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The submersible electrical power generating plant can produce electric power useable to charge batteries of electric powered vehicles and “plug-in” hybrid-powered vehicles. In this way, not only can these submersible turbines eliminate the need for fossil fuels to produce electricity, they can produce electricity for recharging the batteries of “plug-in” hybrid vehicles and hydrogen to power fuel-cell vehicles. Because the water would be nearly a thousand times denser than the air and would be flowing at a much more constant velocity, instead of their rotors having just two or three narrow blades to absorb the kinetic energy from a small percentage of the fluid passing through the sweep area, they can have more or wider blades.

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After the conventional valves 123 have been opened to the varying degrees, valve 312 is opened to allow the pressurized air inside the plurality of compartments of the streamlined torpedo-shaped buoyancy tank 11 to push the ballast water down through the separate drain holes 287, separate drain pipes 124, separate special valves 264, separate conventional valves 123, into the common pipe 266, through the conventional valve 312, through the check valve 204, and forward in common pipe 266 to where the ballast water is ejected forcibly downward from the end of the common pipe 266 at 304. Opening the conventional drain valves 123 from the forward compartments more than for the rear compartments will cause the buoyancy at the front end 23 of the torpedo-shaped buoyancy tank 1 1 to increase faster than the buoyancy at the rear end 24 of the buoyancy tank 11. This increasing buoyancy at the front end 23 of the buoyancy tank 11, combined with the ballast water being forcibly ejected downward from the front end 23 will cause the front-end 23 of the buoyancy tank 11 to rise faster than the rear end 24 of the buoyancy tank 11, which will increase the angle of attack of the air-foil shaped hydrofoils 10, which will cause the submersible electrical power generating structure 1 move higher.

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Rutina Espalda y Triceps - Alan Valdez Fitness - YouTube The decline in the production of both world oil and North American natural gas – combined with catastrophic global warming – have created an urgent need to switch from fossil fuels to those energy sources that are sustainable and non-polluting. The pair of side-by-side counter-rotating full-bladed water turbine rotors 16 and 28 is sufficiently hollow so that their density is near that of the water displaced by the pair of side-by-side counter-rotating full-bladed water turbine rotors 16 and 28. The pair of side-by-side counter-rotating full-bladed water turbine rotors 16 and 28 turn so that both the plurality of first blades 205 and the plurality of second blades 206 are moving downward at the center of the submersible electrical power generating plant and upward on the outside of the submersible electrical power generating plant.

The pair of side-by-side counter- rotating fiill- bladed water turbine rotors are made of carbon fiber composites and sufficiently hollow so that their density is approximately the same as that of the water that is displaced by the pair of side-by-side counter-rotating full-bladed water turbine rotors. One of the pair of side-by-side counter-rotating full-bladed water turbine rotors is a mirror image of the second water turbine rotor. The water turbine rotors are full bladed, having rotor blades that cover most of the turbines’ sweep area. The submersible electrical power generating plant requires no site preparation and can be used at sites having uneven bottom topography. Unlike the wind turbines that can operate on hot summer days, the water turbines would operate in water having temperatures of about 70° Fahrenheit. If the hydrostatic water pressures become too low, the control switch 259 will turn on the pump 251 that will pump water from the rear compartment 69 to the front compartment 68 to move the center of gravity forward to decrease the angle of attack of the attached hydrofoils 10 to cause the submersible electric power generating structure to move lower.

The strengths of the tidal currents will also vary greatly depending the phases of the moon and whether the current is being produced by a spring tide or by a neap tide. The submersible electrical power generating plant 1 will rise to the surface, where it will float with the buoyancy tank 11 high in the water. Still further, the present invention may be said to disclose certain methodology for transmitting electrical power from below a water surface to a power reception unit, the method comprising the steps of tethering at least one, but possibly several, power generating plants to certain power-transmitting means (as at 5), the power transmitting means being in communication with a power receiver (as at 483 in Figure No. Dolor fuerte en la mano derecha . 10, 13a, 13b, 14a, 14b, and 14c that is set to expel the ballast water faster from the front end 23 of said buoyancy tank 11 than said rear end 24 by said valves 482 being opened by varying amounts, with said valve 482 for said front compartment 68 being opened the most and said valves 482 for said compartments 77, 101, 80, and 69 being opened by decreasing amounts.

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The pressurized air within the torpedo-shaped buoyancy tank pushes the ballast water from the plurality of compartments, pushing the ballast water from the front compartments faster than from the rear compartments. 16a and 16b show two submersible electrical power generating plants 1 within a group of said electrical power generating plants that is being simultaneously raised to the surface 2 while attached to said electricity collecting cable 5. FIG. The special valve 253 is located in pipe 306 on the side of the pump 250 that receives water under pressure from the pump 250. The special check valve 253 consists of a valve housing 261 that has a valve seat 43 at the bottom of the valve housing 261 that contains an intake port 276 located at the center of the hemispherically-shaped valve seat 43. The special valve also consists of an outlet port 277, and a heavy ball 275 within the valve housing 261. The heavy ball 275 is capable of fitting snuggly within the valve seat 43. FIG.

The pair of watertight nacelles is securely mounted to the bottom side of the streamlined torpedo- shaped buoyancy tank. The first airfoil-shaped hydrofoil is fixed on the left side of the streamlined torpedo-shaped buoyancy tank projecting horizontally leftward and the second airfoil-shaped hydrofoil is fixed on the right side of the streamlined torpedo- shaped buoyancy tank projecting horizontally rightward. 10 that is capable of transferring the ballast water between the front compartment 68 and the rear compartment 69 of the streamlined torpedo-shaped buoyancy tank 1 1 for the purpose of moving the center of gravity forward or rearward. 2. The connecting members 25 and 26 connect the nacelle to the buoyancy tank, and connecting member 29 and 30 connect the right nacelle to the left nacelle 17. The heat exchanger 31 extends between the nacelles and contains four tubes 353, 354, 355 and 356. Tubes 353 and 354 remove the heat from the coolant for the generator in the left nacelle 17 and tubes 355 and 356 are to remove the heat from the coolant for the generator in the right nacelle 27. Referring now to FIG.

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The Gulf Stream starts roughly where the Gulf of Mexico narrows to form a channel between Cuba and the Florida Keys. Although previous inventions may also generate electric power with low operating costs, none can produce as much power at such low cost per kilowatt-hour as the currently disclosed invention because of its highly efficient energy-collecting design and its extremely low maintenance requirements. The nacelles also contain buoyancy tanks that can be independently filled or purged to compensate for roll of the device. Also the invention has no means of balancing changing downward vector forces that would result from changes in drag, caused by changes in either the current velocity or changes in the generator loads acting on the downward angled anchor line. The plant-surfacing means may be defined by a pressurizeable drain system, the drain system being cooperatively associated with the buoyancy tank for purging the buoyancy tank of ballast water.

  • Ostra: praliné bañado en chocolate
  • Aceite esencial de árbol de té diluido en agua o un aceite portador
  • Mantener un peso adecuado
  • Releasing the apparatus into a fluid

Seis ejercicios simples para el dolor de rodilla, pie y.. An attaching device may be located at the center point of the center connecting means, which device is vertically adjustable. 2, 3, 4, and 10. The submersible electrical power generating structure 1 has a high center of buoyancy 221 (the center of gravity of the water that is displaced), a low center of gravity 222 (adjustable forward and rearward with ballast water) and a center of drag 22 (that point where sum of all the drag forces caused by every exposed part of an object moving through a fluid is balanced).

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