Cooling tower device special for steam and operation method thereof

By designing a special steam cooling tower device, using a motor to drive the push plate downward and the condenser tube to swing back and forth, combined with the method of cleaning the plate to remove condensate water, the existing condenser tube has poor condensation effect and impurities in the pipe wall are solved, and more efficient steam condensation and cooling effects are achieved.

CN119915112AActive Publication Date: 2025-05-02WUXI PHOEBUS HEATING EQUIP CO LTD
View PDF 8 Cites 0 Cited by

Patent Information

Application Number
CN202510405716.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2025-05-02
Estimated Expiration
2045-04-02

AI Technical Summary

Technical Problem

During the steam condensation process of existing condensers, condensed water accumulates on the pipe wall, resulting in insufficient contact between the steam and the condenser tube, poor condensation effect, and the pipe wall is prone to accumulate impurities, affecting the cooling effect.

Method used

A steam-specific cooling tower device is designed, including a box, a heat dissipation shell and a condensing mechanism. The condensing mechanism drives the push plate down through the motor, driving the condensing tube to swing back and forth, increasing the contact area between the steam and the condensing tube, and moving along the condensing tube through the cleaning plate to remove the condensing water from the pipe wall and ensure the cleanliness of the pipe wall.

Benefits of technology

It improves the condensation effect of steam, ensures that the condensation tube wall is clean, avoids interference from impurities, enhances the contact between steam and condenser, and improves the overall cooling efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119915112A_ABST
    Figure CN119915112A_ABST
Patent Text Reader

Abstract

The invention discloses a special steam cooling tower device and an operation method thereof.The special steam cooling tower device comprises a box body, a heat dissipation shell and a condensation mechanism, the box body is a cuboid shell with an opening in the bottom, the condensation mechanism is arranged in the box body and comprises a first supporting shell and a second supporting shell, and the first supporting shell and the second supporting shell are arranged in the box body; the first supporting shell and the second supporting shell are hollow shells, a condensation pipe is communicated between the first supporting shell and the second supporting shell, the top of the heat dissipation shell is communicated with a water inlet pipe, the bottom of the heat dissipation shell is communicated with a water drainage pipe, and when the motor works, the push plate is driven to move downwards, so that water in the heat dissipation shell is extruded, and the water is drained into the condensation pipe; the push plate drives the connecting rod to move downwards in the downward moving process, the inclined face of the first trigger block abuts against the end of the first trigger rod, the inclined face of the second trigger block abuts against the end of the second trigger rod, and therefore the rack is driven to move back and forth along the first guide column, the condensation pipe is driven to swing back and forth, and the contact area between the condensation pipe and steam is increased.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of steam cooling towers, and in particular to a steam-specific cooling tower device and an operating method thereof. Background Art

[0002] Steam cooling tower is a device used for heat dissipation, usually used in industrial buildings. It transfers the heat in the steam to the atmosphere to maintain the temperature stability in the industrial process and ensure the normal operation of machines and equipment. The steam cooler effectively recovers the heat energy by condensing the steam into water and transfers it to other equipment or media that need to be heated, thereby improving the efficiency of energy utilization. The main function of the condenser is to condense high-temperature and high-pressure steam into liquid. Through heat exchange, the heat energy in the steam is transferred to the cooling medium (such as water or air) to cool the steam and convert it into liquid water. In the process of condensing steam with the existing condenser, the condensed water gathers on the wall of the condenser, so that the steam cannot directly contact the wall of the condenser, and the condensation effect is poor. In addition, the wall of the condenser is prone to produce impurities, which further affects the cooling effect of the steam. For this reason, a steam-specific cooling tower device is needed. Summary of the invention

[0003] In order to solve the deficiencies of the prior art, the purpose of the present invention is to provide a steam-only cooling tower device and an operating method thereof.

[0004] In order to achieve the above technical objectives, the technical solution adopted by the present invention is as follows.

[0005] A steam-specific cooling tower device, comprising: A box body, a heat dissipation shell, and a condensing mechanism. The box body is a rectangular shell with an opening at the bottom. The condensing mechanism is arranged in the box body, and the heat dissipation shell is arranged on the wall of the box body. The condensing mechanism includes a supporting shell 1 and a supporting shell 2. The supporting shell 1 and the supporting shell 2 are arranged in the box body. The supporting shell 1 and the supporting shell 2 are hollow shells. A condensing pipe is connected between the supporting shell 1 and the supporting shell 2. The top of the heat dissipation shell is connected with a water inlet pipe, and the bottom of the heat dissipation shell is connected with a drain pipe. Valve 1 is provided on the water inlet pipe and the drain pipe. A circulating drainage component is provided in the heat dissipation shell. The bottom of the heat dissipation shell is connected with the supporting shell 1 through a connecting pipe 1, and the top of the heat dissipation shell is connected with the supporting shell 2 through a connecting pipe 2. The top of the box body is connected with an exhaust pipe, and valve 2 is provided on the exhaust pipe.

