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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Analytical solutions for prediction of the ignition time of wood particles based on a time and space integral method
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Analytical solutions for prediction of the ignition time of wood particles based on a time and space integral method

机译:基于时间和空间积分法的木材颗粒着火时间预测解析分析

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摘要

The main idea of this paper is to establish a simple approach for prediction of the ignition time of a wood particle assuming that the thermo-physical properties remain constant and ignition takes place at a characteristic ignition temperature. Using a time and space integral method, explicit relationships are derived for computation of the ignition time of particles of three common shapes (slab, cylinder and sphere), which may be characterized as thermally thin or thermally thick. It is shown through a dimensionless analysis that the dimensionless ignition time can be described as a function of non-dimensional ignition temperature, reactor temperature or external incident heat flux, and parameter K which represents the ratio of conduction heat transfer to the external radiation heat transfer. The numerical results reveal that for the dimensionless ignition temperature between 1.25 and 2.25 and for values of K up to 8000 (corresponding to woody materials), the variation of the ignition time of a thermally thin particle with K and the dimensionless ignition temperature is linear, whereas the dependence of the ignition time of a thermally thick particle on the above two parameters obeys a quadratic function. Furthermore, it is shown that the transition from the regime of thermally thin to the regime of thermally thick occurs at K _(cr) (corresponding to a critical size of particle) which is found to be independent of the particle shape. The model is validated by comparing the predicted and the measured ignition time of several wood particles obtained from different sources. Good agreement is achieved which indicates that the presented ignition time relationships can be used by process engineers and reactor designers for interpretation of ignition data.
机译:本文的主要思想是建立一种简单的方法来预测木材颗粒的着火时间,前提是假设其热物理性质保持恒定并且在特征性着火温度下发生着火。使用时间和空间积分方法,可以导出显式关系,以计算三种常见形状(平板,圆柱体和球体)的粒子的着火时间,这些形状可能表现为热薄或热厚。通过无量纲分析表明,无量纲点火时间可以描述为无量纲点火温度,反应堆温度或外部入射热通量以及参数K的函数,参数K代表传导热传递与外部辐射热传递的比率。数值结果表明,对于无因次点火温度介于1.25和2.25之间以及K值高达8000(对应于木质材料),热稀薄颗粒的着火时间随K的变化而无因次点火温度是线性的,而热厚颗粒的点火时间对以上两个参数的依赖性服从二次函数。此外,显示出从热稀薄状态到热浓厚状态的转变发生在K_(cr)(对应于颗粒的临界尺寸)处,该K_(cr)与颗粒形状无关。通过比较从不同来源获得的几种木材颗粒的预测和实测着火时间来验证该模型。达成了良好的协议,表明所提出的点火时间关系可以由过程工程师和反应堆设计人员用来解释点火数据。

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