Water distributor structure of transverse flow closed cooling tower
The quick-installation mechanism simplifies the installation process of the crossflow closed cooling tower water distributor, solving the problems of complex structure and time-consuming installation in the existing technology, and realizing easy installation and modification.
Patent Information
- Application Number
- CN202520301550.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-02-25
AI Technical Summary
The existing crossflow closed cooling towers have complex water distribution structures, are time-consuming to install, and are inconvenient to replace.
It adopts a quick installation mechanism, including an inner sleeve, an upper limit part, a friction part, a guide slope, an outer sleeve, a lower limit part, and reinforcing ribs. It is integrally formed by mold, which simplifies the installation process and fixes it by friction.
It achieves a simple installation process and an easily modifiable drainage trough structure, reducing installation difficulty and improving installation efficiency.
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Figure CN223807682U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of cross flow closed cooling tower, and particularly relates to a water disperser structure of cross flow closed cooling tower. BACKGROUND
[0002] The cross flow closed cooling tower is a kind of cooling tower, water flow falls vertically from the water disperser groove in the upper part of the tower, the two sides of the cooling tower are provided with air inlet, water flow and air flow horizontally through water spraying filler, airflow and water flow are orthogonal, water exchanges heat and mass with flowing air in the cooling tower, so that water temperature drops.
[0003] To make water flow in water disperser groove more evenly fall on filler, the position of water dispersing hole in the bottom of water disperser groove usually needs to be provided with water disperser, so that water column vertically falling from water dispersing hole is dispersed under the action of water disperser.
[0004] But the existing water disperser is mostly complex structure, and often needs to be fixed in the bottom of water disperser groove by welding etc., and since multiple water dispersers need to be installed in a water disperser groove, so installation process is often time-consuming, and after installation, it cannot be conveniently replaced, so it is inconvenient in actual use.
[0005] Therefore, it is necessary to provide a water disperser structure of cross flow closed cooling tower to solve the above problems. UTILITY MODEL CONTENTS
[0006] The utility model discloses a water disperser structure of cross flow closed cooling tower, simple structure, easy production, and convenient installation process, can conveniently reform the water disperser groove of existing cross flow closed cooling tower, to solve the problem that the existing water disperser is mostly complex structure, and often needs to be fixed in the bottom of water disperser groove by welding etc., and since multiple water dispersers need to be installed in a water disperser groove, so installation process is often time-consuming, and after installation, it cannot be conveniently replaced, so it is inconvenient in actual use.
[0007] According to one aspect of the present disclosure, the following technical solution is provided: a water disperser structure of cross flow closed cooling tower, comprising:
[0008] Quick installation mechanism, the quick installation mechanism includes inner sleeve, upper limit portion, friction portion, guide inclined surface, outer sleeve, lower limit portion and reinforcing rib;
[0009] The upper limiting part is located at the top of the outer side of the inner sleeve, the friction parts are provided in plurality, the plurality of friction parts are uniformly fixed on the outer side of the inner sleeve, the guide inclined surface is arranged at the bottom end of the friction part, the outer sleeve is sleeved on the outer side of the plurality of guide inclined surfaces and connected with the plurality of guide inclined surfaces through friction, the lower limiting part is located at the top of the outer side of the inner sleeve, the reinforcing ribs are provided in two, the two reinforcing ribs are fixed on the two sides of the outer sleeve respectively, the inner sleeve, the upper limiting part, the friction part and the guide inclined surface are integrally formed through a mold, and the outer sleeve, the lower limiting part, the reinforcing ribs, the water dispersing mechanism and the reinforcing mechanism are integrally formed through a mold.
[0010] The water dispersing mechanism is used for dispersing the water column output from the bottom opening of the quick installation mechanism.
[0011] The reinforcing mechanism is used for enhancing the connection strength of the quick installation mechanism and the water dispersing mechanism.
[0012] According to the water disperser structure of the cross-flow closed cooling tower, the water dispersing mechanism comprises an inclined connecting plate, and the inclined connecting plate is fixed on one side of the bottom end of the outer sleeve.
