Spliced industrial spray tower structure

Through spliced structure and convertible nozzle design, the inefficiency problem of spray tower construction and maintenance is solved, rapid installation and disassembly and extended nozzle usage cycles are achieved, and production efficiency and economic benefits are improved.

CN120393706AActive Publication Date: 2025-08-01TAICANG SHUNBANG ANTICORROSION EQUIP CO LTD
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Patent Information

Application Number
CN202510351696.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-08-01
Estimated Expiration
2045-03-24

AI Technical Summary

Technical Problem

The existing industrial spray towers are cumbersome and time-consuming during construction and maintenance, and the nozzles are prone to pollution and affect the spraying effect, resulting in low production efficiency and economic losses.

Method used

The splicing structure is adopted, and the connecting plate and connecting parts are used to achieve rapid sealing splicing, and the spraying parts of the convertible nozzle are set up, and the nozzle position switching is achieved through the rotating parts and the guide groove to reduce maintenance frequency.

Benefits of technology

It improves the efficiency of spray tower construction, extends the nozzle cleaning cycle, reduces equipment downtime and labor intensity of workers, and improves production efficiency and economic benefits.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a spliced industrial spray tower structure, and relates to the technical field of spray towers, the spliced industrial spray tower structure comprises a cooling area, when a spray head is adhered with dirt due to long-time work, and the spray effect is influenced, a pin rod is pulled out from a limiting hole, a rotating piece is rotated by 180 degrees along a guide groove, and the positions of two groups of main pipes are exchanged; the main pipe with the original nozzle not polluted is rotated to the working position at the lower end to continuously execute the spraying task, so that the maintenance period of the spraying device is prolonged, the downtime of equipment caused by frequent maintenance is reduced, the maintenance burden of workers is relieved, and the working efficiency is improved. The problems that after a spraying device in a spraying tower is continuously operated and used for a long time, a layer of dirt and impurities is extremely prone to being attached to the outer surface of a spraying head, workers need to frequently wipe and clean the spraying head, the labor intensity and the workload of the workers are increased, the spraying tower needs to stop operating in the cleaning period, and the cleaning time is shortened are solved. The construction period progress of the whole project is delayed, and the production efficiency is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of spray towers, and particularly to a spliced industrial spray tower structure. Background Art

[0002] In the process of the booming development of modern industry today, in the production operations of many industrial fields such as chemical industry, pharmaceuticals, painting, printing, etc., it is inevitable to generate a considerable amount of waste gas containing various harmful pollutants. If these waste gases are directly discharged into the atmospheric environment without proper and effective purification treatment, it will cause catastrophic damage to the ecological environment and pose a very serious threat to human health. As a key device widely used in the field of waste gas treatment at present, the core working principle of the industrial spray tower is to achieve the purification of waste gas and make it meet the emission standards by means of sufficient interaction between liquid and gas, relying on the spray liquid to dissolve and efficiently absorb the harmful substances contained in the waste gas, or to promote a chemical reaction between the two. In the actual installation process of the spray tower, it is usually necessary to carry out layer-by-layer assembly operations according to specific procedures.

[0003] However, there are still deficiencies in the current design of industrial spray towers: First of all, in the process of assembling the spray tower, the current common method is to tightly connect the flanges at the splicing parts through bolts. During the initial installation and subsequent disassembly and maintenance of the spray tower, a large number of bolts need to be disassembled and installed one by one. This process is not only cumbersome and time-consuming, greatly consuming valuable time resources and directly resulting in a significant increase in time costs, but also frequent bolt operations are prone to cause derivative problems such as component wear and thread slipping, posing hidden dangers to the stable operation of the spray tower; Secondly, after the spray device inside the spray tower has been continuously operated for a long time, a layer of dirt and impurities is extremely likely to adhere to the outer surface of the nozzles. The accumulation of these dirt will have a serious negative impact on the spraying function of the nozzles, resulting in a significant reduction in the spraying effect and being unable to meet the process requirements of waste gas treatment. Therefore, the staff frequently wipe and clean the nozzles, which undoubtedly increases the labor intensity and workload of the staff. And during the cleaning period, the spray tower often needs to be suspended, which inevitably delays the progress of the entire project and reduces the production efficiency, bringing economic losses to the enterprise. Summary of the Invention

[0004] Aiming at the above problems, an object of the present application is to make up for these deficiencies. More specifically, it provides a spliced industrial spray tower structure, which can improve the construction efficiency of the spray tower while ensuring the sealing performance, and is provided with convertible nozzles, which can extend the cleaning and maintenance cycle of the nozzles and reduce the work pressure of workers.

