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CFD simulations on marine burner flames

机译:船用燃烧器火焰的CFD模拟

摘要

The marine industry is changing with new demands concerning high energy efficiency, fuel flexibility and lower emissions of NOX and SOX. A collaboration between the company Alfa Laval and Technical University of Denmark has been established to support the development of the next generation of marine burners. The resulting auxiliary boilers shall be compact and able to operate with different fuel types, while reducing NOX emissions. The specific boiler object of this study uses a swirl stabilized liquid fuel burner, with a pressure swirl spill-return atomizer (Fig.1). The combustion chamber is enclosed in a water jacket used for water heating and evaporation, and a convective heat exchanger at the furnace outlet super-heats the steam.The purpose of the present study is to gather detailed knowledge about the influence of fuel spray conditions on marine utility boiler flames. The main goal of work presented in this paper was to obtain a spray description to setup a particle injection region in the CFD simulations of the boiler.
机译:随着对高能效,燃料灵活性以及降低NOX和SOX排放的新要求,海洋工业正在发生变化。阿法拉伐公司与丹麦技术大学之间已经建立了合作关系,以支持下一代船用燃烧器的开发。产生的辅助锅炉应紧凑,并能够使用不同的燃料类型,同时减少NOX排放。本研究的特定锅炉对象使用涡流稳定的液体燃料燃烧器,并带有压力涡流溢流返回雾化器(图1)。燃烧室被封闭在用于加热和蒸发水的水套中,炉膛出口处的对流热交换器使蒸汽过热。本研究的目的是收集有关燃料喷雾条件对燃料的影响的详细知识。船用公用事业锅炉的火焰。本文提出的主要工作目标是获得喷雾描述,以在锅炉的CFD模拟中设置粒子注入区域。

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