• 제목/요약/키워드: Engine key on off

검색결과 11건 처리시간 0.027초

중형트럭 시동 시 엔진마운팅 시스템의 진동 특성 연구 (A Study on Vibration Characteristics of Engine Mount System of a Medium Duty Truck at the Key On/Off)

  • 국종영;임정환
    • 한국자동차공학회논문집
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    • 제16권4호
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    • pp.97-102
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    • 2008
  • The vibration of a vehicle, which is caused by and transmitted from the engine, has significant effect on the ride comfort and the dynamic characteristics of the engine mount system have direct influence on the vibration and noise of the vehicle. This paper examines the body shake caused by the engine excitation force on engine key on/off of a medium truck by experiment and simulation. The analysis model consists of the engine, a body including the frame, front and rear suspensions and tires. The force element between the body and the suspension is modeled as a combination of a suspension spring and a damper. The engine shake obtained from the experiment was compared with the result of the computer simulation, and by using the verified computer model, parametric study of the body shake on engine key on/off is performed with changing the stiffness of an engine mount rubber, the engine mount angle, and the position of engine mounts.

CAD/CAE을 이용한 승용 Jeep의 Key-off시 진동 해석 (The vibration Analysis in Case of Key-off of a Jeep by Using CAD/CAE)

  • 안기원;송상기
    • 한국음향학회지
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    • 제11권4호
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    • pp.5-13
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    • 1992
  • 엔진의 가진력으로 인해 발생되는 차량의 진동은 승차감에 큰 영향을 미치며, 또한 엔진 마운트 계의 동역학적 특성은 차량의 진동 및 소음에 직접적인 영향을 준다. 본 논문에서는 승용 지이프차의 엔진 key-off시 엔진 가진력으로 인한 차체 흔들림(body shake)을 실험을 통하여 측정함과 동시에 매카니즘해석 전용 프로그램인 DADS를 이용한 컴퓨터 시뮬레이션을 통하여 고찰하였다. 컴퓨터 시뮬레이션 모델은 엔진, 후레임이 포함된 차체, 앞 엑슬 그리고 뒤 엑슬로 구성되며, 각 엑슬은 좌우에 타이어를 고려하였다. 실험에서 얻은 차체 흔들림의 실험 결과와 컴퓨터 시뮬레이션한 결과를 비교 검토하였으며, 검증된 컴퓨터 시뮬레이션 모델을 통하여 엔진 마운트 고무의 강성, 엔진마운트의 설치각도 및 마운트 위치를 변경하여 key-off 시 자체 흔들림을 고찰함으로써 엔진 key-off 시의 차체 흔들림의 감소를 확인하였다.

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NVH 향상을 위한 엔진 설치 시스템 최적화 (Engine Mounting System Optimization for Improve NVH)

  • 김장수
    • 한국산학기술학회논문지
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    • 제14권10호
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    • pp.4665-4671
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    • 2013
  • 엔진 설치 시스템은 차량의 NVH 성능에 매우 중요한 시스템 이다. 차량의 NVH 성능은 공회전 진동(Idle Vibration), 엔진 쉐이크(Engine Shake) 시동 진동(Key ON/OFF Vibration), 변속 진동(Gear Shift Vibration) 등 다양한 이론이 존재한다. NVH 성능 개선을 위해 이러한 이론들에 대한 실제적 최적화가 필요하며, 특히 최적의 엔진 설치 위치와 강성을 찾아내는 것이 매우 중요하다. 또한 효과적인 NVH 성능 개선을 위하여 차량개발 프로세스 측면에서 제약조건과 한계가 있는 사후 조정보다는 개발 초기에 최적화가 필요하다. 본 논문에서는 엔진 설치 시스템 관련 여러 이론에 대한 최적화 해석과 파워 트레인의 엄격한 모드 분리와 토크롤축(Torque Roll Axis), 탄성롤축(Elastic Roll Axis) 사이의 각도를 최소화 하는 다양한 시뮬레이션 케이스(Simulation Case)와 FE-모드를 개발초기에 수행하여 다중 최적화 분석을 함으로서 최적의 엔진 설치 위치와 강성을 찾아내어 NVH 성능을 개선하였다.