[0005] In a first aspect of the present disclosure, a spliced industrial spray tower structure is provided, which specifically includes: a cooling zone; the cooling zone includes a base, a docking groove A and a smoke vent, the front end of the base is provided with an observation port, and the upper end of the base is provided with a flange; the docking groove A is opened on the inner side of the upper end of the base; the smoke vent is opened at the side end of the base; an absorption zone is provided on the cooling zone, the shell of the absorption zone is provided at the upper end of the base, and the connecting plate at the lower end of the shell is plugged into the docking groove A, and the water inlet at the outer end of the shell is connected to the upper pipe on the water pump outside the base; two groups of spray components are provided on the absorption zone, and the rotation of the spray components The component is arranged at the inner end of the shell, and the rotating component rotates with the water inlet on the shell, and the rotating component is connected to the upper connecting pipe through the water inlet, the limiting hole at the upper end of the rotating component is plugged into the pin rod on the water inlet, and the guide rod at the outer end of the rotating component is slidingly matched with the guide groove on the water inlet; the absorption area is provided with a demisting area, the top cover of the demisting area is arranged at the upper end of the shell, and the docking groove B in the top cover is plugged into the connecting plate at the upper end of the shell; the demisting area is also provided with a connecting component, the top ring of the connecting component is respectively installed on the top cover and the flange below the shell, and the bottom ring of the connecting component is respectively installed on the base and the flange above the shell.

[0006] Preferably, the cooling zone includes: a water pump, a lower connecting pipe and an upper connecting pipe; the water pump is arranged on a rectangular structure at the outer end of the base; the lower connecting pipe is installed on the left side of the water pump and extends into the interior of the base; the upper connecting pipe is arranged on the rear side of the water pump.

[0007] Preferably, the absorption area includes: a shell and a filter plate; two groups of observation ports are provided at the front end of the shell; there are two groups of filter plates, and the filter plates are arranged in the middle and bottom positions inside the shell, and filter holes are opened in the filter plates, and fillers can be placed on the filter plates.

[0008] Preferably, the absorption area includes: a slot and a connecting plate; the slots are respectively opened on the upper and lower sides of the shell; and the connecting plate is plugged into the two sides of the shell by means of the slots.

[0009] Preferably, the absorption area includes: a water inlet, a guide groove and a pin rod; the water inlet is provided with two groups, and the water inlet is opened on the right side of the shell; the guide groove is opened on the water inlet; the pin rod is inserted into the upper end of the water inlet.

[0010] Preferably, the spray component includes: a rotating part and a movable block; a Y-shaped groove is provided inside the rotating part; the movable block is slidably installed inside the rotating part, the movable block can only move up and down inside the rotating part, and the movable block is a hollow structure, a rectangular groove is provided on the left side of the movable block, the rectangular groove is connected to the inside of the rotating part, and two groups of circular through holes are provided at the side end of the movable block, and only one group of circular through holes can be connected to the inside of the rotating part at a time.

[0011] Preferably, the spraying component includes: a limiting hole and a guiding rod; the limiting holes are formed on the upper and lower sides of the right end of the rotating part; the guiding rod is arranged on the right side of the rotating part.

[0012] Preferably, the spraying component includes: a main pipe and a side plate; there are two groups of main pipes in total, and the main pipes are inserted into the two side interfaces on the left side of the rotating part. The two groups of main pipes are arranged vertically. Sprayers are provided at the side ends of the main pipes, and the sprayers on the two groups of main pipes face in opposite directions; the side plates are buckled on the left sides of the two groups of main pipes.

[0013] Preferably, the demisting area includes: a top cover, a demister and a docking groove B; an interface is provided at the top of the top cover; the demister is arranged inside the top cover; the docking groove B is formed on the inner side of the lower end of the top cover.

[0014] Preferably, the connecting component includes: a top ring, a lifting member, a bottom ring and a sealing groove; the inside of the top ring is hollow; the lifting member is slidably installed in the top ring through an elastic member, and the lower end of the lifting member extends out from below the top ring; the bottom ring is used in a state of being attached to the lower side of the top ring; the sealing groove is formed at the upper end inside the bottom ring, and the sealing groove is inserted and matched with the bottom of the lifting member.

