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Experimental investigation on the propagation of flow and flame in a confined combustion chamber equipped with a single-hole perforated plate

机译:一种封闭式燃烧室流动和火焰传播的实验研究,其配备有一个孔穿孔板

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The effects of the hole size and perforated plate position on the propagation of flame and flow and pressure oscillation were explored in a constant volume combustion chamber (CVCB) with a single-hole perforated plate. Stoichiometric hydrogen-air mixture was used in the experiments, and the propagation of the flame and jet flow were recorded by high-speed schlieren photography. The results demonstrated that the flame velocity firstly increases and then decreases with the increasing hole size. With the hole size of 13 mm, the flame velocity, peak pressure, and pressure oscillation reached the maximum under the current experimental conditions. Moreover, the influence of the position of the perforated plate was investigated. It was found that the jet flow before the flame front is prominently distinct when the perforated plate is in positions A and B, resulting in an apparent difference in the flame shape behind the perforated plate, which means that the movement of the jet flow plays a leading role in the development of the flame. In Position B, the flame front overlapped with the jet flow and has the same shape. Besides, an interesting phenomenon was captured: with perforated plate in Position B, a secondary flame front was generated with higher flame tip velocity before the primary flame front under the effect of the flame-vortex interaction. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:孔尺寸和穿孔板位置对火焰和流动和压力振荡传播的影响在恒定体积燃烧室(CVCB)中探索了具有单孔穿孔板的恒定体积燃烧室(CVCB)。在实验中使用了化学计量的氢气混合物,通过高速Schlieren摄影记录了火焰和喷射流动的繁殖。结果表明,火焰速度首先增加,然后随着孔尺寸的增加而降低。孔尺寸为13毫米,火焰速度,峰值压力和压力振荡在当前的实验条件下达到最大值。而且,研究了多孔板的位置的影响。发现当穿孔板位于位置A和B之前,火焰前部的喷射流动突出地不同,导致穿孔板后面的火焰形状的表观差异,这意味着喷射流动的运动效果在火焰的发展中的主要作用。在位置B中,火焰前沿与射流重叠并具有相同的形状。此外,捕获了一个有趣的现象:用位置B的穿孔板,在火焰 - 涡流相互作用的效果下,在主火焰前面的初级火焰前速度产生二次火焰前线。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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