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Heat transfer of a row of three butane/air flame jets impinging on a flat plate

机译:一排撞击在平板上的三束丁烷/空气火焰的传热

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Experiments were performed to investigate the heat transfer characteristics of a row of three premixed, laminar, butane/air flame jets impinging on a water-cooled flat plate. The between-jet interference was found to reduce the heat transfer rate in the jet-to-jet interacting zone due to the depressed combustion. The interference became stronger when the jet-to-jet spacing and/or the nozzle-to-plate distance were/was small. The positive pressure existed in the between-jet interacting zone caused the asymmetric flame and heat transfer distribution of the side jet. The meeting point of the spreading wall jets of the central and the side jets did not occur at the midpoint of the neighboring jets, but at a location shifted slightly outwards. The maximum local heat flux and the maximum area-averaged heat flux occurred at a moderate nozzle-to-plate distance of 5d with a moderate jet-to-jet spacing of 5d. The lowest area-averaged heat flux was produced when both the jet-to-jet spacing and the nozzle-to-plate distance were small. Comparing with a single jet under the same experimental conditions, the heat transfer rates in both the stagnation point and the maximum heat transfer point were shown to be enhanced in a row of three-jet-impingement system. The present study provided detailed information on the heat transfer characteristics of a row of three in-line impinging flame jets, which had rarely been reported in previous study.
机译:进行实验以研究撞击在水冷平板上的三排预混合层流丁烷/空气火焰射流的传热特性。发现由于压缩的燃烧,射流间干扰降低了射流间相互作用区域中的传热速率。当喷嘴到喷嘴的间距和/或喷嘴到板的距离较小时,干扰会更强。射流间相互作用区中存在的正压导致侧射流的火焰和传热分布不对称。中央射流和侧向射流的扩散壁射流的交汇点不在相邻射流的中点处发生,而是在稍微向外移动的位置发生。最大局部热通量和最大面积平均热通量出现在中等的喷嘴到印版距离为5d且中等的喷嘴到喷嘴间距为5d的情况下。当喷嘴到喷嘴的间距和喷嘴到板的距离都小时,产生的平均热量最低。与在相同实验条件下的单喷嘴相比,在一排三喷嘴撞击系统中,停滞点和最大传热点的传热速率均得到了提高。本研究提供了有关三排直列式冲击火焰射流的传热特性的详细信息,这在以前的研究中很少报道。

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