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首页> 外文期刊>Chemical Engineering and Processing >Estimation of LOC (limiting oxygen concentration) of fuel-air-inert mixtures at elevated temperatures by means of adiabatic flame temperatures
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Estimation of LOC (limiting oxygen concentration) of fuel-air-inert mixtures at elevated temperatures by means of adiabatic flame temperatures

机译:通过绝热火焰温度估算燃料-空气-惰性混合物的LOC(极限氧气浓度)

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摘要

The limiting values of fuel concentration in a flammable fuel-air mixture are the LEL (lower explosion limit) and UEL (upper explosion limit).The addition of an inert component to fuel/air mixtures determines the increase of LEL and decrease of UEL,until these values finally merge at the inerting point.The maximum oxygen amount of a non-flammable fuel-air-inert mixture is the LOC (limiting oxygen concentration),an important safety characteristics.The investigation of a comprehensive set of flammability data at elevated temperatures and ambient pressure taken from literature sources was made for systems containing nitrogen,carbon dioxide and water(vapour) as inert components,at 100 deg ,200 deg and 250 deg C.The adiabatic flame temperatures at LEL (CAFT~(LEL)) and LOC (CAFT~(LOC)) were calculated by taking into account the dissociation of gases within the flame.A linear correlation of CAFT~(LOC) versus CAFT~(LEL) was empirically derived for the examined systems.The slope and intercept of the correlation are dependent on temperature and on nature of the inert gas.The correlation allows the development of a simple procedure for estimating LOC,when the LEL of fuel-air and the equivalence ratio of the fuel-air-inert mixture at the inerting point are known.Knowing the scarce information concerning the flammability of fuel-air-inert mixtures at temperatures higher than ambient,the proposed procedure brings about an useful tool for estimation of LOC.
机译:易燃燃料-空气混合物中燃料浓度的极限值为LEL(爆炸下限)和UEL(爆炸上限)。向燃料/空气混合物中添加惰性组分决定了LEL的升高和UEL的降低,直到这些值最终在惰化点合并。不易燃的燃料-空气-惰性混合物的最大氧气量是LOC(极限氧气浓度),这是重要的安全特性。在高温下对一组完整的可燃性数据进行研究以惰性气体中氮气,二氧化碳和水(蒸气)为惰性成分的系统的温度和环境压力取自文献资料,温度分别为100摄氏度,200摄氏度和250摄氏度.LEL的绝热火焰温度(CAFT〜(LEL))通过考虑火焰中气体的离解来计算LOC(CAFT〜(LOC)),并根据经验得出CAFT〜(LOC)与CAFT〜(LEL)的线性关系。 Ø f的相关性取决于温度和惰性气体的性质。当惰性气体时,燃料-空气的LEL和燃料-空气-惰性混合物的当量比时,这种相关性允许开发一种简单的LOC估算程序。知道有关燃料-空气-惰性混合物在高于环境温度下的可燃性的稀缺信息时,提出的程序为估算LOC提供了有用的工具。

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