RU94041482A - Method and device for plasma glob generation - Google Patents

Method and device for plasma glob generation

Info

Publication number
RU94041482A
RU94041482A RU94041482/07A RU94041482A RU94041482A RU 94041482 A RU94041482 A RU 94041482A RU 94041482/07 A RU94041482/07 A RU 94041482/07A RU 94041482 A RU94041482 A RU 94041482A RU 94041482 A RU94041482 A RU 94041482A
Authority
RU
Russia
Prior art keywords
anode
chamber
plasmoid
magnetic
magnetic field
Prior art date
Application number
RU94041482/07A
Other languages
Russian (ru)
Inventor
В.И. Андрианов
В.П. Яковлев
Original Assignee
В.И. Андрианов
В.П. Яковлев
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 В.И. Андрианов, В.П. Яковлев filed Critical В.И. Андрианов
Priority to RU94041482/07A priority Critical patent/RU94041482A/en
Publication of RU94041482A publication Critical patent/RU94041482A/en

Links

Landscapes

  • Plasma Technology (AREA)

Abstract

FIELD: plasma physics. SUBSTANCE: plasma glob generator has spheroidal anode chamber and cathode chamber 2 communicated to anode one by polar zone, cathode chamber is made cone-shaped and it serves for gas vortex flow preparing to inject it to anode chamber. Vortex rotation is made counterclockwise with respect to direction from cathode chamber 2 to anode one 1. Magnetic fields of two magnetic mirror configurations produce magnetic trap inside anode chamber 1, electrical discharge is generated by alternative voltage applied between grounded anode rod 4 placed in anode chamber 1 and circle-type cathode 6 placed in cathode chamber 2, after starting plasma discharge is maintaining in gas flow by direct current, then energy is pumping to plasmoid by magnetic field of trap coils fast growing up. When plasmoid energy reaches set up value direct current discharge interrupts together with gas-puffing. Formed plasma ball pushing out from anode chamber 1 performs by magnetic trap fields disbalancing to initiate plasmoid motion from cathode chamber side to output funnelled opening 3 connected with anode chamber 1 by side opposite to cathode chamber 2. Speeding up magnetic field configuration is made conical to lead plasma glob outward. EFFECT: more simple method for plasmoid generating and leading out of device. 3 cl, 1 dwg

Claims (1)

