[go: up one dir, main page]

WO2008113392A1 - Système d'énergie et gravitationnel - Google Patents

Système d'énergie et gravitationnel Download PDF

Info

Publication number
WO2008113392A1
WO2008113392A1 PCT/EP2007/002606 EP2007002606W WO2008113392A1 WO 2008113392 A1 WO2008113392 A1 WO 2008113392A1 EP 2007002606 W EP2007002606 W EP 2007002606W WO 2008113392 A1 WO2008113392 A1 WO 2008113392A1
Authority
WO
WIPO (PCT)
Prior art keywords
reactor
magnetic
chamber
materials
creation
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/EP2007/002606
Other languages
English (en)
Inventor
Mehran Tavakoli Keshe
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to PCT/EP2007/002606 priority Critical patent/WO2008113392A1/fr
Publication of WO2008113392A1 publication Critical patent/WO2008113392A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G21NUCLEAR PHYSICS; NUCLEAR ENGINEERING
    • G21BFUSION REACTORS
    • G21B1/00Thermonuclear fusion reactors
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E30/00Energy generation of nuclear origin
    • Y02E30/10Nuclear fusion reactors

Definitions

  • Miscalculation 2 The fundamental reversal of laws of physics. If one looks at magnetic field forces in the universe. The magnetic force is created and maintained, from the center outwards, in any star in possession of fusion core. In these man-made designs, the laws of physics are turned inside out, where the magnetic fields are enforced from the outside, inward. This is an explanation as to why the scientists are using so much energy for such a small output. Our view: The magnetic field force has to be created and maintained from the inner part to radiate out and thus allowing creation of the second magnetic field force inwards, to contain the plasma within the center of the core. Miscalculation 3: Current concepts of fusion production and maintenance lack a source of Gravitational Field Forces like the one in the center of the Sun.
  • This gravity around the center of the Sun is calculated to be in the order of hundreds and thousands of times more powerful then the gravitational force on the surface of the Earth.
  • the present technology cannot handle a few thousand degree's temperature. The question is: How are they going to handle one hundred million degree temperatures for a long time in a two-meter diameter TOKAMAK core without making provision for removing heating from the core?
  • Plasma ionization is detenvined by the electron temperature relative to the ionization energy (and more weakly by the density) in accordance with the Saha equation.
  • a plasma is sometimes referred to as being hot if it is nearly fully ionized, or cold if only a small fraction (for example 1%) of the gas molecules are ionized (but other definitions of the terms hot plasma and cold plasma are common).
  • Plasmas utilized in plasma technology are usually cold in this sense.” In addition, by unknown in prior art, today plasma's can also be created at room temperature or below, and at normal atmospheric pressure or below. As we have show in our simple reactors, like a cola bottle, a lunch box and a photo-film container. These plasma reactors deliver voltage and current, and can simultaneously separate carbon from the plastic of the bottle and deposit this carbon on copper electrodes under the form of atomic carbon (sp2 and sp3).
  • Yensen describes a apparatus and assembly for heating and compression of plasma, ions, to overcome the Coulomb repulsion) and to fuse into heavier element(s), and describes that this can be realized by the use of a plasma generator, a pump to circulate fluid, a plasma separator (14 and 22 of Fig. 1), etc.
  • a plasma generator to circulate fluid
  • a plasma separator 14 and 22 of Fig. 1
  • Line 39 - 43 explains that a starting temperature of 25,273 K is needed!
  • the fluid Mercury or an electrically conductive fluid
  • US 4,428,193 describes a very complex mechanical apparatus using compression caused by mechanical piston(s) (claim 1 , ⁇ 2) and a plurality of coils to create magnetic fields, and other means like filters, ray tubes, a polarizer, ionizers, supplies for electrical current to ionizing means, etc.
  • This apparatus or engine through heat excites adjacent helium to create a plasma (Column 11 , line 53 - line 54).
  • Papp isolates the helium first by other layers, and secondly from the walls by the use of a modest vacuum caused by coils and by the movement of the piston.
  • Paragraph 18 specifies that the "potential well” is formed by either a spherical grid anode or a virtual anode, and cages are added around the well to "slow down the speeding protons".
  • Paragraph 24 specifies that the grid is made by wire material (like tungsten), and paragraph 26 explains that the reactor output energy is in the form of high-velocity protons, that must be converted in electrons by a cage. We do not use cages, nor grids.
  • Paragraph 32 points out that an outside voltage source of -200Kv is needed which is lead to the center, which is not in our case since we don't use an initial electrical source in the center of the reactor.
  • a PMEF can be defined as the magnetic energy which is already possessed by the plasma and it is inherent in the construction of any atom. All atoms are collections of specific entangled plasmatic magnetic fields (SEPMAF), thus all atoms and molecules also posses SEPMAF's, and have more complex combinations of such PMEF. Also electrons are SEPMAF's , but certain other SEPMAF's can have identical of similar magnetic energy strength to electrons without being electrons themselves. The consequence of this is, in example, that when two nuclei approach each other, a fragment of their PMEF be released and such smaller PMEF can reposition and act as being an electron.
  • SEPMAF specific entangled plasmatic magnetic fields
  • mediators and the facilitators among said materials where the mediators are the elements which allow the facilitators to reach, be kept, be available or to be transported to and/or at a certain point in the core, where the facilitators can deliver their energy or carry out their functions in that specific point or area, and where the facilitators are the particles, plasma's, atoms and molecules which carry or can absorb or can deliver the release of plasmatic magnetic field of materials within the confinement of the said embodiment, where the fascinators are the materials which accommodate the transfer of energy between the recipient and/or the donor plasmatic magnetic energies, which are/can be used within the system.
