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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Study on Soot Mass Fraction and Size Distribution in a Direct Injection Diesel Engine Using Particulate Size Mimic Soot Model
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Study on Soot Mass Fraction and Size Distribution in a Direct Injection Diesel Engine Using Particulate Size Mimic Soot Model

机译:颗粒尺寸模拟烟灰模型直喷式柴油机烟灰质量分数和尺寸分布研究

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With today's computing technology, research on soot particles using simulation works has become more preferable as a supplementary to the existing experimental methods. The objective of this study is to investigate the effect of different engine load conditions to in-cylinder soot particles formation. This is to clarify the relationship between soot mass fraction (SMF) and size distribution. The first section of the study is conducted by computational analysis using a detailed kinetics soot model, particulate size mimic (PSM), which is based on the concept of the discrete sectional method. The analysis is carried out within closed-cycle combustion environment which is from the inlet valve closing (IVC) to the exhaust valve opening (EVO). The next section is conducted by experimental work deliberately for validation purpose. The total soot mass obtained from the computational work during EVO is comparable to the calculated value by less than 13% error for all of the experimental cases. The soot size distribution measurement indicates that exhaust out particles are dominantly in the dual-mode size range, <10?nm and 11–30?nm. The relationship between the soot mass and size distribution demonstrates that soot mass fraction does not completely rely on soot size distribution as well as particle size range. In most of the cases, particles with the moderate size range (11–60 nm) hold the highest mass fraction during EVO. On the whole, this paper provides significant information that contributes key knowledge to indicate that soot mass fraction is not entirely dependent on soot size distribution as well as particle size range.
机译:利用当今的计算技术,使用模拟工程的烟灰粒子的研究变得更加优选作为现有实验方法的补充。本研究的目的是研究不同发动机负荷条件对缸内烟灰颗粒的影响。这是为了阐明烟灰质量分数(SMF)和尺寸分布之间的关系。该研究的第一部分是通过使用详细的动力学烟灰模型,微粒尺寸模拟(PSM)进行计算分析,这是基于离散截面方法的概念。该分析在闭环燃烧环境中进行,该燃烧环境是从入口阀关闭(IVC)到排气阀开口(EVO)。下一节是通过故意用于验证目的的实验工作来进行的。在EVO期间从计算工作获得的总烟灰质量与所有实验情况的计算值相当,对所有实验情况的误差相当。烟灰尺寸分布测量表明排气颗粒在双模尺寸范围内占主导地位,<10≤nm和11-30≤nm。烟灰质量和尺寸分布之间的关系表明烟灰质量分数不完全依赖于烟灰尺寸分布以及粒度范围。在大多数情况下,具有中等尺寸范围(11-60nm)的颗粒在EVO期间保持最高质量分数。总的来说,本文提供了有助于关键知识的重要信息,表明烟灰质量分数不完全取决于烟灰尺寸分布以及粒度范围。

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