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首页> 外文期刊>Fuel >On the initiation of blow-out from cooktop burner jets: A simplified energy-based description for the onset of laminar flame extinction in premixed hydrogen-enriched natural gas (HENG) systems
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On the initiation of blow-out from cooktop burner jets: A simplified energy-based description for the onset of laminar flame extinction in premixed hydrogen-enriched natural gas (HENG) systems

机译:关于从炉灶燃烧器喷射器开始吹出:在预混合的富含富含富含天然气(HENG)系统中的基于Laminar火焰灭绝的基于简化的能量的描述

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摘要

Due to the prohibitive financial expense and logistical difficulties of a wholesale changeover from natural gas to hydrogen, hydrogen-enriched natural gas (HENG) offers a more viable intermediate solution for offsetting the carbon dioxide output of domestic gas usage and reducing the blow-out susceptibility of natural gas flames. In order to formulate a practically useful description of the blow-out threshold, the present work addresses the minimum energy per unit volume of premixed gas required for the sustained combustion of HENG fuels with molar hydrogen concentrations between zero and 50 mol%. By considering a ring burner comprising circular burner jet apertures with diameters in the range 1.0-2.4 mm, this critical energy density was demonstrated to increase linearly with the mean velocity of the admitted gas premixture, approaching a value that was common to all of the investigated HENG compositions in the limit of zero flow. Furthermore, despite flame morphology varying substantially as a function of flow conditions, the visible surface area of critically stable flames consistently exhibited an empirical squared dependence on the power generated by combusting fuel. By combining these correlations, the onset of blow-out was shown to be well-approximated by a formula that relates the critical surface-averaged laminar burning velocity to the mean velocity of gas molecules at the burner jet. This model provides a simplified means of predicting blow-out conditions from measurable input parameters and could serve as an invaluable asset for the design of new HENG burner systems or the retrofitting of existing natural gas appliances.
机译:由于从天然气到氢气到氢气的批发财务费用和后勤困难,富含氢气的天然气(恒)提供了一种更加活泼的中间溶液,用于抵消国内气体使用的二氧化碳产量,降低漏洞易感性天然气火焰。为了制定对吹出阈值的实际有用描述,本作工作地解决了恒燃燃料持续燃烧所需的预混合气体的最小能量,以摩尔氢浓度为零和50mol%。通过考虑一个环形燃烧器,该环燃烧器在1.0-2.4mm范围内直径的圆形燃烧器喷射孔,证明了这种临界能量密度随着所录取的气体预混物的平均速度而导致线性增加,接近所有研究共同的值恒流在零流量的限制。此外,尽管火焰形态基本上随着流动条件的函数而变化,但是批定稳定的火焰的可见表面积始终表现出通过燃烧燃料产生的功率的经验方形依赖性。通过组合这些相关性,吹出的发作被示出为由配方近似地近似,该公式将临界表面平均层状燃烧速度与燃烧器射流的气体分子的平均速度相关。该模型提供了一种简化的方法,可以从可测量的输入参数预测吹出条件,并且可以作为新恒燃机系统设计的无价值资产或现有的天然气电器的改造。

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