  • the first method consist to produce energy and gravitational fields in a reactor, which comprises of: a. sustainable wall means; b. at least one chamber that can be sealed; c. port means for introducing materials in said chamber and for retrieving materials from said chamber; (after the introduction of said materials or able to add and/or retrieve materials during or after the processing); d. sealing means for the closing of said chamber, and which contains e. said materials from which at least one sub-quantity being radioactive and/or being able to be transformed in a radioactive isotope during the internal process; f.
  • said materials from which at least one sub-quantity being an inert gas and/or being able to be transformed in an inert gas or in inert gas vapour during the internal process g. said materials from which at least one sub-quantity being a atomic or molecular metallic material and/or being able to be transformed in a atomic or molecular metallic material, in metallic gas or in metallic vapour during the internal process; h.
  • the second method is to produce, in and around the embodiment of a reactor, a gravitational and/or anti-gravitational effect, where applying such effect will lead to be able to process matters in a new way, namely at atomic level, and at room temperature and normal pressure, or able to change positions of matters in respect to each other, which can be used in all where by the use of a semi-fusion (fusion/fission combination) chain of events, certain matters within said reactor are brought into a location to interact with each other, where the outcome of these interactions will create dynamic plasmatic magnetic energy fields (PMEF), where upon the interaction of at least two such PMEF in respect to each other, a fluid dynamic plasmatic repulsion and attraction field will be created (according to the principle of simultaneous attraction and repulsion of two similar and two dissimilar polarities), which the outcome of the interaction of the two dynamic fields, will lead to creation of double (superimposed) plasmatic magnetic energy fields, which are loosely interlocked spherically one on top of the other, creating a combined PMEF which one effect
  • sustainable wall means b. at least one chamber that can be sealed; c. port means for introducing materials in said chamber and for retrieving materials from said chamber; (after the introduction of said materials o r a ble to add and/or retrieve materials during or after the processing); d. sealing means for the closing of said chamber, and which contains e. said materials from which at least one sub-quantity being radioactive and/or being able to be transformed in a radioactive isotope during the internal process; f. said materials from which at least one sub-quantity being an inert gas and/or being able to be transformed in an inert gas or in inert gas vapour during the internal process; g.
  • the third method consists to create a gravitational producing system and related processes by the use of fusion, semi-fusion, ionization, and/or fission of materials within the confined reactor-embodiment, by the correct combination and association between the materials within the embodiment, where by the release of plasmatic magnetic energy created by the interaction of different materials and dynamic turbulent conditions of these materials and a radioactive source placed in the core can leading to the production of dynamic plasmatic magnetic fields within the embodiment, where upon at least two such fields interaction with each other, in the same core or in different locations or superimposed on top of each other, leading to creation of an interlocking double magnetic field, behaving as a whole as a gravitational field system, where by principle of attraction and repulsion of two similar and dissimilar magnetic polarities, a combined fluid plasmatic magnetic field within and/or in the vicinity of the two fields within the reactor is created or within it's surrounding environment is created, which this creates the condition for availability of applicable gravitational field force for the reactor, where this newly created gravitational field can determine
  • sealing means for the closing of said chamber and which contains m. said materials from which at least one sub-quantity being radioactive and/or being able to be transformed in a radioactive isotope during the internal process; n. said materials from which at least one sub-quantity being an inert gas and/or being able to be transformed in an inert gas or in inert gas vapour during the internal process; o. said materials from which at least one sub-quantity being a atomic or molecular metallic material and/or being able to be transformed in a atomic or molecular metallic material, in metallic gas or in metallic vapour during the internal process; p.
  • a turbulence, rotation, compressive and heating of a gaseous matter is created in a reactor by at least one central rotative magnetic field with the purpose of creating additional plasmatic conditions leading to various physical phenomena.
  • the invention relates to a gravity producing system, method, concept and technology whereby in a reactor (10) a chain of energetic events is created via a rotative magnetic (17A), initiation of a basic ionization of a gas (i.e. hydrogen 18A) or other matters, which then triggers a controllable chain of energy transfers (so called Scintillation) to the next following layer(s) of introduced gasses (i.e. He 18B, Ne 18C, Ar 18D, Kr, Xe 18E), of all other introduced elements of the periodic table (i.e. Li, Be,
  • introduced gasses i.e. He 18B, Ne 18C, Ar 18D, Kr, Xe 18E
  • the ultraviolet photons from reminisce of the explosion of stars have sufficient energy to strip the electrons completely away from hydrogen atoms and ionised hydrogen atoms.
  • the atom of hydrogen absorbs a photon with wavelength of 912A .the atom is ionised with the extra energy going in to kinetic energy of the electron. This requires a photon energy greater then 13.6 eV or wavelength of 912 A in the ultraviolet region.
  • Theoretical models of the installer cloud are providing new insights into the role of extreme ultraviolet rays and soft X-ray photoelectric heating, as well as thermal conductive interfaces, in explaining the observed high ratios of hydrogen HI at very low pressures. These indicating not the need for the use of ionised Hydrogen but natural hydrogen in the process of heating up a gas to Plasma State.
  • Scintillation of the liquid helium by can be achieved through use of Alpha or a beta radiation source, where the use of Alpha or Beta source excitation in liquid helium determines the density of the ionisation.
