CN104681104A - Improved nuclear fusion furnace - Google Patents

Improved nuclear fusion furnace Download PDF

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Publication number
CN104681104A
CN104681104A CN201510114121.3A CN201510114121A CN104681104A CN 104681104 A CN104681104 A CN 104681104A CN 201510114121 A CN201510114121 A CN 201510114121A CN 104681104 A CN104681104 A CN 104681104A
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CN
China
Prior art keywords
magnetic
ring
guide rail
shaped guide
induction layer
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Pending
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CN201510114121.3A
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Chinese (zh)
Inventor
梁锡球
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Flying Saucer Of Trying Hard To Keep Flight Co Ltd
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Flying Saucer Of Trying Hard To Keep Flight Co Ltd
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Priority to CN201510114121.3A priority Critical patent/CN104681104A/en
Publication of CN104681104A publication Critical patent/CN104681104A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G21NUCLEAR PHYSICS; NUCLEAR ENGINEERING
    • G21BFUSION REACTORS
    • G21B1/00Thermonuclear fusion reactors
    • G21B1/05Thermonuclear fusion reactors with magnetic or electric plasma confinement
    • 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

Abstract

The invention discloses an improved nuclear fusion furnace which comprises a magnetic conductive housing, an ignition device, a magnetic levitation ball and a gas transmission device, wherein a plurality of first annular guide rails and at least two second annular guide rails are fixed on an outer wall of the housing; each first annular guide rail is equipped with a plurality of first work cars; each second annular guide rail is equipped with a plurality of second work cars; the magnetic levitation ball is positioned in the housing and comprises a first magnetic induction layer, a first heat insulation layer, an iron core reaction layer, a second heat insulation layer and a second magnetic induction layer; an annular recess is formed in an outer wall of the iron core reaction layer; a housing wall body between the two adjacent annular guide rails forms an annular wall; the annular wall is over against the annular recess, and the annular wall and the annular recess are matched to form an annular channel; variable strong magnetic fields are generated between the second working cars and the second annular guide rails; second magnetic force lines of the strong magnetic fields penetrate the annular channel to form an annular magnetic confinement space. The improved nuclear fusion furnace can effectively control an atomic nuclear fusion reaction of deuterium-tritium mixed gas in the magnetic confinement space through a magnetic confinement effect.

Description

The fusion furnace improved
Technical field
The present invention relates to the fusion furnace of improvement.
Background technology
Nuclear fusion, namely light atom core (such as deuterium and tritium) be combined into comparatively Der schwere Atomkern (such as helium) time release huge energy.Nuclear fusion refers to that the atom (mainly referring to deuterium or tritium) by quality is little needs under certain condition, as superhigh temperature and high pressure, the mutual polymerization of atomic nucleus could be there is, generate the atomic nucleus that new quality is heavier, and along with huge exergonic a kind of nuclear reaction form.But current nuclear fusion device is generally difficult to be controlled, therefore, the energy of nuclear fusion release is still difficult to effective utilization.
Summary of the invention
Technical matters to be solved by this invention, is just to provide the fusion furnace of improvement, effectively controls in magnetic confinement passage by the atomic nucleus fusion reaction of magnetic confinement effect by deuterium tritium mixed gas.
