EXPERIMENTAL RESULTS ON THE IMPLEMENTATION AND USE OF RECOVERY BURNERS

Dumitru Deonise, A. Ioana, L. Paunescu, M. Pollifroni, C. Deonise, Florin-Stefan Petcu, Ionela Luminita Canuta
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引用次数: 0

Abstract

The article presents the main aspects of the implementation, use and pilot and industrial experiments of some self-contained recovery burners. The results of pilot and industrial experiments of these burners have argued and quantified their energy efficiency. This efficiency consists mainly in an economy of specific fuel consumption (natural gas and / or coke gas) of approx. 25-35%. Other advantages of using recuperative burners are: ensuring a higher temperature in the hearth, reducing the duration of the processing cycle and thus increasing labor productivity. All these advantages of using recuperative burners are based on their operating principle, which consists in preheating the oxidizer (combustion air) by recovering an important part of the enthalpy of its own flue gases. This recovery is done in an energy recuperator designed right in the body of the recuperative burner. Due to this important aspect, the recovery burner is part of the Primary Energy Recovery (REP) category.
回收燃烧器实施和使用的实验结果
本文介绍了一些自备回收燃烧器的实施、使用、中试和工业试验的主要方面。这些燃烧器的中试和工业试验结果对其能源效率进行了论证和量化。这种效率主要在于约25-35%的比燃料消耗(天然气和/或焦炉气)的经济性。使用回收燃烧器的其他优点是:确保炉膛温度更高,缩短加工周期,从而提高劳动生产率。使用回收燃烧器的所有这些优点都基于其工作原理,该原理包括通过回收其自身烟气的重要部分焓来预热氧化器(燃烧空气)。这种回收是在能量回收器中完成的,该能量回收器设计在回收燃烧器的主体中。由于这一重要方面,回收燃烧器属于一次能源回收(REP)类别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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