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High-Temperature Air Combustion Phenomena and Its Thermodynamics

机译:高温空气燃烧现象及其热力学

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摘要

The fundamentals and thermodynamic analysis of high-temperature air combustion (HiTAC) technology is presented. The HiTAC is characterized by high temperature of combustion air having low oxygen concentration. This study provides a theoretical analysis of HiTAC process from the thermodynamic point of view. The results demonstrate the possibilities of reducing thermodynamic irreversibility of combustion by considering an oxygen-deficient combustion process that utilizes both gas and heat recirculations. HiTAC conditions reduce irreversibility. Furthermore, combustion with the use of oxygen (in place of air) is also analyzed. The results showed that a system, which utilizes oxygen as an oxidizer, results in higher first and second law efficiencies as compared to the case with air as the oxidizer. The entropy generation for an adiabatic combustion process is reduced by more than 60% due to the effect of either preheating or oxygen enrichment. This study is aimed at providing technical guidance to further improve efficiency of a combustion process, which shows very small temperature increases due to mild chemical reactions.
机译:介绍了高温空气燃烧(HiTAC)技术的基本原理和热力学分析。 HiTAC的特征在于具有低氧浓度的燃烧空气的高温。这项研究从热力学的角度提供了HiTAC工艺的理论分析。结果表明,通过考虑利用气体和热量再循环的缺氧燃烧过程,可以减少燃烧的热力学不可逆性。 HiTAC条件减少了不可逆性。此外,还分析了使用氧气(代替空气)的燃烧。结果表明,与使用空气作为氧化剂的情况相比,利用氧气作为氧化剂的系统可产生更高的第一定律和第二定律效率。由于预热或富氧的作用,绝热燃烧过程的熵产生减少了60%以上。这项研究旨在提供技术指导,以进一步提高燃烧过程的效率,这表明由于温和的化学反应,温度升高非常小。

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