Experimental Study on Double Jet Flames with Different Nozzle Diameters

Zilong Rui, Kuibin Zhou, Ruixing Dong, Xia Shi
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Abstract

Double jet flames are commonly observed in the energy industry. A facility consisting of a double jet flames apparatus, was designed to experimentally simulate the interaction of double jet fires with different spaces and nozzle diameters. It has been found that the exit momentum, nozzle diameters and nozzle spacing significantly affect the flame behavior. The experimental results show that the flame merging probability (Pm) of double jet fires with different nozzle diameters can be fitted with dimensionless parameters that couple the Froude number(Fr) and the distance between fire sources. Additionally, it has been observed that the difference in height between the two flames can be used as a parameter to determine the correlation between flame height and the distance to the nozzle center.
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不同喷嘴直径的双喷射火焰实验研究
双喷射火焰是能源工业中常见的现象。设计了一种由双喷射火焰装置组成的设备,用于实验模拟不同空间和喷嘴直径的双喷射火焰的相互作用。实验发现,出口动量、喷嘴直径和喷嘴间距对火焰行为有显著影响。实验结果表明,不同喷嘴直径的双喷射火焰的火焰合并概率(Pm)可与弗劳德数(Fr)和火源间距等无量纲参数进行拟合。此外,还观察到两个火焰之间的高度差可用作参数,以确定火焰高度与喷嘴中心距离之间的相关性。
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