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Hierarchical 1D/3D Approach for the Development of a Turbulent Combustion Model Applied to a VVA Turbocharged Engine. Part II: Combustion Model

机译:用于VVA涡轮增压发动机的湍流燃烧模型开发的分层1D / 3D方法。第二部分:燃烧模型

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摘要

As discussed in the part I of this paper, 3D models represent a useful tool for a detailed description of the mean and turbulent flow fields inside the engine cylinder. 3D results are utilized to develop and validate a 0D phenomenological turbulence model, sensitive to the variation of operative parameters such as valve phasing, valve lift, engine speed, etc. In part II of this paper, a 0D phenomenological combustion model is presented, as well. It is based on a fractal description of the flame front and is able to sense each of the fuel properties, the operating conditions (air-to-fuel ratio, spark advance, boost level) and the combustion chamber geometry. In addition, it is capable to properly handle different turbulence levels predicted by means of the turbulence model presented in the part I. The turbulence and combustion models are included, through user routines, in the commercial software GT-Power". With reference to a small twin-cylinder VVA turbocharged engine, the turbulence/combustion model, once properly tuned, is finally used to calculate in-cylinder pressure traces, rate of heat release and overall engine performance at full load operations and brake specific fuel consumption at part load, as well. An excellent agreement between numerical forecasts and experimental evidence is obtained.
机译:如本文第一部分所述,3D模型代表了一种有用的工具,用于详细描述发动机气缸内的平均和湍流场。利用3D结果来开发和验证0D现象湍流模型,该模型对诸如气门相位,气门升程,发动机转速等操作参数的变化敏感。在本文的第二部分中,提出了一个0D现象燃烧模型。好。它基于对火焰前锋的分形描述,并且能够感知每种燃料特性,运行条件​​(空燃比,火花提前,增压水平)和燃烧室几何形状。此外,它能够适当地处理通过第一部分中介绍的湍流模型预测的不同湍流水平。湍流和燃烧模型通过用户例程包含在商业软件GT-Power中。小型双缸VVA涡轮增压发动机,经过适当调整后的湍流/燃烧模型最终用于计算缸内压力曲线,满负荷运行时的放热率和整体发动机性能,以及部分负荷下的制动比油耗,在数值预报和实验证据之间也取得了很好的一致性。

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