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首页> 外文期刊>High temperature: English translation of teplofizika vysokikh temperatur >Heat Transfer in Subsonic Flows of Dissociated Nitrogen: HF Plasmatron Experiment and Numerical Simulation
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Heat Transfer in Subsonic Flows of Dissociated Nitrogen: HF Plasmatron Experiment and Numerical Simulation

机译:离解氮的亚源流动中的传热:HF纤维素试验和数值模拟

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Experiments on heat transfer in subsonic jets of dissociated nitrogen have been carried out on a IPG-4 induction plasmatron. The heat fluxes to copper, stainless steel, nickel, graphite, and quartz surfaces at the stagnation point of a water-cooled cylindrical flat-faced model 20 mm in diameter and dynamic pressures have been measured at a pressure of 50 hPa in the test chamber and a power of 35–65 kW of the HF generator. The experiments showed the influence of surface catalytic properties on the heat flux in relation to the nitrogen atom recombination. In the conditions of the experiments, a numerical simulation of nitrogen plasma flows in the discharge channel of plasmatron and the subsonic dissociated nitrogen jet flow around the cylindrical model has been carried out. The experimental and calculated data on heat fluxes to cooled copper, stainless steel, nickel, graphite, and quartz surfaces are compared. The quantitative catalyticity scale of the studied materials in relation to the heterogeneous recombination of nitrogen atoms is established.
机译:在IPG-4诱导纤维素上进行了离解氮的亚源射流中的传热试验。在试验室中的50hPa的压力下测量了直径和动态压力的水冷圆形扁平面模型20mm的停滞点的铜,不锈钢,镍,石墨和石英表面的热通量。电力为35-65千瓦的HF发电机。实验表明,表面催化性质对与氮原子重组相关的热通量的影响。在实验的条件下,已经进行了围绕圆柱形模型的血管素排出通道中的氮等离子体流动的数值模拟。比较了对冷却铜,不锈钢,镍,石墨和石英表面的热通量的实验和计算的数据。确定了与氮原子的异质重组相关的研究的定量催化规模。

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