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Numerical Investigation of Laminar Burning Velocities of High Octane Fuel Blends Containing Ethanol

机译:含乙醇的高辛烷燃料混合物层层燃烧速度的数值研究

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Recently, fuels containing ethanol have become more and more important for spark ignition engines. Fuels with up to 10 vol.-% ethanol can be used in most spark ignition engines without technical modification. These fuels have been introduced in many countries already. Alternatively, for fuels with higher amounts of ethanol so-called flex fuel vehicles (FFV) exist. One of the most important quantities characterizing a fuel is the laminar burning velocity. To account for the new fuels with respect to engine design, reliable data need to be existent. Especially for engine simulations, various combustion models have been introduced which rely on the laminar burning velocity as the physical quantity describing the progress of chemical reactions, diffusion, and heat conduction. However, there is very few data available in the literature for fuels containing ethanol, especially at high pressures. A detailed chemical kinetic mechanism for iso-octane, n-heptane, and ethanol is used to calculate laminar burning velocities under engine-relevant conditions. The results are validated against data from literature and new experimental measurements using the closed-vessel bomb method. Finally, based on the results obtained, the effect of ethanol blended to standard fuels is analyzed.
机译:最近,含有乙醇的燃料对火花点火发动机变得越来越重要。高达10体积的燃料.-%乙醇可以在大多数火花点火发动机中使用,而无需技术修改。这些燃料已经在许多国家推出。或者,对于存在较高量的乙醇所谓的弯曲燃料燃料(FFV)的燃料。表征燃料的最重要的量之一是层流燃烧速度。要考虑到发动机设计的新燃料,需要存在可靠的数据。特别是对于发动机模拟,已经引入了各种燃烧模型,其依赖于层状燃烧速度作为描述化学反应,扩散和热传导进程的物理量。然而,在含乙醇的燃料中有很少的数据可用,特别是在高压下。用于异辛烷,正庚烷和乙醇的详细化学动力学机制用于在发动机相关条件下计算层状燃烧速度。结果通过封闭式磁体炸弹方法对来自文献和新的实验测量的数据进行验证。最后,基于所得的结果,分析了将乙醇混合到标准燃料的作用。

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