  • Adams calculated that, energy deposited by Beta particles in super fluid helium are emitted promptly as extreme ultraviolet rays light, and is considered to be as much as 35% of total energy released by the fluid.
  • the initial stage in the process of heating all the elements in the core of a reactor has to be the ionisation of atoms of hydrogen in the center core (called Caroline core) by using extreme ultraviolet rays, carried by compressed liquid helium into the core, which has been exposed to radioactive source prior to entry in to the center (Caroline) core.
  • the reactor has at least one (26) or more (27) spaces (i.e. cavities 11, layers, sub-chambers). This is very important to understand. 26 and 27 show two different approaches. 26 shows a reactor which has one chamber and inside will be - in the pure gaseous concept - several layers of inert gasses (or other matters or a mixture of gasses and matter). These layers are formed in the reactor chamber by the centrifugal and vacuum conditions according to their the atomic weight. Since the layers have a different rotational speed there will be kinetical, magnetic and other effects in the inter-layer regions. 27 shows instead a reactor concept where there is a real physical wall (i.e.
  • inert gas laws The second important principal for inert gas laws is that they do not mix with each other in a vacume and centrifuges condition.
  • Hydrogen gas in atomic and molecular level has some versatile properties, that if they are used for the right purpose at the right time in the right combination, this element will provide and facilitates most the needs of systems energy creation requirement for all applications.
  • hydrogen When Hydrogen is used in conjunction with other elements, hydrogen has the properties of being easy to be ionised by any source that can deliver a 13.6 eV of energy to achieve the ionisation of its atom. At the same time hydrogen has the capability to release this attained energy to a third elements in its neighbourhood and return to the ground state rapidly through this interaction with this third matter.
  • the system can be power generator, then with slight change in one of the parameters of one of the gases or introduction of other elements the system will become a gravity machine. Then maybe by combining the two effects. One will have a system that not only generates energy but it holds gravity and creates anti gravity too.
  • That central column (16A) may have several designs in relation to the reactor chamber, the desired functioning depending of the type of reactor and it's purpose of design, and may:
  • Either is completely immobile (fixed)(Fig. 9) but which has on it's surface at least one set of electro-magnets (90) and/or coils which can be activated (92A) or deactivated (92D) - possible wise controlled by electronic means (i.e. a microchip 93 ) - in a preferred periodical and/or positional way, which - preferable - can change polarity and/or strength (92A, 92B, 92C), that way able to create turbulence in the center core, and/or in other superior cores,
  • Either has at least one symmetrical or asymmetrical channel in it's tip which can pump gas(ses) from one side to the other,
  • the central column (16A) has possible wise - but very preferable - at least one internal channel (16D) (i.e. a borehole 16B) for the distribution and/or collection of relevant gas(ses), matter and/or plasma (23).
  • the central column possible wise can have at least one electrode (17B) - but very preferable several - to collect electric current for transportation (17C) to the outside of the reactor. This way the currents can be collected for several purposes.
  • the central column can have - depending from the type of reactor (i.e.
  • the reactor (10) comprises a body (24) that can made of any natural or man-made material or several materials, or in atomic or molecular state - at least made of one part - in which at least one hollow space (11) is positioned, and whereby all relevant parts (i.e. the wall 25) - if needed to be protected (i.e. coated, laminated, painted, etc.) in well known manners against corrosion, aggressive acids, etc.
  • a number of relevant supporting systems are positioned, such as: pressure-tanks (15A), reverse tanks (15B), turbo molecular pump (15E), gas seals, scintillation unit(s)(15C), electrical brushes (15D), heat removal chamber, valves, pumps, tubes, closing means, measuring means, control sensors, engine(s)(15F), gears, power- source, electrical components (i.e. fuse), computer(s), ICs, etc.
  • the internal rotation (50) will be continued due the interaction of the magnetic fields involved (self- sustained process), in correspondence with one of more core-layers and their containment.
  • the central column may be mechanically withdrawn (52) if the internal interaction goes after wish, and can be repositioned inside the chamber if there is a need to collect current, to add new gas(ses), matter and/or plasma, and/or to adapt or correct the balance of the lower or higher volume-ratio of the matter and density.
  • the central column will have on his tip (53)(central position) at least two magnetic means (54) of different pole, but preferable several sets which can be ring wise or polarity faced wise and sized positioned above or next to each other, and on the top of the column tip one magnet, either in polarity strips (95) or as a single body.
  • the central column may be treated at the inside and/or outside surface by radioactive material (16E)(i.e. liquid, solid or a spray), or materials which can radioactively decay, or by fixed methods of scintillatizion like microwave lamps.
  • a reactor may have more than one column, one (91) with it's tip positioned in the center area, and at least one (94) with it's tip on a different level, but separated from each other.
  • At least two central columns (fig.7) may be positioned opposite to each other, either creating a similar rotational effect, either creating a conflicting rotational direction.
  • the reactor body contains at least two separate hollow spaces of identical or different dimensions, g.
  • the reactor body may contains at least two separate material cores (i.e.
  • the reactor can be connected by connection means with at least one other reactor, either of a different type, dimension, concept, either identical.
  • at least one scintillating unit i.e. made of partially of Cs 137
  • a reactor may have either a solid structure (10), either a dynamical structure and being able to adapt it's structure after, (i.e. the internal pressure and temperature), and being secured by magnetic seals
