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COMBUSTION FUNDAMENTALS AND CONCEPTS OF ADVANCED BURNER TECHNOLOGY

机译:先进燃烧器技术的燃烧原理和概念

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摘要

Traditional tasks and functions of burners installed in technical combustion systems are to supply fuel and air to the combustor, to atomise liquid fuel thus generating fuel sprays, to provide adequate fuel/air mixing and, resulting from this, to guarantee ignition stability, suitable geometrical flame shape and satisfactory burn-out. This must be achieved in most cases over a certain range of operational parameters, mainly of thermal power and air/fuel stoichiometry of the flame. During the last two decades, however, low emission demands with regard to CO, HC, soot and especially nitrogen oxide (NO, NO_2, N_2O) concentrations have gained great importance or even priority in developing and assessing the concept and the design of burners and combustion equipment. Beyond that, the development of tailored burners for particular high-temperature furnace and engine combustor systems has resulted in a broad diversification of burner operation characteristics and performance. This paper describes some characteristic examples and explains their features, advantages and limiting factors.
机译:安装在工业燃烧系统中的燃烧器的传统任务和功能是向燃烧室提供燃料和空气,使液体燃料雾化,从而产生燃料喷雾,提供足够的燃料/空气混合,并由此确保点火稳定性,合适的几何形状。火焰形状和令人满意的燃尽。在大多数情况下,必须在一定范围的运行参数范围内实现此目的,主要是火焰的热功率和空气/燃料化学计量。然而,在过去的二十年中,在开发和评估燃烧器和燃烧器的概念和设计时,对CO,HC,烟灰,尤其是氮氧化物(NO,NO_2,N_2O)浓度的低排放要求已变得非常重要,甚至是当务之急。燃烧设备。除此之外,为特定的高温炉和发动机燃烧器系统量身定制的燃烧器的开发已使燃烧器的操作特性和性能广泛多样化。本文介绍了一些典型示例,并解释了它们的特征,优点和限制因素。

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