[0006] As a further improvement of the present technical solution, a mounting frame is provided in the box body, and the mounting frame is a U-shaped frame. A rotating shaft is fixedly provided at the end of the mounting frame, and the rotating shaft passes through the wall of the box body and extends out of the box body. The two side walls of the mounting frame are close to the inner wall of the box body. Support shell one and support shell two are provided on the mounting frame, and support shell one and support shell two are fixedly connected to the two side walls of the mounting frame. A transmission mechanism is provided on the wall of the box body, and the transmission mechanism and the rotating shaft are coordinated for transmission. A trigger component for triggering the transmission mechanism is provided below the heat dissipation shell.

[0007] As a further improvement of the present technical solution, the circulation discharge assembly includes a motor, a screw, a guide rod, and a push plate. The motor is installed on the top of the heat dissipation shell, and the output shaft of the motor is vertically downward. One end of the screw is coaxially fixedly connected to the output shaft end of the motor, and the other end of the screw is rotatably connected to the bottom of the heat dissipation shell. The guide rod is arranged parallel to one side of the screw, and the push plate is matched and sleeved in the heat dissipation shell. The push plate is sleeved on the screw and the guide rod, and the trigger assembly is connected to the bottom of the push plate.

[0008] As a further improvement of the present technical solution, a push rod is vertically arranged at the bottom of the push plate, and the bottom of the push rod passes through the bottom of the heat dissipation shell and extends out of the heat dissipation shell. The trigger assembly includes a connecting rod, a column one, a column two, a trigger block one, and a trigger block two. The connecting rod is horizontally fixedly connected to the bottom end of the push rod, and the column one and the column two are vertically fixedly connected to the bottom of the connecting rod. The trigger block one is arranged on the wall of the column one, and a plurality of trigger blocks one are arranged and are evenly spaced along the length direction of the column one. The trigger block two is arranged on the wall of the column two, and a plurality of trigger blocks two are arranged and are evenly spaced along the length direction of the column two. The trigger block one and the trigger block two are staggered, and the top and bottom surfaces of the trigger block one are both inclined. The structures of the trigger block one and the trigger block two are the same.

[0009] As a further improvement of the present technical solution, the transmission mechanism includes a gear, a support plate 1, a support plate 2, a guide column 1, a rack, a trigger rod 1, and a trigger rod 2. The gear is coaxially fixed on the end of the rotating shaft, the support plate 1 and the support plate 2 are fixed to the wall of the box body, the guide column 1 is horizontally fixed between the support plate 1 and the support plate 2, two guide columns 1 are provided and arranged in parallel, the rack is sleeved on the guide column 1 through a sliding sleeve, and a spring 1 and a spring 2 are sleeved on the guide column 1, one end of the spring 1 contacts the support plate 1, and the other end of the spring 1 contacts the sliding sleeve, one end of the spring 2 contacts the support plate 2, and the other end of the spring 2 contacts the sliding sleeve, the trigger rod 1 and the trigger rod 2 are horizontally fixedly connected to the two ends of the rack, the end of the trigger rod 1 is close to the column 1, and the end of the trigger rod 2 is close to the column 2, and the gear is meshed with the rack.

[0010] As a further improvement of the present technical solution, a cleaning plate is sleeved on the condenser tube, and the cleaning plate can move along the condenser tube. The end of the cleaning plate is close to the inner wall of the box body, and the end of the cleaning plate is fixedly connected to a guide column. The inner wall of the box body is provided with a guide groove 1 and a guide groove 2. The guide groove 1 and the guide groove 2 are arranged obliquely, and the high ends of the guide groove 1 and the guide groove 2 overlap, and the low ends of the guide groove 1 and the guide groove 2 are far away from each other. The guide column at the end of the cleaning plate is matched and sleeved in the guide groove 1 and the guide groove 2. In the initial state, the guide column is at the overlap of the guide groove 1 and the guide groove 2.

[0011] As a further improvement of the present technical solution, a drainage assembly is provided on both support shell one and support shell two, and the drainage assembly includes a bearing plate, a limiting column, an extrusion block, a second guide column, and an elastic plate. The bearing plate is horizontally fixed to the bottom of the support shell one, the limiting column is vertically arranged at the top of the bearing plate, the limiting column is close to the support shell one, the extrusion block is above the bearing plate and in contact with the plate surface of the bearing plate, one end of the second guide column is connected to the wall portion of the extrusion block, the other end of the second guide column passes through the limiting column and is provided with a baffle, two guide columns are provided and are arranged in parallel, the two ends of the extrusion block are connected to the end of the support shell one through an elastic plate, the extrusion block is a hollow structure, a water inlet is provided at the side wall of the extrusion block close to the support shell one, and a guide pipe is connected to the bottom of the extrusion block.

