Gas-liquid separation tank for steam upgrading

The steam-upgrading gas-liquid separator, designed with a servo motor-driven gear system and pneumatic rod, solves the problem of inconvenient maintenance and replacement of separators in existing technologies, and achieves rapid maintenance and efficient gas-liquid separation.

CN119869096BActive Publication Date: 2025-11-25HUBEI SANFENG TURBINE EQUIP CO LTD
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Patent Information

Application Number
CN202510275356.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-11-25
Estimated Expiration
2045-03-10

AI Technical Summary

Technical Problem

The existing steam-cooled gas-liquid separators are difficult to repair or replace when the separation components are replaced, which leads to a decrease or interruption of gas-liquid separation efficiency.

Method used

A gas-liquid separator for steam upgrading was designed. It uses a servo motor to drive a gear system to move the built-in gas-liquid frame and baffles. Combined with the air rod design, it enables convenient maintenance and replacement. It is also equipped with a cleaning component to scrape off residual water stains and ensure separation efficiency.

Benefits of technology

It enables quick replacement and maintenance of the built-in gas-liquid rack and baffles without opening the separation tank, avoiding any impact on the quality and efficiency of gas-liquid separation. The cleaning components ensure that the inner wall of the tank remains clean, maintaining efficient separation.

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Abstract

The application discloses a gas-liquid separation tank for steam upgrading, and relates to the technical field of steam upgrading, which comprises a separation tank body and a liquid discharge port. A top cover is arranged on the top of the separation tank body. A separation tank air inlet is arranged on one side in the separation tank body. A separation tank air outlet is arranged on the side, which is far away from the separation tank air inlet, in the separation tank body. A bottom frame is arranged on the bottom of the separation tank body. The liquid discharge port is arranged on the bottom of the bottom frame. An internal gas-liquid frame is arranged in the separation tank body. The gas-liquid separation tank can drive the internal gas-liquid frame, the baffle and the orifice plate to move from the inside of the separation tank body to the inside of the auxiliary frame by the design of the air rod, so that the internal gas-liquid frame, the baffle and the orifice plate, which are prearranged in another group of auxiliary frames, are moved to the inside of the separation tank body. The internal gas-liquid frame, the baffle and the orifice plate for gas-liquid separation in the separation tank body can be quickly replaced, and the gas-liquid separation quality and efficiency are not affected.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of steam upgrading technology, in particular to a gas-liquid separation tank for steam upgrading. BACKGROUND

[0002] The gas phase medium in the steam upgrading system carries fine droplets, which will cause impact on the centrifugal compressor impeller and seriously affect the service life of the impeller, so gas-liquid separation is required before the steam enters the compressor.

[0003] Currently, the gas-liquid separation tank for steam upgrading is difficult to conveniently maintain or replace the related components for gas-liquid separation inside the separation tank during use, which causes the gas-liquid separation tank to be easily interrupted for a long time or to reduce the gas-liquid separation efficiency during maintenance.

[0004] Therefore, in view of the above, the existing structure and defects are improved, and a gas-liquid separation tank for steam upgrading is provided. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides a gas-liquid separation tank for steam upgrading, which solves the problems raised in the background art.

[0006] To achieve the above purpose, the following technical scheme is adopted: a gas-liquid separation tank for steam upgrading, comprising a separation tank body and a liquid discharge port, a top cover is arranged at the top of the separation tank body, a separation tank gas inlet is arranged on one side of the inside of the separation tank body, a separation tank gas outlet is installed on the side of the inside of the separation tank body away from the separation tank gas inlet, a bottom frame is arranged at the bottom of the separation tank body, the liquid discharge port is arranged at the bottom of the bottom frame, an internal gas-liquid rack is arranged in the separation tank body, a gas rod II is installed on the top outer surface of the top cover, and a collection plate is arranged at the output end of the gas rod II, a driving assembly for assisting in the maintenance and repair of the internal gas-liquid rack is installed on one side of the top of the collection plate, the driving assembly comprises a servo motor, a driving gear, a rack, a link plate and an encryption plate, the output shaft of the servo motor is provided with the driving gear, the outer surface of the driving gear is provided with the rack, one side of the bottom of the rack is connected with the link plate, one side of the link plate is provided with the encryption plate, a stand is installed at the bottom of the driving gear, and a sealing assembly for sealing the maintenance opening of the separation tank body and the internal gas-liquid rack is installed at the bottom of the stand, the sealing assembly comprises an internal connecting shaft, an extension plate and a sealing plate, the outer surfaces of both sides of the internal connecting shaft are provided with the extension plate, the outside of the extension plate is provided with a side frame, and the sealing plate is slidably installed in the inside of the side frame, and a flap liquid level meter is arranged below the separation tank gas inlet.

