 500Hz) range and to be limited by a space of the engine room. Whereas, the active control method can overcome the demerit of passive control method. The algorithm of active control is mostly used the LMS (Least-Mean-Square) algorithm because the LMS algorithm can easily obtain the complex transfer function in real-time. Especially, Filtered-X LMS (FXLMS) algorithm is applied to an ANC system. However, the convergence performance of LMS algorithm goes bad when the FXLMS algorithm is applied to an active control of the induction noise under rapidly accelerated driving conditions. So, in order to this problem, the modified FXLMS algorithm using Moving Bandpass Filter was proposed. In this study, MBPF was implemented and use ANC for automotive intake under revived rapidly accelerated driving conditions and it was verified its performance.

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디젤동차의 동력장치 관련 설계 고려 사항 (Considerations on Design with related to Propulsion System of Diesel Multiple Unit)

  • 고동우;염규학;유현규
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.1639-1645
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    • 2007
  • The Diesel Multiple Units (DMU) can be classified into three types by the type of the transmission. One of those is a Diesel Hydraulic Multiple Unit which is operated with a hydraulic transmission and its propulsion system consists of a diesel engine, transmission, cooling unit, fuel system, intake air and exhaust system, etc. In designing and integrating the propulsion system components, the operation and environment conditions should be considered as well as related standards. This paper describes points to be considered on design with related to propulsion system of Diesel Hydraulic Multiple Unit that is now being developed for Turkish Republic State Railway -TCDD.

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4기통 디젤기관의 체적효율 예측에 관한 수치해석 및 실험적 연구 (A Theoretical and Experimental Study on the Prediction of Volumetric Efficiency for 4-Cylinder Diesel Engine)

  • 이재순;윤건식;심현수;박상기
    • 대한기계학회논문집
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    • 제16권10호
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    • pp.1928-1939
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    • 1992
  • 본 연구에서는 흡.배기관내에서의 상태변화를 계산하기 위하여 벽면과의 마찰 과 열전달, 단면적 및 엔트로피 변화를 고려하는 일반화된 특성곡선법을 채택하여 관 내 각 위치에서의 크랭크각에 따른 상태량의 변화를 계산하였으며, 실린더내의 연소과 정은 예혼합연소와 확산연소 각각을 나타내는 Wiebe의 연소함수를 조합한 Double Wie- be's Function을 이용하여 열발생률을 계산하였다.

폐회로 디젤엔진의 연소특성에 관한 고찰 (An Investigation on Combustion Characteristics of The Closed Cycle Diesel Engine)

  • 박신배
    • 한국자동차공학회논문집
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    • 제8권6호
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    • pp.60-69
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    • 2000
  • In order to obtain underwater or underground power sources, the closed cycle diesel engine is operated in the non air-breathing circuit system where the major species of the working fluid include oxygen, argon, and recycled exhaust gas. In the present study, the closed cycle diesel engine is designed to operate at the intake pressure between 2 and 3 bar. For operating in the open-cycle and closed-cycle situations, experimental apparatus using this diesel engine is made with ACAP as data acquisition system. In open, semi-open, and closed cycle modes, the predicted p-$\theta$ and P-V are compared with load bank power. Computation have been performed for wide range of major experimental parameters such as the specific fuel and oxygen concentrations, fuel conversion efficiency and polytropic exponent, IMEP and maximum cylinder pressure.

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가변밸브 작동기구를 적용한 가솔린 기관의 잔류가스분율, 체적효율, 펌핑손실 예측을 위한 해석적 연구 (Numerical Analysis for Prediction of the Residual Gas Fraction, Volumetric Efficiency and Pumping Loss with Continuous Variable Valve Lift System in an SI Engine)

  • 조용석;이성욱;장익규;박정권;윤여빈;박영준;김현철;나병철
    • 한국자동차공학회논문집
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    • 제18권2호
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    • pp.7-13
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    • 2010
  • To satisfy the needs on fuel economy and engine performance, continuous variable valve lift systems are applying to engines. In the CVVL system, fuel economy can be improved by reducing pumping loss during the induction process, and engine performance can be also improved by controlling volumetric efficiency and the residual gas fraction. Because the residual gas fraction directly affects volumetric efficiency, engine performance, combustion efficiency and emissions in SI engines, controlling residual gas fraction is one of the important things in engine development process. This analysis investigates the residual gas fraction and volumetric efficiency with changes of intake valve lifts and intake valve timings. In this study, unsteady state solutions were solved during exhaust and induction processes. Results show variation of the residual gas fraction and volumetric efficiency by changing intake valve timing and lift. Decreasing intake valve lift leads to increase the residual gas fraction and to decrease volumetric efficiency.

직접분사식 디젤기관의 연소 및 배기에 관한 연구 (A Study on Combustion and Exhaust Emission in Direct Injection Diesel Engine)

  • 김두범;김기복;김치원;한성현
    • 한국산업융합학회 논문집
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    • 제20권2호
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    • pp.105-113
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    • 2017
  • Recently the direct injection diesel engine is the most efficient one available for road vehicles, so this fundamental advantage suggests the compression injection diesel engine are a wise choice for future development efforts. The compression ignition diesel engine, with its bigger compression ratios if compared to the SI engine, offers a higher thermodynamic efficiency, also additionally the diesel engine with its less pumping losses due to the throttled intake charge as in a SI engine has higher fuel economy. But the largest obstacle to the success of this engine is meeting emission standards for Nitric oxides and particulate matter while maintain fuel consumption advantage over currently available engines. Thus its use should be largely promoted, however, diesel engine emits more Nitric oxides and particulate matter than other competing one. There has been a trade-off between PM and NOx, so efforts to reduce NOx have increased PM and vice versa, but trap change this situation and better possibility emerge for treating NOx emission with engine related means, such as injection timing, equivalence ratio, charge composition, and engine speed. The common rail direct injection system is able to adjust the fuel injection timing in a compression ignition engine, so this electronically controlled injection system can reduce the formation of NOx gas without increase in soot. In this study it is designed and used the engine test bed which is installed with turbocharge and intercooler. In addition to equipped using CRDI by controlling injection timing with mapping modulator, it has been tested and analyzed the engine performance, combustion characteristics, and exhaust emission as operating parameters.