[0012] As a further improvement of the present technical solution, a push block is vertically arranged at the bottom of the cleaning plate, and a sealing plate is horizontally arranged at the bottom of the cleaning plate. The sealing plate is connected to the side wall of the cleaning plate by a telescopic plate, and the sealing plate can seal the space between the extrusion block and the supporting shell.

[0013] As a further improvement of the present technical solution, an installation opening is opened on the disk surface of the push plate, and a turntable is rotatably arranged at the installation opening of the push plate. A stirring blade is coaxially fixedly connected to the turntable, and the top end of the central axis of the stirring blade passes through the heat dissipation shell and extends outside the heat dissipation shell, and the central axis of the stirring blade is matched with the motor in transmission.

[0014] As a further improvement of the technical solution, a filter is provided on the flow guide pipe.

[0015] As a further improvement of the technical solution, a collecting shell is provided on the wall of the box body, and the discharge port of the flow guide pipe is located above the collecting shell.

[0016] Compared with the prior art, the present invention has the following progress and advantages: during the use of the present invention, when the motor is working, the push plate is driven to move downward, thereby squeezing the water in the heat dissipation housing, so that the water is discharged into the condenser tube. During the downward movement of the push plate, the connecting rod is driven to move downward, and the condenser tube is driven to swing back and forth, thereby increasing the contact area between the condenser tube and the steam and improving the condensation effect of the steam. During the reciprocating swing of the condenser tube, the guide groove 1 and the guide groove 2 drive the cleaning plate to move along the condenser tube, so as to scrape off the condensed water on the wall of the condenser tube along the tube wall of the condenser tube, thereby ensuring the cleanliness of the tube wall of the condenser tube, further improving the contact between the steam and the tube wall of the condenser tube, and preventing the impurities on the tube wall of the condenser tube from interfering with the condensation effect of the steam; When the cleaning plate moves toward the direction close to the supporting shell one, the condensed water on the wall of the condenser tube can fall into the space between the extrusion block and the supporting shell one, and then the sealing plate seals the space between the extrusion block and the supporting shell one, and then the pushing block pushes the extrusion block to move toward the direction close to the supporting shell one, thereby squeezing the condensed water between the extrusion block and the supporting shell one into the guide tube for discharge. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments of the present invention. Obviously, the drawings described below are only some embodiments of the present invention, and for ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0019] Figure 2 It is a schematic diagram of the interior of the box of the present invention.

[0020] Figure 3 It is a schematic diagram of the interior of the heat dissipation housing of the present invention.

[0021] Figure 4 It is a schematic diagram of the installation of the stirring blade of the present invention.

[0022] Figure 5 It is a schematic diagram of the cooperation between the trigger assembly and the transmission mechanism of the present invention.

[0023] Figure 6 It is a schematic diagram of the transmission mechanism of the present invention.

[0024] Figure 7 It is a schematic diagram of the installation of the condenser of the present invention.

[0025] Figure 8 It is a schematic diagram of the installation of the cleaning plate of the present invention.

[0026] Fig. 9 It is a schematic diagram of the cooperation between the cleaning plate and the first and second guide grooves of the present invention.

[0027] Fig.10 It is a schematic diagram of the cooperation between the sealing plate and the extrusion block of the present invention.

[0028] Fig.11It is a schematic diagram of the water inlet distribution of the present invention.

[0029] The figure shows: 10. Box body; 110. Heat dissipation housing; 111. Motor; 112. Screw rod; 113. Guide rod; 114. Push plate; 115. Turntable; 116. Stirring blade; 117. Water inlet pipe; 118. Drain pipe; 119. Valve 1; 120. Collecting housing; 130. Exhaust pipe; 131. Valve 2; 140. Discharge mechanism; 150. Trigger assembly; 151. Connecting rod; 152. Column 1; 153. Column 2; 154. Trigger block 1; 155. Trigger block 2; 160. Mounting frame; 170. Guide slot 1; 180. Guide slot 2; 20, transmission mechanism; 210, rotating shaft; 220, gear; 230, support plate 1; 240, support plate 2; 250, guide column 1; 260, rack; 270, trigger lever 1; 280, trigger lever 2; 30. Condensation mechanism; 310. Support shell one; 320. Support shell two; 330. Condensation pipe; 331. Connecting pipe one; 332. Connecting pipe two; 340. Cleaning plate; 341. Guide column; 342. Push block; 343. Telescopic plate; 344. Sealing plate; 350. Drain assembly; 351. Load-bearing plate; 352. Limit column; 353. Extrusion block; 354. Guide column two; 355. Elastic plate; 356. Guide pipe; 357. Water inlet; 358. Filter. DETAILED DESCRIPTION

[0030] The technical solution of the present invention is further described below with reference to the accompanying drawings and through specific implementation methods.

