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SOOT VOLUME FRACTION MEASUREMENTS IN A THREE-DIMENSIONAL LAMINAR DIFFUSION FLAME ESTABLISHED IN MICROGRAVITY

机译:建立在微重力下的三维层流扩散火焰中烟尘体积分数的测量

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摘要

A methodology for the estimation of the soot volume fraction in a three-dimensional laminar diffusion flame is presented. AH experiments are conducted in microgravity and have as objective producing quantitative data that can serve to estimate radiative heat transfer in flames representative of fires in spacecraft. The competitive nature of formation and oxidation of soot and its direct coupling with the streamlines (source of oxygen) require for these measurements to be conducted within the exact configuration. Thus three-dimensional measurements are needed. Ethylene is injected through a square porous burner and the oxidizer flows parallel to its surface. The methodology uses CH~* chemiluminescence measurements to correct for three-dimensional effects affecting light attenuation measurements. Corrected local soot concentrations are thus obtained. All experiments are conducted during parabolic flights and the parameters varied are fuel and oxidizer flow rates.
机译:提出了一种估算三维层流扩散火焰中烟尘体积分数的方法。 AH实验是在微重力下进行的,其目的是产生定量数据,这些数据可用于估计代表航天器火势的火焰中的辐射热传递。烟灰形成和氧化的竞争性质以及其与流线(氧气源)的直接耦合要求这些测量必须在精确的配置内进行。因此,需要进行三维测量。通过方形多孔燃烧器注入乙烯,氧化剂平行于其表面流动。该方法使用CH *化学发光测量来校正影响光衰减测量的三维效应。由此获得校正的局部烟灰浓度。所有实验都是在抛物线飞行中进行的,所改变的参数是燃料和氧化剂的流速。

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