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AN EXPERIMENTAL INVESTIGATION OF A FLUE GAS RECIRCULATION SYSTEM FOR ALUMINUM MELTING FURNACES

机译:铝熔炉烟气再循环系统的实验研究

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A flue gas recirculation (FGR) system for a combustion fired aluminum melting furnace is experimentally investigated. The FGR system flows combustion air in a turbulent jet within the flue gas stream, and the turbulent jet flow is collected in a tube at a distance from the jet exit. Entrainment of the flue gases as well as heat transfer between the flue gases and the jet occurs over the length of the exposed jet. Heat transfer between the flue gases and the jet, and the amount of flue gas entrained into the jet (derived from temperature, flow rate and oxygen fraction measurements) were measured as a function of nozzle exit velocity and the distance between the nozzle exit and collection tube. In addition to flue gas entrainment, a feel savings of up to 7%, due to heat transfer over the length of the jet, was projected from the measurements obtained.
机译:实验研究了一种用于燃烧燃烧铝熔融炉的烟道气再循环(FGR)系统。 FGR系统在烟道气流内的湍流射流中流动燃烧空气,并且湍流射流在距喷射出口的距离处收集在管中。烟道气以及烟道气和喷射之间的热传递在暴露的射流的长度上发生。作为喷嘴出口速度的函数测量烟道气和夹具之间的热传递,以及夹带进入射流(衍生自温度,流速和氧气分数测量)的烟道气的量,以及喷嘴退出和收集之间的距离管子。除了烟气夹带之外,由于传热在射流的长度上,感到节省高达7%,从获得的测量中投射。

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