Subsystem IGNCOIL · estate packet 09_IGNCOIL
Ignition Coil
Ignition coil assemblies and windings.
Documents · 60
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ENERGY of the FUTURE - R&Z - Vol 2 No. 1, 1990
Uses burn-rate, gas-flame, gas-ignition, internal combustion engine.
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Water Fuel Injection System - Page 2
Uses energy-flame, gas ignition process, thermal explosive energy-yield, voltage igniter stage.
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Water Fuel Injection System
Uses energy-flame, gas ignition process, gas-ignition, thermal explosive energy, thermal explosive energy-yield and 1 more.
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Hydrogen powered scooter
Uses engine cylinder, ignition coil, internal combustion engine.
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Gas Modulator Process
Uses burn-rate, engine cylinder, gas ignition process, internal combustion engine, thermal explosive energy.
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Explosion safe electrolysis unit
Uses air intake manifold, engine cylinder, internal combustion engine.
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Rollover safe electrolysis unit for vehicles
Uses air intake manifold, engine cylinder, internal combustion engine.
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
Uses gas-flame, gas-ignition, thermal explosive energy.
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Water Fuel Injection System - Page 1
Uses thermal explosive energy, thermal explosive energy-yield, voltage igniter stage.
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Mega Watt Gas Yield
Uses gas-flame, thermal explosive energy, thermal explosive energy-yield.
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WFC 417 — WFC 417
Uses gas-flame, gas-ignition, thermal explosive energy.
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Water Fuel Injection System - Page 3
Uses gas-ignition, thermal explosive energy-yield, voltage igniter stage.
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Thermal Explosive Energy
Uses gas-flame, gas-ignition, thermal explosive energy.
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System and method for improving combustion using an electrolysis fuel cell
Uses air intake manifold, engine cylinder, internal combustion engine.
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Temperature control for HHO injection gas
Uses air intake manifold, engine cylinder, internal combustion engine.
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Spark-Ignition Tube
Uses burn-rate, gas-flame, gas-ignition.
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Onboard HHO gas generation system for heavy duty trucks
Uses air intake manifold, engine cylinder, internal combustion engine.
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Electrolysis cell and internal combustion engine kit comprising the same
Uses air intake manifold, internal combustion engine.
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Hydrogen generating apparatus
Uses air intake manifold, internal combustion engine.
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Hydrogen fueled power plant system
Uses engine cylinder, internal combustion engine.
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Implosion enabled engine of exothermic type in explosive system (IEEX-EM) employing a safe pipe system (SPS) and other safety devices
Uses engine cylinder, internal combustion engine.
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System and method for auto-ignition support
Uses engine cylinder, internal combustion engine.
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Biogas-driven generator set
Uses engine cylinder, internal combustion engine.
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Combustion process and fuel supply system for engines
Uses engine cylinder, internal combustion engine.
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Gas fueled internal combustion engine
Uses air intake manifold, internal combustion engine.
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Hydrogen Gas Fuel And Management System For An Internal Combustion Engine Utilizing Hydrogen Gas Fuel
Uses engine cylinder, internal combustion engine.
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Hydrogen Aeration Injection System
Uses burn-rate, internal combustion engine.
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Voltage Attenuation Circuit
Uses burn-rate, gas-flame.
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Catalytic Block Assembly
Uses burn-rate, gas ignition process.
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High efficiency hydrogen oxygen generation system and method
Uses ignition coil.
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Hydrogen gas fuel and management system for an internal combustion engine utilizing hydrogen gas fuel
Uses engine cylinder, internal combustion engine.
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2014 Stan Meyer Conference Notes on Linear Magnetism
Uses ignition coil.
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Stephen Meyer Interview Part 5 (5-12-2007) — transcript
Uses air intake manifold, internal combustion engine.
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Hydrogen Aeration Injection System
Uses burn-rate, internal combustion engine.
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Mode of Operability
Uses thermal explosive energy, thermal explosive energy-yield.
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Hydrogen Fracturing Process
Uses thermal explosive energy, thermal explosive energy-yield.
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Gas Processor
Uses air intake manifold, engine cylinder.
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Capacitance Reactance
Uses thermal explosive energy, thermal explosive energy-yield.
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Water Fuel Injector (Taper Resonant Cavity Chamber)
Uses gas-ignition, thermal explosive energy.