[0015] The present invention provides a spliced industrial spray tower structure, which has the following beneficial effects: 1. By setting the connecting plate and the connecting component, the present invention opens slots at both ends of the housing, inserts the annular connecting plate into the slots, and installs the top ring and the bottom ring at the flanges of the base, the housing and the top cover respectively. When carrying out the construction operation of the spray tower, the base, the housing and the top cover are inserted in sequence, so that the connecting plates at both ends of the housing are respectively inserted into the docking groove A and the docking groove B, thereby achieving the preliminary sealing and fixing of the splicing part. During the synchronous progress of the splicing process, the lower end of the lifting member is inserted into the sealing groove of the bottom ring, thus constructing a double-sealed and fixed structure. This not only ensures the sealing effect of the splicing part, fundamentally eliminates the risk of waste gas leakage, but also shows convenience in the actual construction and disassembly operations. Compared with the traditional method relying on bolt fixation, the present invention has achieved a qualitative leap in realizing rapid construction connection. The operator only needs simple insertion and removal actions to quickly complete the assembly and disassembly process of the spray tower, perfectly meeting the strict requirements of current industrial production for the quick use of equipment, greatly improving the construction efficiency, and effectively saving time costs.

[0016] 2. The present invention is provided with a spraying component. A rotating member is rotatably installed at the water inlet of the housing. A pin rod is inserted into the limiting hole in the rotating member. A movable block is slidably installed inside the rotating member. Two main pipes with spray heads are inserted and installed at the side end of the rotating member, and the main pipe at the lower end is communicated with the inside of the rotating member through the movable block. In the normal working state of the spraying tower, the spray heads on the lower main pipe accurately face the direction of the incoming gas, and the spraying operation is efficiently carried out to ensure that the harmful substances in the waste gas are fully washed and purified. When the spray heads on the main pipe adhere to dirt due to long-term work and thus affect the spraying effect, the operator needs to pull out the pin rod from the limiting hole and rotate the rotating member and the two main pipes 180° along the guiding groove, so that the positions of the two main pipes are swapped, and the main pipe whose spray head was not contaminated originally immediately rotates to the lower working position to continue the spraying task. This not only significantly extends the maintenance cycle of the spraying device, reduces the equipment downtime caused by frequent maintenance, but also greatly reduces the cleaning and maintenance burden of the staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Those skilled in the art will have a better understanding of the present disclosure through the following drawings, and the advantages of the present disclosure will be more clearly demonstrated. The drawings described herein are only for the purpose of illustrating the selected embodiments and are not all possible implementations and are not intended to limit the scope of the present disclosure.

[0018] In the drawings: Figure 1 A three-dimensional structural schematic diagram according to an embodiment of the present invention is shown.

[0019] Figure 2 An exploded view according to an embodiment of the present invention is shown.

[0020] Figure 3 A connection structural schematic diagram of the cooling zone and the absorption zone according to an embodiment of the present invention is shown.

[0021] Figure 4 A connection structural schematic diagram of the absorption zone and the spraying component according to an embodiment of the present invention is shown.

[0022] Figure 5 A connection structural schematic diagram of the absorption zone and the demisting zone according to an embodiment of the present invention is shown.

[0023] Figure 6 Shown is according to an embodiment of the present invention by Figure 5 An enlarged structural schematic diagram of part A is drawn.

[0024] Figure 7 A sectional structural schematic diagram of the cooling zone according to an embodiment of the present invention is shown.

[0025] Figure 8Shows a partial cross-sectional structural schematic diagram of a spray component according to an embodiment of the present invention.

[0026] Figure 9 Shows an exploded structural schematic diagram of a spray component according to an embodiment of the present invention.

