Gas storage system

By designing multiple gas-connected gas storage units and second gas storage units, the problems of insufficient compressed gas storage and low safety in the working area of ​​the wind power generation system are solved, and more efficient energy storage and safe area demarcation are achieved.

CN222950814UActive Publication Date: 2025-06-06张添明
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Patent Information

Application Number
CN202421636677.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-10-12
Filing Date
2024-07-11
Publication Date
2025-06-06
Estimated Expiration
2034-07-11

AI Technical Summary

Technical Problem

The existing wind power system has limited storage capacity in storing compressed gas, and the working area is insufficient for safety, making it easy to enter dangerous areas.

Method used

A gas storage system is designed, including a first gas storage unit in gas communication, each unit is used as a fence to define a working area, and an adjacent gas storage group is connected to gas through a second gas storage unit to improve the connectivity and storage capacity of the gas storage pipe.

Benefits of technology

It effectively improves the storage of compressed gas, enhances the safety of the working area, and prevents people from entering dangerous areas by mistake.

✦ Generated by Eureka AI based on patent content.

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Abstract

A gas storage system comprises a plurality of first gas storage units. The first gas storage units are in gas communication with each other and are suitable for being in gas communication with a power generation system capable of generating power through compressed gas. The first gas storage units are matched to define a working area suitable for arrangement of the power generation system in a surrounding mode. Each first gas storage unit comprises at least one gas storage set and a plurality of support sets matched with each other to support the gas storage sets. Each gas storage group comprises a plurality of first gas storage pipes which transversely extend and are coaxially communicated with each other through gas. The first gas storage pipe is suitable for storing compressed gas. The first gas storage unit can be used as a fence, so that common people are prevented from entering the working area, and the safety can be improved. In addition, the first gas storage pipe can also be used for storing compressed gas, so that the storage amount of energy (compressed gas) can be increased.
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Description

Technical Field

[0001] The utility model relates to green energy power generation equipment, in particular to a gas storage system suitable for matching with a power generation system. Background Art

[0002] See also Figure 1 The applicant of the utility model has previously created a power generation system 1 that can store and utilize wind resources in the form of compressed gas, which can be referred to Taiwan Patent No. M637913.

[0003] The power generation system 1 includes a gas storage device 11 capable of storing compressed gas, a casing device 12 rotatably arranged on the gas storage device 11 relative to the gas storage device 11, a gas compressor 13 arranged in the casing device 12, a blade device 14 inserted in the casing device 12 and plugged into the gas compressor 13, and a power generation device 15 arranged in the gas storage device 11.

[0004] The blade device 14 can drive the gas compressor 13 to pressurize the gas, thereby converting the kinetic energy of the wind into the internal energy of the compressed gas. The compressed gas formed by pressurization can be stored in the gas storage device 11, and when there is a demand for electricity or power generation, the stored compressed gas can be used to drive the power generation device 15 to generate electricity. The characteristics of this power generation system 1 are: since it can use air to form compressed gas, that is, it can use air as a storage medium, and the compressed gas can be directly discharged after power generation, so this power generation system 1 will not produce any polluting storage medium waste during operation, which is quite environmentally friendly.

[0005] Although this power generation system 1 has the aforementioned advantages, if the storage capacity of compressed gas can be further increased, more energy generated by wind power can be stored. In addition, when this power generation system 1 is in operation, if the working area is not properly fenced off, the general public will mistakenly enter the working area required for the operation of the power generation system 1, which needs to be improved. Utility Model Content

[0006] The purpose of the present invention is to improve at least one disadvantage of the prior art.

[0007] The utility model gas storage system is suitable for use with a power generation system that can generate electricity using compressed gas. The gas storage system includes a plurality of first gas storage units that are gas-connected to each other. The first gas storage units are suitable for gas-connected to the power generation system. The first gas storage units cooperate to define a working area suitable for setting up the power generation system. Each of the first gas storage units includes at least one gas storage group, and a plurality of bracket groups that cooperate to support at least one of the gas storage groups. Each of the gas storage groups includes a plurality of first gas storage pipes that extend laterally and are coaxially gas-connected to each other. The first gas storage pipes are suitable for storing compressed gas.