For solving the problems of the technologies described above, the technical scheme that the present invention takes is as follows:
The fusion furnace improved, comprise the shell of magnetic conduction, portfire, magnetic levitation ball, for exporting the air delivery device of deuterium tritium mixed gas, the outer wall of shell is fixed with multiple first ring-shaped guide rail circumferentially and at least two the second ring-shaped guide rails, each first ring-shaped guide rail is all furnished with multiple first transiting vehicles coordinating with this first ring-shaped guide rail and produce magnetic suspension force and expulsive force, and each second ring-shaped guide rail is all furnished with multiple second transiting vehicles coordinating with this second ring-shaped guide rail and produce magnetic suspension force and expulsive force;
Magnetic levitation ball is positioned at shell, comprise the first stacked magnetic induction layer, the first thermofin, iron core responding layer, the second thermofin and the second magnetic induction layer from top to bottom, the outer wall of iron core responding layer caves inward and is formed with ring-shaped depression, and the diapire cross section of this ring-shaped depression is curved; Enclosure wall between the second adjacent ring-shaped guide rail outwards arches upward the curved annular wall of Formation cross-section, and annular wall is built-in with the water pipe externally connected, this annular wall and ring-shaped depression just to and coordinate and form circular passage, the cross section of this circular passage is circle; Portfire and air delivery device are all fixed on outer shell outer wall, and the firing tip of portfire and the output terminal telescopically of air delivery device stretch in circular passage;
First transiting vehicle with rotating in a circumferential direction along the first ring-shaped guide rail under the mutual thrust of the first ring-shaped guide rail, and mutual magnetic levitation effect first magnetic line of force changed between this first transiting vehicle and first ring-shaped guide rail, this magnetic line of force penetrates the first magnetic induction layer and the second magnetic induction layer, and make magnetic levitation ball be suspended in shell, and rotate along the magnetic line of force sense of rotation of the first transiting vehicle, the rotation of this magnetic levitation ball is by cutting first magnetic line of force and produce electric energy; Second transiting vehicle with rotating in a circumferential direction along the second ring-shaped guide rail under the mutual thrust of the second ring-shaped guide rail, and mutual magnetic levitation effect the high-intensity magnetic field changed between this second transiting vehicle and second ring-shaped guide rail, second magnetic line of force of this high-intensity magnetic field penetrates circular passage and in this circular passage, forms circular magnetic confinement space;
Portfire is lighted a fire through the deuterium tritium mixed gas of air delivery device input in circular passage by firing tip, deuterium tritium mixed gas is made to be heated as plasma, and in circular passage, there is the energy that atomic nucleus fusion reaction discharges, this energy discharged: on the one hand iron core responding layer is remained in the magnetically confined narrow space of first magnetic line of force be heated to gaseous state and solid-state between circulation conversion; The deuterium tritium mixed gas passed into continuously in circular passage is heated to plasma and atomic nucleus fusion reaction occurs, for maintaining the chain type atomic nucleus fusion reaction of deuterium tritium mixed gas on the one hand; Also the water in water pipe is heated to water vapor ejection on the one hand.
Further, described shell is spherical in shape, and shell has one first flat top portion and one first flat bottoms, and described first ring-shaped guide rail is symmetrically set between the first flat top portion and the first flat bottoms; Described second ring-shaped guide rail is symmetrically set in the both sides in shell equator, and is positioned at the edges at two ends of annular wall; First flat top portion and the first flat bottoms are respectively equipped with the 3rd ring-shaped guide rail and coordinate multiple 3rd transiting vehicles producing magnetic suspension force and expulsive force with the 3rd ring-shaped guide rail.
Further, described first magnetic induction layer there is the second flat top portion, the second magnetic induction layer has the second flat bottoms.
Further, described first magnetic induction layer is identical with the second magnetic induction layer, first thermofin is identical with the second thermofin, and the first thermofin and the second thermofin are symmetrical arranged centered by iron core responding layer, and the first magnetic induction layer and the second magnetic induction layer are also symmetrical arranged with iron core responding layer.
Further, described magnetic levitation ball is furnished with an axis, this axis is successively through the first magnetic induction layer, the first thermofin, iron core responding layer, the second thermofin and the second magnetic induction layer, and this axis is affixed with the first magnetic induction layer, the first thermofin, iron core responding layer, the second thermofin and the second magnetic induction layer respectively.
Further, the outer wall of described shell is provided with the electronic emitter of externally electric discharge, and this electronic emitter has a discharging antenna, and the end of this discharging antenna is made by the radiomaterial americium or zirconium certainly can seeking discharge loop.
Further, described portfire is laser heating device or God Light device.
Further, described first magnetic induction layer, the second magnetic induction layer and iron core responding layer are made by iron, and described shell is made up of iron or steel.
Further, the inner wall surrounding of described annular wall is provided with at least two circle the last the first magnetic around copper coil, and the diapire of described loop wire depression encloses the last the second magnetic around copper coil, to strengthen the magnetic confinement power in circular magnetic confinement space around being provided with at least two.
Further, described shell is fixed by a support.