[0027] List of reference numerals 1. Cooling zone; 101. Base; 1011. Docking groove A; 1012. Smoke passage port; 102. Water pump; 1021. Lower connection pipe; 1022. Upper connection pipe; 2. Absorption zone; 201. Housing; 2011. Filter plate; 202. Slot; 2021. Connecting plate; 203. Water inlet; 2031. Guide groove; 2032. Pin rod; 3. Spray component; 301. Rotating part; 3011. Movable block; 302. Limit hole; 303. Guide rod; 304. Main pipe; 305. Side plate; 4. Demisting zone; 401. Top cover; 402. Demister; 403. Docking groove B; 5. Connecting component; 501. Top ring; 5011. Lifting part; 502. Bottom ring; 5021. Sealing groove. Detailed implementation manners

[0028] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0029] Embodiment 1: Please refer to Figures 1 to 9 as shown: The present invention provides a spliced industrial spray tower structure, including: a cooling zone 1; the cooling zone 1 includes a base 101, a docking groove A 1011, and a smoke inlet 1012. The front end of the base 101 is provided with an observation port, and a flange is provided outside the upper end of the base 101; the docking groove A 1011 is opened on the inner side of the upper end of the base 101; the smoke inlet 1012 is opened at the side end position of the base 101; an absorption zone 2 is provided on the cooling zone 1. The housing 201 of the absorption zone 2 is arranged on the upper end of the base 101, and the connecting plate 2021 at the lower end of the housing 201 is inserted into the docking groove A 1011. Moreover, the water inlet 203 at the outer end of the housing 201 is connected to the upper connecting pipe 1022 on the external water pump 102 of the base 101; two spray components 3 are provided on the absorption zone 2. The rotating part 301 of the spray component 3 is arranged inside the housing 201, and the rotating part 301 is rotationally matched with the water inlet 203 on the housing 201. Moreover, the rotating part 301 is communicated with the upper connecting pipe 1022 through the water inlet 203. The limiting hole 302 at the upper end of the rotating part 301 is inserted and matched with the pin rod 2032 on the water inlet 203, and the guiding rod 303 at the outer end of the rotating part 301 is slidably matched with the guiding groove 2031 on the water inlet 203; a demisting zone 4 is provided on the absorption zone 2. The top cover 401 of the demisting zone 4 is arranged on the upper end of the housing 201, and the docking groove B 403 inside the top cover 401 is inserted and matched with the connecting plate 2021 at the upper end of the housing 201; a connecting component 5 is further provided on the demisting zone 4. The top rings 501 of the connecting component 5 are respectively installed on the flanges below the top cover 401 and the housing 201, and the bottom rings 502 of the connecting component 5 are respectively installed on the flanges above the base 101 and the housing 201.

[0030] As the second embodiment of this application, on the basis of the first embodiment, as Figure 7 shown, the cooling zone 1 includes: a water pump 102, a lower connecting pipe 1021, and an upper connecting pipe 1022; the water pump 102 is arranged on the rectangular structure at the outer end of the base 101; the lower connecting pipe 1021 is installed on the left side of the water pump 102, and the lower connecting pipe 1021 extends into the interior of the base 101; the upper connecting pipe 1022 is arranged at the rear side of the water pump 102.

[0031] A cylindrical base 101 is provided, which can catch the dropped spray liquid through the base 101; an annular docking groove A 1011 is provided. By inserting the docking groove A 1011 and the connecting plate 2021, the base 101 and the housing 201 can be docked; a smoke inlet 1012 is provided, through which the gas to be purified can be introduced into the interior of the base 101 through the smoke inlet 1012; a water pump 102 is provided, which can pump the spray liquid in the base 101 into the spray component 3 through the water pump 102, thus realizing the recycling of the spray liquid; a lower connecting pipe 1021 is provided, which can suck the spray liquid in the base 101 into the water pump 102; an upper connecting pipe 1022 is provided, which can transport the spray liquid sucked by the water pump 102 to the spray component 3 through the upper connecting pipe 1022.

[0032] As the third embodiment of the present application, on the basis of the first embodiment, as shown in Figure 3 and Figure 4 shown, the absorption area 2 includes: a housing 201 and a filter plate 2011; two groups of observation ports are provided at the front end of the housing 201; there are two groups of filter plates 2011 in total, and the filter plates 2011 are arranged in the middle and bottom positions inside the housing 201, and filter holes are formed in the filter plates 2011, and packing members can be placed on the filter plates 2011; slots 202 and connecting plates 2021; the slots 202 are respectively opened on the upper and lower sides of the housing 201; the connecting plates 2021 are inserted into both sides of the housing 201 by means of the slots 202; water inlets 203, guide grooves 2031 and pin rods 2032; there are two groups of water inlets 203 in total, and the water inlets 203 are opened on the right side of the housing 201; the guide grooves 2031 are opened on the water inlets 203; the pin rods 2032 are inserted into the upper ends of the water inlets 203.

