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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Heat and mass transfer in a CVD optical fiber coating process by propane precursor gas
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Heat and mass transfer in a CVD optical fiber coating process by propane precursor gas

机译:丙烷前驱体气体在CVD光纤涂覆过程中的传热和传质

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摘要

This study investigates an in-line chemical vapor deposition (CVD) process used to hermetically coat optical fibers during manufacture using propane as the precursor gas. Temperature is calculated by coupling radiation and convection heat transfer between the reactor walls and gas flow with a radially lumped conduction heat transfer model for the moving optical fiber. Multicomponent species diffusion is modeled by the Dixon-Lewis method, which is based on the molecular theory for ideal gases. Gas-phase reaction kinetics is modeled using a three-step chemical kinetics mechanism. Surface reaction kinetics are described using collision theory, in which a sticking coefficient is used as an empirical parameter to predict surface reactions. A parametric study is carried out with various optical fiber inlet temperature and drawing speeds, and is validated with experiment results.
机译:这项研究调查了在线化学气相沉积(CVD)工艺,该工艺在使用丙烷作为前驱体气体的制造过程中用于气密涂覆光纤。通过将反应堆壁之间的辐射和对流传热与气流与移动光纤的径向集总传导传热模型耦合来计算温度。多组分物质扩散是通过Dixon-Lewis方法建模的,该方法基于理想气体的分子理论。气相反应动力学使用三步化学动力学机制进行建模。使用碰撞理论描述了表面反应动力学,其中黏附系数用作预测表面反应的经验参数。在各种光纤入口温度和拉伸速度下进行了参数研究,并通过实验结果进行了验证。

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