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Droplet evaporation modeling by the distillation curve model: accounting for kerosene fuel and elevated pressures

机译:通过蒸馏曲线模型进行液滴蒸发建模:考虑到煤油燃料和高压

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摘要

The emission of jet engines is strongly affected by the fuel preparation process. Due to stringent emission standards, the development of low emission combustor concepts, like lean premixed prevaporized combustion or rich quench lean burn, is an important goal. For the design process of advanced combustors, numerical methods become more and more important. In order to provide an accurate prediction of the fuel preparation process, an exact numerical prediction of thermophysical processes is crucial. A numerically effective fuel droplet evaporation model is presented in the present paper which accounts for the description of multi-component fuels like kerosene. Fractional boiling is described by a single process variable: the molar weight. This way, the fractional distillation process during evaporation of kerosene droplets is taken into account. In addition, a novel method for modeling the properties of the fuel is provided: the property data are supplied as a function of the molar weight. Real gas effects are also taken into account, in order to achieve an accurate prediction at elevated pressures. The major advantage of this new model is that algebraic expressions are derived for the multi-component droplet vaporization. Thus, the present model combines both numerical efficiency and accuracy.
机译:喷气发动机的排放受燃料制备过程的强烈影响。由于严格的排放标准,低排放燃烧器概念的发展,例如稀薄的预混预蒸发燃烧或浓淬火稀薄的稀薄燃烧,是一个重要的目标。对于高级燃烧器的设计过程,数值方法变得越来越重要。为了提供燃料制备过程的准确预测,热物理过程的精确数值预测至关重要。本文提出了一种数值有效的燃料滴蒸发模型,该模型解释了煤油等多组分燃料的描述。分数沸腾由一个工艺变量:摩尔质量来描述。这样,考虑了煤油液滴蒸发过程中的分馏过程。此外,提供了一种用于对燃料的特性进行建模的新颖方法:根据摩尔质量提供特性数据。为了在升高的压力下获得准确的预测,还考虑了实际的气体效应。这个新模型的主要优点是可以为多组分液滴蒸发导出代数表达式。因此,本模型结合了数值效率和准确性。

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