Energy carbon emission prediction and early warning device

By introducing rotating bearings and wind-direction plates into the energy carbon emission prediction and early warning device, the air inlet error problem caused by wind direction changes is solved, and the accuracy of air collection and the sealing of the device are achieved.

CN223078288UActive Publication Date: 2025-07-08THREE GORGES JINSHAJIANG CHUANYUN HYDROPOWER DEV CO LTD +1
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Patent Information

Application Number
CN202421764002.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-07-08
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

The direction of the gas collection pipeline device of the existing energy carbon emission prediction and early warning device cannot automatically change the direction of the air inlet with the wind direction, resulting in measurement errors during detection.

Method used

A system including a carbon emission collection device and a detection and early warning device is designed. The air collection pipe device is connected to the pipe cover through a rotating bearing, and the wind direction plate is parallel to the dust-proof air collection pipe. It can automatically adjust the direction of the air inlet according to the wind direction, and combine it with the filter device to improve the accuracy of air collection.

Benefits of technology

The accuracy of air collection under different wind direction conditions and the sealing of the device are achieved, wind resistance is reduced, and measurement errors caused by changes in wind direction are avoided.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223078288U_ABST
Patent Text Reader

Abstract

The utility model discloses an energy carbon emission predicting and early warning device, which belongs to the field of environmental protection, and comprises a carbon emission collecting device and a detecting and early warning device, the carbon emission collecting device comprises a gas collecting pipeline device and an air draft device, and the outer walls of the air draft device and the detecting and early warning device are provided with early warning boxes. And the gas collecting pipeline device penetrates through the early warning box. Compared with the prior art, the wind direction plate has the advantages that when the wind direction plate is different from the wind direction, the wind direction plate is pushed by wind to enable the rotating bearing to rotate around the center of the pipe cover, so that the wind direction plate is parallel to the wind direction; and the wind direction plate is parallel to the dustproof gas collection branch pipes, so that the air inlets of the dustproof gas collection branch pipes are opposite to the wind direction, and the collection of the dustproof gas collection branch pipes is more accurate.
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Description

Technical Field

[0001] The utility model relates to the field of environmental protection, in particular to an energy carbon emission prediction and early warning device. Background Art

[0002] With the continuous development of society, while people are moving towards industrialization, it has greatly affected the existing air environmental quality. In order to improve the living environment of humans, while in the process of industrialization, the carbon emissions of these enterprise equipment are limited to ensure the quality of ambient air. In order to monitor the carbon emissions of these enterprise equipment, environmental monitoring management personnel usually set up multiple energy carbon emission prediction and early warning devices near these enterprises to conduct real-time monitoring and early warning of the carbon emissions of the equipment.

[0003] The existing energy carbon emission prediction and early warning device is to install several warning boxes near the enterprise. The inside of the warning box is provided with an air extraction device and a detection and early warning device. The gas collection pipeline device of this device is installed on one side of the warning box, and a gas collection hose is used to install the gas collection pipeline device and the detection and early warning device at the air inlet and outlet of the air extraction device. When the air extraction device is started, air is drawn into the detection and early warning device for detection, and prediction and early warning are carried out according to the data results.

[0004] Although the existing energy carbon emission prediction and early warning device can detect and predict the carbon emission content in the air, this device cannot adjust the air inlet direction of the gas collection pipeline device with the change of the wind direction. During detection, the equipment will cause measurement errors in the carbon emission content due to the wind direction, thus affecting the data results. Content of the Utility Model

[0005] The technical problem to be solved by the utility model is that the direction of the gas collection pipeline device of the existing energy carbon emission prediction and early warning device cannot automatically change the air inlet direction with the wind direction.

