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Numerical Study of the Fluid Flow and Temperature Distribution in a Non-transferred DC ARC Thermal Plasma Reactor

机译:非转移DC ARC热等离子体反应器中流体流动和温度分布的数值研究

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Numerical modeling of the thermal plasma process was carried out based on the thermal plasma reactor in our lab and confirmed using experimental data. The inlet boundary conditions of a non-transferred DC arc thermal plasma reactor were used in modeling the temperature and fluid flow distribution in the reactor. Different mesh grid sizes were used to confirm the model is independent of grid size. Temperature profile and gas flow distribution in the thermal plasma reactor were developed by the computational fluid dynamics (CFD) with ANSYS Fluent. The predicted temperatures are in good agreement with the experimentally measured temperatures in the reactor. The influence of plasma torch input power as well as the plasma gas flux on the temperature distribution was investigated using this model. The influence of power input and gas flow rate on temperature and velocity distributions are not independent. Generally, higher power input and lower gas flow rate will give rise to the temperature increase in the reactor.
机译:在我们实验室中基于热等离子体反应器对热等离子体过程进行了数值建模,并使用实验数据进行了验证。使用非转移直流电弧热等离子体反应器的入口边界条件对反应器中的温度和流体流量分布进行建模。使用不同的网格大小来确认模型与网格大小无关。利用ANSYS Fluent通过计算流体动力学(CFD)开发了热等离子体反应器中的温度分布和气流分布。预测温度与反应器中实验测得的温度高度吻合。使用该模型研究了等离子炬输入功率以及等离子气体通量对温度分布的影响。功率输入和气体流速对温度和速度分布的影响不是独立的。通常,较高的功率输入和较低的气体流速将引起反应器中的温度升高。

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