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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Influence of spatial and temporal distribution of Turbulent Kinetic Energy on heat transfer coefficient in a light duty CI engine operating with Partially Premixed Combustion
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Influence of spatial and temporal distribution of Turbulent Kinetic Energy on heat transfer coefficient in a light duty CI engine operating with Partially Premixed Combustion

机译:湍流动能的空间和时间分布对具有部分预混燃烧的轻型CI发动机传热系数的影响

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Highlights?Heat transfer coefficient for gasoline PPC is assessed.?Heat transfer coefficient considers experimentally derived flow field parameters.?High TKE levels at bowl periphery and center due to fuel injection and combustion.?The greatest differences respect to motored case observed with single injection.AbstractEmission regulations together with the need of more fuel-efficient engines have driven the development of promising combustion concepts in compression ignition (CI) engines. Most of these combustion concepts, lead towards a lean and low temperature combustion potentially suitable to achieve lower emission and fuel consumption levels compared to conventional diesel combustion. In this framework, Partially Premixed Combustion (PPC) using gasoline as fuel is one of the most accepted concepts. There are numerous studies focused on studying concepts such as PPC from the emissions point of view. Nonetheless, there is a lack of knowledge regarding changes in heat transfer introduced by the use of these combustion concepts. It is worth noting that heat transfer can be considered as a key aspect behind possible engine performance improvements. Thus, the reliable estimation of this parameter is of considerable importance. Additionally, a better understanding of how events such as injection and combustion might affect heat transfer is also relevant.To gain insight into gasoline PPC heat transfer coefficient, its evolution during late compression and early expansion were studied. In particular, this work aims to analyze Turbulent Kinetic Energy (TKE) spatial and temporal evolution influence on heat transfer coefficient. The analysis is based on experimental TKE maps derived from Particle Image Velocimetry (PIV) data. For the heat transfer coefficient estimation a modified Woschni correlation has been used. Results from several injection strategies and a reference motored case have been analyzed. It has been found that injection strategy has a considerable influence on the TKE field and hence on heat transfer coefficient evolution.]]>
机译:<![cdata [ 亮点 评估汽油ppc的传热系数。 传热系数考虑通过实验衍生的流场参数。 碗周边和中心的高TKE水平由于燃油喷射和燃烧。 观察到的电动案例的最大差异单注射。 抽象 排放法规与更多燃油效率的引擎一起推动了在压缩点火(CI)发动机中有前途的燃烧概念的开发。与传统的柴油燃烧相比,大多数这些燃烧概念可能适合于实现较低的发射和燃料消耗水平。在该框架中,使用汽油作为燃料的部分预混燃烧(PPC)是最受欢迎的概念之一。有许多研究专注于研究从排放地点的研究概念,例如PPC。尽管如此,缺乏关于使用这些燃烧概念引入的传热变化的知识。值得注意的是,传热可以被认为是可能的发动机性能改进背后的关键方面。因此,该参数的可靠估计值相当重要。另外,更好地了解注射和燃烧等事件可能影响传热也是相关的。 以获得洞察力汽油PPC传热系数,研究了晚期压缩和早期扩增期间的演化。特别是,这项工作旨在分析对传热系数的湍流动能(TKE)空间和时间进化影响。该分析基于从粒子图像VELOCIMETRY(PIV)数据衍生的实验TKE映射。对于传热系数估计,已经使用了修改的WOSCHNI相关性。几种注射策略和参考电动案例的结果已经分析。已经发现,注射策略对TKE场具有相当大的影响,因此对传热系数进化具有相当大的影响。 ]]>

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