[0006] To solve the above technical problem, the technical solution provided by the utility model is: an energy carbon emission prediction and early warning device, including a carbon emission collection device and a detection and early warning device. The carbon emission collection device includes a gas collection pipeline device and an air extraction device. The outer walls of the air extraction device and the detection and early warning device are provided with a warning box. The gas collection pipeline device passes through the warning box. The gas collection pipeline device and the detection and early warning device are both connected to the air extraction device through a gas collection hose. The gas collection pipeline device includes a main pipe passing through the warning box and a pipe cover for closing the main pipe. The main pipe is connected to the pipe cover through a rotary bearing. A wind vane is arranged above the pipe cover. Dust-proof gas collection branch pipes corresponding to the wind vane are arranged on both sides of the wind vane. The wind vane and the dust-proof gas collection branch pipes are parallel to each other.

[0007] As an improvement, the detection and warning device includes a detection device, a threshold warning device, and an alarm light. The detection device and the alarm light are both connected to the threshold warning device through data lines, and the alarm light passes through the switch door of the warning box.

[0008] As an improvement, both the main pipe and the detection device are connected to the exhaust device through a gas collecting hose, and the main pipe is connected to the warning box through a bolt structure.

[0009] As an improvement, a filtering device is provided inside the dust-proof gas collecting branch pipe. The filtering device includes a T-shaped layered filter rack and filter nets with gradually increasing filtering degrees. A fixing rack for storing the filter nets is provided inside the T-shaped layered filter rack.

[0010] As an improvement, the filtering device is connected to the outer wall of the dust-proof gas collecting branch pipe through a sealing gasket.

[0011] As an improvement, both the wind direction plate and the dust-proof gas collecting branch pipe pass through the pipe cover. The wind direction plate is connected to the pipe cover through threads, the dust-proof gas collecting branch pipe is integrally connected to the pipe cover through a welding device, and the exhaust device is connected to the power supply device through a wire.

[0012] The advantages of the present utility model compared with the prior art are as follows: When the wind direction plate is different from the wind direction, the wind direction plate will be pushed by the wind, causing the rotating bearing to rotate around the center of the pipe cover, making the wind direction plate parallel to the wind direction; since the wind direction plate and the dust-proof gas collecting branch pipe are parallel to each other, the air inlet of the dust-proof gas collecting branch pipe and the wind direction are in opposite directions, so that the collection of the dust-proof gas collecting branch pipe is more accurate. Description of the Drawings

[0013] Figure 1 is the overall structure diagram of an energy carbon emission prediction and warning device of the present utility model.

[0014] Figure 2 is the exploded view of the gas collecting pipeline device of an energy carbon emission prediction and warning device of the present utility model.

[0015] Figure 3 is the cross-sectional view of the gas collecting pipeline device of an energy carbon emission prediction and warning device of the present utility model.

[0016] Figure 4 is the structure diagram of the filtering device of an energy carbon emission prediction and warning device of the present utility model.

[0017] As shown in the figure: 1. Carbon emission collection device; 11. Gas collection pipeline device; 111. Main pipe; 112. Pipe cover; 113. Wind direction plate; 114. Dust-proof gas collection branch pipe; 115. Filter device; 1151. T-shaped layered filter rack; 1152. Filter net; 1153. Fixing rack; 12. Gas collection pipeline device; 13. Gas collection hose; 2. Detection and early warning device; 21. Detection device; 22. Threshold early warning device; 23. Alarm lamp; 3. Early warning box; 4. Rotating bearing; 5. Sealing gasket. Detailed implementation method

[0018] The following further elaborates on the present utility model in conjunction with the attached drawings.

[0019] As shown in the attached Figure 1 description of the specification, it includes a carbon emission collection device 1 and a detection and early warning device 2. The carbon emission collection device 1 includes a gas collection pipeline device 11 and an air extraction device 12. An early warning box 3 is provided on the outer walls of the air extraction device 12 and the detection and early warning device 2. The gas collection pipeline device 11 passes through the early warning box 3. Both the gas collection pipeline device 11 and the detection and early warning device 2 are connected to the air extraction device 12 through a gas collection hose 13. The air extraction device 12 is connected to a power supply device through a wire. The air inlet and outlet of the air extraction device 12 adopt a gas collection hose 13, making it plastic and avoiding the problem of difficult installation.