[0007] Further, the bottom of the stand is provided with the internal connecting shaft, and the bottom of the internal connecting shaft is rotatably provided with the side frame.

[0008] Further, the built-in gas-liquid frame is located in the middle of the separation tank body, and the inside of the built-in gas-liquid frame is provided with a baffle.

[0009] Further, one side of the baffle is provided with a hole plate, and the baffle and the hole plate are vertically distributed.

[0010] Further, the built-in gas-liquid frame is provided with two groups, and the two groups of built-in gas-liquid frames are completely the same in structure.

[0011] Further, the outer surface of the separation tank body is provided with an auxiliary frame on both sides, and the end of the auxiliary frame is clamped and installed with a connecting plate.

[0012] Further, one side of the outer surface of the connecting plate is installed with a gas rod one, and the end of the gas rod one is provided with a separation tank body.

[0013] Further, one side of the top of the auxiliary frame is provided with a slide, and the inside of the slide is slidably installed with a linking plate.

[0014] Further, the bottom of the built-in gas-liquid frame is provided with a tooth on both sides, and the outer surface of the tooth is provided with a cleaning assembly for assisting the cleaning of the inner wall of the separation tank body.

[0015] Further, the cleaning assembly comprises a side tooth disc, a liquid leakage hole, a connecting bottom plate, a built-in shaft and a scraper, and the top of the side tooth disc is provided with a built-in shaft, the outer surface of the built-in shaft is installed with a scraper, the bottom of the side tooth disc is rotatably provided with a connecting bottom plate, and the inside of the side tooth disc is annularly provided with a liquid leakage hole.

[0016] The present application provides a gas-liquid separation tank for steam upgrading, which has the following advantages:

[0017] 1. The gas-liquid separation tank for steam upgrading can drive the built-in gas-liquid frame, the baffle and the hole plate to move from the inside of the separation tank body to the inside of the auxiliary frame by the design of the gas rod one, so that the built-in gas-liquid frame, the baffle and the hole plate pre-existing in another group of auxiliary frames are moved to the inside of the separation tank body, which facilitates the quick replacement of the built-in gas-liquid frame, the baffle and the hole plate for gas-liquid separation in the separation tank body, and avoids affecting the quality and efficiency of gas-liquid separation.

[0018] 2. The vapor upgrading gas-liquid separation tank, in cooperation with the design of the servo motor can drive the gear rotation, through the rotation of the drive gear can make the drive gear bottom column and the built-in connecting shaft after the engagement, can be built-in connecting shaft in the side frame inside rotation, so that the extension plate connected with the built-in connecting shaft will follow the rotation, and then the sliding limit in the side frame encryption board will be extruded by the external force of the extension plate, so that the encryption board from the side frame sliding out and with the separation tank body built-in gas-liquid frame maintenance opening seal fit, avoid affecting the subsequent gas-liquid separation, facilitate in not open the separation tank body to the built-in gas-liquid frame, baffle and hole plate maintenance or replacement.

