Voltage Wave-Guide
As the sources put it
Voltage wave-guide (570) allows the activation points (E9a xxx E9n) to transpire since wave-guide (570), now, functions as a Quenching Circuit (370) of Figure (3-40) to prevent gas ignition until the traveling gases (under static pressure) are exited out of and away from exit port (32) of Figure (6- 2) ...
Where it appears · 25
Documents 10
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Resistance (Rs)
2× · introduced
…fect) (66/67) of Figure (7-11) as to Figure (590) of Figure (6-2) to bring-on and perform Voltage Wave-Guide phenomena (57) of Figure (6-2) (66/67) of Figure (7-11) Figure (590 & 57) of Figure (6-2) ... causing and all…
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Propagating Electrical Stress
1× · introduced
…to Dynamic State Space (800) of Figure (8-4), as so illustrated in WFC memo (427) titled "Voltage Wave-Guide" Static State Space (790) of (8-3) Dynamic State Space (800) of Figure (8-4) ... whereby, the Voltage Wave-Gu…
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Taper Water Fuel Injectors
1× · introduced
Voltage wave-guide (570) allows the activation points (E9a xxx E9n) to transpire since wave-guide (570), now, functions as a Quenching Circuit (370) of Figure (3-40) to prevent gas ignition until the traveling gases (u…
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Water Fuel Injector
1× · introduced
…E10n) in linear progression. Together, parallel sides (E9 / El0) not only functions as a "voltage wave-guide" (570) but, also, acts and performs as a "voltage intensifier circuit" when applied gated pulse-frequency (64…
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Funneling Effect
1× · introduced
…g water injection cycle... causing Resonant Cavity Zone (35) to function and perform as a voltage wave-guide (86) of Figure (14) since the gradual decrease in cross-sectional circumference area (85) of Figure (14) is i…
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Taper Resonant Capacitor (ERt)
1× · introduced
…e surface combination thereof ... each resonant cavity design acting and functioning as a Voltage Wave-guide (570) and gap-size (35) sufficient enough to allow the "Quenching Effect" to take place, as illustrated in (7…
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Optical Thermal Lens
1× · introduced
…ge Pulse-waves (583/602axxx 583/602n) of Figure (8-1A) to travel the linear length of the Voltage Wave-Guide. The Static Electrical Charging Effect ( -) (585) is set up when applied Electrical Stress Wave-form (RD / RD…
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8-2 - Traveling Voltage Wave-Guides
3×
The formation of tubular Traveling Voltage Wave-guide (570a) of Figure (7-12) (WFC Memo 426) as to (770) of Figure (8-1) is physically formed when positive electrical voltage surface (66/E9) and negative electrical vol…
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VIC Switchover Circuit
2×
…s of identical length, now, individually forms what is called hereinafter a "Differential Voltage Wave-guide" (1040) ... being defined as heating water by alternate pulsation of opposite voltage fields at different pul…
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Capacitance Reactance
1×
…lishing Quenching Circuit (370) of Figure (3-40) to prevent gas ignition inside traveling voltage wave-guide (590) of Figure (6-2) as to (730) of Figure (7-12) Quenching Circuit (370) of Figure (3-40) (590) of Figure (…
Bench findings 15
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Voltage Zones become Voltage Wave-Guides made of T304 stainless steel
1×
…e Pulse-waves (583/602a xxx 583/602n) of Figure (8-1A) to travel the linear length of the Voltage Wave-Guide.…
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Paired voltage zones form a Differential Voltage Wave-Guide via Switchover Firing Logic
1×
…/953) with (E15/954), each of identical longitudinal axis length, forms the 'Differential Voltage Wave-Guide' (1040), defined by alternate pulsation of opposite voltage fields at different pulse time-on periods per 'Vo…
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Differential Voltage Wave-Guide uses concentric tube construction like resonant cavity
1×
The Differential Voltage Wave-Guide (1040) is constructed with a smaller tube placed inside a much larger tube, with space between them to allow water to pass through, similar in construction to the linear cylindrical…
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Tubular array is made of T304 stainless steel, chemically inert to the voltage process
1×
The constructed tubular-array of the Differential Voltage Wave-Guide is composed of T304 stainless steel material (or equivalent), chosen for being chemically inert to the voltage deflecting process (1050).…
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Pulse width, voltage amplitude, and switchover frequency together determine water heating rate
1×
…termines the rate at which water temperature rises as it travels through the Differential Voltage Wave-Guide (1040).…
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Conical cavity acts as both voltage wave-guide and voltage intensifier circuit
1×
The parallel sides (E9/E10) of the conical cavity function as a 'voltage wave-guide' and also act as a voltage intensifier circuit as the applied gated pulse-frequency travels the cavity length toward the exit port (32…
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Resonant Cavity Zone tapers cross-section to create Funneling Effect
1×
…vity Zone (35) has a gradually decreasing cross-sectional circumference (85), acting as a voltage wave-guide (86) that reduces the parallel voltage surface areas (83/84) from a larger segment (85a) to a smaller segment…
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Voltage Chamber can be fully SELF-ENCLOSED OUTSIDE the water bath (dry gas-phase conditioning stage)
1×
…as passing through it downstream. Consistent with the taper resonant cavity and traveling voltage wave-guide being gas-phase (open-air conical cavity, not water-immersed). ENGINEERING RULE: design the voltage chamber a…
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Voltage wave-guide formed by two parallel s/s tube surfaces with space-gap between
1×
The tubular Traveling Voltage Wave-guide is physically formed when positive voltage surface (E9) and negative voltage surface (E10) are placed in parallel space relationship about a cylindrical axis of rotation, separa…
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Stainless steel T304 tube surfaces conduct voltage via skin effect to form the wave-guide shape
1×
…material dictates the shape and configuration of the voltage waves and forms the tubular voltage wave-guide matching the water-gap configuration.…
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Voltage Coefficient of Water and stainless steel establish the Traveling Electrical Voltage Wave-Guide
1×
…ess steel material forming voltage surfaces (E9/E10) establishes the Traveling Electrical Voltage Wave-Guide; the electrical conductance zone between the electrical surface (E9/E10) and the dielectric surface tension o…
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S/S coil-wrap conducts voltage potential via skin effect across its surface
1×
…ace area (skin effect) (66/67 of Figure 7-11, referencing 590 of Figure 6-2), producing a Voltage Wave-Guide phenomena (57 of Figure 6-2).…
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Water's dielectric value (Re) is approximated via Capacitance Equation Eq.22
1×
…Capacitance Equation (Eq. 22), illustrated as 650 of Figure 7-4, relative to the Tapered Voltage Wave-Guide (720) of Figure 7-11.…
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Resonant cavity gap-size must be sufficient to allow the Quenching Effect
1×
Each resonant cavity design functions as a Voltage Wave-guide (570) with a gap-size (35) sufficient enough to allow the 'Quenching Effect' to take place, as illustrated in Figure 7-12 (730) and Figure 3-40 (370).…
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Capacitor ER should remain small due to water's dielectric value for max thermal explosive energy yield
1×
…hes the Quenching Circuit (370, Figure 3-40) to prevent gas ignition inside the traveling voltage wave-guide (590, Figure 6-2; 730, Figure 7-12).…