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首页> 外文期刊>Plasma Science, IEEE Transactions on >Characterization of a Cold Atmospheric Pressure Plasma Jet Device Driven by Nanosecond Voltage Pulses
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Characterization of a Cold Atmospheric Pressure Plasma Jet Device Driven by Nanosecond Voltage Pulses

机译:纳秒级电压脉冲驱动的冷常压等离子体喷射装置的特性

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The structure, fluid-dynamic behavior, temperature, and radiation emission of a cold atmospheric pressure plasma jet driven by high-voltage pulses with rise time and duration of a few nanoseconds have been investigated. Intensified charge-coupled device (iCCD) imaging revealed that the discharge starts when voltage values of 5–10 kV are reached on the rising front of the applied voltage pulse; the discharge then propagates downstream the source outlet with a velocity around – cm/s. Light emission was observed to increase and decrease periodically and repetitively during discharge propagation. The structure of the plasma plume presents a single front or either several branched subfronts, depending on the operating conditions; merging results of investigations by means of Schlieren and iCCD imaging suggests that branching of the discharge front occurs in spatial regions where the flow is turbulent. By means of optical emission spectroscopy, discharge emission was observed in the ultraviolet-visible (UV-VIS) spectral range (N, N, OH, and NO emission bands); total UV irradiance was lower than 1 W/ even at short distances from the device outlet (<15 mm). Plasma plume temperature does not exceed 45 °C for all the tested operating conditions and values close to ambient temperature were measured around 10 mm downstream the source outlet.
机译:研究了高压脉冲驱动的上升时间和持续时间为几纳秒的冷大气压等离子体射流的结构,流体动力学行为,温度和辐射发射。增强的电荷耦合器件(iCCD)成像表明,当在施加的电压脉冲的上升沿达到5-10 kV的电压值时,放电开始。然后,放电以– cm / s的速度传播到源出口的下游。在放电传播期间,观察到发光周期性地和重复地增加和减少。等离子羽流的结构表现为一个单一的前部或多个分支的子前部,具体取决于操作条件。通过Schlieren和iCCD成像研究的合并结果表明,在流体湍流的空间区域中会发生放电前沿的分支。通过光发射光谱法,在紫外可见(UV-VIS)光谱范围(N,N,OH和NO发射带)中观察到了放电发射。即使在距设备出口很短距离(<15 mm)的情况下,总UV辐照度也低于1 W /。在所有测试的工作条件下,等离子羽流温度均不超过45°C,并且在源出口下游约10 mm处测量了接近环境温度的值。

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