[0031] Among them, the drawings are only used for illustrative explanations, and they only represent schematic diagrams rather than actual pictures, and should not be understood as limitations on the present invention. In order to better illustrate the embodiments of the present invention, some parts of the drawings may be omitted, enlarged or reduced, and do not represent the size of actual products. For those skilled in the art, it is understandable that some well-known structures and their descriptions in the drawings may be omitted.

[0032] The same or similar numbers in the drawings of the embodiments of the present invention correspond to the same or similar parts; in the description of the present invention, it should be understood that if the terms "upper", "lower", "left", "right", "inside", "outside", etc. appear to indicate the orientation or position relationship, it is based on the orientation or position relationship shown in the drawings, which is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, the terms describing the position relationship in the drawings are only used for illustrative purposes and cannot be understood as a limitation on the present invention. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.

[0033] In the description of the present invention, unless otherwise clearly specified and limited, if the term "connection" or the like appears to indicate the connection relationship between components, the term should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two components or the interaction relationship between two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0034] like Figure 1-Figure 11 As shown, a steam-only cooling tower device comprises: The box body 10, the heat dissipation shell 110, and the condensing mechanism 30, the box body 10 is a rectangular parallelepiped shell with an opening at the bottom, the condensing mechanism 30 is arranged in the box body 10, the heat dissipation shell 110 is arranged on the wall of the box body 10, the condensing mechanism 30 includes a supporting shell 1 310 and a supporting shell 2 320, the supporting shell 1 310 and the supporting shell 2 320 are arranged in the box body 10, the supporting shell 1 310 and the supporting shell 2 320 are hollow shells, the supporting shell 1 310 and the supporting shell 2 320 are connected with a condensing pipe 330, the top of the heat dissipation shell 110 is connected with a water inlet pipe 117, the bottom of the heat dissipation shell 110 is connected with a drain pipe 118, the water inlet pipe 117 and the drain pipe 118 are both provided with a valve 119, and the heat dissipation shell 110 is provided with a valve 119. A circulation drainage component is provided, the bottom of the heat dissipation shell 110 is connected to the support shell 1 310 through a connecting pipe 1 331, the top of the heat dissipation shell 110 is connected to the support shell 2 320 through a connecting pipe 2 332, the top of the box body 10 is connected to the exhaust pipe 130, and the exhaust pipe 130 is provided with a valve 2 131. Water enters the heat dissipation shell 110 through the water inlet pipe 117, and the circulation drainage component works to circulate the water in the heat dissipation shell 110 through the connecting pipe 1 331, the support shell 1 310, the condenser 330, the support shell 2 320, and the connecting pipe 2 332. The steam enters through the bottom of the box body 10, and then the steam contacts the condenser 330, so as to cool the steam, and the cooled steam is discharged through the exhaust pipe 130.

[0035] More specifically, a mounting frame 160 is provided in the box body 10, and the mounting frame 160 is a U-shaped frame. A rotating shaft 210 is fixedly provided at the end of the mounting frame 160, and the rotating shaft 210 passes through the wall of the box body 10 and extends to the outside of the box body 10. The two side walls of the mounting frame 160 are close to the inner wall of the box body 10. The support shell 1 310 and the support shell 2 320 are provided on the mounting frame 160, and the support shell 1 310 and the support shell 2 320 are fixedly connected to the two side walls of the mounting frame 160. A transmission mechanism 20 is provided on the wall of the box body 10, and the transmission mechanism 20 and the rotating shaft 210 are matched for transmission. A trigger component 150 for triggering the transmission mechanism 20 is provided below the heat dissipation shell 110.

[0036] like Figure 3-Figure 7 As shown, the circulation discharge assembly includes a motor 111, a screw rod 112, a guide rod 113, and a push plate 114. The motor 111 is installed on the top of the heat dissipation housing 110, and the output shaft of the motor 111 is vertically downward. One end of the screw rod 112 is coaxially fixedly connected to the output shaft end of the motor 111, and the other end of the screw rod 112 is rotatably connected to the bottom of the heat dissipation housing 110. The guide rod 113 is arranged parallel to one side of the screw rod 112, and the push plate 114 is matched and sleeved in the heat dissipation housing 110. The push plate 114 is sleeved on the screw rod 112 and the guide rod 113, and the trigger assembly 150 is connected to the bottom of the push plate 114.

