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The favorable pressure of working gas was about 0.6 Pa in our experimental conditions.
The effects of working gas pressure and mean discharge current have been investigated.
Firstly, the increasing speed of working gas volume is slower than that of peak shaving demand volume.
Since this coolant was initially assumed to be gaseous and since it is doing most of the propulsion work, the name of "working gas drive" has been proposed.
For its simplicity, the method has obvious advantages, such as no requirement of working gas, high reliability and long life, etc.
The discharge is initiated by a HV pulse applied with a delay time τd after the moment of injection of working gas into the inter-electrode space.
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Various types of working gases, including pure N2, pure O2, and compressed air, were tested.
Currently, little research has been done regarding the influence of working gases, especially HFCs, on energy separation in vortex tubes.
The plasma was generated with the use of working gases composed of 45 slpm of Ar and 5 slpm of H2 and with the electric power input of 30 kW.
Besides the material properties and design calculations, the thermodynamic properties of working gases play a vital role in the design and efficiency of various machinery such as compressors, turbines, etc. Equation of state (EOS) which accounts the real gas effects is used in computational analysis to estimates the thermodynamic properties of the working fluid.
For short τd in addition to the generation of plasma of the working gas rapid erosion of the metallic electrodes also occurs (DPE mode).
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