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Mathematical model of a combustion chamber of a pirotubular boiler using the matlab-simulink tool

机译:MATLAB-SIMULINT工具燃烧室燃烧室的数学模型

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This article presents the implementation of the mathematical model of the combustion chamber of a pyro-tubular boiler, by means of the approach of mass, energy and stoichiometric balances. These balances were described by the input components (air and fuel) that are presented in the combustion zone, based on the concept of maintaining the stoichiometric relationship between them, which were simulated through the computational tools such as the ESS and Matlab??, in order to determine the behavior of combustion gases depending on the type of chemical reaction presented. Likewise, it was determined the amount of carbons and hydrogens that make up the study fuels (ACMP and kerosene), as well as the kmol / s that compose the air, with the objective of analyzing its oxidation and determining the production of [CO]_(2,) H_2 O. Finally, the respective comparison was made analyzing the values of pressure and temperature in the three types of combustion, stoichiometric, with presence of unburned and with excess air. The approach of the mathematical model was applied for the two types of study fuels.
机译:本文通过质量,能量和化学计量平衡的方法提出了一种热管状锅炉燃烧室的数学模型的实施。基于维持它们之间的化学计量关系的概念,通过诸如ESS和MATLAB等计算工具模拟的概念来描述这些余量,这些余量由燃烧区内的输入组件(空气和燃料)描述。根据所提供的化学反应的类型来确定燃烧气体的行为。同样,确定构成研究燃料(ACMP和煤油)的碳和氢的量,以及构成空气的kmol / s,目的是分析其氧化和确定[CO]的生产_(2,)H_2 O.最后,采用各自的比较分析了三种燃烧中的压力和温度的值,化学计量,存在未燃烧和过量的空气。应用两种研究燃料的数学模型的方法。

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