[0033] In the present application, by providing the housing 201, packing members can be placed inside the housing 201; by providing the filter plates 2011, packing members can be placed on the filter plates 2011; by providing the annular slots 202, the connecting plates 2021 can be inserted into both sides of the housing 201 through the slots 202; by providing the annular connecting plates 2021, it can be used for the connection between the housing 201 and the base 101 and the top cover 401; by providing the water inlets 203, the spraying component 3 can be installed on the water inlets 203; by providing the arc-shaped guide grooves 2031, by moving the guide rod 303 along the guide grooves 2031, the rotating member 301 can rotate 180° inside the housing 201; by providing the T-shaped pin rods 2032, by inserting and matching the pin rods 2032 with the limiting holes 302, the rotating member 301 can be fixed on the water inlets 203.

[0034] As the fourth embodiment of the present application, on the basis of the first embodiment, as shown in Figure 8 and Figure 9As shown in the figure, the spraying component 3 includes: a rotating part 301 and a movable block 3011; a Y-shaped groove is provided inside the rotating part 301; the movable block 3011 is slidably installed inside the rotating part 301, and the movable block 3011 can only move up and down inside the rotating part 301, and the movable block 3011 is a hollow structure. A rectangular groove is provided on the left side of the movable block 3011, and the rectangular groove communicates with the inside of the rotating part 301. Two sets of circular through holes are provided on the side of the movable block 3011, and only one set of the circular through holes can communicate with the inside of the rotating part 301 each time; a limiting hole 302 and a guiding rod 303; the limiting hole 302 is provided on the upper and lower sides of the right end of the rotating part 301; the guiding rod 303 is provided on the right side of the rotating part 301; a main pipe 304 and a side plate 305; there are two sets of main pipes 304 in total, and the main pipes 304 are inserted into the two side interfaces on the left side of the rotating part 301. The two sets of main pipes 304 are arranged vertically, and nozzles are provided on the side of the main pipes 304. The nozzles on the two sets of main pipes 304 face in opposite directions; the side plate 305 is buckled on the left side of the two sets of main pipes 304.

[0035] In this application, by providing the rotating part 301, two main pipes 304 for spraying can be connected to the rotating part 301; by providing the cylindrical movable block 3011, under the action of the self-gravity of the movable block 3011, the movable block 3011 is always in the lower working position inside the rotating part 301, ensuring that the rotating part 301 is only connected to the main pipe 304 in the lower position, so that the main pipe 304 in the lower position can perform spraying; by providing the circular limiting hole 302, by inserting and matching the limiting hole 302 with the pin rod 2032, the rotating part 301 can be fixed on the water inlet 203; by providing the cylindrical guiding rod 303, by moving the guiding rod 303 along the guiding groove 2031, the rotating part 301 can rotate by 180° inside the housing 201; by providing the main pipe 304 and arranging nozzles on the main pipe 304, spraying can be realized by means of the nozzles; by providing the side plate 305, it can be used for the connection and fixation of the two sets of main pipes 304.

[0036] As the 5th embodiment of this application, on the basis of the first embodiment, as Figure 5 shown, the demisting area 4 includes: a top cover 401, a demister 402 and a docking groove B403; an interface is provided at the top of the top cover 401; the demister 402 is provided inside the top cover 401; the docking groove B403 is provided on the inner side of the lower end of the top cover 401.

[0037] In this application, by providing the top cover 401, the demister 402 can be installed inside the top cover 401; by providing the demister 402, the spraying liquid in the gas can be removed by the demister 402; by providing the circular docking groove B403, by inserting and matching the docking groove B403 with the connecting plate 2021, the top cover 401 can be inserted and connected with the housing 201.

[0038] As the 6th embodiment of this application, on the basis of the first embodiment, asFigure 5 and Figure 6 As shown in Figure 6 , the connecting component 5 includes: a top ring 501, a lifting member 5011, a bottom ring 502, and a sealing groove 5021; the inside of the top ring 501 is hollow; the lifting member 5011 is slidably installed in the top ring 501 through an elastic member, and the lower end of the lifting member 5011 extends out from below the top ring 501; the bottom ring 502 is used in a manner that fits against the lower part of the top ring 501; the sealing groove 5021 is opened at the upper end inside the bottom ring 502, and the sealing groove 5021 is in plug-in fit with the bottom of the lifting member 5011.