Для генерации шаровых плазмоидов в анодную камеру 1 сфероидальной формы и сообщающуюся с ней в ее полярной области катодную камеру 2 конусообразной формы подают газ, создавая в них газовый поток, вращающийся против часовой стрелки относительно направления от катодной камеры 2 к анодной 1, создают магнитное поле двух магнитных пробок, образующих в анодной камере 1 магнитную ловушку, инициируют в газовом потоке электрический разряд переменным напряжением, прикладываемым между заземленным стержневым анодом 4, установленным в анодной камере 1, и кольцевым катодом 6, установленным в катодной камере 2, и поддерживают в газовом потоке электрический разряд постоянным током. После прекращения воздействия переменного напряжения производят накачку энергии шарового плазмоида импульсным магнитным полем, усиливающим магнитное поле магнитной ловушки. При этом после окончания формирования шарового плазмоида в процессе накачки в него энергии до заданного значения прерывают электрический разряд постоянного тока и прекращают подачу газа. Для выталкивания шарового плазмоида из анодной камеры 1 создают магнитное поле магнитной ловушки, усиленное по сравнению со значением, которое имело указанное магнитное поле на этапе формирования шарового плазмоида, а затем подают импульс магнитного поля, усиливающий магнитное поле магнитной пробки со стороны катодной камеры 2. После этого в выходном раструбе 3, соединенным с анодной камерой 1 со стороны, противоположной катодной камере 2, создают импульсное магнитное поле магнитного ускорителя, имеющее конусообразную конфигурацию, ускоряющее шаровой плазмоид и выводящее его наружу.In order to generate spherical plasmoid spherical in the anode chamber 1 and cone-shaped cathode chamber 2 communicating with it in its polar region, gas is created, creating a gas stream rotating counterclockwise relative to the direction from the cathode chamber 2 to the anode 1, and a magnetic field of two magnetic tubes, forming a magnetic trap in the anode chamber 1, initiate an electric discharge in the gas stream by an alternating voltage applied between the grounded rod anode 4 installed in the anode chamber 1 , and an annular cathode 6 mounted in the cathode chamber 2, and the electric current is maintained in a gas stream by direct current. After the cessation of the influence of alternating voltage, the energy of the spherical plasmoid is pumped by a pulsed magnetic field amplifying the magnetic field of the magnetic trap. In this case, after the formation of the spherical plasmoid during the pumping of energy into it to a predetermined value, the DC electric discharge is interrupted and the gas supply is stopped. To push the spherical plasmoid from the anode chamber 1, a magnetic field of a magnetic trap is created, which is amplified compared to the value that the indicated magnetic field had at the stage of formation of the spherical plasmoid, and then a magnetic field pulse is applied that amplifies the magnetic field of the magnetic plug from the side of the cathode chamber 2. After of this, in the outlet bell 3 connected to the anode chamber 1 from the side opposite to the cathode chamber 2, a pulsed magnetic field of a magnetic accelerator having a cone-shaped configuration is created, yayuschee ball plasmoid and outputting it to the outside.
RU94041482/07A 1994-11-15 1994-11-15 Method and device for plasma glob generation RU94041482A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
RU94041482/07A RU94041482A (en) 1994-11-15 1994-11-15 Method and device for plasma glob generation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
RU94041482/07A RU94041482A (en) 1994-11-15 1994-11-15 Method and device for plasma glob generation

Publications (1)

Publication Number Publication Date
RU94041482A true RU94041482A (en) 1997-02-20

Family

ID=48432719

Family Applications (1)

Application Number Title Priority Date Filing Date
RU94041482/07A RU94041482A (en) 1994-11-15 1994-11-15 Method and device for plasma glob generation

Country Status (1)

Country Link
RU (1) RU94041482A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106848357A (en) * 2017-01-20 2017-06-13 孟青林 Plasma-vortex fuel cell and electricity-generating method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106848357A (en) * 2017-01-20 2017-06-13 孟青林 Plasma-vortex fuel cell and electricity-generating method
CN106848357B (en) * 2017-01-20 2023-04-14 孟青林 Plasma vortex fuel cell and power generation method

Similar Documents

Publication Publication Date Title
CA1239486A (en) Gas discharge derived annular plasma pinch x-ray source
US4494043A (en) Imploding plasma device
US10722287B2 (en) Spark ablation device
JP2011505670A (en) Suspended particle source
JPH0372184B2 (en)
CN106014899A (en) Helicon plasma induction thruster
JP2003173757A (en) Ion beam irradiation device
RU94041482A (en) Method and device for plasma glob generation
RU2360315C2 (en) Compression gas target
RU2387039C1 (en) High-frequency generator with discharge in hollow cathode
FR2580427A1 (en) SOURCE OF NEGATIVE IONS WITH CYCLOTRONIC RESONANCE OF ELECTRONS
CN205724389U (en) Anion generator
WO2008147238A1 (en) Compression gas target
US2593845A (en) Apparatus for the acceleration of electrons
JP2529924B2 (en) High frequency particle accelerator
US5142250A (en) High power microwave generator
RU2110137C1 (en) Ionized-turbulent plasma accumulator
Bogdankevich et al. On the development of plasma relativistic microwave oscillator without strong magnetic field
RU2045103C1 (en) Duoplasmatron
JPS63211598A (en) Plasma x-ray generation device
RU2194374C2 (en) Process of concentration and accumulation of electromagnetic energy in plasma of medium
RU2071163C1 (en) Method of and magnetohydrodynamic generator for producing electrical energy
RU2195738C2 (en) Microwave oscillator
JPH01132099A (en) X-ray generating device
US3396662A (en) Fluid mover