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首页> 外文期刊>International journal of engine research >Residual-effected homogeneous charge compression ignition with delayed intake-valve closing at elevated compression ratio
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Residual-effected homogeneous charge compression ignition with delayed intake-valve closing at elevated compression ratio

机译:残余效应均质充气压缩点火,进气门延迟关闭,压缩比提高

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摘要

Residual-effected homogeneous charge compression ignition (HCCI) was investigated using a single-cylinder research engine equipped with fully-flexible variable valve actuation. Operation at elevated compression ratios was explored to determine its effect on efficiency. Results showed that efficiency is decreased significantly by advanced phasing owing to increased thermal losses. However, if combustion phasing is held fixed, elevated compression ratio operation showed little effect on efficiency. Further experiments explored the use of IVC time as a control parameter at the elevated compression ratio. Tests were conducted to determine if an efficiency benefit could be realized from increasing the compression ratio and delaying IVC to increase the extent of expansion relative to compression. No significant change in efficiency was observed, although variation in IVC timing offered significant control authority. Delayed IVC was used in conjunction with variable IVO to control independently load and phasing of HCCI at the elevated compression ratio. Tests were also conducted to assess the significance of the measured exhaust temperature on HCCI phasing. EVO was introduced as a third control parameter, along with IVO and IVC, to control independently initial mixture composition, compression work, and exhaust temperature. Results indicated that the measured exhaust temperature was not a good indicator of HCCI phasing and suggested the stabilizing role of heat transfer to the reinducted exhaust gases. Results also suggested a set of control parameters that achieve the full range of HCCI operation with minimal degrees of freedom.
机译:使用配备了全柔性可变气门致动的单缸研究发动机,研究了残余影响的均质充量压缩点火(HCCI)。探索了在较高压缩比下的操作以确定其对效率的影响。结果表明,由于增加的热损失,先进的定相方式使效率大大降低。但是,如果将燃烧定相保持固定,则压缩比升高的操作对效率几乎没有影响。进一步的实验探索了将IVC时间用作提高压缩比时的控制参数。进行了测试以确定是否可以通过提高压缩比和延迟IVC来增加相对于压缩的扩展程度来实现效率收益。尽管IVC时序的变化提供了重要的控制权限,但未观察到效率的显着变化。延迟IVC与变量IVO结合使用,可以在压缩比较高时独立控制HCCI的负载和定相。还进行了测试以评估测得的排气温度对HCCI定相的重要性。 EVO与IVO和IVC一起作为第三个控制参数引入,以独立控制初始混合物组成,压缩功和排气温度。结果表明,测得的排气温度不是HCCI相位的良好指标,并暗示了传热到还原后的排气中的稳定作用。结果还提出了一组控制参数,这些参数可以以最小的自由度实现整个HCCI操作。

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