[0019] 3. The vapor upgrading gas-liquid separation tank, through the design of the gas rod one drives the built-in gas-liquid frame, baffle and hole plate from the inside of the separation tank body to the inside of the auxiliary frame, so that the built-in gas-liquid frame, baffle and hole plate preexist in another group of auxiliary frame inside the inside of the separation tank body, during the movement of the built-in gas-liquid frame in the separation tank body, the teeth on both sides of the built-in gas-liquid frame will contact with the side tooth disc, so that the side tooth disc will rotate due to meshing, through the rotation of the side tooth disc can synchronous drive built-in shaft and scraper plate follow the rotation, so that the rotation of the scraper plate can contact with the inner wall of the separation tank body, the water stains remaining in the separation tank body are scraped and cleaned, avoiding the influence of the liquid separation quality caused by the attachment of more water stains in the separation tank body. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 The overall structure of the gas-liquid separation tank for steam upgrading of the present application is shown in the figure;

[0021] Figure 2 The local sectional structure of the gas-liquid separation tank for steam upgrading of the present application is shown in the figure;

[0022] Figure 3 The cleaning assembly structure of the gas-liquid separation tank for steam upgrading of the present application is shown in the figure;

[0023] Figure 4 The baffle and hole plate connection distribution structure of the gas-liquid separation tank for steam upgrading of the present application is shown in the figure;

[0024] Figure 5 The side frame structure of the gas-liquid separation tank for steam upgrading of the present application is shown in the figure;

[0025] Figure 6 The Figure 1 The enlarged structure of point A in the figure.

[0026] In the figure: 1, the tank body of the separation tank; 2, the liquid outlet; 3, the gas inlet of the separation tank; 4, the gas outlet of the separation tank; 5, the top cover; 6, the turnover plate liquid level meter; 7, the bottom frame; 8, the auxiliary frame; 9, the built-in gas-liquid rack; 10, the gas rod one; 11, the connecting plate; 12, the side frame; 13, the cleaning assembly; 1301, the side tooth disc; 1302, the liquid leakage hole; 1303, the connecting bottom plate; 1304, the built-in shaft; 1305, the scraper; 14, the tooth; 15, the baffle; 16, the hole plate; 17, the sealing assembly; 1701, the built-in connecting shaft; 1702, the extension plate; 1703, the sealing plate; 18, the slide; 19, the driving assembly; 1901, the servo motor; 1902, the driving gear; 1903, the rack; 1904, the link plate; 1905, the encryption plate; 20, the gas rod two; 21, the collection plate. DETAILED DESCRIPTION

[0027] The embodiments of the present application will be further described below in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.

