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A study on the effects of air preheat on the combustion and heat transfer characteristics of bunsen flames

机译:空气预热对本生火焰燃烧和传热特性的影响研究

摘要

Existing designs of small-scale burners and domestic cookers have relied on open flame, where a large amount of heat is lost with flue gas. Flue Gas Recirculation (FGR) has been an effective technique for energy saving for large-scale industrial furnaces. Against this background, an experimental study was conducted to investigate the thermal, emission and heating performance of CH4-H2/air flames in terms of their dependence on both dilution effect (CO2 and N2) and preheat effect (initial reactant temperature from 20 °C to 100 °C). Testing of flame stability showed detrimental and favorable effects of dilution and preheat, respectively. Examination of flame height showed that under constant Re and Ф, the reaction cone is shorter at higher initial reactant temperature, indicative of enhanced burning velocity caused by preheat. Emission of CO and NOx was monotonically increased as the result of higher flame temperature due to preheat. The key question whether flame heating performance can be promoted or not is answered by detailed analysis of the radial heat flux configurations. The data reveals that the combined effects of dilution and preheat indeed induce higher heat transfer rate, thus theoretical evidence is provided for feasibility of adoption of FGR in domestic cookers.
机译:小型燃烧器和家用炊具的现有设计依赖于明火,在明火中烟气会大量损失热量。烟气再循环(FGR)已成为一种有效的技术,可用于大型工业炉的节能。在这种背景下,进行了一项实验研究,以研究CH4-H2 /空气火焰的热,发射和加热性能,取决于它们对稀释效应(CO2和N2)和预热效应(初始反应物温度从20°C起)的依赖性至100°C)。火焰稳定性测试分别显示了稀释和预热的不利影响。火焰高度检查表明,在恒定的Re和Ф下,较高的初始反应物温度下反应锥变短,表明预热导致燃烧速度加快。由于预热,火焰温度升高,导致CO和NOx的排放单调增加。径向热通量配置的详细分析回答了能否提高火焰加热性能的关键问题。数据表明,稀释和预热的综合作用确实会引起较高的传热速率,因此为家庭炊具采用FGR提供了理论依据。

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