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首页> 外文期刊>Progress in Energy and Combustion Science >Recent advances in laser absorption and shock tube methods for studies of combustion chemistry
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Recent advances in laser absorption and shock tube methods for studies of combustion chemistry

机译:用于燃烧化学研究的激光吸收和激波管方法的最新进展

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摘要

Recent advances in laser absorption and shock tube methodologies for studies of combustion chemistry are reviewed. First the principles of shock tube operation are discussed, and then an overview of shock tube diagnostic methods and experiments is covered. Recent shock tube developments include the use of driver inserts to counteract the small pressure gradient seen in conventional reflected shock wave experiments and the use of a constrained-reaction-volume strategy to enable the implementation of near-constant-pressure gasdynamic test conditions during energetic processes. Recent laser absorption developments include the use of a CO_2 laser absorption sensor to accurately monitor temperature during shock wave experiments, the use of multi-wavelength laser absorption strategies to simultaneously monitor multiple species time-histories, and the used of isotopic labeling strategies to identify individual reaction sites during the measurement of elementary reaction rate constants. The improved ability to accurately constrain the test conditions in shock tube experiments, combined with non-intrusive, species-sensitive and quantitative laser absorption diagnostics, is enabling experimenters to provide a new generation of high-quality experimental kinetics targets for combustion chemistry model validation and refinement The paper concludes with a brief discussion of newly emerging laser-diagnostic techniques and a summary of future research directions.
机译:综述了激光吸收和激波管方法学在燃烧化学研究中的最新进展。首先讨论了激波管的工作原理,然后概述了激波管的诊断方法和实验。冲击管的最新发展包括使用驱动器插入物来抵消常规反射冲击波实验中看到的小压力梯度,以及使用约束反应体积策略以在高能过程中实现接近恒定压力的气体动力学测试条件。近期的激光吸收发展包括:使用CO_2激光吸收传感器来精确地监测冲击波实验期间的温度,使用多波长激光吸收策略来同时监测多个物种的时间历史以及使用同位素标记策略来识别个体在测量基本反应速率常数时的反应位点。精确限制冲击管实验中的测试条件的能力与非侵入性,物种敏感和定量激光吸收诊断相结合,使实验人员能够提供新一代高质量实验动力学目标,用于燃烧化学模型验证和完善本文最后对新兴的激光诊断技术进行了简要讨论,并对未来的研究方向进行了总结。

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