[0028] As Figures 1-6As shown, the present application provides technical solutions: a gas-liquid separation tank for steam upgrading, including separation tank body 1, liquid discharge port 2, separation tank gas inlet 3, separation tank gas outlet 4, top cover 5, flap liquid level meter 6, bottom frame 7, auxiliary frame 8, built-in gas-liquid frame 9, gas rod one 10, connecting plate 11, side frame 12, cleaning assembly 13, side tooth disc 1301, liquid leakage hole 1302, connecting bottom plate 1303, built-in shaft 1304, scraper 1305, gear teeth 14, baffle 15, hole plate 16, sealing assembly 17, built-in connecting shaft 1701, extension plate 1702, sealing plate 1703, slide 18, drive assembly 19, servo motor 1901, drive gear 1902, rack 1903, adapter plate 1904, encryption plate 1905, gas rod two 20 and collection plate 21, the top of the separation tank body 1 is provided with top cover 5, both sides of the outer surface of the separation tank body 1 are provided with auxiliary frame 8, and the end of the auxiliary frame 8 is clamped and installed with connecting plate 11, one side of the top of the auxiliary frame 8 is provided with slide 18, and the inside of the slide 18 is slidably installed with adapter plate 1904, one side of the outer surface of the connecting plate 11 is installed with gas rod one 10, and the end of the gas rod one 10 is provided with the separation tank body 1, one side of the inside of the separation tank body 1 is provided with the separation tank gas inlet 3, and one side of the inside of the separation tank body 1 away from the separation tank gas inlet 3 is installed with the separation tank gas outlet 4, the bottom of the separation tank body 1 is provided with bottom frame 7, the liquid discharge port 2 is arranged at the bottom of the bottom frame 7, the inside of the separation tank body 1 is provided with built-in gas-liquid frame 9, the built-in gas-liquid frame 9 is provided with two groups, the two groups of built-in gas-liquid frame 9 are completely structured, the two groups of built-in gas-liquid frame 9, baffle 15 and hole plate 16 are fixed by screws, the built-in gas-liquid frame 9 is located in the middle of the separation tank body 1, the inside of the built-in gas-liquid frame 9 is provided with baffle 15, one side of the baffle 15 is installed with hole plate 16, and the baffle 15 and the hole plate 16 are vertically distributed, the top surface of the top cover 5 is installed with gas rod two 20, and the output end of the gas rod two 20 is provided with collection plate 21, one side of the top of the collection plate 21 is installed with drive assembly 19 for assisting the maintenance of the built-in gas-liquid frame 9, the drive assembly 19 includes servo motor 1901, drive gear 1902, rack 1903, adapter plate 1904 and encryption plate 1905, the output end of the servo motor 1901 is installed with drive gear 1902 through an output shaft, the outer surface of the drive gear 1902 is engaged with rack 1903, one side of the bottom of the rack 1903 is connected with adapter plate 1904, one side of the adapter plate 1904 is provided with encryption plate 1905, the drive gear 1902 is installed with a stand at the bottom, and the bottom of the stand is installed with sealing assembly 17 for sealing the opening for maintenance of the separation tank body 1 and the built-in gas-liquid frame 9, the sealing assembly 17 includes built-in connecting shaft 1701, extension plate 1702 and sealing plate 1703, the outer surface of the built-in connecting shaft 1701 is installed with extension plate 1702 on both sides, the outside of the extension plate 1702 is provided with side frame 12, and the inside of the side frame 12 is slidably installed with sealing plate 1703,The bottom of the column is snap-fitted with an internal connecting shaft 1701, and the bottom of the internal connecting shaft 1701 is rotatably provided with a side frame 12. A flap liquid level meter 6 is arranged below the separation tank gas inlet 3. Liquid droplet-containing steam enters the separation tank body 1 from the separation tank gas inlet 3. Since the steam enters the separation tank body 1 from the separation tank gas inlet 3, the space becomes larger, causing the gas flow rate to decrease. Under the action of gravity, large-volume liquid droplets settle to the bottom of the separation tank body 1. The remaining liquid droplets enter the internal gas-liquid stand 9 along with the gas. Since the baffle 15 flow channel is S-shaped, the steam entering will form a vortex state. A portion of the small-diameter liquid droplets will be hung on the baffle 15 under the action of centrifugal force in the rotating state and flow to the bottom under the action of gravity. A portion of the small-diameter liquid droplets will pass through the orifice plate 16 along with the gas flow. The liquid droplets are intercepted at the orifice plate 16 and flow to the bottom under the action of gravity. The liquid is collected at the bottom of the separation tank body 1 and the liquid level is displayed by the flap liquid level meter 6. When the liquid level reaches the discharge requirement, the liquid is discharged from the bottom discharge port 2 of the separation tank body 1, and the steam is discharged from the separation tank gas outlet 4. The internal gas-liquid stand 9 adopts an interlaced structure of baffles 15. An orifice plate 16 is arranged between every two baffles 15. The gas entering will form six 90° turns and vortexes at the right angles. The small-diameter liquid droplets are separated by rotation. Since the density ratio between the gas and the liquid is different, the liquid droplets are subjected to a large inertial force under the action of centrifugal force. A portion of the liquid droplets are thrown onto the wall of the baffle 15. The remaining liquid droplets are intercepted when passing through the orifice plate 16 and flow to the bottom of the separation tank under the action of gravity, thereby realizing the separation of gas and liquid. When the internal gas-liquid stand 9, the baffle 15, and the orifice plate 16 are used for long-time gas-liquid separation, the gas rod 1 0 can be used to drive the internal gas-liquid stand 9, the baffle 15, and the orifice plate 16 to move from the inside of the separation tank body 1 to the inside of the auxiliary frame 8, so that the internal gas-liquid stand 9, the baffle 15, and the orifice plate 16 pre-existing in another auxiliary frame 8 are moved to the inside of the separation tank body 1. This facilitates the quick replacement of the internal gas-liquid stand 9, the baffle 15, and the orifice plate 16 for gas-liquid separation in the separation tank body 1, avoids affecting the quality and efficiency of gas-liquid separation, and further facilitates the maintenance or replacement of the internal gas-liquid stand 9, the baffle 15, and the orifice plate 16 without opening the separation tank body 1.