[0008] The gas storage system described in the utility model, each of the first gas storage units includes a plurality of gas storage groups arranged vertically, and the gas storage system further includes a plurality of second gas storage units, each of the second gas storage units is located between two of the first gas storage units, and is gas-connected to the gas storage groups of adjacent first gas storage units, so that the gas storage groups belonging to the same first gas storage unit are gas-connected to each other through the second gas storage units, and the first gas storage units are gas-connected to each other.

[0009] In the gas storage system of the utility model, each of the second gas storage units comprises at least one second gas storage pipe extending upright and gas-connected to the gas storage group of the adjacent first gas storage units.

[0010] The gas storage system described in the utility model, each of the bracket groups includes two first racks that are laterally spaced and extend up and down, and a plurality of second racks that are laterally extended and connected to the first racks and are spaced up and down from each other, each of the second racks supports a corresponding first gas storage pipe.

[0011] The beneficial effect of the utility model is that the first gas storage unit can be used as a fence to surround the working area, thereby preventing the general public from entering the working area and improving safety. In addition, the first gas storage pipe can also be used to store compressed gas, thereby increasing the storage capacity of energy (compressed gas). BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Other features and beneficial effects of the present invention will be clearly presented in the embodiments with reference to the accompanying drawings, in which:

[0013] Figure 1 is a partially cutaway cross-sectional view illustrating a power generation system;

[0014] Figure 2 It is a cross-sectional view which is not completely cut away, illustrating a power generation system to which the gas storage system of the utility model is applicable;

[0015] Figure 3 is a side view illustrating a first embodiment of the gas storage system of the utility model;

[0016] Figure 4 is a top view illustrating the first embodiment;

[0017] Figure 5 is an incomplete perspective view illustrating the first embodiment;

[0018] Figure 6 It is an incomplete three-dimensional diagram illustrating a second embodiment of the gas storage system of the utility model. DETAILED DESCRIPTION

[0019] In the following description, similar or identical elements will be represented by the same reference numerals.

[0020] See also Figure 2 , 3 4. A first embodiment of the gas storage system of the utility model is suitable for use with a Figure 2 The power generation system 2 shown uses.

[0021] The power generation system 2 includes a gas storage device 21 capable of storing compressed gas, a casing device 22 rotatably arranged on the gas storage device 21 relative to the gas storage device 21, a gas compressor 23 arranged in the casing device 22, a blade device 24 inserted in the casing device 22 and plugged into the gas compressor 23, a power generation device 25 arranged in the gas storage device 21, and a conveying device 26 capable of conveying gas.

[0022] The blade device 24 can drive the gas compressor 23 to operate to compress the air into compressed gas. The power generation device 25 includes a pneumatic motor 251 connected to the gas storage device 21 by gas, and a generator 252 driven by the pneumatic motor 251. The pneumatic motor 251 can be driven by compressed gas to drive the generator 252 to operate and generate electricity. The conveying device 26 includes a plurality of conveying pipes 261 for gas communication. One of the conveying pipes 261 is used for gas communication between the gas storage device 21 and the present embodiment.

[0023] See also Figure 3 , 4 5. The first embodiment includes a plurality of first gas storage units 3 which are adapted to cooperate with each other and surround the power generation system 2 and are gas-connected to each other, and a plurality of second gas storage units 4 located between the first gas storage units 3.

[0024] The first gas storage units 3 are arranged in a rectangular shape and surround the power generation system 2 to define a working area S1 suitable for the power generation system 2 (see Figure 4 (indicated).

[0025] Each of the first gas storage units 3 includes a plurality of gas storage groups 31 arranged vertically, and a plurality of bracket groups 32 cooperatively supporting the gas storage groups 31 .

[0026] Each of the gas storage groups 31 includes a plurality of first gas storage pipes 311 extending transversely and coaxially connected to each other. The first gas storage pipes 311 are connected to each other by flange structures. The advantage of connecting by flange structures is that the connection is stable.

[0027] One of the first gas storage pipes 311 is connected to the gas storage device 21 of the power generation system 2 through the aforementioned delivery pipe 261. In other embodiments of the present invention, the gas storage device 21 can also be connected to one or more of the first gas storage pipes 311 of different first gas storage units 3.

[0028] The first gas storage pipe 311 can be used to store compressed gas. The compressed gas can have a pressure above 1 atmosphere. However, in order to have a better gas storage and utilization efficiency, the pressure of the compressed gas is preferably 10-30 kg / cm 2 , the best is 20Kg / cm 2 .

