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首页> 外文期刊>Fuel Processing Technology >Simulations of pulverized coal oxy-combustion in swirl burner using RANS and LES methods
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Simulations of pulverized coal oxy-combustion in swirl burner using RANS and LES methods

机译:利用RANS和LES方法模拟旋流燃烧器中煤粉的氧燃烧。

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Oxy-combustion is a technology that is used to reduce the emission of greenhouse gases to the atmosphere. Adaptation of the existing systems to burn coal in oxy-combustion technology requires a number of studies that can be greatly supported by numerical investigations — computational fluid dynamics (CFD). The paper presents results of pulverized coal combustion process in swirl burner using RANS and LES methods for turbulent flow. Numerical simulations have been performed for oxy-combustion technology for various ratio of oxygen in the oxidizer and compared to conventional combustion in air. Comparison of the air and oxy-coal combustion process for pulverized coal shows significant differences in temperature, especially the temperature close to the burner exit. In order to represent the conventional coal combustion process, oxidizer should contain about 30% of oxygen in the O2/CO2 mixture.
机译:氧气燃烧是一种用于减少温室气体向大气排放的技术。对现有系统进行改造以在氧气燃烧技术中燃烧煤炭需要进行大量的研究,这些研究可以得到数值研究的大力支持-计算流体力学(CFD)。本文介绍了利用RANS和LES方法对涡流燃烧器进行粉煤燃烧过程的湍流结果。对于氧化剂中各种氧气比例的氧气燃烧技术,已经进行了数值模拟,并与空气中的常规燃烧进行了比较。煤粉在空气和氧气煤燃烧过程中的比较表明温度存在显着差异,尤其是靠近燃烧器出口的温度。为了代表常规的煤燃烧过程,氧化剂应在O2 / CO2混合物中包含约30%的氧气。

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