  • a reactor core can have also several overall shapes, such as: perfect spherical, elliptic, half-circular, etc.
  • the reactor wall (25) and/or material core wall (29B) can have also locally or overall several topological shapes, skins and/or furnishings, such as: perfect smooth, dimpled, grooved, triangled, etc. Such surface properties may add additional effects on the internal process(es).
  • a material core (29B) can also be surrounded by conductive wires (i.e. copper) or bands, or similar, which can create additional Alternating Current, which can be superimposed on the Direct Current(s) which are created within the core.
  • the creation of internal heat source leading to creation and the interaction of two or more magnetic fields, leading to creation of gravity, shielding and current production in alternating or direct or electrovolts levels can be used in applications for space, aircraft, and submarine, sea-bottom habitat, liquid habitat (like in a container tank or for nano technology in blood vessels), colonisation crafts and colonisation systems (i.e. cocooned atmosphere conditions on a sea bed, beneath surface or on surfaces).
  • the same can also be created by at least one extra layer with a magnetic field rotating in opposite direction to at least one other magnetic field, within at least one core or outside the boundary of the system, creating in example a impenetrable field and useful for reentry or exit of atmospheric conditions, or for laser-like effects of co-existing magnetic fields (i.e. surgery, cutting tools and long-distance communication).
  • heating and drying devices the use of energy production capabilities for creating heating like warming the surrounding maters, like in boilers and heaters in the house for central heating systems or individual heating systems, and warm blanketing, using as boiler for warming up or boiling matters like liquids and malting solid materials, for use as drying system like hair dryers for industrial or commercial drying system, or heating oven, or stove or cookers in the house appliances, or grilling of food appliances for private or commercial or industrial use.
  • Other application can be i.e. the heating of the roads in winter, the soils for plant growth, etc -
  • New cooling devices can be constructed due the reverse gravity magnetic field_generation system(s), where the system will absorb heat from its surrounding, to cool its surrounding for use in the air-conditioning for buildings and cars, and crafts or any object which can carry any other object, refrigeration systems of any kind , production of ice or frozen state of any material or matter.
  • the production of new materials in and outside the reactor chamber under specific magnetic and/or gravitational conditions i.e. directional nano growth, the welding of atoms and molecules, etc. becomes possible.
  • a number of processes related to atom creation become possible, such as for human or animal or plant cells, where the micro gravitational field in presence of magnetic fields in one or more magnetic fields created in the center of the one or more cavities will allow magnetic fields above dark magnetic levels to manifest themselves and cluster together to create the nucleolus of the atom and in use of multi layering, then the electrons are allowed to manifest themselves, and these processes can be continued for leading to production of molecules, and base material for the DNA, where specific energies or magnetic fields are inserted leading to creation of the right characteristic of the foundation of the any cell or organs or creatures.
  • Gravitational devices become possible which can move without contact with a carrying substrate (i.e. earth surface, sea, air, etc.), such as gravitational lifted transport devices, lifters for heavy products, wheel chairs for able and disable bodies, the push chair for children , or elevators in building, the use of hollow center loop fitted with rotor blade of any kind for the manufacture of current, for sky or water board , sliding board for play where the board hover, for movement large objects, this being for automotive or commercial vessels, trucks and trailers or shipping over liquid or solid bodies from one continent to other or planets or solar systems and galaxies, for use of cycles sliding over surface, craft which can fly and have magnetic shielding and gravitational force field inside, for railway like system where the object of any size or length can flout over the track, use in the fork lift and crane and platform lifting of an object of any kind and size in industry for lifting objects or liquids to any height, for the use in the gates and doors which will elevate and levitate or revolve by use of antigravity and vice versa, tables and chairs,
  • New electronic devices and components become possible (i.e. computers, scanners, etc. with 3D-dynamische layers), nano-wire transistors, three dimensional screen, three dimensional communication holographic systems, etc., and various aspects of nano-technology, where the minuet machines needed to be energised and controlled, where the packages of energy can be made or delivered to the energy 06 Hs or the battery of the system for it to continue operation, or the use of minuet battery system which only creates electrovolts current needed for the operation of these micro machines.
  • a important application is in the field of communication systems, by the use of the soft body, or port of the reactor at least with one cavity, where the high energy magnetic wave are released in the spherical domain, or at least in one direction, where the magnetic energy will be code in the sequence as in the present system but this will be hard to decipher in the inter galaxy system, the best method of space rapid response communication will be the magnetic plasma of the element in the sequential chambers, what this means is that the Hydrogen plasma magnetic energy will be A, Helium plasma magnetic energy will be B and so forth, according to atomic weight if the element, where simultaneous small chamber magnetic charge will be released in the magnetic energy field level, then there is no need for decoding or losing information in the solar system or galaxy media, as each element of the periodic table carries it own magnetic energy frequencies in the plasma magnetic state, and then the time laps will be insignificant, and inter solar magnetospheric bouncing will be used, like satellite dishes of the present time to forward a massage onto the next system or craft in the other part of the same system or others.