[0029] As Figure 1 , Figure 2 and Figure 3 shown, the built-in gas-liquid frame 9 is installed with teeth 14 on both sides of the bottom, and the outer surface of the teeth 14 is provided with a cleaning assembly 13 for assisting in cleaning the inner wall of the separation tank body 1, which includes a side tooth disc 1301, a liquid leakage hole 1302, a connecting bottom plate 1303, a built-in shaft 1304 and a scraper 1305, and the top middle of the side tooth disc 1301 is provided with a built-in shaft 1304, the outer surface of the built-in shaft 1304 is installed with a scraper 1305, the bottom of the side tooth disc 1301 is rotatably provided with a connecting bottom plate 1303, and the inside of the side tooth disc 1301 is annularly provided with a liquid leakage hole 1302. The design of the air rod 10 drives the built-in gas-liquid frame 9, the baffle 15 and the hole plate 16 to move from the inside of the separation tank body 1 to the inside of the auxiliary frame 8, so that the built-in gas-liquid frame 9, the baffle 15 and the hole plate 16 pre-existing in the other group of auxiliary frames 8 are moved to the inside of the separation tank body 1. During the movement of the built-in gas-liquid frame 9 in the separation tank body 1, the teeth 14 on both sides of the built-in gas-liquid frame 9 will contact the side tooth disc 1301, so that the side tooth disc 1301 rotates due to engagement. The rotation of the side tooth disc 1301 can synchronously drive the built-in shaft 1304 and the scraper 1305 to rotate, so that the rotation of the scraper 1305 can contact the inner wall of the separation tank body 1, scrape and clean the remaining water stains in the separation tank body 1, avoid the influence of more water stains attached to the separation tank body 1 on the quality of liquid separation, and when the other group of built-in gas-liquid frames 9 are pushed into the separation tank body 1, the teeth 14 on both sides of the built-in gas-liquid frame 9 will contact the side tooth disc 1301, so that the side tooth disc 1301 rotates due to engagement, so that the rotation of the side tooth disc 1301 can synchronously drive the built-in shaft 1304 and the scraper 1305 to rotate, so that the rotation of the scraper 1305 makes the scraper 1305 be at the center of the side tooth disc 1301, avoiding the influence of the scraper 1305 on the air inlet of the separation tank body 1 when it is not needed.

