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Heat transfer and wall pressure characteristics of a twin premixed butane/air flame jets

机译:双预混合丁烷/空气火焰喷嘴的传热和壁压特性

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Experimental studies were carried out to investigate the flame shape and the heat transfer and wall pressure characteristics of a pair of laminar premixed butane/air flame jets impinging vertically upon a horizontal water-cooled flat plate at jet Reynolds numbers of 800, 1000 and 1200, respectively. Equivalence ratio of the butane/air mixture was maintained constantly at unity. The flame shape, the pressure distribution on the impingement plate and the heal transfer from the flame to the plate were greatly influenced by the interference occurred between the two flame jets. This interference caused a sharp pressure peak at the between-jet midpoint and the positive pressures at the between-jet area, which led to the separation of the wall jet from the impingement plate after collision. Such interference became more significant when the non-dimensional jet-to-jet spacing (S/d) and the nozzle-to-plate distance (H/d) were reduced. Heat transfer in the interaction zone between the jets was at the lowest rate due to this interference at the smallest S/d ratio of 2.6, resulting from the separation of the high-temperature inner reaction zone of the flame from the impingement plate. On the other hand, the interference enhanced the heat transfer in the interaction zone between the jets when the S/d ratio was greater than 5, by enhancing the heat transfer coefficient. The average heal flux of the impingement plate was found to increase significantly with the increasing H/d ratio until H/d = 6. The present study provided detailed information on flame shape and the heat transfer and wall pressure characteristics of a twin laminar pre-mixed impinging circular flame jets, which has rarely been reported in previous studies.
机译:进行了实验研究,研究了一对层流预混合丁烷/空气火焰射流的火焰形状,传热和壁压特性,该射流垂直冲击雷诺数分别为800、1000和1200的水平水冷平板,分别。丁烷/空气混合物的当量比恒定保持恒定。火焰形状,冲击板上的压力分布以及从火焰到板的愈合转移都受到两个火焰喷口之间的干扰的极大影响。这种干扰在喷口之间的中点产生了一个尖锐的压力峰值,在喷口之间的区域造成了正压力,从而导致壁喷在碰撞后从冲击板上分离。当减小无量纲的喷射间距(S / d)和喷嘴到板的距离(H / d)时,这种干扰变得更加明显。由于这种干扰的最小S / d比为2.6,因此在射流之间的相互作用区域中的传热速率最低,这是由于火焰的高温内部反应区域与冲击板分离所致。另一方面,当S / d比大于5时,干涉通过提高传热系数而增强了射流之间的相互作用区域中的传热。发现冲击板的平均愈合通量随着H / d比的增加而显着增加,直到H / d =6。本研究提供了有关火焰形状,双层流预热管的传热和壁压特性的详细信息。混合撞击圆形火焰射流,以前的研究很少报道。

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