  • New decontamination systems, and growth provoking magnetic conditions for human, animal and plant cells and life i.e. plasma-multi- color light
  • radiation protection i.e. radiation protection, CO2-decomposition system, etc.
  • New magnetic blanketing can be reached in a perfect way (internal magnetic ordering in objects, tools and devices).
  • Another field of applications is in field of Housing concepts and products, due the use of the magnetic field shielding, as an object to prevent passage or block or obscure the view into or out of an object, like as doors or walls for entering into or out of an object, like the door of a house or walls of the house, or as replacement of or the glass or any other materials used for this purpose where the double glazing or any kind of glazing, or prevention of entry of small or certain object can be predetermined by the field, like to be used as of mosquito nets and window fly nets, or as umbrellas for preventing the sun or the rain from reacting any matter or object, roofing, and flooring.
  • Products and applications can be designed related to the energy release mechanism using soft or retractable wall system of the core that can be used for release of plasma or energy or an object, or material in one or more direction from the at least one or more cores of the system, this being used as the rivet machines, nail machines or guns of all sorts, shooting guns for defence and laser or leisure or hunting, using for destruction of matter ahead like dynamite, drilling machine in any scale or with any power, dentist drilling machine, space weapons for destruction of meteorite or object ahead, where the delivered mater will not have a physical container as of the rockets and bolts of present time, but packages of energy being magnetic or plasmas or matter of any kind.
  • New type of suction machines for vacume system for absorption or attraction of other matters by use of magnetic field attraction or physical suction of the system this being used for likes of household vacuum cleaners or industrial vacuum cleaners, or for absorption of any gas or liquid, or solid material from its immediate environment like in contamination clean up conditions, and this can be created through magnetic strength helicities between at least two inter-layers (57, 55) of material with different speed of rotation and varying atomic weight, creating it's own localized magnetic field black hole (56) condition where by the use of soft body core or magnetic tunneling material can be sucked into the black hole region from the core region of the reactor or by facilitating a port hole from matters outside into the black hole condition, as described in annex (section " creation of black hole”) and in the description.
  • consumer products such as textiles (i.e. with memory), and vacuum suits for human or animal or any object in possession of internal gravity for play or industrial or apace application, like toys (i.e. human lifting belts) and sporting products, all sorts of material used for floating, belts for levitation , where gravity can be reversed, magnetic shield bowls, diving suits for submerging in to any liquid or gas in possession of gravity and heating elements.
  • textiles i.e. with memory
  • vacuum suits for human or animal or any object in possession of internal gravity for play or industrial or apace application
  • toys i.e. human lifting belts
  • sporting products all sorts of material used for floating, belts for levitation , where gravity can be reversed, magnetic shield bowls, diving suits for submerging in to any liquid or gas in possession of gravity and heating elements.
  • Products, machinery and applications become possible which are related to using the magnetic pressurises for the production or shaping of all kinds of material or containers and use in the pressure moulding and pressure casting, or for the pressure pumped systems of all types of materials and matters, like the water pumps, injectors for computer industry printing and etching system and lithography, printing industry (i.e. transfer print), and platting and lamination industry.
  • Zero gravity machines can be used for production of material, where the reactor will, by in circulating the inner cavity, where the material is produced, like in flask or a room , where the magnetic fields of one or more do not pass the inner physical boundary of the containment but creates the zero gravity condition in the inner cavity but not at the same time a vacume condition, this being used for like production of silicone or for the micro chip industries where clean but zero gravity condition is necessary.
  • an very important application and method is related to the generation of electrical power, using one or more materials in the cavities, by the use of collection of the appropriate charge particles from the right electrodes specially positioned in the He (83) and Ar (82) layers or on the appropriate material layer, where the positive charges can be utilised as well as the negative charges for operation and used within or the outside the parameters of the system, that is to say the protons carry as much energy or most instance more than the its electron counter parts, where ever they are collected in one or more cavities of the reactor, and by which the total utilisation of all energies from all parts of an atom even the magnetic dark matter is possible, and not just the electrons as has been done up to now.
  • Atomic welding applications and technology becomes a simpler way to produce or fuse matter together than fusion methods - where large energies are required to fuse to atoms together - where atomic welding brings to near similar atoms or molecules together and only add one electron or proton, or an neutron for the two atoms to become one, which ' s ' n reality the reverse atomic decay or half life system method, which the world of science has never understood, where for example potassium goes through beta decay to become argon, where if one add beta in the magnetic and gravitational condition one can create potassium from argon, thus applying the material creation in the universe, where the atoms do no start always from hydrogen to go to uranium, but they just simple weld into higher element to create heavier elements, like creating 113 element out of Iron 56 and 57 (which is a double magnetic element and therefore can be called magnetically a 'dark' matter).
  • a reactor (26) can have only one rotating chamber.
  • This reactor body (26) can contain at least two inserted gasses of different atomic weight which position themselves due the centrifugal effect in layers: (1) the lighter gas(ses) at the inside (so called inner core 28A) and (2) the heavier gas(ses) at the outside (so called outer core 28B).