[0039] In this application, by providing the circular top ring 501 and the bottom ring 502, it can be used for splicing between the base 101, the housing 201, and the top cover 401; by providing the annular lifting member 5011 with a V-shaped cross-section at the bottom, the splicing part of the spray tower can be sealed by inserting the lifting member 5011 into the sealing groove 5021; by providing the sealing groove 5021 with a V-shaped cross-section, the splicing part of the spray tower can be sealed by inserting the lifting member 5011 into the sealing groove 5021.

[0040] The specific usage method and function of this embodiment: In the present invention, as Figures 1 to 9As shown in the figure, the top ring 501 and the bottom ring 502 are respectively installed on the flanges of the base 101, the housing 201 and the top cover 401. The connecting plates 2021 are inserted into the slots 202 on both sides of the housing 201. The base 101, the housing 201 and the top cover 401 are inserted in this way, so that the connecting plates 2021 on both sides of the housing 201 are respectively inserted into the docking groove A1011 and the docking groove B403. At the same time of insertion, the lifting member 5011 in the top ring 501 is inserted into the sealing groove 5021 in the bottom ring 502, so as to realize double sealing of the splicing part. Fillers are put on the two groups of filter plates 2011 in the housing 201 through the observation port. A rotating member 301 is rotatably installed on the water inlet 203 at the side end of the housing 201. A main pipe 304 with a spray head is inserted at the side end of the rotating member 301, so that the lower main pipe 304 is connected to the inside of the rotating member 301 through the movable block 3011. Side plates 305 are inserted at the side ends of the two groups of main pipes 304 for connection and fixation. A water pump 102 is installed outside the base 101. The lower connecting pipe 1021 on the left side of the water pump 102 is inserted into the inside of the base 101. The upper connecting pipe 1022 on the right side of the water pump 102 is respectively connected to the two water inlets 203 of the housing 201 and is connected to the rotating member 301. Gas is introduced into the inside of the base 101 through the smoke vent 1012 at the side end of the base 101. The gas passes through the filter plate 2011 and enters the housing 201. Under the action of the spray of the spray head, washing is completed inside the housing 201. The washed gas continues to rise. Under the separation action of the demister 402, the spray liquid in the gas is separated. The filtered gas is discharged from the upper end of the top cover 401. The washed spray liquid is collected in the base 101 and then pumped out by the water pump 102 for recycling, so as to complete the washing and purification of the gas.

[0041] In this article, the following points need attention: 1. The attached drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure. Other structures can refer to the general design.

[0042] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0043] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art in the technical field disclosed by the present disclosure can easily think of changes or substitutions within the technical scope disclosed by the present disclosure, and all should be covered by the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. A spliced industrial spray tower structure, comprising: Cooling zone (1); the cooling zone (1) includes a base (101), a docking groove A (1011) and a smoke vent (1012). An observation port is provided at the front end of the base (101), and a flange is provided on the outer side of the upper end of the base (101); the docking groove A (1011) is opened on the inner side of the upper end of the base (101); the smoke vent (1012) is opened at the side end position of the base (101); it is characterized in that an absorption zone (2) is provided on the cooling zone (1), the housing (201) of the absorption zone (2) is provided on the upper end of the base (101), and the connecting plate (2021) at the lower end of the housing (201) is inserted into the docking groove A (1011), and the water inlet (203) at the outer end of the housing (201) is connected to the upper connecting pipe (1022) on the external water pump (102) of the base (101); two spraying components (3) are provided on the absorption zone (2), the rotating member (301) of the spraying component (3) is provided at the inner end of the housing (201), and the rotating member (301) is rotationally matched with the water inlet (203) on the housing (201), and the rotating member (301) is communicated with the upper connecting pipe (1022) through the water inlet (203). The limiting hole (302) at the upper end of the rotating member (301) is inserted and matched with the pin rod (2032) on the water inlet (203), and the guiding rod (303) at the outer end of the rotating member (301) is slidably matched with the guiding groove (2031) on the water inlet (203); a demisting zone (4) is provided on the absorption zone (2), the top cover (401) of the demisting zone (4) is provided on the upper end of the housing (201), and the docking groove B (403) in the top cover (401) is inserted and matched with the connecting plate (2021) at the upper end of the housing (201); a connecting component (5) is further provided on the demisting zone (4), the top rings (501) of the connecting component (5) are respectively installed on the flanges below the top cover (401) and the housing (201), and the bottom rings (502) of the connecting component (5) are respectively installed on the flanges above the base (101) and the housing (201).

