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首页> 外文期刊>International Journal of Thermal Sciences >Study of flow field and heat transfer characteristics for an interacting pair of counter-rotating dual-swirling impinging flames
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Study of flow field and heat transfer characteristics for an interacting pair of counter-rotating dual-swirling impinging flames

机译:对撞击双旋转撞击火焰的相互作用对的流场和传热特性研究

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Experimental and numerical studies have been conducted to investigate the flow field and heat transfer characteristics of a pair of counter rotating dual-swirling flames impinging on a flat surface. Effect of separation distance (H/D-h 3, 4, 6 and 8), inter-jet spacings (S/D-h - 4, 7 and 10) and Reynolds number on flow interactions and impingement heat transfer have been studied under stoichiometric conditions. The inner non-swirling flames are seen to bend towards interacting side due to asymmetric interactions developed in a pair of dual-swirling flames. Commercial computational fluid dynamics (CFD) code (FLUENT (R)) has been used to simulate the interacting dual-swirling impinging flames. Numerical simulation predicted the deflection of inner flames to be primarily due to large distorted RCZ developed from asymmetric interactions. Comparisons of co-and-counter swirling configurations suggest that the presence of plate has a stronger influence on flow structure of impinging flames than sign of rotation. High resolution heat fluxes have been obtained using steady state 1-D heat balance from temperature readings obtained on rear side of quartz impingement plate through IR thermal camera. 1-D heat balance has been corrected for lateral conduction taking place inside the impingement plate using an iterative procedure. For counter swirl case, cross-flow leaves as a straight flow along the transverse direction due to the nature of interactions. Cross-flow causes heat flux contours in the interaction region to be asymmetric and preferential heating is observed along the transverse direction. The increase in Re(o) causes wider flame spread and severe interactions result in increased tendency for preferential heating of the impingement plate. High average heat fluxes are obtained at smallest H/Dh and S/Dh whereas minimum relative deviation is observed at S/D-h - 10 for H/D-h - 4.
机译:已经进行了实验和数值研究,以研究一种反旋转双旋转火焰的流场和传热特性,其撞击平坦表面。在化学计量条件下,研究了分离距离(H / D-H 3,4,6和8),射流间距(S / D-H-4,7和10)和雷诺数,并进行了流动相互作用和冲击热传递的雷诺数。由于在一对双旋转火焰中产生的不对称相互作用,内部不旋转的火焰被视为弯曲朝向相互作用的侧。商业计算流体动力学(CFD)代码(流利(R))已被用于模拟撞击火焰的相互作用。数值模拟预测内火焰的偏转主要是由于从不对称交互产生的大型扭转RCz。协同和计数器旋流配置的比较表明,板的存在对撞击火焰的流动结构的影响比旋转符号撞击。使用通过IR热敏摄像机在石英冲击板后侧获得的温度读数获得高分辨率热通量。使用迭代程序在冲击板内进行横向传导,已经校正了1-D的热平衡。对于计数器旋流,由于相互作用的性质,沿横向的交叉流动叶片沿横向流动。交叉流导致在相互作用区域中导致热通量轮廓沿横向观察到不对称的,优先加热。 Re(O)的增加导致更宽的火焰扩散和严重的相互作用导致撞击板优先加热的增加趋势。在最小的H / DH和S / DH下获得高平均热通量,而H / D-H-4的S / D-H-10观察到最小相对偏差。

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