[0013] According to the water disperser structure of the cross-flow closed cooling tower, the water dispersing mechanism further comprises a connecting column and a water dispersing frame, the connecting column is fixed on the inner end of the inclined connecting plate, and the water dispersing frame is fixed on the bottom end of the connecting column.
[0014] According to the water disperser structure of the cross-flow closed cooling tower, the reinforcing mechanism comprises a back plate, and the back plate is fixed on the outer end of the inclined connecting plate and connected with the outer sleeve.
[0015] According to the water disperser structure of the cross-flow closed cooling tower, the reinforcing mechanism further comprises an outer sleeve plate, and the outer sleeve plate is fixed on the outer side of the outer sleeve and located above the back plate.
[0016] The technical effects and advantages of the utility model are as follows:
[0017] The utility model discloses a quick installation mechanism is set up, in order to facilitate the installation of the product, the inner sleeve is extracted from the outside of the outer sleeve, then the inner sleeve is passed through the water dispersing hole from the inside of the water dispersing groove, until the upper limit portion is attached with the inner wall of the water dispersing groove, then the pressing of upper limit portion is kept, then the outer sleeve is sleeved on the outside of the inner sleeve from the below of the water dispersing groove, in this process, the guide slope guides the outer sleeve, and then reduces the sleeve difficulty of outer sleeve, until the lower limit portion top is attached with the bottom of the water dispersing groove, and the sleeve of outer sleeve is completed, at this moment, a plurality of guide slopes are fixed in the outside of the inner sleeve through the friction force, and then the installation of the product is completed, compared with the same type product of existing, the utility model discloses simple structure, easy production, and the installation process is relatively simple, and the water dispersing groove of the existing cross flow closed cooling tower can be conveniently transformed. BRIEF DESCRIPTION OF DRAWINGS
[0018] The accompanying drawings illustrate exemplary embodiments of the present disclosure and together with the general description of the disclosure given above, and the detailed description of the embodiments below, serve to explain the principles of the present disclosure.
[0019] Figure 1 It is the whole structure schematic view of the water disperser structure of cross flow closed cooling tower according to one embodiment of the present disclosure.
[0020] Figure 2 It is the quick installation mechanism structure schematic view of the water disperser structure of cross flow closed cooling tower according to one embodiment of the present disclosure.
[0021] Figure 3 It is the water dispersing mechanism and reinforcing mechanism structure schematic view of the water disperser structure of cross flow closed cooling tower according to one embodiment of the present disclosure.
[0022] The reference signs in the drawings are specifically as follows:
[0023] 1, quick installation mechanism, 11, inner sleeve, 12, upper limit portion, 13, friction portion, 14, guide slope, 15, outer sleeve, 16, lower limit portion, 17, reinforcing rib,
[0024] 2, water dispersing mechanism, 21, inclined connecting plate, 22, connecting column, 23, water dispersing frame,
[0025] 3, reinforcing mechanism, 31, back plate, 32, outer sleeve plate. DETAILED DESCRIPTION
[0026] For descriptive purposes, the disclosure can use spatial or relative terms, such as "below," "lower," "under," "above," "upper" and the like, to describe a relationship of one element, to another element as illustrated in the figures. Except where otherwise noted, the spatial or relative terms are intended to encompass different orientations of the device in use, operation, and / or manufacture, for example, if the device in the figures is turned over, elements described as "below" or "under" other elements or features would then be oriented "above" the other elements or features. Thus, the exemplary term "below" can encompass both an orientation of above and below. Moreover, the device can be otherwise oriented (e.g., rotated 90 degrees or at other orientations) and the spatial or relative descriptors used herein interpreted accordingly.
[0027] Figure 1 is a schematic diagram of the overall structure of a water distributor structure of a cross-flow closed cooling tower according to an embodiment of the present disclosure.
[0028] Figure 2 is a schematic diagram of the structure of a quick installation mechanism 1 of a water distributor structure of a cross-flow closed cooling tower according to an embodiment of the present disclosure.
[0029] Figure 3 is a schematic diagram of the structure of a water distribution mechanism 2 and a reinforcing mechanism 3 of a water distributor structure of a cross-flow closed cooling tower according to an embodiment of the present disclosure.
