Mathematical Modeling of the Working Process of a Two-Stroke Engine with Countermoving Pistons

S. Kravchenko, O. Linkov, M. Shelestov, Alexander Bekaryuk, Eduard Bozhko
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Abstract

Simulation of the working process of an internal combustion engine is the basis for all further calculations and studies of the engine. Of particular relevance is the availability of an adequate mathematical model of the engine process due to the fact that due to the trend of continuous improvement of engine performance, it is necessary to take into account many influencing factors to obtain a satisfactory result. The most complex and dependent on many physicochemical parameters is the process of combustion of fuel in the engine. Models of combustion in diesel engines can be divided into three groups: detailed models; empirical and semipemirical models. The analysis of world experience in research and mathematical modeling of combustion process in internal combustion engines is performed in the work. The advantages and disadvantages of different mathematical models are indicated. It is proposed to use a semi-empirical mathematical model of combustion which describes the differential characteristic of the combustion rate by two curves corresponding to the periods of the first flash and diffusion combustion. Use of such model simplifies performance of calculations and at the same time allows to receive qualitative results considering many factors of influence.
带反动活塞的二冲程发动机工作过程的数学建模
内燃机工作过程的模拟是对发动机进行进一步计算和研究的基础。特别重要的是,由于发动机性能不断提高的趋势,需要考虑许多影响因素才能获得满意的结果,因此需要一个适当的发动机过程数学模型的可用性。最复杂和依赖于许多物理化学参数的是燃料在发动机中的燃烧过程。柴油机燃烧模型可分为三类:详细模型;经验和半化学模型。分析了国内外内燃机燃烧过程的研究经验,建立了内燃机燃烧过程的数学模型。指出了不同数学模型的优缺点。提出了一种半经验燃烧数学模型,该模型用两条曲线来描述燃烧速率的差异特性,这两条曲线对应于第一次闪燃和扩散燃烧的周期。这种模型的使用简化了计算性能,同时可以得到考虑多种影响因素的定性结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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