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A Study Isolating the Effect of Bore-to-Stroke Ratio on Gasoline Engine Combustion Chamber Development

机译:分离钻孔比率对汽油发动机燃烧室发育的影响

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A unique single cylinder engine was used to assess engine performance and combustion characteristics at three different strokes, with all other variables held constant. The engine utilized a production four-valve, pentroof cylinder head with an 86mm bore. The stock piston was used, and a variable deck height design allowed three crankshafts with strokes of 86, 98, and 115mm to be tested. The compression ratio was also held constant. The engine was run with a controlled boost-to-backpressure ratio to simulate turbocharged operation, and the valve events were optimized for each operating condition using intake and exhaust cam phasers. EGR rates were swept from zero to twenty percent under low and high speed conditions, at MBT and maximum retard ignition timings. The increased stroke engines demonstrated efficiency gains under all operating conditions, as well as measurably reduced 10-to-90 percent burn durations. The results were quite non-linear, with the majority of the gains achieved in going from the 1:1 to 0.87:1 bore-to-stroke ratio cases. The further change to 0.75:1 showed significantly diminished returns. Flame speed and chamber geometry estimates were used to project further advantages at reduced bore and constant displacement.
机译:独特的单缸发动机用于评估三种不同笔触的发动机性能和燃烧特性,所有其他变量保持恒定。该发动机利用生产四阀,沿86mm孔的浮罗瓶盖。使用库存活塞,可变甲板高度设计允许三个带有86,98和115mm的曲轴才能进行测试。压缩比也保持恒定。该发动机以控制的升压反压比率运行以模拟涡轮增压操作,并且使用进气和排气凸轮相位器针对每个操作条件进行优化阀门事件。 EGR率在低速和高速条件下扫描到零至20%,在MBT和最大延迟点火器件下。增加的中风发动机在所有操作条件下表现出效率提升,以及可测量地减少了10%至90%的烧伤持续时间。结果非常非线性,大部分增益从1:1至0.87:1的孔到中风比例案件中实现。进一步的变化达到0.75:1显示出的回报显着减少。火焰速度和腔室几何估计用于在降低的孔和恒定位移下投入进一步的优点。

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