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Mathematical and physical modeling of the?coal-water coal–water fuel particle ignition with a liquid film on the surface

机译:煤水煤燃料颗粒点火的数学与物理建模

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The results have been presented of the theoretical and experimental research of the ignition processes of single drops of?coal-water coal–water fuel (CWF). Their surface is covered by a water film. The temperature of the environment T e has also been recorded and the main characteristics of the process — the times of complete evaporation of the water film (t e w f )) and the ignition delays (t i g n ). The errors in determining T e have not exceeded 5%. According to the results of the detailed analysis of the video recordings of the investigated process of ignition, the mathematical models have been developed. They describe the interrelated complex of the thermophysical and thermochemical processes. The approximate analytical solutions of the multistage nonlinear problem of ignition of a?coal-water coal–water particle have been obtained using the asymptotic procedures. According to the results of the experimental and theoretical studies, it has been established that the thickness of an aqueous film is one of the parameters determining the conditions and characteristics of the CWF ignition. Moreover, under the conditions of the experiments it has been established that the characteristic evaporation time of the near-surface layer can be from 45 to 60% of the total induction period. They depend on the thickness of the film.
机译:结果提出了对单滴的点火过程的理论和实验研究?煤水煤燃料(CWF)。它们的表面被水膜覆盖。还记录了环境T e的温度和过程的主要特征 - 水膜(T e W)完全蒸发的时间)和点火延迟(T I G N)。确定T e的误差没有超过5%。根据调查过程的录像的详细分析结果,已经开发了数学模型。它们描述了热物理和热化学过程的相互关联的复合物。使用渐近手术获得了煤水煤水颗粒的多级非线性问题的近似分析解。根据实验和理论研究的结果,已经确定了水膜的厚度是确定CWF点火的条件和特性的参数之一。此外,在实验的条件下,已经确定近表面层的特征蒸发时间可以是总诱导期的45%至60%。它们取决于薄膜的厚度。

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