IP Library Granted Patent US 11,913,421
Granted Patent B2
US 11,913,421 · App. 17/611,906 · Granted Feb 27, 2024

Ocean wave energy collector based on magnetic force and triboelectric effect

Inventors: Pengcheng Jiao (Zhejiang, CN); Ali Matin Nazar (Zhejiang, CN); Yang Yang (Zhejiang, CN)
Assignee: ZHEJIANG UNIVERSITY
F03B13/14H02J15/003H02N1/04F05B2260/42
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Quick Facts
Patent No.
US 11,913,421
App. No.
17/611,906
Granted
Feb 27, 2024
Kind
B2
Abstract

The present invention belongs to the field of energy harvesting, and in particular relates to an ocean wave energy collector based on magnetic force and triboelectric effect. The ocean wave energy collector includes a plurality of protective shells connected by flexible metal spring modules; a magnetic oscillation system is installed in each protective shell in a matched mode and includes an electric energy output module and a plurality of magnetic oscillators, and each magnetic oscillator includes a first supporting body, a dielectric capsule, first magnet units, second magnet units, a supporting shell, and an electrode unit.

Claims (10)

1. An ocean wave energy collector based on magnetic force and triboelectric effect, wherein the ocean wave energy collector comprises a plurality of protective shells connected by flexible metal spring modules, a magnetic oscillation system is installed in each protective shell in a matched mode and comprises an electric energy output module and a plurality of magnetic oscillators, and each magnetic oscillator comprises a first supporting body, a dielectric capsule, first magnet units, second magnet units, a supporting shell, and an electrode unit; the electrode unit is installed on the first supporting body in a matched mode, the supporting shell is installed in the electrode unit in a matched mode, the dielectric capsule is in sliding fit in the supporting shell, and the supporting shell and the dielectric capsule is capable of generating electricity by sliding friction; the first magnet units are fixed to two ends of the dielectric capsule, the second magnet units are located at positions, corresponding to the first magnet units, at the two ends of the dielectric capsule, and the second magnet units repel the first magnet units; and the electric energy output module is used for receiving and storing electric energy generated by the magnetic oscillators.

2. The ocean wave energy collector based on magnetic force and triboelectric effect according to claim 1 , wherein each magnetic oscillation system further comprises a center support located at the center of the protective shell, and the electric energy output module and the magnetic oscillators are installed between the center support and the protective shell in a matched mode.

3. The ocean wave energy collector based on magnetic force and triboelectric effect according to claim 2 , wherein the electric energy output module and the magnetic oscillators are distributed around the top and bottom of the center support.

4. The ocean wave energy collector based on magnetic force and triboelectric effect according to claim 2 , wherein the first supporting body is installed between the center support and the protective shell in a matched mode, a surface of the dielectric capsule is coated with a first triboelectrification material layer, an inner wall of the supporting shell is coated with a second triboelectrification material layer corresponding to the first triboelectrification material layer, and the first triboelectrification material layer and the second triboelectrification material layer is capable of generating electricity by friction.

5. The ocean wave energy collector based on magnetic force and triboelectric effect according to claim 4 , wherein the first supporting body is provided with a first slotted hole corresponding to the dielectric capsule, the electrode unit is formed by coating a conductive metal coating on the first slotted hole, the supporting shell is provided with a slot-shaped shell wall matched with the first slotted hole, and the dielectric capsule is in sliding fit in the slot-shaped shell wall.

6. The ocean wave energy collector based on magnetic force and triboelectric effect according to claim 5 , wherein the first supporting body and the supporting shell are each of a left-right split structure, and correspondingly, the electrode unit is also divided into two opposite poles.

7. The ocean wave energy collector based on magnetic force and triboelectric effect according to claim 2 , wherein the second magnet units are fixed through second supporting bodies installed between the center support and the protective shell in a matched mode.

8. The ocean wave energy collector based on magnetic force and triboelectric effect according to claim 1 , wherein the electric energy output module comprises a high-energy capacitor and a control circuit, a capacitor storage unit for collecting electric energy and a voltage transmission line for transmitting the electric energy collected by the capacitor storage unit to the control circuit are installed on the first supporting body and/or the supporting shell in a matched mode, and the electric energy is stored in the high-energy capacitor through the control circuit.

9. The ocean wave energy collector based on magnetic force and triboelectric effect according to claim 1 , wherein the protective shells are arranged in a dotted array, and adjacent protective shells are connected by the flexible metal spring modules.

10. The ocean wave energy collector based on magnetic force and triboelectric effect according to claim 1 , wherein each protective shell is of a spherical structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2021
From: JIAO, PENGCHENG; MATIN NAZAR, ALI; YANG, YANG
To: ZHEJIANG UNIVERSITY
Reel/Frame 058174/0472 →
Priority Claims (1)
CN 202010953620.2 · Sep 11, 2020 · national
Continuity (1)
Related Publication 20220307458A1 · Sep 29, 2022
Cited By (1)
US 12,209,568