Prevosto L, Kelly H, Mancinelli B R
Grupo de Descargas Eléctricas, Departamento Ingeniería Electromecánica, Facultad Regional Venado Tuerto (UTN), Laprida 651, 2600 Venado Tuerto, Santa Fe, Argentina.
Rev Sci Instrum. 2014 May;85(5):053507. doi: 10.1063/1.4875215.
Sweeping double probe measurements in an atmospheric pressure direct current vortex-stabilized plasma jet are reported (plasma conditions: 100 A discharge current, N2 gas flow rate of 25 Nl/min, thoriated tungsten rod-type cathode, copper anode with 5 mm inner diameter). The interpretation of the double probe characteristic was based on a generalization of the standard double floating probe formulae for non-uniform plasmas coupled to a non-equilibrium plasma composition model. Perturbations caused by the current to the probe together with collisional and thermal processes inside the probe perturbed region were taken into account. Radial values of the average electron and heavy particle temperatures as well as the electron density were obtained. The calculation of the temperature values did not require any specific assumption about a temperature relationship between different particle species. An electron temperature of 10,900 ± 900 K, a heavy particle temperature of 9300 ± 900 K, and an electron density of about 3.5 × 10(22) m(-3) were found at the jet centre at 3.5 mm downstream from the torch exit. Large deviations from kinetic equilibrium were found toward the outer border of the plasma jet. These results showed good agreement with those previously reported by the authors by using a single probe technique. The calculations have shown that this method is particularly useful for studying spraying-type plasma torches operated at power levels of about 15 kW.
报道了在大气压直流涡旋稳定等离子体射流中进行的扫描双探针测量(等离子体条件:放电电流100 A,氮气流量25 Nl/min,钍钨棒型阴极,内径5 mm的铜阳极)。双探针特性的解释基于对非均匀等离子体的标准双浮动探针公式的推广,并结合了非平衡等离子体成分模型。考虑了流向探针的电流以及探针扰动区域内的碰撞和热过程所引起的扰动。获得了平均电子温度、重粒子温度以及电子密度的径向值。温度值的计算不需要对不同粒子种类之间的温度关系做任何特定假设。在距炬管出口下游3.5 mm处的射流中心,发现电子温度为10900±900 K,重粒子温度为9300±900 K,电子密度约为3.5×10(22) m(-3)。在等离子体射流的外边界发现了与动力学平衡的较大偏差。这些结果与作者之前使用单探针技术报道的结果显示出良好的一致性。计算表明,该方法对于研究功率水平约为15 kW的喷雾型等离子体炬特别有用。