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首页> 外文期刊>Acta Polytechnica >Plasma Flow and Temperature in a Gliding Reactor with Different Electrode Configurations
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Plasma Flow and Temperature in a Gliding Reactor with Different Electrode Configurations

机译:具有不同电极配置的滑动反应器中的等离子体流量和温度

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This paper deals with the plasma flow shape depending on the electrode form of a gliding discharge plasma-chemical reactor, and with the temperature distribution along the direction of the plasma flow in one specific electrode form. The shape of the electrodes and their mutual position has a significant influence on the design of a gliding discharge reactor and its applications. It is crucial to know the temperature distribution in the reactor's chamber design and discharge application.Three configurations with model shapes of wire electrodes were therefore tested (low-divergent, circular, high-divergent) and the plasma flow was described. The experiments were performed in air at atmospheric pressure and at room temperature. In order to map the reactive plasma region of the flow we investigated the visible spectral lines that were emitted. The gas temperature was measured using an infrared camera.
机译:本文根据滑行放电等离子体化学反应器的电极形式处理等离子体流的形状,并以一种特定的电极形式处理沿等离子体流方向的温度分布。电极的形状及其相互的位置对滑动放电反应器的设计及其应用具有重大影响。了解反应器腔室设计和放电应用中的温度分布至关重要。因此,测试了线电极模型形状的三种配置(低发散,圆形,高发散),并描述了等离子流。实验在大气压和室温下的空气中进行。为了绘制流的反应性等离子体区域,我们研究了发出的可见光谱线。使用红外照相机测量气体温度。

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