[0020] The detection and early warning device 2 includes a detection device 21, a threshold early warning device 22, and an alarm lamp 23. Both the detection device 21 and the alarm lamp 23 are connected to the threshold early warning device 22 through a data cable. The alarm lamp 23 passes through the switch door of the early warning box 3. The detection device 21 is connected to the air extraction device 12 through a gas collection hose 13. The alarm lamp 23 passes through the box door of the early warning box 3, making it easier to be noticed when alarming.

[0021] As shown in the attached Figure 2 , 3 , 4, the gas collection pipeline device 11 includes a main pipe 111 passing through the early warning box 3 and a pipe cover 112 closing the main pipe 111. The main pipe 111 is connected to the pipe cover 112 through a rotating bearing 4. A wind direction plate 113 is provided above the pipe cover 112. Dust-proof gas collection branch pipes 114 corresponding to the wind direction plate 113 are provided on both sides of the wind direction plate 113. The wind direction plate 113 and the dust-proof gas collection branch pipes 114 are parallel to each other. The main pipe 111 is connected to the early warning box 3 through a bolt structure. Because the wind direction plate 113 and the dust-proof gas collection branch pipes 114 are parallel to each other, when the wind direction plate 113 is parallel to the wind direction, the dust-proof gas collection branch pipes 114 are opposite to the wind direction, ensuring the accuracy of air collection.

[0022] A filtering device 115 is provided inside the dust-proof gas collecting branch pipe 114. The filtering device 115 includes a T-shaped layered filtering rack 1151 and filter nets 1152 with gradually increasing filtering degrees. A fixing rack 1153 for storing the filter nets 1152 is provided inside the T-shaped layered filtering rack 1151. The filtering device 115 is connected to the outer wall of the dust-proof gas collecting branch pipe 114 through a sealing gasket 5. The dust in the air is gradually isolated by the filter nets 1152 inside the layered filtering rack 1151 to ensure the purity of the carbon structure entering the detection and warning device 2.

[0023] Both the wind direction plate 113 and the dust-proof gas collecting branch pipe 114 pass through the pipe cover 112. The wind direction plate 113 is connected to the pipe cover 112 by threads, and the dust-proof gas collecting branch pipe 114 is integrally connected to the pipe cover 112 through a welding device. The integral welding of the dust-proof gas collecting branch pipe 114 and the pipe cover 112 ensures the sealing performance of the device.

[0024] When the present utility model is specifically implemented, the filter nets 1152 are sequentially installed in the fixing rack 1153 inside the T-shaped layered filtering rack 1151 according to the size of the filtering holes. The size of the filtering holes of the filter nets 1152 gradually decreases from the installation port to the inside. The sealing gasket 5 is sleeved on the outer wall of the dust-proof gas collecting branch pipe 114, and the filtering device 115 is inserted into the air inlet of the dust-proof gas collecting branch pipe 114, and the two are fixed through the sealing gasket 5. The threaded end of the rod surface of the wind direction plate 113 is screwed into the screw hole in the center of the pipe cover 112 to make the wind direction plate 113 parallel to the dust-proof gas collecting branch pipe 114. The rotating bearing 4 is sleeved on one side of the main pipe 111, and the pipe cover 112 is sleeved on the outer wall of the rotating bearing 4, so that the pipe cover 112 can rotate freely around the pipe orifice of the main pipe 111. The main pipe 111 is placed on the main pipe 111 through hole of the warning box 3, and the screw holes of the main pipe 111 and the warning box 3 are aligned, and fixed with screws. The air extraction device 12 and the detection device 21 are placed in the partition layer inside the warning box 3, and the air inlet of the detection device 21 and the air outlet of the main pipe 111 are respectively connected to the air outlet and the air inlet of the air extraction device 12 through the gas collecting hose 13. The threshold warning device 22 is fixed on the box wall of the warning box 3, and the alarm lamp 23 is fixed through the box door through hole of the warning box 3. The detection device 21, the threshold warning device 22 and the alarm lamp 23 are connected with data lines to complete the data sharing connection. The power input end of the air extraction device 12 is inserted into the power supply to be energized.

