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STUDIES ON A NEW HIGH-INTENSITY LOW-EMISSION BURNER

机译:新型高强度低排放燃烧器的研究

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This paper presents computational and experimental results on a new burner configuration with a mild combustion concept with heat release rates up to 10 MW/m{sup}3. The burner configuration is shown to achieve mild combustion by using air at ambient temperature at high recirculation rates (~250%-290%) both experimentally and computationally. The principal features of the configuration are: (1) a burner with forward exit for exhaust gases; (2) injection of gaseous fuel and air as multiple, alternate, peripheral highspeed jets at the bottom at ambient temperature, thus creating high enough recirculation rates of the hot combustion products into fresh incoming reactants; and (3) use of a suitable geometric artifice-a frustum of a cone to help recirculation. The computational studies have been used to reveal the details of the flow and to optimize the combustor geometry based on recirculation rates. Measures, involving root mean square temperature fluctuations, distribution of temperature and oxidizer concentration inside the proposed burner, and a classical turbulent diffusion jet flame, are used to distinguish between them quantitatively. The system, operated at heat release rates of 2 to 10 MW/m{sup}3 (compared to 0.02 to 0.32 MW/m{sup}3 in the earlier studies), shows a 10-15 dB reduction in noise in the mild combustion mode compared to a simple open-top burner and exhaust NO{sub}x emission below 10 ppm for a 3 kW burner with 10% excess air. The peak temperature is measured around 1750 K, approximately 300 K lower than the peak temperature in a conventional burner.
机译:本文介绍了一种新的燃烧器配置,具有温和燃烧概念的新燃烧器配置,其热释放速率高达10 mW / m {sup} 3。通过在实验和计算上以高再循环率(约250%-290%)在环境温度下使用空气来实现燃烧器配置来实现温和燃烧。配置的主要特点是:(1)带有向前出口的燃烧器用于废气; (2)将气体燃料和空气注入多个,交替,外周高速喷射在环境温度下的底部,从而产生足够高的热燃烧产物的热燃烧率为新鲜的入射反应物; (3)使用合适的几何技巧 - 锥体的截头锥,以帮助再循环。计算研究已经用于揭示流动的细节,并基于再循环速率优化燃烧器几何形状。涉及诸如拟议燃烧器内部的均方温度波动,温度和氧化剂浓度的措施,以及经典的湍流扩散喷射火焰,用于定量区分它们。以2至10mW / m {sup} 3的热释放速率运行的系统(与早期研究中的0.02〜0.32 mW / mW / m 3相比),在温和的噪音中显示出10-15 dB燃烧模式与简单的敞开燃烧器相比,对于具有10%过量的空气的3kW燃烧器,在10 ppm以下10 ppm的排气量相比。峰值温度约为1750 k,比传统燃烧器中的峰值温度低约300k。

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