[0037] More specifically, a push rod is vertically arranged at the bottom of the push plate 114, and the bottom of the push rod passes through the bottom of the heat dissipation housing 110 and extends out of the heat dissipation housing 110. The trigger assembly 150 includes a connecting rod 151, a column 152, a column 2 153, a trigger block 154, and a trigger block 2 155. The connecting rod 151 is horizontally fixedly connected to the bottom end of the push rod, the column 152 and the column 2 153 are vertically fixedly connected to the bottom of the connecting rod 151, and the trigger block 154 is arranged at The wall of column one 152, multiple trigger blocks one 154 are arranged and evenly spaced along the length direction of column one 152, trigger blocks two 155 are arranged on the wall of column two 153, multiple trigger blocks two 155 are arranged and evenly spaced along the length direction of column two 153, trigger blocks one 154 and trigger blocks two 155 are arranged alternately, the top surface and bottom surface of trigger block one 154 are arranged inclined, and the structures of trigger blocks one 154 and trigger blocks two 155 are the same.

[0038] More specifically, the transmission mechanism 20 includes a gear 220, a support plate 1 230, a support plate 240, a guide column 1 250, a rack 260, a trigger rod 1 270, and a trigger rod 280. The gear 220 is coaxially fixedly sleeved on the end of the rotating shaft 210, the support plate 1 230 and the support plate 240 are fixed to the wall of the box body 10, the guide column 1 250 is horizontally fixed between the support plate 1 230 and the support plate 240, two guide columns 1 250 are provided and arranged in parallel, the rack 260 is sleeved on the guide column 1 250 through a sliding sleeve, and a spring 1 and a spring 2 are sleeved on the guide column 1 250, one end of the spring 1 contacts the support plate 1 230, and the other end of the spring 1 contacts the sliding sleeve, one end of the spring 2 contacts the support plate 240, and the other end of the spring 2 contacts the sliding sleeve, the trigger rod 1 270 and the trigger rod 280 are horizontally fixedly connected to the two ends of the rack 260, and the trigger rod 2 The end of the trigger rod 1 270 is close to the column 152, and the end of the trigger rod 280 is close to the column 2 153. The gear 220 is meshed with the rack 260. When the motor 111 is working, the push plate 114 is driven to move downward, thereby squeezing the water in the heat dissipation shell 110, so that the water is discharged into the condenser 330. In the process of the push plate 114 moving downward, the connecting rod 151 is driven to move downward, thereby driving the column 152 and the column 2 153 to move downward, and then the inclined surface of the trigger block 154 abuts against the end of the trigger rod 1 270, and the inclined surface of the trigger block 2 155 abuts against the end of the trigger rod 280, thereby driving the rack 260 to move back and forth along the guide column 1 250, thereby driving the rotating shaft 210 to rotate back and forth, thereby driving the mounting frame 160 to swing back and forth, and then driving the condenser 330 to swing back and forth, thereby increasing the contact area between the condenser 330 and the steam, and improving the condensation effect of the steam.

[0039] like Figure 7-Figure 11 As shown, a cleaning plate 340 is sleeved on the condenser tube 330, and the cleaning plate 340 can move along the condenser tube 330. The end of the cleaning plate 340 is close to the inner wall of the box body 10, and the end of the cleaning plate 340 is fixedly connected with a guide column 341. The inner wall of the box body 10 is provided with a guide groove 170 and a guide groove 2 180. The guide groove 170 and the guide groove 2 180 are arranged obliquely. The high ends of the guide groove 170 and the guide groove 2 180 overlap, and the low ends of the guide groove 170 and the guide groove 2 180 are far away from each other. The guide column 341 at the end of the cleaning plate 340 is matched and sleeved on the guide groove 170 and the guide groove 2 180. In the groove 1 170 and the guide groove 2 180, in the initial state, the guide column 341 is at the overlap of the guide groove 1 170 and the guide groove 2 180. During the reciprocating swing of the condenser 330, the guide groove 1 170 and the guide groove 2 180 drive the cleaning plate 340 to move along the condenser 330, thereby scraping off the condensed water on the wall of the condenser 330 along the wall of the condenser 330, thereby ensuring the cleanliness of the wall of the condenser 330, thereby further improving the contact between the steam and the wall of the condenser 330, and avoiding the impurities on the wall of the condenser 330 from interfering with the condensation effect of the steam.

[0040] More specifically, the support shell 1 310 and the support shell 2 320 are both provided with a drainage assembly 350, and the drainage assembly 350 includes a bearing plate 351, a limiting column 352, an extrusion block 353, a guide column 2 354, and an elastic plate 355. The bearing plate 351 is horizontally fixed to the bottom of the support shell 1 310, the limiting column 352 is vertically arranged on the top of the bearing plate 351, the limiting column 352 is close to the support shell 1 310, and the extrusion block 353 is located above the bearing plate 351 and is in contact with the bearing plate 355. 1, one end of the guide column 354 is connected to the wall of the extrusion block 353, the other end of the guide column 354 passes through the limiting column 352 and is provided with a baffle, two guide columns 354 are provided and are arranged in parallel, the two ends of the extrusion block 353 are connected to the ends of the support shell 1 310 through the elastic plate 355, the extrusion block 353 is a hollow structure, the extrusion block 353 is provided with a water inlet 357 near the side wall of the support shell 1 310, and the bottom of the extrusion block 353 is connected with a guide pipe 356.