Compared to existing technology, beneficial effect of the present invention is:
The present invention is coordinated with the magnetic levitation of the first ring-shaped guide rail by the first transiting vehicle, make to produce first magnetic line of force along the first transiting vehicle sense of rotation change between the two, at this first magnetic line of force to the first magnetic induction layer, under the effect of the second magnetic induction layer, magnetic levitation ball is suspended to hold up and is rotated, this magnetic levitation ball and the first transiting vehicle synchronous rotary, and formed to iron core responding layer gaseous state and solid-state between circulation conversion magnetic confinement, simultaneously, second transiting vehicle coordinates with the magnetic levitation of the second ring-shaped guide rail, make to produce high-intensity magnetic field, and by second magnetic line of force, magnetic confinement is formed to circular passage, thus in circular passage, circular magnetic confinement space is formed in the process of magnetic levitation ball rotation, when pass into the deuterium tritium mixed gas in this circular magnetic confinement space by ignition device to the temperature of nuclear fusion condition after, then produce atomic nucleus fusion reaction, this nuclear fusion reaction is constrained in circular magnetic confinement space and becomes the flow direction along state to operate in the high-intensity magnetic field of torrent, manipulated by the speed of the second transiting vehicle and be effectively controlled, and the energy discharged is on the one hand by iron core responding layer Dynamic Absorption in the process of gaseous state and solid-state conversion, and with speed, just arranging electromagnetism intensity size also can ensure that the temperature in shell is unlikely to too high by the first transiting vehicle, also nuclear fusion reaction can be made further to be effectively controlled, on the one hand also for as the heating efficiency continuing the deuterium tritium mixed gas entered in circular magnetic confinement space, form the fusion reaction of chain type atomic nucleus, on the other hand, heated the water in water pipe, the water vapour formed moderately sprays, can be utilized effectively, as the generating of driving steam turbine drive electrical generators.
Below in conjunction with the drawings and specific embodiments, the present invention is described in further detail.
Accompanying drawing explanation
Fig. 1 is the perspective view of the fusion furnace that the present invention improves;
Fig. 2 is the cut-open view of the fusion furnace that the present invention improves.
In figure: 1, shell; 101, the first flat top portion; 102, the first flat bottoms; 11, the first ring-shaped guide rail; 12, the second ring-shaped guide rail; 13, annular wall; 131, the last the first magnetic is around copper coil; 14, the 3rd ring-shaped guide rail; 2, portfire; 3, magnetic levitation ball; 31, the first magnetic induction layer; 311, the second flat top portion; 32, the first thermofin; 33, iron core responding layer; 34, the second thermofin; 35, the second magnetic induction layer; 351, the second flat bottoms; 36, ring-shaped depression; 361, the last the second magnetic is around copper coil; 37, axis; 4, air delivery device; 5, the first transiting vehicle; 6, the second transiting vehicle; 7, circular passage; 8, circular magnetic confinement space; 9, the 3rd transiting vehicle; 10, electronic emitter; 100, communication antenna; 200, support.
Embodiment
The fusion furnace of the improvement as shown in Fig. 1 ~ 2, comprise the shell 1 of magnetic conduction, portfire 2, magnetic levitation ball 3, for exporting the air delivery device 4 of deuterium tritium mixed gas, the outer wall of shell 1 is fixed with multiple first ring-shaped guide rail 11 circumferentially and at least two the second ring-shaped guide rails 12, each first ring-shaped guide rail 11 is all furnished with multiple first transiting vehicles 5 coordinating with this first ring-shaped guide rail 11 and produce magnetic suspension force and expulsive force, and each second ring-shaped guide rail 12 is all furnished with multiple second transiting vehicles 6 coordinating with this second ring-shaped guide rail 12 and produce magnetic suspension force and expulsive force;
Magnetic levitation ball 3 is positioned at shell 1, comprise stacked the first magnetic induction layer 31, first thermofin 32, iron core responding layer 33, second thermofin 34 and the second magnetic induction layer 35 from top to bottom, the outer wall of iron core responding layer 33 caves inward and is formed with ring-shaped depression 36, and the diapire cross section of this ring-shaped depression 36 is curved; Shell 1 wall body between the second adjacent ring-shaped guide rail 12 outwards arches upward the curved annular wall 13 of Formation cross-section, annular wall 13 is built-in with the water pipe (not shown) externally connected, this annular wall 13 and ring-shaped depression 36 just to and coordinate and form circular passage 7, the cross section of this circular passage 7 is circular; Portfire 2 and air delivery device 4 are all fixed on shell 1 outer wall, the firing tip of portfire 2 and the output terminal telescopically of air delivery device 4 stretch in circular passage 7, as required described firing tip and described output terminal to be stretched into the wall body of circular passage 7 or retraction shell 1; The ring-shaped depression 36 of this example is specifically positioned at the Chi Daochu of magnetic levitation ball 3.