  • reactor (27) will have at least two internal chambers (28C and 28D).
  • the reactor can have at least two internal chambers, from which at least one in stationary (28D).
  • the reactor body can have at least two internal chambers, from which at least one (28C) is connected with the central column (29) and both rotate together.
  • the reactor (10) has a central column (16A) which is in rotation, but is also possible to make a reactor where the central column is static.
  • a reactor can also been build where there is a different central column in at least two chambers.
  • the central column can have several shapes and/or concepts, at least in one chamber, such as: fully telescopic, partly telescopic, with a pipit inside, without a pipit inside, partly dynamic (i.e. only tip part rotates).
  • the central column will be designed after the intentional purpose, the materials to be used, the way to insert them and the conditions to meet.
  • the central column may have rotary-blade(s) or saddle(s), covered with various materials (i.e. radioactive), equipped with magnetic means (i.e. solid, liquid, coils, electromagnets, ionization emitters (i.e. lamps, microwave, chemicals, etc.).
  • a reactor (fig. 1 to 9) will create at least one spherical or other shaped non-tangible magnetic field (20, 21 , 30, 40, 41, 50, 62, 63) at least in one chamber.
  • a reactor (fig. 6, 8) is also claimed that can create at least two spherical or other shaped non-tangible magnetic fields superimposed or encircled one inside the other at least in one chamber.
  • a reactor (fig. 2) is also claimed that can create at least two spherical or other shaped non-tangible magnetic fields (20, 21) superimposed or encircled one inside the other at least in one chamber, for the creation of gravity and antigravity (i.e. lift, levitation), and/or at least a double magnetospheric (22) effect.
  • a reactor (fig. 2) is also claimed that can create at least two spherical or other shaped non-tangible magnetic fields (20, 21) superimposed or encircled one inside the other at least in one chamber, for the creation of plasma for cold or hot fusion process, including the containment of such plasma, in position of gravity for fusion processes (i.e. power generation, production of new materials).
  • a reactor is also claimed to generate electric current (80, 81 , 82, 83) at least in one chamber through ionization, turbulence, convection, rotation and plasma, and magnetic fields and interaction between at least two magnetic fields, and at least in one layer of the material in one chamber.
  • a heat reactor is also claimed to generate heat in at least in one chamber through ionization, turbulence, convection, rotation and plasma, and magnetic fields and interaction between at least two magnetic field, and at least in one layer of the material in one chamber, which will deliver heat (70) to at least one material in at least one chamber or to the surrounding outer layer of the inside of the reactor, or at the outer boundary of the reactor (i.e. for heat-transfers, heat exchangers or heating or lighting (i.e. steam).
  • a reactor is also claimed to generate cooling in at least in one chamber through ionization, turbulence, convection, rotation and plasma, and magnetic fields and interaction between at least two magnetic field, and at least in one layer of the material in one chamber, which create cooling effect to at least one material in at least one chamber or to the surrounding outer layer of the inside of the reactor, or at the outer boundary of the reactor.
  • a reactor which possesses - in at least in one chamber - all type of heat, current, magnetic field (gravity and plasma), i.e. space-craft technology, magnetic shielding.
  • This invention is intended to bring substantial progress and freedom for civilization in various domains.
  • Fig. 1. shows a rotative plasma reactor with a central column and with on top a assembly of external technical items, like containers.
  • Fig. 2. shows a rotative plasma reactor with inside the cavity two magnetic fields.
  • the two images on the right are 3D gradations to show the spheric shape.
  • Fig. 3 shows how magnetic fields can reach to outside the rotative reactor.
  • Fig. 4 shows that two magnetic fields which cover each a small and larger area in the reactor cavity.
  • Fig. 5 shows a rotative plasma reactor with one core.
  • Fig. 6 shows a rotative plasma reactor with two partitions. In each partition a magnetic field is put.
  • Fig. 7 shows the distribution of heat in the rotative plasma reactor.
  • Fig. 8 shows the radiation and currents in the rotative plasma reactor.
  • Fig. 9 shows a static plasma reactor with a non-rotative central column, where on the right is shown a grid with magnets which are activated random or irregular to trigger internal rotation.
  • Fig. 10 gives a general view of all processes in our rotative plasma reactor.
  • Fig. 11 is a photo of a static plasma reactor, a cola bottle which has three electrodes in the liquid and two in the upper layer (the plasma). The photo shows that between two copper electrodes a voltage is measured. Next to the production of energie, also atomic carbon (sp2 and sp3) is deposited on the electrodes and electrode parts which in the plasma.
  • sp2 and sp3 is deposited on the electrodes and electrode parts which in the plasma.
  • Fig. 12 shows a cola bottle plasma reactor which has only two copper electrodes. This bottle was first filed, then emptied. Only moisture is left, being the plasma. Voltage is measured between the electrodes. Additionally the electrodes were deposited with atomic carbon which is originating from the plastic of the bottle.
  • Fig. 13 shows a cola bottle plasma reactor which has three copper electrodes. This bottle contains a liquid. Voltage is measured between the electrodes in the plasma. Not shown here is that also voltage and current is measured between an electrode in the plasma and one submerged in the liquid. Additionally the electrodes were deposited with atomic carbon which is originating from the plastic of the bottle.
  • Fig. 14 shows a graph indicating the outcomes between electrodes N°1 and 1A, and 2 and 3. Measurement in mV and mA.
  • Fig. 15 shows on the left a electrode tested for the characteristics of the deposits. These are atomic carbon (sp2 and sp3) as shown in the photo on the right. This is confirmed in the reference document in annex B. (by IMEC 1 title: Raman spectroscopy sp2/sp3).

