(40)
Dual Gas Accumulator Cavity
Also written accumulator cavity · Accumulator cavities · gas accumulator
Where it is first named
Circuit State: Moving electrically charged atoms (1/2) through an electrical grid system (50) inserted into a dual gas accumulator cavity (30/40) separated by an ambient air filtering screen assembly (20A) of opposite voltage polarity… forming Electrical Polarization Generator (90), as illustrated in Figure 40 as to Figure 8 subtitled “Regenerative Energy Feedback Module.”
How it is written
- (30/40) 2× with (30) Gas Accumulator Cavity
- (40) 2×
Drawings 1
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Carries this number · ELECTRICAL POLARIZATION GENERATOR
Where it is named · 4
ELECTRICAL POLARIZATION GENERATOR 4×
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dual gas accumulator cavity (30/40)
Circuit State: Moving electrically charged atoms (1/2) through an electrical grid system (50) inserted into a dual gas accumulator cavity (30/40) separated by an ambient air filtering screen assembly (20A) of opposite voltage polarity… forming Electrical Polarization Generator (90), as illustrated in Figure 40 as to Figure 8 subtitled “Regenerative Energy Feedback Module.”
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accumulator cavity (40)
while, at the same time, the attracted and moving negative gas ions (2) pass through and beyond screen-port (5) into a second accumulator cavity (40)... performing the gas filtering process.
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Accumulator cavities (30/40)
Accumulator cavities (30/40) are electrically isolated from one another to prevent electrical discharging of said gas ions during application use.
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gas accumulator (40)
The negative charged gas ions (2a xxx 2n) passing through gas accumulator (40) is simply discharged through gas exit port (12) while gas ions (1a xxx 1n) passing through gas accumulator cavity (30) are discharged through a separate exit port (13).