First transiting vehicle 5 with rotating in a circumferential direction along the first ring-shaped guide rail 11 under the mutual thrust of the first ring-shaped guide rail 11, and mutual magnetic levitation effect first magnetic line of force changed between this first transiting vehicle 5 and first ring-shaped guide rail 11, this magnetic line of force penetrates the first magnetic induction layer 31 and the second magnetic induction layer 35, and make magnetic levitation ball 3 be suspended in shell 1, and rotate along the magnetic line of force sense of rotation of the first transiting vehicle 5, the rotation of this magnetic levitation ball 3 is by cutting first magnetic line of force and produce electric energy; Second transiting vehicle 6 with rotating in a circumferential direction along the second ring-shaped guide rail 12 under the mutual thrust of the second ring-shaped guide rail 12, and mutual magnetic levitation effect the high-intensity magnetic field changed between this second transiting vehicle 6 and second ring-shaped guide rail 12, second magnetic line of force of this high-intensity magnetic field penetrates circular passage 7 and in this circular passage 7, forms circular magnetic confinement space 8;
Portfire 2 is lighted a fire to the deuterium tritium mixed gas inputted through air delivery device 4 in circular passage 7 by firing tip, deuterium tritium mixed gas is made to be heated as plasma, and in circular passage 7, there is the energy that atomic nucleus fusion reaction discharges, this energy discharged: on the one hand iron core responding layer 33 is remained in the magnetically confined narrow space of first magnetic line of force be heated to gaseous state and solid-state between circulation conversion; The deuterium tritium mixed gas passed into continuously in circular passage 7 is heated to plasma and atomic nucleus fusion reaction occurs, for maintaining the chain type atomic nucleus fusion reaction of deuterium tritium mixed gas on the one hand; Also the water in water pipe is heated to water vapor ejection on the one hand.
Coordinated by the magnetic levitation of the first transiting vehicle 5 with the first ring-shaped guide rail 11, make to produce first magnetic line of force along the first transiting vehicle 5 sense of rotation change between the two, at this first magnetic line of force to the first magnetic induction layer 31, under the effect of the second magnetic induction layer 35, magnetic levitation ball 3 is held up by suspension and rotates, this magnetic levitation ball 3 and first transiting vehicle 5 synchronous rotary, and formed to iron core responding layer 33 gaseous state and solid-state between circulation conversion magnetic confinement, simultaneously, second transiting vehicle 6 coordinates with the magnetic levitation of the second ring-shaped guide rail 12, make to produce high-intensity magnetic field, and by second magnetic line of force, magnetic confinement is formed to circular passage 7, thus in circular passage 7, circular magnetic confinement space 8 is formed in the process of magnetic levitation ball 3 rotation.The magnetic levitation ball 3 rotated provides the high-intensity magnetic field of change, and then forms this circular magnetic confinement space 8.Under the cooperation of ring-shaped depression 36 and annular wall 13, Formation cross-section is circular circular passage 7, when the circular magnetic confinement space 8 in this circular passage 7 by the second transiting vehicle 6 to coordinate with the magnetic induction of the second ring-shaped guide rail 12 second magnetic line of force of the change produced fetter, follow-up nuclear fusion reaction is effectively controlled.
When pass into the deuterium tritium mixed gas in this circular magnetic confinement space 8 by ignition device to the temperature of nuclear fusion condition after, then produce atomic nucleus fusion reaction, this nuclear fusion reaction is constrained in circular magnetic confinement space 8 and becomes the flow direction along state to operate in the high-intensity magnetic field of torrent, form restrained explosive combustion, and manipulated by the speed of the second transiting vehicle 6 and be effectively controlled, and the energy discharged is on the one hand by iron core responding layer 33 Dynamic Absorption in the process of gaseous state and solid-state conversion, and with speed, just arranging electromagnetism intensity size also can ensure that the temperature in shell 1 is unlikely to too high by the first transiting vehicle 5, also nuclear fusion reaction can be made further to be effectively controlled, on the one hand also for as the heating efficiency continuing the deuterium tritium mixed gas entered in circular magnetic confinement space 8, form the fusion reaction of chain type atomic nucleus, on the other hand, heated the water in water pipe, the water vapour formed moderately sprays, can be utilized effectively, as the generating of driving steam turbine drive electrical generators.
