US2008185475A1PendingUtilityA1

Solar-powered aircraft

Individually held — no corporate assignee on recordPriority: Aug 12, 2005Filed: Jul 9, 2007Published: Aug 7, 2008
Est. expiryAug 12, 2025(expired)· nominal 20-yr term from priority
B64U 50/31B64B 2201/00B64B 1/14B64D 2041/005Y02T50/50Y02T90/40Y02T50/60
41
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Claims

Abstract

A solar-powered aircraft uses solar energy to electrolyze on-board water to produce hydrogen. The hydrogen fills various on-board tanks, causing the aircraft to become lighter than air. The hydrogen is also used to operate a fuel cell which provides power for electrical equipment, including a motor for turning a propeller. Water produced as waste by the fuel cell is recycled for use in the production of hydrogen. When hydrogen is removed from the tanks, either because it is consumed by the fuel cell or because it is compressed and pumped out of the tanks, air returns to the tanks, and the aircraft becomes heavier than air. The aircraft can thus be made to climb and descend by making it lighter than air, or heavier than air. The aircraft emits no harmful substances into the environment. The aircraft can remain aloft indefinitely, limited only by an insignificant amount of leakage of hydrogen and water.

Claims

exact text as granted — not AI-modified
1 . A solar-powered aircraft, comprising:
 a) an aircraft body including a wing, the wing having a spar,   b) a solar cell disposed on an exterior surface of the aircraft body,   c) at least one water storage tank, disposed within the aircraft body,   d) an electrolyzing unit, wherein the electrolyzing unit is connected to electrolyze water from the water storage tank, and wherein the electrolyzing unit receives electrical power from the solar cell,   e) at least one hydrogen storage tank, the hydrogen storage tank being connected to receive hydrogen produced by the electrolyzing unit,   f) a fuel cell, the fuel cell being connected to receive hydrogen from the hydrogen storage tank so as to produce electric power, and   g) an electric motor, the motor being connected to receive electric power from the fuel cell, the motor being connected to a propeller for driving the aircraft.   
   
   
       2 . The aircraft of  claim 1 , wherein there are at least two water storage tanks, and wherein the aircraft includes means for distributing water among the water storage tanks so as to control an attitude of the aircraft. 
   
   
       3 . The aircraft of  claim 1 , wherein there are a plurality of spars in the wing. 
   
   
       4 . The aircraft of  claim 3 , wherein said hydrogen storage tank is located in the wing and is at least partly defined by said spars. 
   
   
       5 . A solar-powered aircraft comprising:
 a) an aircraft body having an outside and an interior, the body including a wing, the wing having a spar,   b) at least one solar cell located on the outside of the aircraft body,   c) a water storage tank and an electrolyzing unit, located in the interior of the aircraft body, the electrolyzing unit being connected to receive electrical power from the solar cell, the electrolyzing unit being in fluid communication with the water storage tank so as to separate water into hydrogen and oxygen, and   d) a hydrogen storage means, located in the interior of the aircraft body, the hydrogen storage means being connected to the electrolyzing unit such that hydrogen produced by the electrolyzing unit enters the hydrogen storage means so as to increase buoyancy of the aircraft.   
   
   
       6 . The aircraft of  claim 5 , further comprising a fuel cell, the fuel cell being connected to receive hydrogen from the hydrogen storage means. 
   
   
       7 . The aircraft of  claim 6 , further comprising an electric motor connected to a propeller, the motor being connected to derive electrical power from the fuel cell. 
   
   
       8 . The aircraft of  claim 5 , wherein there are at least two water storage tanks, and wherein the aircraft includes means for distributing water among the water storage tanks so as to control an attitude of the aircraft. 
   
   
       9 . The aircraft of  claim 5 , further comprising a programmed computer, the computer comprising means for controlling production and storage of hydrogen so as to cause the aircraft to become selectively lighter than air and heavier than air. 
   
   
       10 . A solar-powered aircraft comprising:
 a) an aircraft body having an outside and an interior,   b) at least one solar cell located on the outside of the aircraft body,   c) a water storage tank and an electrolyzing unit, located in the interior of the aircraft body, the electrolyzing unit being connected to receive electrical power from the solar cell, the electrolyzing unit being in fluid communication with the water storage tank so as to separate water into hydrogen and oxygen, and   d) a hydrogen storage means, located in the interior of the aircraft body, the hydrogen storage means being connected to the electrolyzing unit such that hydrogen produced by the electrolyzing unit enters the hydrogen storage means so as to increase buoyancy of the aircraft,   wherein there are at least two water storage tanks, and wherein the aircraft includes means for distributing water among the water storage tanks so as to control an attitude of the aircraft.   
   
   
       11 . The aircraft of  claim 10 , further comprising a programmed computer, the computer comprising means for controlling production and storage of hydrogen so as to cause the aircraft to become selectively lighter than air and heavier than air.

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