Landscapes

  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Plasma & Fusion (AREA)
  • General Engineering & Computer Science (AREA)
  • High Energy & Nuclear Physics (AREA)
  • Physical Or Chemical Processes And Apparatus (AREA)

Abstract

Un nouveau procédé, un nouveau processus et une nouvelle technologie décrivent comment des substances introduites peuvent auto-générer des conditions plasmatiques, du plasma et des champs d'énergie magnétiques plasmatiques en présence de conditions d'ionisation et à la température ambiante et dans des conditions atmosphériques normales. Cette condition de plasma initiale, y compris la génération de tension et de courant, peut être améliorée en ajoutant des moyens de mise en mouvement. Davantage de turbulences, de rotation, de compression et de chauffage d'une matière gazeuse sont alors créés dans un réacteur en créant des conditions plasmatiques conduisant à la génération de divers champs magnétiques où au moins l'interaction de deux champs magnétiques conduirait à la création d'au moins un phénomène de force gravitationnelle. Dans un mode de réalisation de réacteur, une série d'événements énergétiques est créée au moyen d'une initiation magnétique rotative d'une ionisation basique d'un gaz (c'est-à-dire l'hydrogène) qui déclenche ensuite une série contrôlable de transferts d'énergie (scintillation) à la (aux) couche(s) suivante(s) de gaz introduits (c'est-à-dire He, Ne, Ar, Kr, Xe), de tous les autres éléments introduits du tableau périodique (c'est-à-dire Li, Be, K, Ca, Ti,... Pt, etc.) et/ou de leurs combinaisons moléculaires introduites (c'est-à-dire une vapeur). Une colonne centrale comporte un moyen magnétique pour démarrer le processus. L'invention décrit divers concepts, diverses applications et divers produits, tels que le voyage spatial et la soudure atomique.
PCT/EP2007/002606 2007-03-22 2007-03-22 Système d'énergie et gravitationnel Ceased WO2008113392A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/EP2007/002606 WO2008113392A1 (fr) 2007-03-22 2007-03-22 Système d'énergie et gravitationnel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/EP2007/002606 WO2008113392A1 (fr) 2007-03-22 2007-03-22 Système d'énergie et gravitationnel