When shell 1 self-energy is too high, iron core responding layer 33 absorbs energy and gasifies, iron core responding layer 33 after this gasification still by the first thermofin 32, second thermofin 34 and circular magnetic confinement space 8 limit, to maintain its structure, when energy shortage is after gasification iron core responding layer 33, solidify to form again solid-state and release energy, maintaining the dynamic feedback of energy, energy that resilience, order should discharge continues balance.And because the combination of ferro element can be maximum, therefore iron core responding layer 33 is difficult at high temperature nuclear fusion reaction occur, therefore this iron core responding layer 33 can circulate conversion between gaseous state and solid.
According to magnetic field intensity needs during the 8 pairs of nuclear fusion reactions in circular magnetic confinement space, can control rotational speed and the sense of rotation of the second transiting vehicle 6, the speed of each the second transiting vehicle 6 and sense of rotation can be different.Can arrange curved by the second transiting vehicle 6, the girth of this second transiting vehicle 6 is less than the second ring-shaped guide rail 12, and namely each second ring-shaped guide rail 12 configures the second transiting vehicle 6 of an arc.What also the second transiting vehicle 6 can be set to as shown in Fig. 1 ~ 2 of the present invention is separate multiple, and spaced apart around the circumference of the second ring-shaped guide rail 12, and namely each second ring-shaped guide rail 12 configures multiple second transiting vehicle 6.Certainly, for controlling the rotating speed of magnetic levitation ball 3, the rotational speed of control first transiting vehicle 5 and sense of rotation also can be adopted to realize, to the set-up mode of this first transiting vehicle 5, can be identical with the set-up mode of the second transiting vehicle 6, repeat no more herein.Wherein, by increasing the copper cash pitch of the laps on the second transiting vehicle 6, then can coordinate with the second ring-shaped guide rail 12 and form high-intensity magnetic field.Portfire 2 can adopt laser heating device or God Light device.First magnetic induction layer 31, second magnetic induction layer 35 and iron core responding layer 33 are made by iron, and shell 1 is made up of iron or steel.
Shell 1 is spherical in shape, and shell 1 has one first flat top portion 101 and one first flat bottoms 102, first ring-shaped guide rail 11 to be symmetrically set between the first flat top portion 101 and the first flat bottoms 102; Second ring-shaped guide rail 12 is symmetrically set in the both sides in shell 1 equator, and is positioned at the edges at two ends of annular wall 13; First flat top portion 101 and the first flat bottoms 102 are respectively equipped with the 3rd ring-shaped guide rail 14 and coordinate multiple 3rd transiting vehicles 9 producing magnetic suspension force and expulsive force with the 3rd ring-shaped guide rail 14.3rd transiting vehicle 9 coordinates the 3rd magnetic line of force produced can produce magnetic levitation ball 3 to retrain, directly act on the first magnetic induction layer 31 and the second magnetic induction layer 35 simultaneously, can prevent magnetic levitation ball 3 from swinging or toppling with the 3rd ring-shaped guide rail 14.
Second flat top portion 311, the second magnetic induction layer 35 that has of the first magnetic induction layer 31 has the second flat bottoms 351.The setting of the second flat top portion 311 and the second flat bottoms 351, can suppress magnetic levitation ball 3 to overturn further, can keep magnetic levitation ball 3 smooth rotation.
For strengthening the stationarity that magnetic levitation ball 3 rotates further, first magnetic induction layer 31 is identical with the second magnetic induction layer 35, first thermofin 32 is identical with the second thermofin 34, first thermofin 32 and the second thermofin 34 are symmetrical arranged centered by iron core responding layer 33, and the first magnetic induction layer 31 and the second magnetic induction layer 35 are also symmetrical arranged with iron core responding layer 33.First thermofin 32 and the second thermofin 34 are all set to be made up of exotic material.
