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Standby power source equipment for collecting and storing wind energy

A backup power and source equipment technology, applied in the field of wind energy, can solve the problems of reduced power generation of generators, insufficient storage energy of batteries, and increased burden on sheets, so as to reduce the burden, improve the cleaning effect, and increase the power generation.

Pending Publication Date: 2021-10-29
莫文涛
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Wind energy is the energy generated by air flow. The total reserve of wind energy is very large, and it is a renewable clean energy. Therefore, wind energy is collected and used as a backup power source through wind energy collection and storage equipment. The equipment generates electricity through wind generators, and then Wind energy is stored in the battery in the form of electricity. When the power supply is insufficient, it is supplemented by the stored energy. The backup power source in the power supply network in the northern mountainous area plays an important role in maintaining the stability of the power grid. However, when it rains in the mountainous area, the rainwater freezes After being attached to the surface of the blades of the generator, the windward shape of the blades is changed, and at the same time, the burden on the blades is increased, which reduces the power generation of the generator and leads to insufficient storage energy of the battery

Method used

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  • Standby power source equipment for collecting and storing wind energy
  • Standby power source equipment for collecting and storing wind energy
  • Standby power source equipment for collecting and storing wind energy

Examples

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Embodiment 1

[0028] as attached figure 1 to attach Figure 7 Shown:

[0029] The present invention provides a backup power source equipment for collecting and storing wind energy, the structure of which includes a storage battery 1, a main pole 2, and a wind power motor 3, the bottom of the battery 1 is welded to the upper side of the lower end of the main pole 2, and the lower end of the wind power motor 3 is connected to the upper side of the main pole 2. The upper end of the main pole 2 is movable and engaged, and the wind-driven motor 3 includes a rotating seat 31, a power generation bin 32, and a wind receiving device 33. It is connected with the shaft at the right end of the power generation bin 32.

[0030] Wherein, the wind receiving device 33 includes a connecting head 331, a leaf 332, and a clearing block 333, the outer end of the connecting head 331 is bolted to the bottom of the leaf 332, and the outer side of the clearing block 333 is embedded and connected to the leaf 332, ...

Embodiment 2

[0038] as attached Figure 8 to attach Figure 9 Shown:

[0039] Wherein, the movable plate 33a includes an expansion plate a1, a top plate a2, a shaking block a3, and a plug a4, the inner side of the expansion plate a1 is embedded and connected with the outer side of the top plate a2, and the right side of the shaking block a3 is embedded and connected with the left end of the top plate a2 , the right end of the plug a4 is embedded and connected with the left side of the shaking block a3, and the shape of the plug a4 is complementary to the shape on the right side of the guide rod 33b, so that when the movable plate 33a moves up and down, the plug a4 will come into contact with the guide rod 33b. It is beneficial to generate shaking to shake off the accumulated ice.

[0040] Wherein, the shaking block a3 includes a support frame a31, a collision bead a32, and a contact plate a33, the inner side of the support frame a31 is embedded and connected with the left and right ends ...

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Abstract

The invention discloses standby power source equipment for collecting and storing wind energy. The standby power source equipment structurally comprises a storage battery, a main rod and a wind power motor, wherein the bottom of the storage battery is welded to the upper side of the lower end of the main rod, the lower end of the wind power motor is movably clamped to the upper end of the main rod, the wind power motor comprises a rotating seat, a power generation bin and a wind receiving device, the upper side of the rotating seat is welded to the lower side of the power generation bin, when blades rotate, a movable plate is driven by a wind receiving plate to move up and down, contacts continuously make contact with the outer sides of the blades, springs push ejection heads to pierce an ice layer, the ice layer structure is damaged, falling of the ice layer is facilitated, contraction is determined during extrusion, and meanwhile, the ice layer is cleaned by contraction blocks, ice residues are prevented from entering the rolling shaft, an expansion plate continuously moves when the blades rotate, so that a shaking block pushed by a top plate pushes a top head to make contact with a convex point on the right side of a guide rod, the expansion plate shakes, the damaged ice layer is shaken, the ice layer cleaning effect is improved, the burden of the blades is reduced, and the generating capacity is improved.

Description

technical field [0001] The invention belongs to the field of wind energy, and more specifically relates to a backup power source device for collecting and storing wind energy. Background technique [0002] Wind energy is the energy generated by air flow. The total reserve of wind energy is very large, and it is a renewable clean energy. Therefore, wind energy is collected and used as a backup power source through wind energy collection and storage equipment. The equipment generates electricity through wind generators, and then Wind energy is stored in the battery in the form of electricity. When the power supply is insufficient, it is supplemented by the stored energy. The backup power source in the power supply network in the northern mountainous area plays an important role in maintaining the stability of the power grid. However, when it rains in the mountainous area, the rainwater freezes After being attached to the surface of the blades of the generator, the windward sha...

Claims

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Application Information

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IPC IPC(8): F03D80/40F03D80/00F03D1/06
CPCF03D80/40F03D80/00F03D1/0633F03D1/0675Y02E10/72
Inventor 莫文涛
Owner 莫文涛
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