H02N2/185

Electrode stacked energy conversion device using liquid

The described technology relates to an energy conversion device using a liquid, and an electrode laminate structure energy conversion apparatus using a liquid. The device includes a substrate, a first electrode formed on the substrate, and an energy conversion layer formed on the first electrode so as to cover the first electrode. The device also includes a second electrode formed on the first energy conversion layer and of which a contact state with the liquid is changed according to a movement or a state change of the liquid. An electric energy generation device having an excellent integration characteristic can be implemented by a form of the electrode structure, a device can be miniaturized by a vertical electrode structure, and a high-efficiency energy conversion device can be implemented by generating various voltages according to the number of upper electrodes and the number of lower electrodes.

Vortex energy harvester for downhole applications

The present invention relates to a system for vortex energy harvesting for downhole applications and a method thereof, the system comprising: one or more electro acoustic technology assemblies mounted downhole in close proximity to a fiber optic cable that is part of a fiber optic distributed acoustic sensing system connected back to a surface distributed acoustic sensing interrogator; and one or more vortex energy harvesters attached to each of the electro acoustic technology assemblies and exposed to a fluid flow in the downhole application.

Micro-systems including micro-windmills and methods of forming micro-systems including micro-windmills

Micro-windmills, micro-systems including micro-windmills, and methods of forming the same are described. The micro-systems with a micro-windmill are configured to withstand wind pressures and environmental conditions and can be used for various applications.

SELF-REINFLATING TIRE
20190118593 · 2019-04-25 · ·

A device for transport of air in the tire P or close to it consisting of a chamber K in the shape of a hollow compressible channel, placed along at least a part of the tire perimeter, characterized by the fact that a ring OK is placed at the inner side of the chamber K with the distance of its outer side from the tire axis of rotation equal to 1 to 1.1 multiple of the distance of the bottom side of the chamber K from the axis of rotation of the tire P.

FLOW ENERGY HARVESTING DEVICES AND SYSTEMS

A flow energy harvesting system including a nozzle-diffuser defining a spline-shaped flow channel and a flow energy harvesting device in the spline-shaped flow channel of the nozzle-diffuser. The spline-shaped flow channel includes a converging portion, a diverging portion, and a constriction section between the converging and diverging portions. The flow energy harvesting device includes a flextensional member having a frame and a cantilever extending outward from the frame, and a stack of piezoelectric elements housed in an interior cavity defined in the frame. The cantilever is a non-piezoelectric material. The frame of the flextensional member is in the converging portion and the cantilever is in the constriction section of the spline-shaped flow channel. The frame is configured to deform and elongate the piezoelectric elements to generate a current based on the piezoelectric effect when a fluid flows through the spline-shaped flow channel and generates unbalanced forces on the cantilever due.

Box-type wind power generation device and power generation device set
12047020 · 2024-07-23 · ·

A box-type wind power generation device and a power generation device set is provided, the box-type wind power generation device includes a box body, a first energy collecting unit and a first connection member. The box body includes at least one flexible housing member and at least one rigid housing member which enclose at least one sealed cavity. The first energy collecting unit includes a piezoelectric membrane and electrodes deposited on both sides of the piezoelectric membrane, respectively; the first energy collecting unit overlying on an inner wall of the flexible housing member and are located in the sealed cavity. An end of the first connection member is fixed to the flexible housing member so that the first connection member is connected to the box body and at least a part of the first connection member is located outside the sealed cavity.

Energy harvesting system using multiple ambient energy sources

An energy harvesting system includes a plurality of energy converters connected to multiple ambient energy sources, respectively, receiving energy from the multiple ambient energy sources, and converting the received energy into electrical energy. The system also includes an electrical energy buffer receiving and collecting electrical energy from the energy converters, and combining the collected electrical energy to have a predetermined power level and a constant voltage converter receiving the combined electrical energy from the electrical energy buffer, and converting the received electrical energy into driving power of a power level usable by a load. The system further includes an electrical energy storage receiving the driving power from the constant voltage converter, storing the received driving power, and providing the stored driving power to the load. When internal power is generated in a specific energy converter, the generated internal power is selectively used as external power for another energy converter.

Self-reinflating tire

A device for transport of air in the tire P or close to it consisting of a chamber K in the shape of a hollow compressible channel, placed along at least a part of the tire perimeter, characterized by the fact that a ring OK is placed at the inner side of the chamber K with the distance of its outer side from the tire axis of rotation equal to 1 to 1.1 multiple of the distance of the bottom side of the chamber K from the axis of rotation of the tire P.

ENERGY HARVESTER AND METHOD FOR CONVERTING KINETIC ENERGY TO ELECTRICAL ENERGY
20190068084 · 2019-02-28 ·

An energy harvester (1) converts kinetic energy into electrical energy. The energy harvester includes: one or more walls (3, 4, 5, 6, 7) defining a chamber (2), the chamber (2) being provided with a plurality of impactors (10) free to move within the chamber so as to impact at least one of the walls when the chamber is subjected to movement, and a transducer (9, 11) configured to convert the impact of the impactors on one or more of the walls into electrical energy.

Systems and methods for harvesting piezoelectric energy from hydraulic pressure fluctuations

Aspects of the present disclosure relate to systems and methods for harvesting energy from the pressure ripple of a fluid system. In an example embodiment, a system comprises a housing; a piezoelectric stack in fluid communication with a pressure ripple of a fluid system and configured to generate a piezoelectric voltage and an associated piezoelectric current in response to pressure ripple characteristics, wherein the piezoelectric stack is disposed within the housing; and regulatory circuitry in electrical communication with the piezoelectric stack and configured to convert the piezoelectric current into DC voltage.