Magnetic levitation ball 3 is furnished with an axis 37, this axis 37 is successively through the first magnetic induction layer 31, first thermofin 32, iron core responding layer 33, second thermofin 34 and the second magnetic induction layer 35, and this axis 37 is affixed with the first magnetic induction layer 31, first thermofin 32, iron core responding layer 33, second thermofin 34 and the second magnetic induction layer 35 respectively.First magnetic induction layer 31, first thermofin 32, iron core responding layer 33, second thermofin 34 and the second magnetic induction layer 35 can be connected in series by axis 37, further can strengthen the stability of rotation of magnetic levitation ball 3.This axis 37 is set to be made up of exotic material.
Because magnetic levitation ball 3 cuts rotation in the magnetic line of force, therefore it will produce electric energy, and in order to external communication to control the rotating speed of the first transiting vehicle 5 and the second transiting vehicle 6, turn to, and then the energy of the generation of control nuclear fusion reaction, the outer wall of shell 1 is provided with the electronic emitter 10 of externally electric discharge, magnetic levitation ball 3 in shell 1 can be rotated formation electric energy and externally discharge by this electronic emitter 10, and external unit can be set up carry out recovery electric energy, the process of this release, by the electrical energy transfer of axis 37, the energy reduced in shell 1 preserves, or reclaim electric energy to be used for outside, shell 1 is avoided to bear.This electronic emitter 10 has a discharging antenna 100, and the end of this communication antenna 100 is made by the radiomaterial americium or zirconium certainly can recovering road, can form discharge tip, be beneficial to radio communication.
Radiomaterial on discharging antenna 100, makes air that ionization occur thus increases electron emission effect, and increasing the efficiency of interception external lightning.This discharge mode is similar to the lightning rod that end has radiomaterial.Laser, americium or zirconium all can be suffered from one's own actions loop and can not occur to bump against restriction or checking relation in five elements.
As preferred embodiment, the inner wall surrounding of annular wall 13 is provided with at least two circle the last the first magnetic around copper coil 131, and to strengthen the magnetic confinement power in circular magnetic confinement space 8, this last the first magnetic forms by copper wire winding around copper coil.For strengthening stability, shell 1 is fixed by a support 200.Loop wire caves in 26 diapires around being provided with at least two circle the last the second magnetic around copper coil 361, to form the magnetic confinement power more strengthened around copper coil 131 in conjunction with the last the first magnetic, can resist the high heat of high temperature.
Above-mentioned embodiment is only the preferred embodiment of the present invention; can not limit the scope of protection of the invention with this, change and the replacement of any unsubstantiality that those skilled in the art does on basis of the present invention all belong to the present invention's scope required for protection.

Claims (10)

1. the fusion furnace improved, it is characterized in that: comprise the shell of magnetic conduction, portfire, magnetic levitation ball, for exporting the air delivery device of deuterium tritium mixed gas, the outer wall of shell is fixed with multiple first ring-shaped guide rail circumferentially and at least two the second ring-shaped guide rails, each first ring-shaped guide rail is all furnished with multiple first transiting vehicles coordinating with this first ring-shaped guide rail and produce magnetic suspension force and expulsive force, and each second ring-shaped guide rail is all furnished with multiple second transiting vehicles coordinating with this second ring-shaped guide rail and produce magnetic suspension force and expulsive force;
Magnetic levitation ball is positioned at shell, comprise the first stacked magnetic induction layer, the first thermofin, iron core responding layer, the second thermofin and the second magnetic induction layer from top to bottom, the outer wall of iron core responding layer caves inward and is formed with ring-shaped depression, and the diapire cross section of this ring-shaped depression is curved; Enclosure wall between the second adjacent ring-shaped guide rail outwards arches upward the curved annular wall of Formation cross-section, and annular wall is built-in with the water pipe externally connected, this annular wall and ring-shaped depression just to and coordinate and form circular passage, the cross section of this circular passage is circle; Portfire and air delivery device are all fixed on outer shell outer wall, and the firing tip of portfire and the output terminal telescopically of air delivery device stretch in circular passage;