Publications (1)

Publication Number Publication Date
WO2008113392A1 true WO2008113392A1 (fr) 2008-09-25

Family

ID=38511383

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/EP2007/002606 Ceased WO2008113392A1 (fr) 2007-03-22 2007-03-22 Système d'énergie et gravitationnel

Country Status (1)

Country Link
WO (1) WO2008113392A1 (fr)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107928221A (zh) * 2017-11-01 2018-04-20 福建龙泰竹家居股份有限公司 一种竹木座椅及其生产工艺
CN111805527A (zh) * 2019-04-12 2020-10-23 天津大学 球状体自发电场驱动智能材料软体机器人及其制备方法
CN114754812A (zh) * 2022-04-08 2022-07-15 济南智宣光电科技有限公司 基于重力作用的盾构机滚刀状态检测装置
CN117105229A (zh) * 2023-07-25 2023-11-24 鞍钢股份有限公司 一种利用激光加热炉冶炼工业硅的方法及激光加热炉

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4831627A (en) * 1988-08-01 1989-05-16 Adam Dukovic Energy generator
EP1770717A1 (fr) * 2005-10-03 2007-04-04 Mehran Keshe Tavakoli Système gravitationnel et énergétique

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4831627A (en) * 1988-08-01 1989-05-16 Adam Dukovic Energy generator
EP1770717A1 (fr) * 2005-10-03 2007-04-04 Mehran Keshe Tavakoli Système gravitationnel et énergétique

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107928221A (zh) * 2017-11-01 2018-04-20 福建龙泰竹家居股份有限公司 一种竹木座椅及其生产工艺
CN111805527A (zh) * 2019-04-12 2020-10-23 天津大学 球状体自发电场驱动智能材料软体机器人及其制备方法
CN111805527B (zh) * 2019-04-12 2022-07-15 天津大学 球状体自发电场驱动智能材料软体机器人及其制备方法
CN114754812A (zh) * 2022-04-08 2022-07-15 济南智宣光电科技有限公司 基于重力作用的盾构机滚刀状态检测装置
CN117105229A (zh) * 2023-07-25 2023-11-24 鞍钢股份有限公司 一种利用激光加热炉冶炼工业硅的方法及激光加热炉

Similar Documents

Publication Publication Date Title
EP1770717A1 (fr) Système gravitationnel et énergétique
Ebeling et al. Quantum statistics of dense gases and nonideal plasmas
Aliev et al. " Magnetized" black holes
Miley et al. Inertial electrostatic confinement (IEC) fusion
Bernardini AdA: The first electron-positron collider
Turner et al. Energetic protons, radionuclides, and magnetic activity in protostellar disks
US20080187086A1 (en) Method and apparatus for controlling charged particles
Taube Evolution of matter and energy on a cosmic and planetary scale
WO2008039505A2 (fr) Procede et appareil de controle de particules chargees
Möller Accelerator Technology: Applications in Science, Medicine, and Industry
WO2008113392A1 (fr) Système d'énergie et gravitationnel
Bake et al. Bright γ-ray source with large orbital angular momentum from the laser near-critical-plasma interaction
Sanchez-Salcedo et al. On the fraction of dark matter in charged massive particles (CHAMPs)
Mason et al. Astrophysical and cosmological constraints on life
US20180254153A1 (en) Apparatus for plasma confinement and for ion separation
Nikitin The principles of developing the ball lightning theory
Holgate Nuclear fusion: the race to build a mini-sun on earth
Kadyshevich et al. Development of the PFO–CFO hypothesis of solar system formation: Why do the celestial objects have different isotopic ratios for some chemical elements?
Greiner et al. Is the vacuum really empty?
Codino How electrostatic fields generated by cosmic rays cause the expansion of the nearby universe
Alfvén Annihilation model of quasi-stellar objects
WO2025063136A2 (fr) Système de décélération de muons, système de transmutation nucléaire, récipient, et dispositif
JP2025065084A (ja) 装置、加速器、減速器、核変換システム
Ligon The World's Simplest Fusion Reactor, And How to Make It Work
Wendt et al. Applications of Fusion Energy Sciences Research-Scientific Discoveries and New Technologies Beyond Fusion

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 07723554

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 07723554

Country of ref document: EP

Kind code of ref document: A1