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Stan’s Legacy

patent · JP59148584A

Gas generating generator

15 February 1983

Translated from Japanese

Machine-translated from Japanese by Google Patents, and offered as a way in rather than as the record. The Japanese is the document — where the two differ, it is the one that counts.

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Description

DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a gas generating power generation device that uses a device that separates hydrogen and oxygen from water by a non-electrolytic process.

US Patent Application A3θ, 2. filed by the present inventor on September 6, 2007. No. g07 discloses a new hydrogen generator. The hydrogen generator is equipped with a pressure-resistant container for a water bath, and the plates of Haruka are lined up and immersed in the water bath. Hydrogen and oxygen atoms are separated from water molecules by passing water between the plates while applying a low power, unregulated, non-p-wave DC voltage between the plates. Each plate is formed from a non-oxidizing, similar metal and is sub-atomic. A non-electrolytic system is constituted by the action of atomlc).

The upper part of the pressure vessel is a storage chamber for hydrogen and oxygen that maintains a predetermined pressure level.

A novel hydrogen burner is disclosed in US Patent Application No. &4T/1977, filed by the present inventor on August 25, 1979. The nozzle of the burner is connected to a reservoir or gas collection chamber by a suitable line. The mouth of the nozzle is provided with an opening of a size and shape selected depending on the size of the flame and the temperature and velocity of the combustion mixture.

Furthermore, a novel power generation device is disclosed in US Patent Application No. A 31-105/, filed on 1979-2-12, filed by the present inventor. In this device, a non-magnetic pipe is filled with gas particles subjected to a magnetic field and passed through the pipe at high speed. Its speed depends on the pressure within the gas storage chamber of the gas generator. When the magnetized gas particles pass through the core of the coil, the voltage is divided by 1! flow is induced. This voltage/ [The current can be used in the same way as a regular power source.

The hydrogen and oxygen mixture released from one end of the /J pipe is fed to a gas burner and combusted as described in the inventor's US patent application Ser. No. 7,711,977. When the gas burner is not in use, the mixture is guided by other means in a closed loop into the storage chamber of the hydrogen generator.

The present invention uses the basic principle of a particle accelerator and the principle that a voltage/current is induced in the secondary winding by passing a magnetic element through the secondary winding in combination with a hydrogen generator. It is. The particle accelerator uses the W-build as described in the above-mentioned US patent application A3θ2. It uses the principles described in No. g 07.

The device of the invention comprises an induction coil having a large number of turns and an output for using the voltage/current induced in the induction coil. The induction coil is wrapped around a non-magnetic tube forming a closed loop.

The hydrogen generator includes a plurality of grates arranged in rows arranged within a pressure vessel. Hydrogen and oxygen are dissociated from water molecules by applying a direct voltage/current between the plates. The upper part of the pressure vessel is a chamber trap that stores hydrogen and oxygen under a predetermined pressure. A reservoir outlet means for discharging a mixture of hydrogen and oxygen connects the non-magnetic tube to the chamber. Magnetizing means adjacent the outlet means create a magnetic field to apply a magnetic potential to the hydrogen and oxygen pressurized out of the outlet means.

Additionally, the device includes a closed loop of non-magnetic pipe into which a number of magnetized particles are inserted.

A magnetic acceleration assembly is positioned on the i4 drive and includes a low voltage input primary inductive winding. A secondary winding is positioned on the pipe opposite the primary winding. When voltage is applied to its primary winding, Magnetized particles are accelerated through a magnetic acceleration assembly. A voltage/current is induced when the accelerated particles pass through the secondary winding. Within a closed-loop system, the process occurs continuously. The increased secondary voltage/current is used in DC to AC amplifiers.

Thus, it is an object of the present invention to provide a hydrogen generator/power generator capable of generating larger voltage/current.

Furthermore, the present invention aims to provide a hydrogen generator and power generator using magnetized gas particles from a hydrogen generator as magnets and elements. An object of the present invention is to provide a hydrogen generator/power generation device equipped with a hydrogen generator having the following features.

A further object of the present invention is to provide a power generation device that can be used in conjunction with a hydrogen generator and has an output other than electricity.

