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Efficiency analysis of air-fuel and oxy-fuel combustion in a reheating furnace

机译:加热炉中空气和氧气燃烧的效率分析

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This study numerically verified the enhanced efficiency of a steel reheating furnace when applying oxy-fuel combustion instead of air-fuel combustion. Only radiation heat transfer was considered to analyze the periodically transient slab heating for an axial-fired furnace. The radiation field was computed without flow field calculation by dividing the entire furnace into ten subzones of which the temperatures were calculated by taking the overall heat balance for all the subzones. A total of five cases, 2 for air-fuels and 3 for oxy-fuels, was analyzed to compare the slab heating behavior between air-fuel and oxy-fuel combustion. The modified 5-gas WSGGM was used for oxy-fuel combustion cases to fulfill the characteristics of CO2and H2O enriched medium, while ordinary 4-gas WSGGM was used for air-fuel combustion cases. From the efficiency analysis for the total of five cases, it was predicted that oxy-fuel combustion gave an approximately 50% enhancement in efficiency compared to air-fuel combustion.
机译:这项研究数值验证了采用氧气燃料燃烧而不是空气燃料燃烧时钢制加热炉的效率提高。仅考虑辐射传热来分析轴向燃烧炉的周期性瞬态板坯加热。通过将整个炉子划分为十个分区来计算辐射场,而无需进行流场计算,并通过获取所有分区的总热量平衡来计算温度。总共分析了5个案例,其中2个是空气燃料,而3个是氧燃料,以比较空气燃料和氧燃料燃烧之间的平板加热行为。改性的5-气体WSGGM用于氧燃料燃烧箱,以满足CO2和H2O富集介质的特性,而普通的4-气体WSGGM用于空气燃料燃烧箱。从总共五种情况的效率分析中,可以预测,与空气燃料燃烧相比,含氧燃料燃烧的效率提高了约50%。

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