활주선의 정상 활주 상태 모델을 이용한 WIG선의 이수 상태 추정 (Estimation of WIGs' Take-off State Based on Planing Theory)

  • 여동진;윤현규;이창민
    • 대한조선학회논문집
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    • 제44권5호
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    • pp.534-541
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    • 2007
  • This paper suggests the mathematical method for the estimation of the required engine output for WIG crafts. The engine size of a WIG craft Is a key parameter in the design stage, because WIGs should overcome the hump drag during the take-off. Therefore, it is very important for a WIG designer to estimate required power and state change during take-off. The mathematical method was developed based on the steady planing state model of a planing boat. Through numerical calculations on various take-off states, it was found that the suggested method could give reasonable estimation of required power and state change during take-off.

스마트무인기 후보엔진 기술검토 (Technical Review of the Proposed Engines for SUAV)

  • 전용민;양수석
    • 한국추진공학회지
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    • 제10권1호
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    • pp.64-71
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    • 2006
  • 수직이착륙 및 고속 전진비행 능력을 갖는 스마트무인기를 개발하기 위해 채택된 틸트로터방식은 통상의 헬리콥터방식과 터보프롭방식을 모두 포함하고 있다. 엔진측면에서 보면 엔진운용방식, 엔진제어 방식, 동력계통의 동력학적 특성, 흡/배기구 개념, 엔진장착요구도 등과 같은 요인들이 헬리콥터와 터보프롭, 두 가지 방식의 요구조건을 모두 만족시킬 수 있어야 한다. 또한 틸트로터의 특성상 헬리콥터와 터보프롭, 두 모드에서의 최적 로터회전수가 상이하여 이를 만족시킬 수 있는 방안이 요구되었다. 본 연구에서는 기존의 상용터보샤프트 엔진으로부터 틸트로터방식을 위한 특이한 엔진요구사양을 충족 시킬 수 있는 방안을 모색하였으며 이를 위해 가장 적합한 엔진을 선정하게 되었다.

가솔린 기관의 냉간시동 조건에서 합성가스 배기분사 기술에 의한 촉매의 활성화 온도 도달시간 단축 및 유해배출물 저감에 관한 연구 (Study on Shortening Light-Off Time of Three Way Catalyst and Reduction of Harmful Emissions with Exhaust Synthetic Gas Injection(ESGI) Technology during Cold Start of SI Engines)

  • 조용석;이성욱;원상연;송춘섭;박영준
    • 한국자동차공학회논문집
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    • 제16권3호
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    • pp.94-101
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    • 2008
  • Since regulations of exhaust emissions are continuously reinforced, studies to reduce harmful emissions during the cold start period of SI engines have been carried out very extensively worldwide. During the cold start period, raising the temperature of cold exhaust gas is a key strategy to minimize the light-off time of three way catalysts. In this study, a synthetic gas containing a large amount of hydrogen was injected into the exhaust manifold to raise the exhaust gas temperature and to reduce harmful emissions. The authors tried to evaluate changes in exhaust gas temperature and harmful emissions through controlling the engine operating parameters such as ignition timings and lambda values. Also the authors investigated both combustion stability and reduction of harmful emissions. Experimental results showed that combustion of the synthetic gas in the exhaust manifold is a very effective way for solving the problems of harmful emissions and light-off time. The results also showed that the strategy of retarded ignition timings and increased air/fuel ratios with ESGI is effective in raising exhaust gas temperature and reducing harmful emissions. Futhermore, the results showed that engine operating parameters ought to be controlled to lambda = 1.2 and ignition timing = $0{\sim}3^{\circ}$ conditions to reduce harmful emissions effectively under stable combustion conditions.