[0041] More specifically, a push block 342 is vertically arranged at the bottom of the cleaning plate 340, and a sealing plate 344 is horizontally arranged at the bottom of the cleaning plate 340. The sealing plate 344 is connected to the side wall of the cleaning plate 340 by a telescopic plate 343. The sealing plate 344 can seal the space between the extrusion block 353 and the support shell 310. When the cleaning plate 340 moves toward the direction close to the support shell 310, the condensed water on the wall of the condenser 330 can fall into the space between the extrusion block 353 and the support shell 310, and then the sealing plate 344 seals the space between the extrusion block 353 and the support shell 310. Then the push block 342 pushes the extrusion block 353 to move toward the direction close to the support shell 310, thereby squeezing the condensed water between the extrusion block 353 and the support shell 310 into the guide pipe 356 for discharge.

[0042] like Figure 4 As shown, a mounting opening is provided on the disk surface of the push plate 114, and a turntable 115 is rotatably arranged at the mounting opening of the push plate 114. A stirring blade 116 is coaxially fixedly connected to the turntable 115. The top of the central axis of the stirring blade 116 passes through the heat dissipation shell 110 and extends to the outside of the heat dissipation shell 110. The central axis of the stirring blade 116 is matched with the motor 111. When the motor 111 is working, it can drive the stirring blade 116 to rotate, thereby stirring the water in the heat dissipation shell 110, thereby accelerating the heat dissipation of the water in the heat dissipation shell 110. The push plate 114 can separate the hot water and cold water in the heat dissipation shell 110, thereby reducing the influence of heat transfer from hot water on cold water, thereby improving the condensation effect.

[0043] like Figure 2 As shown, a filter 358 is provided on the flow guide tube 356 to filter impurities flowing through the flow guide tube 356 .

[0044] More specifically, a collecting shell 120 is provided on the wall of the box body 10 , and a discharge port of the flow guide pipe 356 is located above the collecting shell 120 , so as to collect water discharged through the flow guide pipe 356 .

[0045] Working principle: During the use of the present invention, water enters the heat dissipation housing 110 through the water inlet pipe 117, and the circulation and drainage component works, so that the water in the heat dissipation housing 110 circulates through the connecting pipe 1 331, the supporting housing 1 310, the condensing pipe 330, the supporting housing 2 320, and the connecting pipe 2 332. Steam enters through the bottom of the box body 10, and then the steam contacts the condensing pipe 330, so that the steam is cooled. The cooled steam is discharged through the exhaust pipe 130. When the motor 111 works, it drives the push plate 114 to move downward, thereby squeezing the water in the heat dissipation housing 110, so that the water is discharged into the condensing pipe 330. The push plate 114 is pushed downward to squeeze the water in the heat dissipation housing 110, so that the water is discharged into the condensing pipe 330. During the downward movement of the guide column 14, the connecting rod 151 is driven to move downward, thereby driving the column 1 152 and the column 2 153 to move downward, and then the inclined surface of the trigger block 154 contacts the end of the trigger rod 1 270, and the inclined surface of the trigger block 2 155 contacts the end of the trigger rod 280, thereby driving the rack 260 to move back and forth along the guide column 1 250, thereby driving the rotating shaft 210 to rotate back and forth, thereby driving the mounting frame 160 to swing back and forth, and then driving the condenser 330 to swing back and forth, thereby increasing the contact area between the condenser 330 and the steam and improving the condensation effect of the steam. During the reciprocating swing of the condenser 330, the guide groove The first 170 and the second guide groove 180 drive the cleaning plate 340 to move along the condenser tube 330, so as to scrape off the condensed water on the wall of the condenser tube 330 along the tube wall of the condenser tube 330, thereby ensuring the cleanliness of the tube wall of the condenser tube 330, thereby further improving the contact between the steam and the tube wall of the condenser tube 330, and avoiding the impurities on the tube wall of the condenser tube 330 from interfering with the condensation effect of the steam. When the cleaning plate 340 moves toward the direction close to the supporting shell 1 310, the condensed water on the tube wall of the condenser tube 330 can fall into the space between the extrusion block 353 and the supporting shell 1 310, and then the sealing plate 344 is pressed against the extrusion block 353. The space between the block 353 and the support shell 310 is blocked, and then the push block 342 pushes the extrusion block 353 to move towards the support shell 310, so that the condensed water between the extrusion block 353 and the support shell 310 is squeezed into the guide pipe 356 for discharge. When the motor 111 is working, it can drive the stirring blade 116 to rotate, so as to stir the water in the heat dissipation shell 110, so as to accelerate the heat dissipation of the water in the heat dissipation shell 110, and the push plate 114 can separate the hot water and cold water in the heat dissipation shell 110, so as to reduce the influence of heat transfer from hot water on cold water, thereby improving the condensation effect.

