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Thermal performances and CO emissions of gas-fired cooker-top burners

机译:燃气灶具燃烧器的热性能和一氧化碳排放量

摘要

Domestic cooker-top burners operate at low pressure and low Reynolds numbers. They do not usually have a flue, and are fired with impinging premixed natural-gas/air flames. There are two major considerations in using such burners, namely, poor energy utilization and indoor-air pollution. Because of the large number of cooker-top burners being used, even a slight improvement in thermal performance resulting from a better design will lead to significant reductions of domestic and commercial energy consumptions. In view of the need to raise the thermal performance and to reduce indoor-air pollution, advanced statistical experimental designs have been applied in the present study to evaluate the individual and combined effects of the major cooker-top design parameters. The experimental study was carried out using a 4-factor and 3-level Box-Behnken design-method, utilizing a premixed gas-fired impinging-flame. A cooker-top burner, with circular nozzles with an inner diameter of 3 mm, was used in this experiment. Design parameters of the burner under consideration include Reynolds number, equivalence ratio, nozzle-to-plate distance, and jet-to-jet spacing. Based on an analysis of the experimental data, variations of the thermal efficiency and the carbon monoxide (CO) emission with each of the above mentioned parameters have been reported. Multiple regression models of the thermal efficiency and the CO emissions were obtained in terms of all the major design parameters. Some of the 2-factor interactions on the thermal efficiency and the CO emissions were significant. The findings are important for the designer of a fuel-efficient and environmentally-friendly cooker-top burner.
机译:家用炊具炉灶在低压和低雷诺数下运行。它们通常没有烟道,并且会与预混合的天然气/空气火焰一起燃烧。使用这种燃烧器有两个主要考虑因素,即能源利用率差和室内空气污染。由于使用了许多炊具式燃烧器,即使由于更好的设计而导致热性能略有改善,也将导致家用和商业能耗的显着降低。鉴于需要提高热性能并减少室内空气污染,本研究中已采用先进的统计实验设计来评估主要炊具顶部设计参数的单独作用和综合作用。实验研究是使用4因子和3级Box-Behnken设计方法进行的,该方法使用了预混合的燃气撞击火焰。在该实验中,使用了带有内径为3 mm的圆形喷嘴的炊具顶部燃烧器。所考虑的燃烧器的设计参数包括雷诺数,当量比,喷嘴到板的距离以及喷嘴到喷嘴的间距。根据对实验数据的分析,已经报道了热效率和一氧化碳(CO)排放随上述每个参数的变化。根据所有主要设计参数,获得了热效率和CO排放的多元回归模型。热效率和CO排放量的某些两因素相互作用非常重要。这些发现对于设计一种省油,环保的炊具式炉头非常重要。

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