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The Benefits of Increasing Fuel Octane Number on Gasoline Engine Efficiency: A Literature Review

机译:增加燃料辛烷值对汽油发动机效率的好处:文献综述

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The overall objectives of this study are to establish the relationship between a spark ignition, or Otto cycle, engine energy efficiency and the octane number (and potentially, the composition) of the fuel through a comprehensive review of recently published literature. The efficiency of the ideal Otto cycle is a function of the compression ratio (CR), but increasing compression ratio is limited by the onset of knock, which can be prevented by increasing fuel octane number. Hence, in an ideal case, there is a direct connection between engine efficiency and fuel octane number. In the real world, other factors also contribute to the relationship and spark timing is the primary control variable that affects both knock and efficiency. The literature review found that the relationship between octane number and efficiency was influenced by a number of intermediate variables covering engine type, operating condition, and fuel formulation. Hence, it was not possible to simply collate the data from the papers and develop an average relationship; considerable effort was required to organize the reported data into subsets of similar engine types and operating conditions, and to convert the different data metrics into a comparable set of metrics. The analysis was also assisted by inputs from technical experts at three auto-manufacturers obtained from interviews. Experts at all three auto-manufacturers interviewed suggested that this analysis use only the results from the engine studies because they anticipated that in vehicle studies, many variables were vehicle calibration dependent and therefore, largely uncontrolled. As a result, this review focuses on published data from engine tests where all or most of the data on variables relevant to the study was controlled and/ or documented, but data from vehicle studies were also reviewed for the CRC study to confirm the findings from engine tests. Due to the fact that many other intermediate variables affect the absolute relationship between compression ratio, fuel octane and efficiency, the focus was narrowed to evaluate the marginal effect of increasing CR on octane number requirement and engine efficiency, while holding other parameters not directly linked by geometry to CR nearly constant. This focus does not imply that other parameters are not significant and their influences are mentioned but not explored in detail in this paper. The CRC study[1] completed in 2012 was updated for the Department of Energy in 2016, and the results of both studies are incorporated into this paper.
机译:本研究的整体目标是通过全面审查最近发表的文献来建立火花点火或奥托周期,发动机能量效率和辛烷值(以及潜在,组合)之间的关系。理想奥托循环的效率是压缩比(Cr)的函数,但是压缩比的增加受爆震开始的限制,这可以通过增加燃料辛烷值来防止。因此,在理想情况下,发动机效率和燃料辛烷值之间存在直接连接。在现实世界中,其他因素也有助于关系,火花时序是影响爆震和效率的主要控制变量。文献综述发现,辛烷值和效率之间的关系受到覆盖发动机类型,操作条件和燃料制剂的许多中间变量的影响。因此,无法简单地将数据从论文中融为一体并发展平均关系;需要相当大的努力来将报告的数据组织成类似的发动机类型和操作条件的子集,并将不同的数据指标转换为可比的度量标准集。该分析还通过技术专家的投入在从访谈中获得的三家汽车制造商的投入提供帮助。所有三个自动制造商的专家都建议,这种分析仅使用发动机研究的结果,因为他们预期在车辆研究中,许多变量是依赖于车辆校准,因此很大程度上是不受控制的。结果,该综述侧重于从发动机测试中发布的数据,其中控制和/或记录了与该研究相关的变量的所有数据,但还对CRC研究审查了车辆研究的数据,以确认调查结果发动机测试。由于许多其他中间变量影响压缩比,燃料辛烷值和效率之间的绝对关系,焦点变窄,以评估CR在辛烷值要求和发动机效率上增加的边际效果,同时持有不直接连接的其他参数几何到Cr几乎恒定。这种重点并不意味着其他参数并不重要,并且在本文中提到但未详细探讨它们的影响。 2012年完成的CRC研究[1]于2016年为能源部门更新,这两项研究的结果都纳入了本文。

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