Subsystem STEAM · estate packet 04_STEAM
Steam Resonator
Steam resonance apparatus.
Documents · 21
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A Perspective View on Water as Fuel: An Endless Source of Clean Energy
Uses steam resonator.
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.STEP and STLs
Uses steam resonator.
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Steam Resonator - 3D STLs
Uses steam resonator.
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Stanley Allen Meyer
Uses steam resonator.
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Steam Resonator
Uses steam resonator.
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Steam Resonator - 3D printable replication
Uses steam resonator.
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Different polarity firing sequences for electrodes in the steam generator as found in Stan Meyer's literature
Uses steam resonator.
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Steam Resonator (Memo WFC 423-DA)
Uses steam resonator.
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Spin Off Technology
Uses steam resonator.
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Steam Resonator Assembly
Uses steam resonator.
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Steam Resonator
Uses steam resonator.
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Steam Resonator
Uses steam resonator.
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Steam Resonator - Dimensional Diagrams
Uses steam resonator.
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ESP32 microcontroller programming principles for operation of steam resonator
Uses steam resonator.
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Trialling the multifunctional square wave generator to be used to test circuitry and components of the VIC and steam resonator
Uses steam resonator.
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Phase Selectable VIC
Uses steam resonator.
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A Preview of Water Fuel Cell Technology and This Book
Uses steam resonator.
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Particle Oscillation as a Energy Generator
Uses steam resonator.
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Electronic Circuit Design
Uses steam resonator driver.
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Electrical Crossover Switching Circuit
Uses steam resonator.
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World wakes up to water fuel invention - July 31 1991
Uses steam resonator.
Findings · 5
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WFC Steam Resonator incorporates the VIC Switchover Circuit to cause Particle Oscillation
Uses steam resonator.
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WFC Steam Resonator heats water by oscillating bipolar water molecules with opposite voltage fields, without amperage
Uses steam resonator.
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Steam Resonator (450) inserts into Fuel Cell (120) for cold-weather operation
Uses steam resonator.
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VIC applies alternating voltage pulses across plates E5/E6 to drive Steam Resonator
Uses steam resonator.
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Steam Resonator purpose: superheated steam via pulsating voltage fields with restricted amp flow
Uses steam resonator.
Photographs · 2
From the bench · 25
- established · 0.90 Steam Resonator (450) inserts into Fuel Cell (120) for cold-weather operation
- established · 0.90 Reversing to negative pulse deflects water molecule toward opposite plate E6
- established · 0.90 Repeated molecular deflection produces kinetic particle-impact energy that heats the water bath
- established · 0.90 Repetitive opposite-polarity pulses at a set pulse frequency heat water bath to desired temperature
- established · 0.90 Steam Resonator purpose: superheated steam via pulsating voltage fields with restricted amp flow
- established · 0.90 Sequential gate circuit alternates Q5/Q6 via optocouplers 51/52
- established · 0.90 Gate circuit regulates duty pulse up to 1 MHz or more
- established · 0.90 Duty pulse across primary coil (54) induces field coupled to pickup coil (56)
- established · 0.90 Alternating unipolar pulses between Excitor Plates increases steam production rate
- established · 0.90 Increasing DC power supply (30) voltage amplitude increases steam yield
- established · 0.90 WFC Steam Resonator heats water by oscillating bipolar water molecules with opposite voltage fields, without amperage
- established · 0.90 Two VIC circuits (60) and (70) drive opposing Excitor Plates forming the Steam Resonant Cavity
- established · 0.90 Water molecule deflects toward energized Excitor Plate due to opposite-charge attraction
- established · 0.90 WFC Steam Resonator incorporates the VIC Switchover Circuit to cause Particle Oscillation
- established · 0.90 Positive pulse deflects water molecule toward plate E5 via attraction and repulsion forces
- design note · 0.70 Steam Resonator design session v5: reasoning
- calculation · 0.70 Steam Resonator design session v4: best candidate (3.83kg/hr, 0% non-ohmic)
- design note · 0.70 Steam Resonator design session v2: reasoning
- calculation · 0.70 Steam Resonator design session v5: best candidate (24.63kg/hr, 0% non-ohmic)
- calculation · 0.70 Steam Resonator design session v1: best candidate (0.62kg/hr, 0% non-ohmic)