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Tracer-LIF diagnostics: quantitative measurement of fuel concentration, temperature and fuel/air ratio in practical combustion systems

机译:Tracer-LIF诊断:实际燃烧系统中燃料浓度,温度和燃料/空气比的定量测量

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The safe, clean, and reliable operation of combustion devices depends to a large degree on the exact control of the fuel/air mixing process prior to ignition. Therefore, quantitative measurement techniques that characterize the state of the fresh gas mixture are crucial in modern combustion science and engineering. This paper presents the fundamental concepts for how to devise and apply quantitative measurement techniques for studies of fuel concentration, temperature, and fuel/air ratio in practical combustion systems, with some emphasis on internal combustion engines. The paper does not attempt to provide a full literature review of quantitative imaging diagnostics for practical combustion devices; rather it focuses on explaining the concepts and illustrating these with selected examples. These examples focus on application to primarily gaseous situations. The photophysics of organic molecules is presented in an overview followed by discussions on specific details of the temperature-, pressure-, and mixture-dependence of the laser-induced fluorescence strength of aliphatic ketones, like acetone and 3-pentanorie, and toluene. Models that describe the fluorescence are discussed and evaluated with respect to their functionality. Examples for quantitative applications are categorized in order of increased complexity. These examples include simple mixing experiments under isothermal and isobaric conditions, fuel/air mixing in engines, temperature measurements, and mixing studies where fuel and oxygen concentrations vary. A brief summary is given on measurements of fuel concentrations in multiphase systems, such as laser-induced exciplex spectroscopy. Potentially adverse effects that added tracers might have on mixture formation, combustion, and the faithful representation of the base fuel distribution are discussed. Finally, a brief section describes alternative techniques to tracer-based measurements that allow studies of fuel/air mixing processes in practical devices. The paper concludes with a section that addresses key issues that remain as challenges for continued research towards the improvement of quantitative, tracer-based LIF measurements.
机译:燃烧设备的安全,清洁和可靠运行在很大程度上取决于点火之前对燃料/空气混合过程的精确控制。因此,表征新鲜气体混合物状态的定量测量技术在现代燃烧科学和工程中至关重要。本文介绍了如何设计和应用定量测量技术以研究实际燃烧系统中的燃料浓度,温度和燃料/空气比的基本概念,其中有些侧重于内燃机。本文并未试图提供用于实际燃烧装置的定量成像诊断的完整文献综述。相反,它专注于解释概念并通过选定的示例进行说明。这些示例集中于主要用于气态情况。概述中介绍了有机分子的光物理性质,随后讨论了激光诱导的脂肪族酮(如丙酮和3-戊醛)和甲苯的荧光强度的温度,压力和混合物依赖性的具体细节。讨论和描述了描述荧光的模型,并对其功能进行了评估。定量应用的示例按复杂性增加的顺序进行分类。这些示例包括在等温和等压条件下的简单混合实验,发动机中的燃料/空气混合,温度测量以及燃料和氧气浓度变化的混合研究。简要总结了多相系统中燃料浓度的测量,例如激光诱导的激基复合光谱。讨论了添加的示踪剂可能对混合物的形成,燃烧和对基本燃料分布的忠实表示的潜在不利影响。最后,一个简短的部分描述了基于示踪剂的测量的替代技术,这些技术可以研究实际设备中的燃料/空气混合过程。本文以一个部分作为结尾,解决了关键问题,这些问题仍然是继续进行改进基于示踪剂的定量LIF测量的挑战。

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