Furthermore, it is an object of the present invention to provide a hydrogen generator/power generation device with a simple structure using easily available components.

Embodiments of the present invention will be described in detail below with reference to the drawings.

FIG. 1 schematically shows a preferred embodiment of the invention. In FIG. 1, a hydrogen generator 10 has a pressure housing 15 which is airtight. The inside of the puffer fish 15 is filled with water 12 to a predetermined level. A plurality of plates 14 arranged in a row are immersed in the water 12. Similar to the hydrogen generator described in the aforementioned US patent application A J O,2, gθ7, the plates 14 are in pairs formed of similar non-oxidizing metals.

A negative potential and a positive potential are applied from a power source 16 to every seventh plate 14 in the plate row. This hydrogen generator 1 The generation of hydrogen and oxygen at 0 is due to subatomic action and not due to electrolysis. That is, the potential applied to the plate 14 causes hydrogen atoms and oxygen atoms to dissociate from water molecules. Therefore, any water can be used in the generator 10, regardless of its purity or amount of contaminants. However, it is also possible to use an electrolytic generator as the aqueous generator, although this increases cost and reduces efficiency. In this case, the grate 14 will be used as an anode and a cathode, and distilled water to which chemicals have been added will be used as water.

The liberated hydrogen (denoted as particles 20a = 20n) and oxygen (denoted as particles 22a-,2,2n) are separated from the liberated intermediate gases, e.g. , 2/n are collected in the chamber 23 and stored there. The chamber 23 is provided with switch means 57 for disconnecting the power source 16 and the generator 10 when the pressure within the chamber 23, as detected by the pressure gauge 55, reaches a predetermined level.

When the hydrogen generator is used as a burner, as disclosed in US Pat. The action of the gas burner is the same in 7/the present invention as in the application.

A magnetizing element 30 with magnetic poles 32, 34 is arranged in the discharge pipe 25. The magnetized member 30 is a non-magnetic discharge pipe 2 A permanent magnet or an electromagnet may be used as long as the magnetic field 36 can be formed across the magnet. The magnetic field 36 magnetizes the gas emitted from the chamber 23. Hydrogen particles are positively magnetized, The oxygen particles become negatively magnetized and a magnetized gas mixture is formed.

A loop-shaped non-magnetic tube 50 is connected to the discharge tube 25 adjacent to the magnetized member 30 . This loop-shaped non-magnetic tube 5 0 can be any of the configurations described in the aforementioned US patent application. The non-magnetic tube 50 At the other end, a pipe 35 to the burner assembly 40 and a return pipe 42 to the chamber 23 are connected via a Y-connection. As mentioned above, the inside of the chamber 23 is maintained at a predetermined pressure, and when that pressure is reached, gas particles are released into the exhaust pipe 25 at a considerable speed.

The pressurized gas particles are magnetized by the magnetizing member 30 and then passed through the loop-shaped non-magnetic tube 50.

Around the non-magnetic tube 50, conductive 1v11i! 60 a is wound many times to form a coil 60. The number of turns and the size of the coil are related to the shape of the non-magnetic tube 50 and the magnitude of the current to be output. Magnetized gas particles flow through the non-magnetic tube 50 at high speed.

When the magnetized gas particles pass through the coil 60, a current is induced in the coil 60 via the induced electromagnetic field. The current is used via terminals 70.72.

When a flame is requested from the command circuit 65 (for example, for heating), the valve 47 is opened and the mixture is sent to the nozzle 40 where it is ignited and produces the flame 45.

Once the command is satisfied, the valve 37 is closed and the gas mixture is returned to the chamber 23 through the return pipe 42 forming a closed loop. At this time, the pump 45 is driven and the gas is continuously circulated in the closed loop. Check valve 49 prevents gas from entering return pipe 42 when bong 7° 45 is stopped. Pressure force meter 55 When the pressure inside the chamber 23 detected by K is at a predetermined pressure, the voltage supply from the power source 16 is cut off and gas generation is stopped.

FIG. 2 shows another embodiment of the invention.

