电子烟可抽吸烟气生成速率的数值研究

Numerical study on the smoke generation rate of an E-Cigarette

  • 摘要: 本文提出了一种电子烟可抽吸烟气生成速率的数值计算模型。该模型考虑了雾化芯表面由于烟液蒸发产生的能量损失以及烟气在气流通道壁面冷凝释放出的热量。通过菲克定律得到雾化芯表面的烟液蒸发速率和气流通道壁面的烟气冷凝速率。采用该模型研究了雾化芯几何外形和加热方式对可抽吸烟气生成速率的影响。结果表明:当对加热段的所有表面加热时,圆柱形与沟槽形雾化芯可抽吸烟气生成速率相当,均高于长方体形雾化芯,然而对加热面进行优化布置后,沟槽形雾化芯对应的可抽吸烟气生成速率高于圆柱形雾化芯。本文结果可为电子烟雾化芯的优化设计提供参考,另外,本文的建模方法和结果对于其它基于加热气化的雾化器(如医用加热雾化器)的优化设计也具有参考价值。

     

    Abstract: In this work, a numerical model for the calculation of the smoke generation rate of an e-cigarette is proposed. Our model accounts for the energy loss due to the evaporation of e-liquid on the surface of the atomizer and the heat released from the condensation of smoke on the walls of the external airflow channel. The evaporation rate of the e-liquid on the surface of the atomizer and the condensation rate of smoke on the walls of the airflow channel are obtained through Fick's law. The effects of atomizer shape and heating method on the smoke generation rate are investigated with the proposed model. The results show that when all surfaces of the heating section are heated, the smoke generation rates of the grooved atomizer and the cylinder atomizer are comparable to each other, being higher than that of the cuboid atomizer. However, after optimizing the heating surface arrangement, the smoke generation rate of the grooved atomizer exceeds that of the cylinder atomizer. The results of this study can provide reference for the optimization design of electronic cigarette atomizers. In addition, the modeling method and the results of this study can also serve as a reference for the optimization design of other heat-vaporizing atomizers, such as medical heat-vaporizing atomizers.

     

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