首页> 外文会议>ASME Internal Combustion Engine Division technical conference >AN EXPERIMENTAL AND MODELING STUDY INTO USING NORMAL AND ISO CETANE FUEL BLENDS AS A SURROGATE FOR A HYDRO-PROCESSED RENEWABLE DIESEL (HRD) FUEL
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AN EXPERIMENTAL AND MODELING STUDY INTO USING NORMAL AND ISO CETANE FUEL BLENDS AS A SURROGATE FOR A HYDRO-PROCESSED RENEWABLE DIESEL (HRD) FUEL

机译:水和可再生柴油(HRD)替代使用正十六烷和异十六烷燃料混合物作为替代品的实验和模型研究

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A new Hydro-processed Renewable Diesel (HRD) fuel is comprised of both straight chain and branched alkane fuel components. In an effort to find a research surrogate for this fuel, single cylinder engine testing was performed with various blends of n-hexadecane (cetane) and isocetane in order to find a binary surrogate mixture with similar performance characteristics to that of the HRD. A blend of approximately two-thirds n-hexadecane with one-third isocetane showed the most similar behavior based on conventional combustion metrics. Companion combustion modeling was then pursued using a combined detailed chemical kinetic mechanism for both n-hexadecane and isocetane. These modeling results show both the importance of isocetane in lengthening ignition delay, as well as the overall importance of chemical ignition delay as the dominating effect in the overall ignition delay of these binary blend fuels.
机译:一种新型的加氢处理的可再生柴油(HRD)燃料由直链和支链烷烃燃料组成。为了找到这种燃料的研究替代品,对正十六烷(十六烷)和异十六烷的各种混合物进行了单缸发动机测试,以便找到性能与HRD相似的二元替代混合物。基于常规燃烧指标,大约三分之二的正十六烷与三分之一的异十六烷的混合物显示出最相似的行为。然后使用组合的详细化学动力学机理对正十六烷和异十六烷进行伴侣燃烧建模。这些模型结果显示了异十六烷在延长点火延迟中的重要性,以及化学点火延迟在这些二元混合燃料总点火延迟中的主导作用中的总体重要性。

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