In this embodiment, the pump 45 in FIG. 1 is replaced by a particle accelerator 46. This particle accelerator 46 is a non-mechanical device with no moving parts and is free from wear problems. As mentioned above, hydrogen and oxygen are magnetized. Therefore, when the magnetized gas approaches the accelerator 46, it is attracted to the accelerator 46, and as it passes through its center, it is accelerated and sent out.

Propulsion means other than pump 45 in FIG. 1 and accelerator 46 in FIG. 2 may be used.

The volume of hydrogen and oxygen determined by the volume of chamber 23 and their pressure determine the strength of the magnetic field.

The higher the pressure, the greater the velocity of the gas and therefore the greater the voltage/current output.

The current/voltage induced at 5 as described in the aforementioned US patent application can be direct current or alternating current at the output terminals 70,72. The device shown in FIG. 2 includes a parallel coil 74 for direct current and a series coil 75 for alternating current.

The number of coils At 74 a to 74 n of the DC coil 74 determines the pulsation frequency and amplitude of the DC voltage.

Similarly, the number of turns of the conductors 75a to 75n of the AC coil 75 determines the frequency and amplitude.

The pulsating frequency of the DC voltage in the coil 74 and the frequency of the AC voltage in the coil 75 can be changed or controlled. That is, the frequency is a function of the number of turns in the coil multiplied by the gas speed per second. The velocity of the gas can be varied by varying the magnetic field, which is varied by varying the pressure of the gas within chamber 23.

Furthermore, it has been found that as the pressure of the gas within chamber 23 increases, the velocity of the gas increases exponentially. The frequency and amplitude of both the heavy pressure output from the DC coil 74 and the voltage output from the AC coil increase geometrically due to the arithmetical increase in the pressure of the emitted gas. Although it is necessary to increase the rate of depletion (pressure) to achieve this, increasing the hydrogen whistle may be undesirable, for example when controlling the composition of the air-fuel mixture to burn the flame 45.

Increasing the amount of hydrogen increases the combustion temperature of the mixture and increases the velocity of the gas. The efficiency of moxibustion is also proportionally affected, unless it is quenched.

Therefore, in order to increase the pressure of the gas in the chamber 23, Non-combustible substrates 21a to 21n, such as nitrogen, are added to the air-fuel mixture from pressurized introduction means.

[Brief explanation of the drawing]

FIG. 1 is a schematic diagram showing an apparatus according to one embodiment of the present invention, and FIG. 2 is a schematic diagram showing an apparatus according to another embodiment of the present invention. 10...Hydrogen generator, 12...Water, 14...Plate, 15... Housing, 23... Chamber, 25 ...Exhaust pipe, 30...Magnetization part side, 40...Burner, 60174.75... ····coil. Engraving of the drawings (no changes to the contents) ■, Indication of the incident Showa jirr year Patent application No. 23 Otsu Otsu Otsu No. 29 Title of invention Gas generation power generation device 3, Person making the amendment Relationship to the case Applicant name Stanley A. Mayer 4, agent 5 Date of amendment order March 31, 1955 6 Subject of amendment Engraving of all drawings (no change in content)

