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METHOD ND SYSTEM FOR NUMERIC SIMULATION OF OXYGEN RICH COMBUSTION

机译:富氧燃烧数值模拟的方法和系统

摘要

PROBLEM TO BE SOLVED: To calculate combustion temperature without burdening a computer excessively by employing both the combustion rate being determined to diffusion mixing of fuel molecule and oxidizing agent molecule and the chemical reaction combustion rate determined to chemical equilibrium of reversible overall reaction accompanying thermal dissociation. SOLUTION: With regard to a plurality of overall reactions representative of oxygen rich combustion, a diffusion combustion rate is calculated assuming a reversible overall reaction of infinite chemical reaction rate. With regard to an overall reaction accompanying thermal dissociation, a chemical reaction combustion rate is then calculated assuming a diffusion mixing of infinite diffusion rate. Subsequently, a diffusion or chemical reaction combustion rate is calculated using both the diffusion rate-determining combustion rate and chemical reaction rate-determining combustion rate. Finally, combustion temperature of oxygen rich combustion is calculated based on a combustion rate determined by a plurality of overall reaction diffusion or chemical reactions representative of oxygen rich combustion including overall reaction accompanying next thermal dissociation.
机译:解决的问题:通过将确定的燃烧速率用于燃料分子和氧化剂分子的扩散混合,并将化学反应燃烧速率确定为伴随热分解的可逆总体反应的化学平衡,从而在不使计算机负担过多的情况下计算燃烧温度。解决方案:对于代表富氧燃烧的多个整体反应,假设无穷大化学反应速率的可逆整体反应,计算扩散燃烧速率。关于伴随热离解的整体反应,然后假设无限扩散速率的扩散混合来计算化学反应燃烧速率。随后,使用确定扩散率的燃烧率和确定化学反应率的燃烧率来计算扩散或化学反应燃烧率。最后,基于由代表富氧燃烧的多个总反应扩散或化学反应确定的燃烧速率计算富氧燃烧的燃烧温度,所述化学反应包括伴随下一个热分解的总反应。

著录项

  • 公开/公告号JP2000205560A

    专利类型

  • 公开/公告日2000-07-25

    原文格式PDF

  • 申请/专利权人 NIPPON SANSO CORP;

    申请/专利号JP19990002357

  • 发明设计人 OKAMORI KATSUTAKA;

    申请日1999-01-07

  • 分类号F23N5/00;

  • 国家 JP

  • 入库时间 2022-08-22 02:01:23

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