[0030] In summary, as Figures 1-6As shown, the vapor upgrading gas-liquid separation tank, in use, liquid droplet-containing steam enters the separation tank body 1 from the separation tank inlet 3. Since the steam enters the separation tank body 1 from the separation tank inlet 3, the space becomes larger, the gas flow rate decreases, and under the action of gravity, large-volume liquid droplets settle at the bottom of the separation tank body 1. The remaining liquid droplets enter the inner gas-liquid frame 9 along with the gas. Since the baffle 15 flow channel is S-shaped, the steam entering will form a vortex state. A part of the small-diameter liquid droplets will be hung on the baffle 15 under the action of centrifugal force in the rotating state and flow to the bottom under the action of gravity. A part of the small-diameter liquid droplets will pass through the orifice plate 16 along with the gas flow. The liquid droplets are intercepted at the orifice plate 16 and flow to the bottom under the action of gravity. The liquid is collected at the bottom of the separation tank body 1, and the liquid level is displayed through the flap liquid level gauge 6. When the liquid level reaches the discharge requirement, the liquid is discharged through the separation tank body 1 bottom discharge port 2, and the steam is discharged from the separation tank outlet 4. The inner gas-liquid frame 9 adopts an interlaced structure of baffles 15. Every two baffles 15 are provided with an orifice plate 16. After the gas enters, it will form 6 90° turns and form a vortex at the right angle. The small-diameter liquid droplets are separated by rotation. Since the density ratio between the gas and the liquid is not the same, under the action of centrifugal force, a part of the liquid droplets are thrown to the wall of the baffle 15, and the remaining liquid droplets are intercepted when passing through the orifice plate 16 and naturally flow to the bottom of the separation tank under the action of gravity, thereby realizing the separation of gas and liquid. When the gas-liquid separation is performed for a long time by using the inner gas-liquid frame 9, the baffle 15 and the orifice plate 16, the gas rod one 10 can be used to drive the inner gas-liquid frame 9, the baffle 15 and the orifice plate 16 to move from the inside of the separation tank body 1 to the inside of the auxiliary frame 8, so that the inner gas-liquid frame 9, the baffle 15 and the orifice plate 16 pre-existing in another set of auxiliary frame 8 are moved to the inside of the separation tank body 1, thereby facilitating the replacement of the inner gas-liquid frame 9, the baffle 15 and the orifice plate 16 for gas-liquid separation in the separation tank body 1, avoiding affecting the quality and efficiency of gas-liquid separation. In addition, the gas rod two 20 can be used to drive the entire collection plate 21 to move up or down, thereby cooperating with the design of the servo motor 1901 to drive the driving gear 1902 to rotate. After the driving gear 1902 bottom stand is engaged with the built-in connecting shaft 1701, the built-in connecting shaft 1701 can be rotated in the side frame 12, thereby driving the extension plate 1702 connected with the built-in connecting shaft 1701 to rotate, and the encryption plate 1905 slidingly limited in the side frame 12 is extruded by the extension plate 1702, so that the encryption plate 1905 slides out of the side frame 12 and is tightly attached to the replacement opening of the inner gas-liquid frame 9 of the separation tank body 1, thereby avoiding affecting the subsequent gas-liquid separation, facilitating the maintenance or replacement of the inner gas-liquid frame 9, the baffle 15 and the orifice plate 16 without opening the separation tank body 1. In addition, the gas rod one 10 can be used to drive the inner gas-liquid frame 9, the baffle 15 and the orifice plate 16 to move from the inside of the separation tank body 1 to the inside of the auxiliary frame 8,Thus, the built-in gas-liquid frame 9, baffle 15 and hole plate 16 pre-existing in another set of auxiliary frames 8 are moved into the separation tank body 1, during the movement of the built-in gas-liquid frame 9 in the separation tank body 1, the teeth 14 on both sides of the built-in gas-liquid frame 9 are in contact with the side tooth disc 1301, so that the side tooth disc 1301 is rotated due to meshing, and the rotation of the side tooth disc 1301 can synchronously drive the built-in shaft 1304 and the scraper 1305 to rotate, so that the rotation of the scraper 1305 can be in contact with the inner wall of the separation tank body 1, and the water stains remaining in the separation tank body 1 are scraped and cleaned, so that the separation quality of the separation tank body 1 is not affected by the water stains attached to the separation tank body 1, and in addition, when another set of built-in gas-liquid frames 9 are pushed into the separation tank body 1, the teeth 14 on both sides of the built-in gas-liquid frame 9 are in contact with the side tooth disc 1301, so that the side tooth disc 1301 is rotated due to meshing, so that the rotation of the side tooth disc 1301 can synchronously drive the built-in shaft 1304 and the scraper 1305 to rotate, so that the rotation of the scraper 1305 makes the scraper 1305 be at the center of the side tooth disc 1301, and the scraper 1305 does not affect the air inlet of the separation tank body 1 when it is not used.