First transiting vehicle with rotating in a circumferential direction along the first ring-shaped guide rail under the mutual thrust of the first ring-shaped guide rail, and mutual magnetic levitation effect first magnetic line of force changed between this first transiting vehicle and first ring-shaped guide rail, this magnetic line of force penetrates the first magnetic induction layer and the second magnetic induction layer, and make magnetic levitation ball be suspended in shell, and rotate along the magnetic line of force sense of rotation of the first transiting vehicle, the rotation of this magnetic levitation ball is by cutting first magnetic line of force and produce electric energy; Second transiting vehicle with rotating in a circumferential direction along the second ring-shaped guide rail under the mutual thrust of the second ring-shaped guide rail, and mutual magnetic levitation effect the high-intensity magnetic field changed between this second transiting vehicle and second ring-shaped guide rail, second magnetic line of force of this high-intensity magnetic field penetrates circular passage and in this circular passage, forms circular magnetic confinement space;
Portfire is lighted a fire through the deuterium tritium mixed gas of air delivery device input in circular passage by firing tip, deuterium tritium mixed gas is made to be heated as plasma, and in circular passage, there is the energy that atomic nucleus fusion reaction discharges, this energy discharged: on the one hand iron core responding layer is remained in the magnetically confined narrow space of first magnetic line of force be heated to gaseous state and solid-state between circulation conversion; The deuterium tritium mixed gas passed into continuously in circular passage is heated to plasma and atomic nucleus fusion reaction occurs, for maintaining the chain type atomic nucleus fusion reaction of deuterium tritium mixed gas on the one hand; Also the water in water pipe is heated to water vapor ejection on the one hand.
2. the fusion furnace of improvement according to claim 1, is characterized in that: described shell is spherical in shape, and shell has one first flat top portion and one first flat bottoms, and described first ring-shaped guide rail is symmetrically set between the first flat top portion and the first flat bottoms; Described second ring-shaped guide rail is symmetrically set in the both sides in shell equator, and is positioned at the edges at two ends of annular wall; First flat top portion and the first flat bottoms are respectively equipped with the 3rd ring-shaped guide rail and coordinate multiple 3rd transiting vehicles producing magnetic suspension force and expulsive force with the 3rd ring-shaped guide rail.
3. the fusion furnace of improvement according to claim 2, is characterized in that: described first magnetic induction layer there is the second flat top portion, the second magnetic induction layer has the second flat bottoms.
4. the fusion furnace of the improvement according to any one of claims 1 to 3, it is characterized in that: described first magnetic induction layer is identical with the second magnetic induction layer, first thermofin is identical with the second thermofin, first thermofin and the second thermofin are symmetrical arranged centered by iron core responding layer, and the first magnetic induction layer and the second magnetic induction layer are also symmetrical arranged with iron core responding layer.
5. the fusion furnace of improvement according to claim 4, it is characterized in that: described magnetic levitation ball is furnished with an axis, this axis is successively through the first magnetic induction layer, the first thermofin, iron core responding layer, the second thermofin and the second magnetic induction layer, and this axis is affixed with the first magnetic induction layer, the first thermofin, iron core responding layer, the second thermofin and the second magnetic induction layer respectively.
6. the fusion furnace of the improvement according to any one of claims 1 to 3, it is characterized in that: the outer wall of described shell is provided with the electronic emitter of externally electric discharge, this electronic emitter has a discharging antenna, and the end of this discharging antenna is made by the radiomaterial americium or zirconium certainly can seeking discharge loop.
7. the fusion furnace of the improvement according to any one of claims 1 to 3, is characterized in that: described portfire is laser heating device or God Light device.
8. the fusion furnace of the improvement according to any one of claims 1 to 3, is characterized in that: described first magnetic induction layer, the second magnetic induction layer and iron core responding layer are made by iron, and described shell is made up of iron or steel.
9. the fusion furnace of the improvement according to any one of claims 1 to 3, it is characterized in that: the inner wall surrounding of described annular wall is provided with at least two circle the last the first magnetic around copper coil, the diapire of loop wire depression encloses the last the second magnetic around copper coil, to strengthen the magnetic confinement power in circular magnetic confinement space around being provided with at least two.
10. the fusion furnace of the improvement according to any one of claims 1 to 3, is characterized in that: described shell is fixed by a support.
CN201510114121.3A 2015-03-16 2015-03-16 Improved nuclear fusion furnace Pending CN104681104A (en)

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CN201510114121.3A CN104681104A (en) 2015-03-16 2015-03-16 Improved nuclear fusion furnace

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CN104681104A true CN104681104A (en) 2015-06-03

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