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A Perspective View on Water as Fuel: An Endless Source of Clean Energy
Uses gas ignition process, thermal explosive energy.
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Hydrogen Gas Fuel & Management System For An Internal Combustion Engine
Uses engine cylinder, internal combustion engine.
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Hydrogen Gas Injector System For Internal Combustion Engine
Uses burn-rate, internal combustion engine.
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Hydrogen Injection System
Uses burn-rate, internal combustion engine.
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Hydrogen Air & Non-Combustible Gas Mixing Combustion System
Uses burn-rate, internal combustion engine.
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Hydrogen Gas Injection for Internal Combustion Engine
Uses burn-rate, internal combustion engine.
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A Hydrogen Gas Fuel And Management System For An Internal Combustion Engine Utilizing Hydrogen Gas Fuel
Uses engine cylinder, internal combustion engine.
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Taper Water Fuel Injectors
Uses internal combustion engine, thermal explosive energy-yield.
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Rendering Hydrogen Safer Than Natural Gas
Uses burn-rate, gas-flame.
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Flame Temperature Adjustment
Uses burn-rate, gas-flame.
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Catalytic Block Assembly
Uses gas-flame, gas-ignition.
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Electron Bounce Phenomenon
Uses gas-ignition, thermal explosive energy.
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Laser Interaction
Uses gas-flame, gas-ignition.
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Internal Combustion Engine
Uses burn-rate, internal combustion engine.
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Controlled Hydrogen Gas Flame
Uses burn-rate, internal combustion engine.
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Hydrogen Gas Injection System for Internal Combustion Engine
Uses burn-rate, internal combustion engine.
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Dynamic Ways To Produce Electricity
Uses burn-rate, internal combustion engine.
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Hydrogen generating apparatus and components therefor
Uses air intake manifold, internal combustion engine.
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Methods to reduce combustion time and temperature in an engine
Uses engine cylinder, internal combustion engine.
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System to dynamically vary the volume of product gas introduced into a hydrocarbon combustion process
Uses engine cylinder, internal combustion engine.
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Hydrogen generating apparatus and components therefor
Uses air intake manifold, internal combustion engine.
Findings · 14
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Burn-Rate is measured as flame travel distance per one second after ignition
Uses burn-rate, gas-flame, gas-ignition.
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Ignited gas ions from Gas Resonant Cavity release thermal explosive energy beyond Gas-Flame Stage
Uses gas-flame, gas-ignition, thermal explosive energy.
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Additional non-combustible ambient air gases can further reduce hydrogen burn-rate to fossil-fuel levels
Uses burn-rate, gas ignition process, internal combustion engine.
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Capacitor ER should remain small due to water's dielectric value for max thermal explosive energy yield
Uses thermal explosive energy, thermal explosive energy-yield.
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Altering voltage surface shape increases thermal explosive energy yield beyond applied excitation voltage
Uses thermal explosive energy, thermal explosive energy-yield.
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Spark-Igniter starts gas ignition which sustains combustion and a gas flame
Uses gas-flame, gas-ignition.
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Burn-Rate values represent an average from repeated ignition trials
Uses burn-rate, gas-ignition.
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Gas Combustion Stabilization Process automatically changes Burn-Rate to reach target flame temperature
Uses burn-rate, gas-flame.
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Gas Combustion Stabilization Process recycles non-combustible gases to run ICE unchanged
Uses burn-rate, internal combustion engine.
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Voltage Igniter Stage works with VIC and Electron Extraction Circuit to trigger thermal explosive energy-yield
Uses thermal explosive energy-yield, voltage igniter stage.
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Fuel-gas combustion in engine cylinder converts hydrogen/oxygen into non-combustible exhaust gases and superheated water mist
Uses engine cylinder, thermal explosive energy.
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Hydrogen injector system recycles cooled exhaust gases into incoming ambient air to sustain gas modulator/ignition process
Uses engine cylinder, gas ignition process.
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Sub-critical gas atoms mix with metered fuel-gas and exhaust gas before entering engine cylinder
Uses air intake manifold, engine cylinder.
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Voltage Igniter Stage and VIC/Extraction Circuit jointly initiate the Hydrogen Fracturing Process
Uses thermal explosive energy-yield, voltage igniter stage.