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首页> 外文期刊>Physics of plasmas >Comparative study of laminar and turbulent flow model with different operating parameters for radio frequency-inductively coupled plasma torch working at 3 MHz frequency at atmospheric pressure
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Comparative study of laminar and turbulent flow model with different operating parameters for radio frequency-inductively coupled plasma torch working at 3 MHz frequency at atmospheric pressure

机译:射频感应耦合等离子体炬在大气压下以3 MHz的频率工作时不同工作参数的层流和湍流模型的比较研究

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This paper provides 2D comparative study of results obtained using laminar and turbulent flow model for RF (radio frequency) Inductively Coupled Plasma (ICP) torch. The study was done for the RF-ICP torch operating at 50kW DC power and 3MHz frequency located at BARC. The numerical modeling for this RF-ICP torch is done using ANSYS software with the developed User Defined Function. A comparative study is done between laminar and turbulent flow model to investigate how temperature and flow fields change when using different operating conditions such as (a) swirl and no swirl velocity for sheath gas flow rate, (b) variation in sheath gas flow rate, and (c) variation in plasma gas flow rate. These studies will be useful for different material processing applications.
机译:本文提供了使用层流和湍流模型获得的RF(射频)电感耦合等离子体(ICP)焊炬的结果的二维比较研究。该研究是针对位于BARC的50kW DC电源和3MHz频率的RF-ICP焊炬进行的。 RF-ICP焊炬的数值建模是使用具有开发的用户定义功能的ANSYS软件完成的。在层流模型和湍流模型之间进行了比较研究,以研究在使用不同运行条件时温度和流场如何变化,例如(a)鞘气流量的旋涡和无旋涡速度,(b)鞘气流量的变化, (c)等离子气体流速的变化。这些研究对于不同的材料加工应用将是有用的。

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