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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Chemiluminescence based operating point control of domestic gas boilers with variable natural gas composition
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Chemiluminescence based operating point control of domestic gas boilers with variable natural gas composition

机译:基于化学发光的家用燃气锅炉运行点控制,可变天然气组成

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The current control strategy of domestic gas boilers optimizes the heating efficiency and pollutant gas emissions assuming a fixed fuel composition. However, larger and more frequent variations of gas composition are expected in the European natural gas network. New control systems capable of monitoring and regulating the flame equivalence ratio in real time are therefore necessary. The present work investigates one equivalence ratio sensing strategy by analyzing the flame chemiluminescence signal from a laminar premixed burner widely used in domestic gas boilers. The OH* chemiluminescence intensity is first identified as a reliable equivalence ratio indicator, valid for different natural gas composition scenarios with CH4 diluted by N-2 or CO2 or enriched by H-2, C2H6 or C3H8. These fuel mixtures are representative of biogas and hydrogen enriched natural gas. A demonstrative control loop is developed based on the OH* signal measured by a photomultiplier tube mounted with a bandpass optical filter. The system is tested by changing the equivalence ratio set value and the fuel composition. It is shown to be capable of regulating the equivalence ratio of these natural gas fuel blends with a good precision. The differences observed between the real and target values for the equivalence ratio phi are in most cases lower than vertical bar Delta phi vertical bar = 0.01. Only fuel blends with C3H8 lead to slightly larger errors of vertical bar Delta phi vertical bar = 0.03.
机译:目前燃气锅炉的控制策略优化了假设固定燃料组合物的加热效率和污染物气排放。然而,在欧洲天然气网络中预期越来越多的气体组合物变化。因此,需要实时监测和调节火焰等效率的新控制系统。本作者通过在国内燃气锅炉中广泛应用的层状预混燃烧器分析火焰化学发光信号来研究一种等效比感测策略。首先将OH *化学发光强度鉴定为可靠的等效比指示,适用于不同的天然气组成场景,其CH 4由N-2或CO 2稀释,或者由H-2,C 2 H 6或C3H8富集。这些燃料混合物代表沼气和富氢天然气。基于由安装有带通滤波器的光电倍增管测量的OH *信号,开发了说明性控制回路。通过改变等效比设定值和燃料组合来测试系统。它显示能够用良好的精度调节这些天然气燃料混合物的等效比。对等效率PHI的实际和目标值之间观察到的差异在大多数小于垂直条ΔPHI垂直条= 0.01的情况下。只有C3H8的燃料混合导致垂直条ΔPHI垂直条略大误差= 0.03。

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