[0031] Embodiments of the application are presented for the purpose of example and description, and are not intended to be exhaustive or to limit the application to the precise forms disclosed. Many modifications and variations are possible in light of the above teachings. The embodiments were chosen and described in order to best illustrate the principles of the application and its practical application, and to enable others skilled in the art to best utilize the application in various embodiments with various modifications as are suited to the particular use contemplated.

Claims

1. A gas-liquid separator for steam upgrading, comprising a separator body (1) and a drain port (2), characterized in that: The top of the separator tank (1) is provided with a top cover (5). An air inlet (3) is provided on one side of the separator tank (1), and an air outlet (4) is installed on the side of the separator tank (1) away from the air inlet (3). A bottom frame (7) is provided at the bottom of the separator tank (1), and a drain port (2) is located at the bottom of the bottom frame (7). An internal gas-liquid rack (9) is provided inside the separator tank (1). A second air rod (20) is installed on the top outer surface of the top cover (5), and a collection plate (21) is provided at the output end of the second air rod (20). A drive assembly (19) for assisting in the inspection and maintenance of the internal gas-liquid rack (9) is installed on one side of the top of the collection plate (21). The drive assembly (19) includes a servo motor (1901), a drive gear (1902), a rack (1903), a connecting plate (1904), and a encryption plate (1905). The output end of the servo motor (1901) is equipped with a drive gear (1902) via an output shaft. The outer surface of the drive gear (1902) is meshed with a rack (1903). The bottom side of the rack (1903) is connected to a connecting plate (1904). The side of the connecting plate (1904) is equipped with an encryption plate (1905). A column is installed at the bottom of the drive gear (1902). A sealing assembly (17) is installed at the bottom of the column for sealing the inspection and maintenance openings of the separation tank body (1) and the built-in gas-liquid rack (9). The sealing assembly (17) includes a built-in connecting shaft (1701), an extension plate (1702), and a sealing plate (1703). The extension plate (1702) is installed on both sides of the outer surface of the built-in connecting shaft (1701). A side frame (12) is provided on the outside of the extension plate (1702), and the sealing plate (1703) is slidably installed inside the side frame (12). A flip-plate level gauge (6) is provided below the air inlet (3) of the separator. Two sets of built-in gas-liquid racks (9) are provided, and the two sets of built-in gas-liquid racks (9) have the same structure. An auxiliary frame (8) is provided on both sides of the outer surface of the separator body (1), and a connecting plate (11) is engaged at the end of the auxiliary frame (8). The outer side of the connecting plate (11) is... A pneumatic rod (10) is mounted on the surface, and a separation tank body (1) is provided at the end of the pneumatic rod (10). Teeth (14) are installed on both sides of the bottom of the built-in gas-liquid rack (9), and a cleaning component (13) for auxiliary cleaning of the inner wall of the separation tank body (1) is provided on the outer surface of the teeth (14). The cleaning component (13) includes a side toothed disc (1301), a leakage hole (1302), a connecting base plate (1303), a built-in shaft (1304), and a scraper (1305). The built-in shaft (1304) is provided at the top center of the side toothed disc (1301), and a scraper (1305) is installed on the outer surface of the built-in shaft (1304). The connecting base plate (1303) is rotatably provided at the bottom of the side toothed disc (1301).Furthermore, a leakage hole (1302) is annularly formed inside the side gear disc (1301).

2. The gas-liquid separator for steam upgrading according to claim 1, characterized in that: The built-in gas-liquid rack (9) is located in the middle of the tank body (1) of the separation tank, and a baffle (15) is provided inside the built-in gas-liquid rack (9).

3. A gas-liquid separator for steam upgrading according to claim 2, characterized in that: A perforated plate (16) is installed on one side of the baffle (15), and the baffle (15) and the perforated plate (16) are vertically distributed.

Citation Information

Patent Citations

  • Detachable baffle group for gas-liquid separation tank

    CN223214370U