[0025] During use, start the air extraction device 12 and the detection device 21 to extract the air in the vicinity. When there is a gentle breeze, the wind force pushes the wind vane 113 to rotate around the axis of the rotary bearing 4, causing the dust-proof air collecting branch pipe 114 to face the wind direction directly, so that the flowing air can directly enter the air extraction device 12. This not only improves the accuracy of data collection, but also reduces the resistance of the wind to the device during air collection, and avoids damaging the air collecting pipe device 11 in case of strong wind.

[0026] The above describes the present utility model and its implementation manners. Such description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present utility model, and the actual structure is not limited thereto. All in all, if those of ordinary skill in the art are inspired by it and design similar structural manners and embodiments without creative efforts without departing from the gist of the creation of the present utility model, they shall fall within the protection scope of the present utility model.

Claims

1. An energy carbon emission prediction and early warning device, comprising a carbon emission collection device (1) and a detection and early warning device (2). The carbon emission collection device (1) includes a gas collection pipeline device (11) and an air extraction device (12). An early warning box (3) is provided on the outer walls of the air extraction device (12) and the detection and early warning device (2). The gas collection pipeline device (11) passes through the early warning box (3). The gas collection pipeline device (11) and the detection and early warning device (2) are both connected to the air extraction device (12) through a gas collection hose (13), and it is characterized in that: The gas collecting pipeline device (11) includes a main pipe (111) passing through the warning box (3) and a pipe cover (112) for closing the main pipe (111). The main pipe (111) is connected to the pipe cover (112) through a rotating bearing (4). A wind vane (113) is provided above the pipe cover (112). Dust-proof gas collecting branch pipes (114) corresponding to the wind vane (113) are provided on both sides of the wind vane (113). The wind vane (113) and the dust-proof gas collecting branch pipes (114) are parallel to each other.

2. The energy carbon emission prediction and early warning device according to claim 1, wherein: The detection and warning device (2) includes a detection device (21), a threshold warning device (22), and an alarm lamp (23). The detection device (21) and the alarm lamp (23) are both connected to the threshold warning device (22) through data lines. The alarm lamp (23) passes through the switch door of the warning box (3).

3. The energy carbon emission prediction and early warning device according to claim 2, characterized in that: The main pipe (111) and the detection device (21) are both connected to the air extraction device (12) through a gas collecting hose (13). The main pipe (111) is connected to the warning box (3) through a bolt structure.

4. The energy carbon emission prediction and early warning device according to claim 2, characterized in that: A filtering device (115) is provided inside the dust-proof gas collecting branch pipe (114). The filtering device (115) includes a T-shaped layered filter rack (1151) and filter nets (1152) with gradually increasing filtering degrees. A fixing rack (1153) for storing the filter nets (1152) is provided inside the T-shaped layered filter rack (1151).

5. An energy carbon emission prediction and early warning device according to claim 4, characterized in that: The filtering device (115) is connected to the outer wall of the dust-proof gas collecting branch pipe (114) through a sealing gasket (5).

6. The energy carbon emission prediction and early warning device according to claim 1, characterized in that: The wind vane (113) and the dust-proof gas collecting branch pipes (114) both pass through the pipe cover (112). The wind vane (113) is connected to the pipe cover (112) through a thread. The dust-proof gas collecting branch pipes (114) are integrally connected to the pipe cover (112) through a welding device. The air extraction device (12) is connected to the power supply device through a wire.