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首页> 外文期刊>International Journal of Thermal Sciences >Time variation of combustion temperature and burning time of a single iron particle
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Time variation of combustion temperature and burning time of a single iron particle

机译:单个铁颗粒的燃烧温度和燃烧时间的时间变化

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摘要

In the present study, combustion of a single iron particle is modeled by virtue of a novel thermophysical procedure. The temperature of iron particle during combustion is studied analytically and numerically. In the proposed model, the effect of thermal radiation from the external surface of burning particle, and alterations of density of iron particle with temperature are considered. Iron particle burns heterogeneously in air. Because of high thermal conductivity and micro size of iron particle, the Biot number is negligibly small, and the lumped system analysis can be utilized for the combustion modeling. The nonlinear energy equation resulted from modeling is solved by using homotopy perturbation method. The assumptions applied in the modeling are such that do not violate the actual combustion phenomenon. Also, the numerical solution of nonlinear differential equation is presented and compared with the analytical solution obtained from homotopy method. It is the first model presented for analyzing the combustion of single iron particle.
机译:在本研究中,借助新型热物理过程对单个铁颗粒的燃烧进行了建模。对燃烧过程中铁颗粒的温度进行了分析和数值研究。在所提出的模型中,考虑了来自燃烧颗粒外表面的热辐射的影响,以及铁颗粒密度随温度的变化。铁颗粒在空气中异质燃烧。由于高热导率和铁颗粒的微小尺寸,比奥数小到可以忽略不计,并且集总系统分析可用于燃烧建模。利用同伦摄动法求解建模产生的非线性能量方程。在建模中应用的假设不会违反实际的燃烧现象。并给出了非线性微分方程的数值解,并将其与同伦方法的解析解进行了比较。这是提出的第一个用于分析单个铁颗粒燃烧的模型。

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