2. The structure of a spliced industrial spray tower according to claim 1, characterized in that: The cooling zone (1) includes: a water pump (102), a lower connecting pipe (1021) and an upper connecting pipe (1022); the water pump (102) is provided on the rectangular structure at the outer end of the base (101); the lower connecting pipe (1021) is installed on the left side of the water pump (102), and the lower connecting pipe (1021) extends into the interior of the base (101); the upper connecting pipe (1022) is provided at the rear side of the water pump (102).

3. A spliced industrial spray tower structure according to claim 1, characterized in that: The absorption zone (2) includes: a housing (201) and a filter plate (2011); two observation ports are provided at the front end of the housing (201); there are two filter plates (2011) in total, and the filter plates (2011) are provided at the middle and bottom positions inside the housing (201), and filter holes are opened in the filter plates (2011), and packing members can be placed on the filter plates (2011).

4. The structure of a spliced industrial spray tower according to claim 3, characterized in that: The absorption area (2) includes: a slot (202) and a connecting plate (2021); the slots (202) are respectively formed on the upper and lower sides of the housing (201); the connecting plate (2021) is inserted into both sides of the housing (201) by means of the slots (202).

5. A spliced industrial spray tower structure according to claim 4, characterized in that: The absorption area (2) includes: a water inlet (203), a guiding groove (2031) and a pin rod (2032); there are two groups of water inlets (203) in total, and the water inlets (203) are formed on the right side of the housing (201); the guiding groove (2031) is formed on the water inlet (203); the pin rod (2032) is inserted into the upper end of the water inlet (203).

6. The structure of a spliced industrial spray tower according to claim 1, wherein: The spraying component (3) includes: a rotating part (301) and a movable block (3011); a Y-shaped groove is formed inside the rotating part (301); the movable block (3011) is slidably installed inside the rotating part (301), and the movable block (3011) can only move up and down inside the rotating part (301), and the movable block (3011) is a hollow structure, a rectangular groove is formed on the left side of the movable block (3011), the rectangular groove is communicated with the inside of the rotating part (301), and there are two groups of circular through holes on the side end of the movable block (3011), and only one group of circular through holes can be communicated with the inside of the rotating part (301) each time.

7. The structure of a spliced industrial spray tower according to claim 6, characterized in that: The spraying component (3) includes: a limiting hole (302) and a guiding rod (303); the limiting holes (302) are formed on the upper and lower sides of the right end of the rotating part (301); the guiding rod (303) is arranged on the right side of the rotating part (301).

8. A splicing type industrial spray tower structure according to claim 7, characterized in that: The spraying component (3) includes: a main pipe (304) and a side plate (305); there are two groups of main pipes (304) in total, and the main pipes (304) are inserted into the two side interfaces on the left side of the rotating part (301), the two groups of main pipes (304) are arranged vertically, spray heads are arranged on the side ends of the main pipes (304), and the spray heads on the two groups of main pipes (304) face in opposite directions; the side plate (305) is buckled on the left sides of the two groups of main pipes (304).

9. The structure of a spliced industrial spray tower according to claim 1, characterized in that: The demisting area (4) includes: a top cover (401), a demister (402) and a docking groove B (403); an interface is arranged at the top of the top cover (401); the demister (402) is arranged inside the top cover (401); the docking groove B (403) is formed on the inner side of the lower end of the top cover (401).

10. A spliced industrial spray tower structure according to claim 1, characterized in that: The connecting component (5) includes: a top ring (501), a lifting member (5011), a bottom ring (502) and a sealing groove (5021); the inside of the top ring (501) is hollow; the lifting member (5011) is slidably installed inside the top ring (501) through an elastic member, and the lower end of the lifting member (5011) extends out from below the top ring (501); the bottom ring (502) is used in a manner of being attached to the lower side of the top ring (501); the sealing groove (5021) is formed on the upper end inside the bottom ring (502), and the sealing groove (5021) is inserted and matched with the bottom of the lifting member (5011).

Citation Information

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