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lunes, 29 de junio de 2015
sábado, 20 de junio de 2015
Inverter Towers
One important thing to considerate in the space launcher is the thrust power necessary given by
If we considerate that all experiment occur in only 45 [μs] we have one power of 20 terawatts [TW] that equivalent to the power of 2,000 ITER Fusion Reactors of 500 [MW] each one, which is an incredible quantity of truth power . But even not exist the technology to control the enormous force of one explosion so we must convert it to electric energy , so
Supposing the resistivity coefficient (in the copper 5.8 x 10E7 [S/m] ) , t come in microseconds (25 μs aprox.) This equation is knowed from now like Electric Thrust Linear Equation or Saharov –Gurney - Lopez - Ohm Equation (SGLO Equation). Now well the currents typical in the calculations , goes from 0.3- 0.6 [MA] quantities so of current would destroy any conductor wire. So we must aggregate more phases, with 100 , our currents take values close to 8 [kA ] that numbers more knew, because the biggest actuall system, manage cuurent between 5-6 [kA] so we must suppose that the system destroy it one time the pulse run the circuit . So that a Control Drive based an Inverter system must able of support so power, and it...it is a real challenge to the power electronic engineering . Securely We'll have resurrectioning all the tube technology , for all that receive us help of Electronic Device and his new created division, in power electronic.
will be a system, securly, based in tyratrones tank with mercury arc-valves like show above.
If we considerate that all experiment occur in only 45 [μs] we have one power of 20 terawatts [TW] that equivalent to the power of 2,000 ITER Fusion Reactors of 500 [MW] each one, which is an incredible quantity of truth power . But even not exist the technology to control the enormous force of one explosion so we must convert it to electric energy , so
Supposing the resistivity coefficient (in the copper 5.8 x 10E7 [S/m] ) , t come in microseconds (25 μs aprox.) This equation is knowed from now like Electric Thrust Linear Equation or Saharov –Gurney - Lopez - Ohm Equation (SGLO Equation). Now well the currents typical in the calculations , goes from 0.3- 0.6 [MA] quantities so of current would destroy any conductor wire. So we must aggregate more phases, with 100 , our currents take values close to 8 [kA ] that numbers more knew, because the biggest actuall system, manage cuurent between 5-6 [kA] so we must suppose that the system destroy it one time the pulse run the circuit . So that a Control Drive based an Inverter system must able of support so power, and it...it is a real challenge to the power electronic engineering . Securely We'll have resurrectioning all the tube technology , for all that receive us help of Electronic Device and his new created division, in power electronic.
Thyratrons Cells
Mega-Inverter Towers
Set Inverter-Shield-Accelerator and inductors with a protector shield anti-EMP
martes, 2 de junio de 2015
lunes, 1 de junio de 2015
Fowler Electromagnetic Test Laboratory (Kimberly- Australia)
Nobel Underground Test Laboratory in Sonora-Mexico
Gurney Undergroun Laboratory in High Explosives (Atacama Chile)
Videos
- Explosion of a star with 11 solar masses
- Explosion of a star with 15 solar masses
- Sloshing Star Goes Supernova
- The Quantum Guide - Pulsars
- What are the pulsar?
- An introduction to Pulsars - Pulsars and Quasars
- NASA | Fermi Catches a 'Transformer' Pulsar
- Super Giant Blue Star Supernova Explosion
- NASA | Colliding Neutron Stars Create Black Hole and Gamma-ray Burst
- NASA | Missions Take an Unparalleled Look into Superstar Eta Carinae
- NASA | Scientists Create First Full 3D Model of Eta Carinae Nebula
- Black Hole Accretion Disks -- Developing Computer Simulations -- Undergrad
- ResearchNASA | Colliding Neutron Stars Create Black Hole and Gamma-ray Burst
- Supernova type explosion
- Explosion of a star with 11 solar masses
- Supernova Explosion : Computer simulation of the first 500 miliseconds (by Simulation) Courtesy of Max Plank institute astrophysics
- Supernova explosion: Computer simulation up to 9000 seconds
- Asymmetric Supernova remanent May Mark Black Holes (by Simulation) Courtesy of Caltech astrophysics
- Mysterious Supernova's Shockwave Explained by Simulation
- Core Collapse Simulation
- Star in explosion
- Supernova Simulation
- SDO: Year 6 Ultra-HD
Extreme Physics (.Pdf)
- Modeling the Effects of Detonations of High Explosives to Inform Blast-Resistant Design
- SHOCK-INDUCED DETONATION OF HIGH EXPLOSIVES BY HIGH VELOCITY IMPACT
- High-Explosives Performance Understanding the effects of a finite-length reaction zone
- Influence of HE shape on blast profile
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