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Maximum jet length was approximately 15 mm at 30 kHz, and maximum temperature at 5 mm from the cap electrode was 250 °C.
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Figure 6 Plasma jet length variation versus signal frequency.
Figure 5 Plasma jet length and shape variation for different signal frequencies ( V pp = 10 kV).
Beyond 20 kHz, the plasma jet length increases significantly when the signal frequency is more pronounced.
This change in the plasma jet shape is accompanied by an increase of the plasma jet length as it is reported in Figure 6.
The jet length distribution was calculated and compared with predictions.
Maximum vacuum created by the jet pump at an optimum condition, i.e., at maximum jet pump efficiency, with respect to time was determined.
The effect of the applied voltage intensity on the plasma jet length is represented in Figure 4.
The ratio | I V | / | V | can be considered as the jet length density for the cell V.
Figure 3 Plasma jet length variation versus the electrode setup ( V pp = 10 kV; f = 50 kHz).
Xiong et al.[13] have also reported this dependence of the plasma jet length on the signal frequency variation.
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