A Perspective on Combustion-Driven Flows With Circulation

F. Battaglia, R. Rehm, H. Baum, Mohamed I. Hassan, Kozo Saito
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Abstract

Perhaps the most dramatic example of surprising behavior when circulation is imposed on a combustion-driven flow is the fire whirl, where the burning gases form a tall slender column. Relatively few studies have addressed the influence of circulation on the development of combustion-driven flows. Three dimensionless parameters characterize this interplay: the Froude number, the swirl number and the Reynolds number. It is surprising that for most studies, even with plausible assumptions concerning the experiments, not enough information is given to determine the values of these parameters. We will experimentally reconstruct these studies in an effort to characterize parametrically these interactions. Both buoyancy-driven and momentum-driven combustion processes will be investigated to determine the influence of circulation. Theoretical studies will occur in conjunction to provide the most complete parametric investigation.
燃烧驱动循环流动的观点
当循环作用于燃烧驱动的流动时,最引人注目的令人惊讶的行为可能是火焰漩涡,在那里燃烧的气体形成了一个细长的高柱。相对较少的研究涉及循环对燃烧驱动流动发展的影响。三个无量纲参数表征了这种相互作用:弗劳德数、旋流数和雷诺数。令人惊讶的是,对于大多数研究,即使对实验有合理的假设,也没有提供足够的信息来确定这些参数的值。我们将实验重建这些研究,以努力表征这些相互作用的参数化。将研究浮力驱动和动量驱动的燃烧过程,以确定循环的影响。理论研究将同时进行,以提供最完整的参数调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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