ARISING TECHNICAL ISSUES IN THE DEVELOPMENT OF A TRANSPORTATION AND STORAGE SYSTEM OF SPENT NUCLEAR FUEL IN KOREA

  • Yoo, Jeong-Hyoun;Choi, Woo-Seok;Lee, Sang-Hoon;Seo, Ki-Seog
    • Nuclear Engineering and Technology
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    • 제43권5호
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    • pp.413-420
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    • 2011
  • In Korea, although the concept of dry storage system for PWR spent fuels first emerged in the early 1990s, wet storage inside nuclear reactor buildings remains the dominant storage paradigm. Furthermore, as the amount of discharged fuel from nuclear power plants increases, nuclear power plants are confronted with the problem of meeting storage capacity demand. Various measures have been taken to resolve this problem. Dry storage systems along with transportation of spent fuel either on-site or off-site are regarded as the most feasible measure. In order to develop dry storage and transportation system safety analyses, development of design techniques, full scale performance tests, and research on key material degradation should be conducted. This paper deals with two topics, structural analysis methodology to assess cumulative damage to transportation packages and the effects of an aircraft engine crash on a dual purpose cask. These newly emerging issues are selected from among the many technical issues related to the development of transportation and storage systems of spent fuels. In the design process, appropriate analytical methods, procedures, and tools are used in conjunction with a suitably selected test procedure and assumptions such as jet engine simulation for postulated design events and a beyond design basis accident.

직접분사식 소형 디젤엔진의 실린더내 스월 유동장에 미치는 흡기포트의 형상에 관한 연구 (A Study on the Effects of Intake Port Geometry on In-Cylinder Swirl Flow Field in a Small D.I. Diesel Engine)

  • 이기형;한용택;정해영;임영철
    • 한국자동차공학회논문집
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    • 제12권6호
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    • pp.38-45
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    • 2004
  • This paper studies the effects of intake port configuration on the swirl that is key parameter in the flow field of direct injection diesel engines. In-cylinder flow characteristics is known to have significant effects on fuel air mixing, combustion and emissions. To investigate the swirl flow generated by various intake ports, steady state flow tests were conducted to evaluate the swirl. Helical port geometry, SCV shape and bypass were selected as the design parameters to increase the swirl flow and parametric study was performed to choose the optimal port shape that would generate a high swirl ratio efficiently. The results revealed that a key factor in generating a high swirl ratio was to suitably control the direction of the intake air flow passing through the valve seat. For these purposes, we changed the distance of helical and tangential port as well as installed bypass near the valve seat and the effects of intake port geometry on in-cylinder flow field were visualized by a laser sheet visualization method. From the experimental results, we found that the swirl ratio and mass flow rate had a trade off relation. In addition, the result indicates that the bypass is a effective method to increase the swirl ratio without sacrificing mass flow rate.

우주발사체용 추력벡터제어 시스템 및 제어밸브류 개발 현황 소개 (Introduction of Thrust Vector Control System and Control Valve Development for Space Launch Vehicles)

  • 이제동;박봉교;박호열;김상범;전필선;장기원
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2009년도 제33회 추계학술대회논문집
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    • pp.613-615
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    • 2009
  • 본 논문에서는 한국형 우주발사체의 TVC 시스템 및 제어밸브류 분야에서 (주)한화 항공우주/기계연구소의 개발 현황을 소개하고 있다. KSR-III TVC 시스템의 성공적인 개발을 기반으로 당소는 KSLV-I의 TVC 시스템 및 RCS 계통의 제어밸브들을 개발하였으며 KSLV-II의 선행 연구로서 엔진 공급 계통의 산화제 및 연료 유량제어밸브와 산화제 개폐밸브의 개발에 참여하고 있다. 항공우주 핵심 구성품 및 시스템 개발 분야에서의 축적된 경험과 기술력을 바탕으로 한화는 향후 KSLV-II 개발에 일익을 담당하고자 한다.

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LNG 자동차 충전소에서 BOG 확산에 따른 안전성평가 연구 (Safety Assessment on Dispersion of BOG in LNG Fueling Station)

  • 이승현;강승규;이영순
    • 한국안전학회지
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    • 제27권4호
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    • pp.76-82
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    • 2012
  • A diesel-Liquefied natural gas(LNG) combustion engine truck fleet demonstration project had been carried out and commercial expansion project was launched. The key issues of these projects are the safety of LNG fuel station and the reduction of natural gas relief. When LNG is fueled to LNG vehicles the heat is input in the LNG system. The LNG in the fueling system was boiled and the vapor of LNG is vented through the safety devices. The temperature of the vapor of LNG is $-108^{\circ}C$ and density is heavier than air. It can be dispersed to downside of the fuel station. The safety evaluation is carried out using CFD program and risk assessment program for the vapor of LNG in the LNG vehicle fuel station. The hazards are identified and suggested the operation instruction to reduce the relief of LNG vapor.