外文翻译--半机电性气门在一台单缸火花点火发动机排放影响
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1、PDF外文:http:/ 中文4465字1 Effect of a semi electro-mechanical engine valve on performance and emissions in a single cylinder spark ignited engine (Department of Automotive Education, Karabuk University, Karabuk 78050, Turkey) E-mail: ; dogan_oguzhanyahoo.co.uk Received Feb. 25, 2009; Revision acce
2、pted July 7, 2009; Crosschecked Nov. 8, 2009 Abstract: In this study, an electro-mechanical valve (EMV) system for the intake valve of a four stroke, single cylinder, overhead valve and spark ignition (SI) engine was designed and constructed. An engine with the EMV system and a standard engine were
3、tested to observe the effects of the EMV on engine performance and emissions at different speeds under full load. The EMV engine showed improved engine power, engine torque and break specific fuel consumption (BSFC). A 66% decrease in CO emissions was also obtained with the EMV system, but hydrocarb
4、ons (HC) and NOx emissions increased by 12% and 13% respectively. Key words: Semi electro-mechanic, Camless engine, Electro-mechanic engine valve, Engine performance, Emissions doi:10.1631/jzus.A0900119 Document code: A CLC number: &nb
5、sp;TH13 1.Introduction All internal combustion engines (ICE) have mechanically actuated systems for opening intake and exhaust valves. Traditional valve systems have con-stant valve timing which restricts engine performance especially at low and at high engine speeds. Control-ling valve operat
6、ion in ICEs effective method for improving engine performance and emissions over a range of engine speeds. Parameters such as cam shape, valve timing, valve opening duration and valve lifting have a major impact on engine performance and emissions (Barkan and Dresner, 1989; Krauter et al., 1992; Hat
7、ano et al., 1993; Cinar, 1998; Akba, 2000; Pischinger et al., 2000; Stein et al., 1995). To increase torque and reduce fuel consumption in gasoline engines, manufacturers are increasingly using variable valve timing systems in production engines. Most valve timing systems used for improving en
8、gine performance are dependent on the camshaft. The mechanical variable valve timing systems are complex but greatly reduce the limitations of traditional valve systems, especially in regard to volumetric efficiency (Barkan and Dresner, 1989). However, except for BMWs Valvetronic system, they
9、cannot control all parameters such as valve timing, valve lifting and valve opening duration simultane-ously, continuously and completely 2 independently. Lotus Engineering has developed research and production versions of their fully variable valve system that are not dependent on camshafts. The Lo
10、tus system can also independently control valve timing, valve lifting and the duration of valve opening. The power and torque increase obtained by using variable intake valve timing is between 5% and 21% The improvement in fuel consumption obtained by variable intake valve timing is between 6%
11、 and 30% (Ahmad and Theobald, 1989; Barkan and Dresner, 1989; Dresner and Barkan, 1989; Asmus, 1991; Demmelbauer et al., 1991; Gould et al., 1991; Hatano et al., 1993; Urata et al., 1993; Lee et al., 1995; Levin and Schlecter, 1996; Moriya et al., 1996; Pischinger et al., 2000). The improvement in C
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