Pressure reservoir structure for use in water
Abstract
A pressure reservoir structure for use in water is disclosed. The structure comprises a main float having a space for holding and having a bottom face provided with a through hole containing a water leakage proof rim; a pressure reservoir module positioned onto the main float and provided with an air chamber having a piston and an elastic member, a piston rod being connected to the piston and the other end of the piston rod being connected to a sub-float body, the piston rod passing through the through hole, and the air chamber having an air-inlet uni-direction valve and an air outlet uni-direction valve, the rippling of water causing the sub-float body to move the piston upward, and gas through the air outlet being stored at a cylinder having an uni-direction air inlet, an air outlet, a pressure plug, and the gas continuous to flow to the cylinder until reaching a pressure and being released to produce wind energy.
Claims
exact text as granted — not AI-modified1 . A pressure reservoir structure for use in water comprising
a main float having a space for holding and having a bottom face provided with a through hole containing a water leakage proof rim; a pressure reservoir module positioned onto the main float and provided with an air chamber having a piston and an elastic member, a piston rod being connected to the piston and the other end of the piston rod being connected to a sub-float body, the piston rod passing through the through hole, and the air chamber having an air-inlet uni-direction valve and an air outlet uni-direction valve, the rippling of water causing the sub-float body to move the piston upward, and gas through the air outlet being stored at a cylinder having an uni-direction air inlet, an air outlet, a pressure plug, and the gas continuous to flow to the cylinder until reaching a pressure and being released to produce wind energy.
2 . The pressure reservoir structure of claim 1 , wherein the piston rod includes an upper piston rod and a lower moving rod arranged in parallel and in an alternating arrangement such that the sub float body is connected to the bottom end of the moving rod and an enlarging device is provided in between the moving rod and the piston rod.
3 . The pressure reservoir structure of claim 2 , wherein the enlarging device comprises
a pair of gear straps where at least one strap is provided on the moving rod and the other strap is provided on the piston rod; a fixing frame being positioned on the main float body; a concentric large and small gear, one of the gears being pivotally connected to the fixing frame, and the small gear is connected to the gear strap of the moving rod; and a gear pivotally connected to the fixing frame and being connected to the large gear and connected to the teeth strap of the piston rod.
4 . The pressure reservoir structure of claim 2 , wherein the enlarging device comprises
a pair of gear straps where at least one strap is provided on the moving rod and the other strap is provided on the piston rod; a fixing frame being positioned on the main float body; a concentric large and small gear, one of the gears being pivotally connected to the fixing frame, and the small gear is connected to the gear strap of the moving rod another concentric small and large gear pivotally connected to the fixing frame and the small gear being connected to the large gear, and the large gear being connected to the teeth strap of the piston rod.
5 . The pressure reservoir structure of claim 1 , wherein a pressure reservoir module is additionally provided to the main float and a storing cylinder is located in between the pressure reservoir module such that the two reservoir module are connected in parallel and the individual chamber is connected to the same storing cylinder.
6 . The pressure reservoir structure of claim 1 , wherein a pressure reservoir module is additionally provided to the main float and a storing cylinder is located in between the pressure reservoir module such that the two reservoir module are connected in parallel which enables the storing cylinder to be at the same time connected to the storing float.
7 . The pressure reservoir structure of claim 1 , wherein a pressure reservoir module is additionally added to the main float and the two reservoirs are connected in series, such that a serially connected tube is provided between the two pressure reservoirs, and an uni-direction air inlet is provided.Join the waitlist — get patent alerts
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