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Heat transfer characteristics of three interacting methane/air flame jets impinging on a flat surface

机译:撞击在平面上的三个相互作用的甲烷/空气火焰射流的传热特性

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An experimental study has been conducted for three interacting methane/air flame jets (arranged in a triangular configuration) impinging normally on a flat surface. Surface heat flux distributions have been determined for various dimensionless inter-jet spacings (S/d = 3, 4, 6 and 7.58) and separation distances between the exit plane of the burners and the target plate (H/d = 2, 2.6, 5 and 7). All experiments were conducted for stoichiometric mixture at a Reynolds number of 800. The surface heat flux distributions were intimately related to flame shapes. For small inter-jet spacings and small separation distances, flames were deflected outward from the centroid of the triangular arrangement due to strong interaction between the jets. The heating was quite non-uniform at very large inter-jet spacings. Zones of low heat flux were obtained when the tip of inner reaction zones were intercepted by the plate (H/d = 2). There were sharp peaks in the heat flux distribution when the tips of the inner reaction zones just touched the impingement surface (H/d = 2.6). Heat flux distribution was non-uniform at small separation distances (H/d = 1 and 2.6). For the system of flame jets under consideration, the optimum configuration, considering the magnitude of the average heat flux and the uniformity in the heat flux distribution, was corresponding to H/d = 5 and S/d = 3.
机译:已经对通常撞击在平坦表面上的三个相互作用的甲烷/空气火焰喷口(以三角形配置)进行了实验研究。已经确定了各种无因次喷射间隔(S / d = 3、4、6和7.58)的表面热通量分布以及燃烧器出口平面与目标板之间的分隔距离(H / d = 2、2.6, 5和7)。所有实验都是针对化学计量的混合物,雷诺数为800。表面热通量分布与火焰形状密切相关。对于较小的射流间距和较小的分离距离,由于射流之间的强烈相互作用,火焰从三角形排列的质心向外偏转。在非常大的喷射间隔时,加热是非常不均匀的。当内部反应区的尖端被平板截获时,获得低热通量的区(H / d = 2)。当内部反应区的尖端刚好接触到撞击表面时,热通量分布出现一个尖峰(H / d = 2.6)。在较小的分离距离(H / d = 1和2.6)下,热通量分布不均匀。对于所考虑的火焰喷射系统,考虑平均热通量的大小和热通量分布的均匀性,最佳配置对应于H / d = 5和S / d = 3。

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