New energies

G - Physics – 21 – B

Patent

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G21B 1/05 (2006.01) F02G 1/043 (2006.01)

Patent

CA 2681645

We could use an intense plasma laser to start the reaction and keep it running... 1. First we start with the regular hydrogen atoms colliding creating helium and creating energy 2. Largest magnet ever tried surrounding the plasma. 3. The magnet can be one solid (thick walled) case surrounding the plasma in a vertically standing cylinder design, or change shape with to suit the roundness of the plasma so the magnet force is even. 4. In the bottom is a magnet floor (cradle possibly for stability having thick enough in its walls to support the magnets above) possibly with a small pool of water and/or source of water via nozzle such that the water clears the plasma, so it doesn't touch the plasma (rather it vaporizes because of the heat of the plasma). 5. Surrounding the outside of the magnet layer (the magnet's outer surface can be coated with a layer of ceramic to counter rust) is a huge boiler which is fed water (possibly salt water to produce disinfected water and fresh water), at bottlenecks, the boiler can be huge to absorb the heat from the plasma and also fast moving to keep any one contained area the salt water (possibly other liquids such as ethanol), from overheating (the expanding heat pressure turns the turbine). 6. There are large (robot controlled) slit/opening (such as sliding visors) at intervals from top to bottom that penetrate through the surrounding magnet that can be open and shut... closed when the plasma is not too cold and/or the salt water is too cold and open to cool off the plasma or heat the boiler more efficiently to expand heat pressure to turn turbine. 7. At the top can be an (oversized) roof platform with ceramic coating and and/or magnet also with open and (robot controlled) shut slits that increase or decrease heat into an exhaust. Above the roof is a boiler pool with exhaust that feed into a turbine. Salt water (and/or other liquid) is fed into the boiler. The roof is needed to be (possibly slide) opened especially when the pool of water below the plasma has vaporized and is causing increased expanded water pressure in the plasma core. 8. An extra layer of boiler can encapsulate the main boiler this extra layer of boiler can be made of ceramic on the outside to add extra layer from overheating the compartment holding the inner plasma chamber. The extra outer layer can also fill its outer chamber with salt water any and all liquids (even ethanol) to expand pressure to spin turbine (eg. and fresh/disinfected water). 9. Alternatively if the boiler is large enough (enough water sandwiched between plasma core (magnets) and the boiler's walls the inside of the boiler walls can be lined with nanotube solar panels (that can withstand the extreme heat. 10. Additionally the more close contact/exposure material is to the plasma core the more heat resistant the material must be (eg. the magnets) therefore we will attempt to mix the magnet material the closer the more density per volume of magnet material mixed with carbon nano particles-tubes (even mix the molten magnet with diamond dust) used as heat sinks in electric motors to withstand motors' intense heat. The tiny structures embedded in materials regularly called upon to withstand extreme heat, such as those that form the exterior panels of airplanes and rockets. In the worse scenario we could mix and make diamond/nano particles-tubes shield in front of the magnets facing the plasma core... Since diamonds are so expensive we might need to play around with the sizes of the plasma core. The carbon nano particles-tubes are added as a cheap cutting cost measure to diamonds. 11. We could also layer a thin layer of either diamonds (container) and a thin layer of carbon nano particles-tubes (with openable slits to vent heat from the plasma core and introduce heat to the outer boilers). The layers of the diamonds and/or carbon nano particles-tubes insulate the magnet(s)... 12. Another material to explore is ceramics mixed with nanotubes The material shows electrical conductivity ten trillion times greater than pure alumina, and seven times that of previous ceramics made with nanotubes. Thermal properties, enable conducting heat in one direction, along the alignment of the nanotubes, but reflecting heat at right angles to the nanotubes, making it an attractive material for thermal barrier coatings. This seems the ideal low cost insulator to protect the magnets from overheating while conducting the magnets force back towards the plasma core. 13. On top of the roof (above the plasma core) is a boiler where salt water (And/or liquids such as ethanol) is entered at high volume to boil to steam to turn turbines with possible walls made of nanotubes that absorb heat and convert into energy. (GP 0.24%) 14. Any and all components can be composed of ceramics, titanium, tungsten steel, carbon nano materials, magnets and/or diamonds (GP 0.1 %). 15. We could also use walls of water falling. 16. The walls of water falling unlike filling a choking/smothering the entire container in a tank/boiler (pool of) with water; can touch and cool off the magnets without smothering out the plasma core. In fact we could adjust the walls of water to vaporize before collecting at the bottom, so the is no rising level of pool of water on the floor of the boiler that surrounds/holds the magnets which in turn hole the plasma core within. 17. To keep one side from getting hotter than the other sides we could use more water on the overheated face to cool the hotter side... One hydrogen source is from any and all metals (eg aluminium, zinc... ), reacting with in a strong acid (eg. muriatic acid), producing hydrogen gas while crystal remains. The crystal can be used for any and all uses, from decorative, ornamental and any and all aesthetic, parts of walls, parts of interior furniture and fixtures, casings of electronics (and anything - objects -that are expensive are the slightest form of status and prestige symbol), jewelry, substitute metal and wood, eg. door knobs, sculptures, and decorative car interior/exteriors... The helium output can be used to power cars, and it has no moving parts. It runs by "thermoacoustics" we simply apply external heat to a cylinder or tank (treat can come from the plasma core production and/or mirrors) with the Helium gas (which is a by- product of the hydrogen atoms colliding) inside the cylinder), as the gas heats up it generates the acoustic waves making enough heat to make steam and then it is used to generate electricity. For cars the sound is converted into electricity, via steam. A microphone like devise, electo-acoustic transducer produces the sound waves. Which can be used to power cars without batteries. therefore no need to discard old batteries which cannot be charged, whereby electric cars without residual pollution later. And/or use the helium directly as fuel. There considerable growth in demand for helium around the world, eg. medical, industrial and electronic use. Re: Ocean/Seas (1. floors) Energy and/or 2. Hung from Above 1. We make (flatter) bladders that can be made of mix Teflon (for strength) and rubber for bounce back momentum when bent to much and too long, thus creating more bobbing frequency. The bladder can be filled with enough air to make it stable in water, neither too stringent floating up and/or less air in the hanging version (even slightly weighted at the bottom of the tip of each bladder unit), such that the bladders of the hanging version does not float buoyantly, but rather is the same density/mass as the water so it does not buoyantly float (in one direction and gets stuck there) but rather gets pushed from side to side (on a pivoting ball and socket - swaying) thus either pumping deep salt water (via deep pipe) to a platform and or seashore where the sea water can be used eg. (Gerard Voon's patented mirrors/boiler/turbine/fresh dienfected water) and/or desalination slat water membranes and/or used to grow (on floating barges) salt water tolerant plants such as mangrove and switch grass (salicornia) for biofuel/biomass... 2. Entire groupings of grids can be installed on the se

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