[0046] It should be noted that the above specific implementations are only preferred embodiments of the present invention and the technical principles used. Those skilled in the art should understand that various modifications, equivalent substitutions, changes, etc. can be made to the present invention. However, as long as these changes do not deviate from the spirit of the present invention, they should be within the scope of protection of the present invention. In addition, some terms used in the specification and claims of this application are not restrictive, but are only for the convenience of description.

Claims

1. A steam cooling tower device, characterized in that: It includes: A box body, a heat dissipation shell, and a condensing mechanism. The box body is a rectangular shell with an opening at the bottom. The condensing mechanism is arranged in the box body. The heat dissipation shell is arranged on the wall of the box body. The condensing mechanism includes a supporting shell 1 and a supporting shell 2. The supporting shell 1 and the supporting shell 2 are arranged in the box body. The supporting shell 1 and the supporting shell 2 are hollow shells. A condensing pipe is connected between the supporting shell 1 and the supporting shell 2. The top of the heat dissipation shell is connected with a water inlet pipe, and the bottom of the heat dissipation shell is connected with a drain pipe. A valve 1 is arranged on the water inlet pipe and the drain pipe. A circulating drainage component is arranged in the heat dissipation shell. The bottom of the heat dissipation shell is connected with the supporting shell 1 through a connecting pipe 1, and the top of the heat dissipation shell is connected with the supporting shell 2 through a connecting pipe 2. The top of the box body The box body is connected with an exhaust pipe, and a valve 2 is arranged on the exhaust pipe. A mounting frame is arranged in the box body, and the mounting frame is a U-shaped frame. A rotating shaft is fixedly arranged at the end of the mounting frame, and the rotating shaft passes through the wall of the box body and extends out of the box body. A cleaning plate is sleeved on the condenser tube, and the cleaning plate can move along the condenser tube. The end of the cleaning plate is close to the inner wall of the box body, and a guide column is fixedly connected to the end of the cleaning plate. The inner wall of the box body is provided with a guide groove 1 and a guide groove 2. The guide groove 1 and the guide groove 2 are arranged obliquely, and the high ends of the guide groove 1 and the guide groove 2 overlap, and the low ends of the guide groove 1 and the guide groove 2 are far away from each other. The guide column at the end of the cleaning plate is matched and sleeved in the guide groove 1 and the guide groove 2. In the initial state, the guide column is at the overlap of the guide groove 1 and the guide groove 2.

2. A steam-only cooling tower device according to claim 1, characterized in that: The two side walls of the mounting frame are close to the inner wall of the box body, and the support shell 1 and the support shell 2 are arranged on the mounting frame. The support shell 1 and the support shell 2 are fixedly connected to the two side walls of the mounting frame. The wall of the box body is provided with a transmission mechanism, and the transmission mechanism and the rotating shaft are coordinated with each other. A trigger component for triggering the transmission mechanism is provided under the heat dissipation shell.

3. A steam-only cooling tower device according to claim 2, characterized in that: The circulation and drainage assembly includes a motor, a screw, a guide rod, and a push plate. The motor is installed on the top of the heat dissipation shell, and the output shaft of the motor is vertically downward. One end of the screw is coaxially fixedly connected to the output shaft end of the motor, and the other end of the screw is rotatably connected to the bottom of the heat dissipation shell. The guide rod is arranged parallel to one side of the screw, and the push plate is matched and sleeved in the heat dissipation shell. The push plate is sleeved on the screw and the guide rod, and the trigger assembly is connected to the bottom of the push plate.

4. A steam-only cooling tower device according to claim 3, characterized in that: A push rod is vertically arranged at the bottom of the push plate, and the bottom of the push rod passes through the bottom of the heat dissipation shell and extends out of the heat dissipation shell. The trigger assembly includes a connecting rod, a column one, a column two, a trigger block one, and a trigger block two. The connecting rod is horizontally fixedly connected to the bottom end of the push rod, and the column one and the column two are vertically fixedly connected to the bottom of the connecting rod. The trigger block one is arranged on the wall of the column one, and there are multiple trigger blocks one and they are evenly spaced along the length direction of the column one. The trigger block two is arranged on the wall of the column two, and there are multiple trigger blocks two and they are evenly spaced along the length direction of the column two. The trigger block one and the trigger block two are staggered, and the top and bottom surfaces of the trigger block one are inclined. The structures of the trigger block one and the trigger block two are the same.

