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Design Features of Optically Accessible Engines for Flow and Combustion Studies - A Review

机译:流动和燃烧研究光学访问发动机的设计特点 - 综述

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For long time, the measurement of spatially and temporally varying quantities like in-cylinder flow, mixing, and burning in an internal combustion engine remained impossible due to the lack of access to the engine cylinder. Hence, for quite some time, in-cylinder pressure remained the only quantity that could be temporally measured during an engine cycle, and the variations of quantities like temperature, heat release deduced from it. However, to guide modern engine developments for improved fuel economy and reduced emissions, understanding the intricacies of in-cylinder processes are essential. The advent of optical engine in conjunction with laser-based diagnostic techniques enabled measurement of various in-cylinder processes and study their influences on the combustion process. This paper highlights some key design features of optically accessible engines for flow and combustion studies.
机译:长期以来,由于缺乏对发动机筒的进入,在内燃机中的气缸流动,混合和燃烧如缸内流动,混合和燃烧等空间和时间变化的量仍然不可能。因此,对于相当长的一段时间,缸内压力仍然是在发动机循环期间可以在时间上测量的唯一数量,以及从中推导出的量的量的数量的变化。但是,为了引导现代发动机发展,以改善燃油经济性和减少排放,了解缸内过程的复杂性是必不可少的。光学引擎的出现与基于激光的诊断技术相结合,使得测量各种气缸过程并研究其对燃烧过程的影响。本文突出了光学通风的一些关键设计特征,用于流动和燃烧研究。

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