[0029] Each of the support groups 32 includes two first support rods 321 that are spaced apart laterally and extend vertically, and a plurality of second support rods 322 that extend laterally and are connected between the first support rods 321 and are spaced apart from each other vertically. Each of the second support rods 322 supports one of the first gas storage pipes 311 of a corresponding gas storage group 31.

[0030] Each of the second gas storage units 4 is located between two of the first gas storage units 3. Taking the first embodiment as an example, since the first gas storage units 3 are arranged in a rectangular shape, the second gas storage units 4 are located at the four corners of the rectangle, so that each of the second gas storage units 4 is located between two of the first gas storage units 3 that are perpendicular to each other.

[0031] The second gas storage pipe 41 of each second gas storage unit 4 is gas-connected to the first gas storage pipes 311 of the gas storage groups 31 of two adjacent first gas storage units 3 through a plurality of gas connecting pipes 5. Specifically, each second gas storage pipe 41 is gas-connected to all six adjacent first gas storage pipes 311, so that the gas storage groups 31 of the same first gas storage unit 3 are gas-connected to each other, and the first gas storage units 3 are gas-connected to each other. In this way, the gas storage device 21 (see Figure 3 ), the first gas storage pipe 311 and the second gas storage pipe 41, all gases are connected together.

[0032] The first embodiment has the following characteristics: the gas storage group 31 of the first gas storage unit 3 can be used as a fence to prevent the general public from entering the working area S1, thereby improving safety. In addition, the first gas storage pipe 311 can also be used to store compressed gas, thereby increasing the storage capacity of energy (compressed gas).

[0033] See also Figure 6 A second embodiment of the gas storage system of the utility model is similar to the first embodiment, except that the second gas storage pipe 41 of the second gas storage unit 4 is omitted in the second embodiment (see Figure 5 ). The first gas storage pipes 311 of different first gas storage units 3 are gas-connected to each other through a plurality of transversely extending first connecting pipes 51. Each of the first connecting pipes 51 is gas-connected between two first gas storage pipes 311 of the same height and perpendicular to each other. The gas storage groups 31 of the same first gas storage unit 3 are gas-connected to each other through a plurality of vertically extending second connecting pipes 52. Each of the second connecting pipes 52 is gas-connected between two vertically adjacent first gas storage pipes 311.

[0034] In summary, the beneficial effects of the gas storage system of the utility model are: the first gas storage unit 3 can be used as a fence to prevent the general public from entering the working area S1, thereby improving safety. In addition, the first gas storage pipe 311 can also be used to store compressed gas, thereby increasing the storage capacity of energy (compressed gas).

[0035] The above is only a specific implementation of the present invention, and cannot be used to limit the scope of the claims of the present invention. Equivalent changes made according to the claims of the present invention and the contents of the specification should also be covered by the scope of the claims of the present invention.

Claims

1. A gas storage system, suitable for use with a power generation system that can generate electricity using compressed gas, the gas storage system comprising a plurality of first gas storage units in gas communication with each other, the first gas storage units being suitable for gas communication with the power generation system, characterized in that: The first gas storage units cooperate to define a working area suitable for setting up the power generation system. Each of the first gas storage units includes at least one gas storage group and a plurality of bracket groups that cooperate to support at least one of the gas storage groups. Each of the gas storage groups includes several first gas storage pipes that extend laterally and are coaxially gas-connected to each other. The first gas storage pipes are suitable for storing compressed gas.

2. The gas storage system according to claim 1, characterized in that: Each of the first gas storage units includes a plurality of gas storage groups arranged vertically, and the gas storage system further includes a plurality of second gas storage units, each of the second gas storage units is located between two of the first gas storage units, and is gas-connected to the gas storage groups of adjacent first gas storage units, so that the gas storage groups belonging to the same first gas storage unit are gas-connected to each other through the second gas storage units, and the first gas storage units are gas-connected to each other.

3. The gas storage system according to claim 2, characterized in that: Each of the second gas storage units includes at least one second gas storage pipe extending upright and gas-connected to the gas storage group of the adjacent first gas storage units.

4. The gas storage system according to claim 2, characterized in that: Each of the bracket sets includes two first racks that are spaced apart laterally and extend up and down, and a plurality of second racks that extend laterally and are connected to the first racks and spaced apart from each other up and down, and each of the second racks supports a corresponding first gas storage pipe.