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首页> 外文期刊>The European physical journal. Applied physics >Numerical simulation and experimental verification of gas streams feeding a gliding discharge plasma reactor
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Numerical simulation and experimental verification of gas streams feeding a gliding discharge plasma reactor

机译:滑移放电等离子体反应器进料气流的数值模拟与实验验证

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摘要

The modular device for the waste utilization, using the pyrolytic-plasma method, consists of, among others, the plasma reactor operating on the gliding discharge principles. The reactor is applied to oxidize hydrocarbons created in the process of the waste pyrolysis. Thus, the plasma reactor operation influences significantly the qualitative and quantitative composition of the output gases. Finding the most advantageous construction of the plasma reactor and the process parameters ensures full and complete oxidation of hydrocarbons. In the waste utilization process, two streams of gases were introduced into the plasma reactor through the system of two coaxial nozzles. The first stream was a mixture of argon and hydrocarbons and the second one was oxygen. Two different methods of gas introduction were considered. Methane was used as a model hydrocarbon both in calculations and in the experiments. On the basis of numerical calculations (Fluent commercial program), it was found that the most advantageous method of gas introduction into the reactor was the one in which the mixture of argon and hydrocarbons was introduced through the central nozzle and the oxygen was introduced through the outer one. This conclusion was confirmed experimentally.
机译:使用热解等离子体方法的用于废物利用的模块化设备,除其他外,包括按照滑动排放原理运行的等离子体反应器。该反应器用于氧化在废物热解过程中产生的碳氢化合物。因此,等离子体反应器的运行会显着影响输出气体的定性和定量组成。寻找等离子体反应器的最有利的构造和工艺参数可确保烃的完全和完全氧化。在废物利用过程中,通过两个同轴喷嘴的系统将两股气流引入等离子体反应器。第一股是氩气和碳氢化合物的混合物,第二股是氧气。考虑了两种不同的气体引入方法。在计算和实验中,甲烷均用作模型烃。根据数值计算(Fluent商业程序),发现将气体引入反应器的最有利方法是通过中央喷嘴引入氩气和碳氢化合物的混合物并通过中间喷嘴引入氧气的方法。外层的。这个结论在实验上得到了证实。

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