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Time-Resolved Multispectral Imaging of Combustion Reactions

机译:反应燃烧的时间分辨多光谱成像

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Thermal infrared imaging is a field of science that evolves rapidly. Scientists have used for years the simplest tool: thermal broadband cameras. These allow to perform target characterization in both the longwave (LWIR) and midwave (MWIR) infrared spectral range. Infrared thermal imaging is used for a wide range of applications, especially in the combustion domain. For example, it can be used to follow combustion reactions, in order to characterize the injection and the ignition in a combustion chamber or even to observe gases produced by a flare or smokestack. Most combustion gases, such as carbon dioxide (CO2), selectively absorb/emit infrared radiation at discrete energies, i.e. over a very narrow spectral range. Therefore, temperatures derived from broadband imaging are not reliable without prior knowledge of spectral emissivity. This information is not directly available from broadband images. However, spectral information is available using spectral filters. In this work, combustion analysis was carried out using a Telops MS-IR MW camera, which allows multispectral imaging at a high frame rate. A motorized filter wheel allowing synchronized acquisitions on eight (8) different channels was used to provide time-resolved multispectral imaging of combustion products of a candle in which black powder has been burnt to create a burst. It was then possible to estimate the temperature by modeling spectral profiles derived from information obtained with the different spectral filters. Comparison with temperatures obtained using conventional broadband imaging illustrates the benefits of time-resolved multispectral imaging for the characterization of combustion processes.
机译:热红外成像是一个迅速发展的科学领域。多年来,科学家一直使用最简单的工具:热宽带摄像机。这些允许在长波(LWIR)和中波(MWIR)红外光谱范围内执行目标表征。红外热成像技术被广泛应用,特别是在燃烧领域。例如,它可用于跟踪燃烧反应,以表征燃烧室中的喷射和点火,甚至观察火炬或烟囱产生的气体。大多数燃烧气体,例如二氧化碳(CO 2),以离散的能量,即在非常窄的光谱范围内,选择性地吸收/发射红外辐射。因此,在没有光谱发射率的先验知识的情况下,从宽带成像获得的温度是不可靠的。无法从宽带图像直接获得此信息。但是,可以使用光谱过滤器获得光谱信息。在这项工作中,燃烧分析是使用Telops MS-IR MW摄像机进行的,该摄像机允许以高帧频进行多光谱成像。使用允许在八(8)个不同通道上进行同步采集的电动滤光轮来提供蜡烛燃烧产物的时间分辨多光谱成像,该蜡烛中的黑火药已燃烧以产生爆炸。然后可以通过对光谱图进行建模来估算温度,该光谱图是从使用不同光谱滤镜获得的信息中得出的。与使用常规宽带成像获得的温度进行比较表明,时间分辨多光谱成像可用于表征燃烧过程。

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