5. A steam-only cooling tower device according to claim 4, characterized in that: The transmission mechanism includes a gear, a support plate 1, a support plate 2, a guide column 1, a rack, a trigger rod 1, and a trigger rod 2. The gear is coaxially fixed on the end of the rotating shaft, the support plate 1 and the support plate 2 are fixed to the wall of the box body, the guide column 1 is horizontally fixed between the support plate 1 and the support plate 2, two guide columns 1 are provided and arranged in parallel, the rack is sleeved on the guide column 1 through a sliding sleeve, and a spring 1 and a spring 2 are sleeved on the guide column 1. One end of the spring 1 contacts the support plate 1, and the other end of the spring 1 contacts the sliding sleeve, one end of the spring 2 contacts the support plate 2, and the other end of the spring 2 contacts the sliding sleeve. The trigger rod 1 and the trigger rod 2 are horizontally fixedly connected to the two ends of the rack, the end of the trigger rod 1 is close to the column 1, and the end of the trigger rod 2 is close to the column 2, and the gear is meshed with the rack.

6. A steam-only cooling tower device according to claim 5, characterized in that: Both support shell one and support shell two are provided with drainage components, which include a bearing plate, a limiting column, an extrusion block, a second guide column, and an elastic plate. The bearing plate is horizontally fixed to the bottom of the support shell one, the limiting column is vertically arranged on the top of the bearing plate, the limiting column is close to the support shell one, the extrusion block is above the bearing plate and in contact with the plate surface of the bearing plate, one end of the second guide column is connected to the wall of the extrusion block, the other end of the second guide column passes through the limiting column and is provided with a baffle, two guide columns are provided and are arranged in parallel, the two ends of the extrusion block are connected to the end of the support shell one through the elastic plate, the extrusion block is a hollow structure, a water inlet is provided at the side wall of the extrusion block close to the support shell one, and a guide pipe is connected to the bottom of the extrusion block.

7. A steam-only cooling tower device according to claim 6, characterized in that: A push block is vertically arranged at the bottom of the cleaning plate, and a sealing plate is horizontally arranged at the bottom of the cleaning plate. The sealing plate is connected to the side wall of the cleaning plate through a telescopic plate, and the sealing plate can seal the space between the extrusion block and the supporting shell.

8. A steam-only cooling tower device according to claim 6, characterized in that: An installation opening is provided on the disk surface of the push plate, and a turntable is rotatably arranged at the installation opening of the push plate. A stirring blade is coaxially fixedly connected to the turntable. The top of the central axis of the stirring blade passes through the heat dissipation shell and extends out of the heat dissipation shell. The central axis of the stirring blade is matched with the motor through transmission. A filter is provided on the guide pipe, and a collecting shell is provided on the wall of the box body. The discharge port of the guide pipe is located above the collecting shell.

9. The method for operating a steam-only cooling tower device according to claim 8, characterized in that: S1. Water enters the heat dissipation shell through the water inlet pipe, and the circulation and drainage component works, so that the water in the heat dissipation shell circulates through the connecting pipe 1, the supporting shell 1, the condenser, the supporting shell 2, and the connecting pipe 2. Steam enters through the bottom of the box, and then the steam contacts the condenser, thereby cooling the steam. The cooled steam is discharged through the exhaust pipe. When the motor is working, it drives the push plate to move downward, thereby squeezing the water in the heat dissipation shell, thereby discharging the water into the condenser. In the process of the push plate moving downward, the connecting rod is driven downward, thereby driving the column 1 and the column 2 to move downward, and then the inclined surface of the trigger block 1 contacts the end of the trigger rod 1, and the inclined surface of the trigger block 2 contacts the end of the trigger rod 2, thereby driving the rack to move back and forth along the guide column 1, thereby driving the rotating shaft to rotate back and forth, thereby driving the mounting frame to swing back and forth, and then driving the condenser to swing back and forth, thereby increasing the contact area between the condenser and the steam; S2. During the reciprocating swing of the condenser tube, the guide groove 1 and the guide groove 2 drive the cleaning plate to move along the condenser tube, thereby scraping off the condensed water on the wall of the condenser tube along the tube wall of the condenser tube, thereby ensuring the cleanliness of the tube wall of the condenser tube, thereby further improving the contact between the steam and the tube wall of the condenser tube; S3. When the cleaning plate moves toward the direction close to the supporting shell one, the condensed water on the wall of the condenser tube can fall into the space between the extrusion block and the supporting shell one, and then the sealing plate seals the space between the extrusion block and the supporting shell one, and then the pushing block pushes the extrusion block to move toward the direction close to the supporting shell one, thereby squeezing the condensed water between the extrusion block and the supporting shell one into the guide tube for discharge.

Citation Information

Patent Citations

  • Evaporative condenser circulating water treatment equipment

    CN107478068A

  • Parallel-flow water circulation condenser

    CN112710106A

  • Pump-assisted capillary force driven two-phase fluid thermal management system

    CN116294301A

  • Medium condensing equipment of evaporator

    CN116659254A

  • Boiler condenser capable of preventing flue gas backflow and condensation method

    CN116734280A