在规定混合气形成规律下,对强制输送柴油机燃烧过程进行了模拟

V. Kamaltdinov, V. Markov, I. O. Lysov, A. E. Popov, A. E. Smolij
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摘要

在化学动力学方程的基础上,建立了一种新的燃料燃烧过程单区模型,该模型更详细地考虑了内燃机燃烧室内部过程的特点。燃烧过程被认为是一组连续的氧化反应的二氧化碳和水的活性燃料分子群按照阿累尼乌斯定律进行。进入反应的燃料活性分子数取决于燃料分子总数、当前混合物温度和条件活化能,而活化能的变化取决于燃烧燃料的比例。假定这组活性分子氧化的条件持续时间不仅取决于燃料分子的总数,还取决于燃烧室的体积、氧分子的数量、惰性组分的分子数量和燃烧室内的湍流。在每组活性燃料分子氧化过程中释放的热量通过燃料的较低燃烧热来确定,并用于增加燃烧区混合物的温度和压力。在计算的每一步中,由于燃料耗尽,所有物质的分子数都得到了修正。该模型的一个特点是引入了一个新的参数,该参数考虑了分子水平上的时间因素,即燃料活性分子氧化反应的常规持续时间。本文以一个新的数学模型为基础,编制了具有一定混合气形成规律的加速柴油机工况循环计算程序。计算了增压空气冷却器后的新鲜充液温度对增压柴油机在360 ~ 430k范围内占空比的影响。根据计算结果,确定在温度为360 K时达到最佳的工作循环指标特性。计算得到了气缸内压力指示图和热生成规律,与已知实验数据相吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of combustion process in the forced transport diesel engine with the prescribed law of mixture formation
There was developed a new single-zone model of the fuel combustion process, based on the equations of chemical kinetics, which takes into account in more detail the features of the internal chamber processes of internal combustion engines. The combustion process is considered as a set of successive oxidation reactions to carbon dioxide and water of groups of active fuel molecules proceeding according to the Arrhenius law. The number of active molecules of fuel entering into the reaction depends on the total number of fuel molecules, the current mixture temperature and the conditional activation energy, varying depending on the fraction of burned fuel. The conditional duration of oxidation of this group of active molecules is assumed to depend not only on the total number of fuel molecules, but also on the volume of the combustion chamber, the number of oxygen molecules, the number of molecules of inert components and turbulence inside the combustion chamber. The heat released during the oxidation of each group of active fuel molecules is determined through the lower heat of combustion of the fuel and is expended to increase the temperature and pressure of the mixture in the combustion zone. At each step of the calculation, the number of molecules of all substances is corrected as a result of fuel burn-out. A special feature of the model is the introduction of a new parameter that takes into account the time factor at the molecular level, the conventional duration of the oxidation reaction of the active molecules of the fuel. A new mathematical model is used as the basis for the algorithm for the developed program for calculating the operating cycle of an accelerated diesel engine with a prescribed law of mixture formation. Calculations of the influence of the temperature of the fresh charge after the charge air cooler on the duty cycle of the forced diesel in the range from 360 to 430 K are performed. According to the results of the calculation, it is established that the best indicator characteristics of the working cycle are reached at a temperature of 360 K. Indicator diagrams of pressure in the cylinder and the laws of heat generation, obtained by calculation correspond with known experimental data.
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