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Enthalpy-probe diagnostics of an atmospheric-pressure unleaded petrol exhaust-gas microwave-induced plasma

机译:大气压无铅汽油废气微波诱导等离子体的焓探针诊断

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An unleaded petrol exhaust-gas microwave-induced plasma (MIP) at atmospheric pressure was generated in a TE/sub 101/ resonant-mode cavity. The microwave discharges were generated at three incident microwave power levels: 500 W, 700 W, and 1500 W. An enthalpy probe was used to characterize the exhaust-gas MIP discharge, yielding values of enthalpy, velocity, and heavy-particle temperature along the microwave-discharge axis. The heavy-particle temperature was found to be 710 K, 940 K, and 1065 K, with velocities of 140 m s/sup -1/, 148 m s/sup -1/, and 155 m s/sup -1/, at the exit plane of the discharge tube for an exhaust-gas flow rate of 3.5 l min/sup -1/ at 500 W, 700 W, and 1500 W respectively. The assumption of local thermodynamic equilibrium is required in the calculation of temperature and velocity in the microwave discharge from the enthalpy-probe data. In microwave-induced plasmas, the electron temperature is significantly higher than the heavy-particle temperature. We present arguments that indicate that the calculated heavy-particle temperature and velocity values are nevertheless accurate.
机译:在TE / sub 101 /谐振模式腔中生成了大气压下的无铅汽油废气微波诱导等离子体(MIP)。微波放电是在三种入射微波功率水平下产生的:500 W,700 W和1500W。使用焓探头表征废气的MIP放电,沿其产生焓,速度和重颗粒温度的值。微波放电轴。发现出口处的重粒子温度为710 K,940 K和1065 K,速度为140 ms / sup -1 /,148 ms / sup -1 /和155 ms / sup -1 /排气流量分别为500 W,700 W和1500 W时3.5 l min / sup -1的排气管平面。根据焓探针数据计算微波放电的温度和速度时,需要假设局部热力学平衡。在微波诱导的等离子体中,电子温度明显高于重粒子温度。我们提出的论点表明,计算出的重粒子温度和速度值仍然是准确的。

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