Claims

[Scope of Claims] (1) A housing comprising a water container containing natural water, a gas 11y for supplying and discharging gas in a predetermined body position above and below, and a chamber; a pair of similar non-oxidizing plates located at m 1.;'f, on the pair of non-numerical plates; Direct current heavy pressure / electric current filter / which exerts a hydraulic sub-atomic action and dissociates hydrogen and oxygen atoms from water molecules; a non-magnetic tube to pass through; a magnetizing means positioned adjacent to the one end of the non-magnetic tube to charge hydrogen atoms and acid-based atoms discharged from the gas outlet under pressure; consisting of an induction coil, wound on The lines of magnetic flux of the magnetized gas traversing the induction coil through the magnetic flux induce a current voltage in the induction coil, and the coil An apparatus for generating hydrogen and oxygen, characterized in that it is equipped with means for using. (2) The device according to claim 1 (4), characterized in that the other end of the non-magnetic tube is connected to a handle I9 that uses a mixed mixture of hydrogen and oxygen. 3) A nozzle equipped with a spout for spouting out the air-fuel mixture and an ignition means for igniting the spouted air-fuel mixture is connected to the other end of the non-magnetic device [1], and the nozzle is connected to a predetermined temperature. A patent characterized in that it has a size and a shape, and the range of blue water is as follows. The device according to claim 1, characterized in that: (5) a pressure gauge for determining the pressure within the chamber; A patent characterized in that the direct current and piezoelectric current sources are connected to switch means so as to stop the generation of water and oxygen when the pressure in the chamber reaches the predetermined pressure. An apparatus according to claim 1. (6) Connected to the other end of the non-magnetic tube and the chamber, and closed Ql! 2. The device according to claim 1, further comprising a gas conduit forming a loop. (7) One between the other end of the non-magnetic tube and the chamber! 71 = A gas conduit connected to form a closed loop, and means disposed within the gas conduit for circulating the magnetized drug atoms and oxygen atoms through the non-magnetic tube; An apparatus according to claim 1, characterized in that: (8) A gas conduit connected to the other end of the non-magnetic tube and the chamber to form a closed loop, and a one-way valve connected to the end of the gas conduit on the chamber side. 2. A device according to claim 1, characterized in that: (9) A patent claim comprising a gas conduit, a gas usage means, and a Y-shaped joint for selectively connecting the gas conduit to the gas usage means and the chamber in a closed loop. The device according to item 1. ([0) a gas conduit, a gas usage means, a Y-joint selectively connecting the gas conduit to the gas usage means and the chamber with a lance, a two-way valve means, and a Y-joint connecting the gas conduit to the gas usage means and the chamber; 2. The apparatus of claim 1, further comprising a command circuit which is read and selectively connects said gas line to said gas usage means and chamber in response to predetermined conditions. U a gas generator housing equipped with a gas absorption chamber for holding a predetermined volume of gas under pressure, an outlet means connected at one end to the chamber, and a non-magnetic tube connected to the other end of the outlet means. , magnetizing means disposed adjacent to the outlet means between the chamber and the non-magnetic tube and magnetizing the gas pumped from the outlet means; an induction coil wound on the non-magnetic tube; Voltage or current using means connected to the induction coil, the magnetic force of the magnetized gas passes through the magnetic tube and connects the induction coil to 4? A gas generation device characterized in that a current/voltage is induced when the gas is turned off. u21 The device according to claim 1, wherein the gas is a combustible gas, and means for using the combustible gas is connected to the other end of the non-magnetic tube. 0. The device according to claim 1, wherein the induction coil has a plurality of windings wound in parallel, and the induced voltage/' current is unipolar. αa The device according to claim 1, wherein the induction coil has a plurality of windings connected in series, and the induced current If/- is an alternating current. Device according to claim 1, characterized in that the coil consists of a plurality of windings, and the frequency of the induced voltage/current depends on the number of windings. (Claim 1/1) comprising means for changing the output frequency of the chamber IE/current 7 induced in the induction coil by changing the pressure of the gas in the chamber. The device according to the invention comprises means for varying the amount of gas generated to vary the pressure of the gas in the chamber, thereby varying the output frequency of the voltage/° current induced in the induction coil. Characteristic features fIf the device according to claim 1. ■ Adding a non-combustible gas into the chamber to change the gas pressure in the chamber, thereby increasing the electric current induced in the induction coil. Claim 11, characterized in that it comprises means for changing the output frequency of tE/current. Apparatus described in section. (t9) Return pipe means for returning the magnetized gas to the chamber is provided in the non-magnetic tube, further comprising means for causing the gas to pass through the chamber, the non-magnetic pipe and the return pipe means. Device edge according to claim 1, characterized in that it is provided. t20) said non-magnetic tube is provided with return pipe means for returning said magnetized gas to said chamber, and further provided with a particle accelerator for circulating said gas through said chamber, said non-magnetic pipe and said return pipe means. Device according to claim 1, characterized in that:

Provenance

Pages
7
Method
pdftoppm 300dpi + tesseract 5 (jpn+jpn_vert, eng)
Source
open-source-energy.org patent PDF
Date From
filing date, from the issuing office — it lists no publication date
Title From
issuing office