Theoretical Model of a Flow in a Tube With a Slit

Yukinobu Toda, Masataka Morimatsu, Y. Nishio, T. Ogawa
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引用次数: 2

Abstract

A tube-type gas burner consists of a straight tube with a slit along it and discharges an air-gas mixture through the slit to produce a flame. The flow velocity from the slit depends on the pressure in the tube and the pressure loss at the slit, and it varies in the longitudinal direction of the tube. The resulting uneven flame degrades the quality of the burner. In this study, we develop a one-dimensional theoretical model of the flow in a tube with a slit. To validate the result of the theoretical model, we also conduct experiments and numerical simulations for the same flow field. We applied this theoretical model to a flow in a tube, 1 m length, 40 mm in diameter, with a slit 2.5 mm wide. The end of the tube is closed. We also discuss the effect of the length of the burner on the unevenness.
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狭缝管内流动的理论模型
管式燃气燃烧器由一根沿其开有狭缝的直管组成,并通过狭缝排出空气-气体混合物以产生火焰。从狭缝流出的流速取决于管内压力和狭缝处的压力损失,并在管内纵向变化。由此产生的不均匀火焰降低了燃烧器的质量。在这项研究中,我们建立了一个有狭缝的管内流动的一维理论模型。为了验证理论模型的结果,我们还对相同的流场进行了实验和数值模拟。我们将这一理论模型应用于长1米、直径40毫米、狭缝宽2.5毫米的管道中的流动。管子的末端是封闭的。讨论了燃烧器长度对不均匀度的影响。
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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