[0030] As shown in Figures 1-3 , the water distributor structure of the cross-flow closed cooling tower of the present disclosure can include components such as a quick installation mechanism 1, a water distribution mechanism 2, and a reinforcing mechanism 3.
[0031] As shown in Figure 2 , in the present disclosure, the quick installation mechanism 1 includes an inner sleeve 11, an upper limiting portion 12, a friction portion 13, a guide slope 14, an outer sleeve 15, a lower limiting portion 16, and a reinforcing rib 17, wherein the upper limiting portion 12 is located at the top of the outer side of the inner sleeve 11, the friction portion 13 is provided in multiple, the multiple friction portions 13 are uniformly fixed on the outer side of the inner sleeve 11, the guide slope 14 is provided at the bottom end of the friction portion 13, the outer sleeve 15 is sleeved on the outer side of the multiple guide slopes 14 and connected with the multiple guide slopes 14 through friction, the lower limiting portion 16 is located at the top of the outer side of the inner sleeve 11, the reinforcing rib 17 is provided in two, the two reinforcing ribs 17 are respectively fixed on both sides of the outer sleeve 15, the inner sleeve 11, the upper limiting portion 12, the friction portion 13, and the guide slope 14 are integrally formed by a mold, and the outer sleeve 15, the lower limiting portion 16, the reinforcing rib 17, the water distribution mechanism 2, and the reinforcing mechanism 3 are integrally formed by a mold.
[0032] Thus, in order to facilitate the installation of the product, the inner sleeve 11 is pulled out from the inside of the outer sleeve 15, and then the inner sleeve 11 is passed through the water distribution hole from the inside of the water distribution groove until the upper limiting portion 12 is attached to the inner wall of the water distribution groove, and then the upper limiting portion 12 is pressed, and then the outer sleeve 15 is sleeved on the outside of the inner sleeve 11 from the bottom of the water distribution groove, in this process, the guide inclined surface 14 guides the outer sleeve 15, thereby reducing the difficulty of sleeving the outer sleeve 15, until the top of the lower limiting portion 16 is attached to the bottom of the water distribution groove, the outer sleeve 15 is sleeved, at this time, the plurality of guide inclined surfaces 14 fix the outer sleeve 15 on the outside of the inner sleeve 11 through friction, thereby completing the installation of the product, compared with the existing same type product, the structure is simple, easy to produce, and the installation process is relatively simple, which can be relatively convenient for the transformation of the water distribution groove of the existing cross-flow closed cooling tower.
[0033] As shown in Figure 3 , in a preferred embodiment, the water distribution mechanism 2 comprises an inclined connecting plate 21, a connecting column 22 and a water distribution rack 23, wherein the inclined connecting plate 21 is fixedly arranged at one side of the bottom end of the outer sleeve 15, the connecting column 22 is fixedly arranged at the inner end of the inclined connecting plate 21, and the water distribution rack 23 is fixedly arranged at the bottom end of the connecting column 22.
[0034] Thus, in order to facilitate the installation of the product, the inner sleeve 11 is pulled out from the inside of the outer sleeve 15, and then the inner sleeve 11 is passed through the water distribution hole from the inside of the water distribution groove until the upper limiting portion 12 is attached to the inner wall of the water distribution groove, and then the upper limiting portion 12 is pressed, and then the outer sleeve 15 is sleeved on the outside of the inner sleeve 11 from the bottom of the water distribution groove, in this process, the guide inclined surface 14 guides the outer sleeve 15, thereby reducing the difficulty of sleeving the outer sleeve 15, until the top of the lower limiting portion 16 is attached to the bottom of the water distribution groove, the outer sleeve 15 is sleeved, at this time, the plurality of guide inclined surfaces 14 fix the outer sleeve 15 on the outside of the inner sleeve 11 through friction, thereby completing the installation of the product, compared with the existing same type product, the structure is simple, easy to produce, and the installation process is relatively simple, which can be relatively convenient for the transformation of the water distribution groove of the existing cross-flow closed cooling tower.
[0035] As shown in Figure 3 , in the present disclosure, the reinforcing mechanism 3 comprises a back plate 31 and an outer sleeve plate 32, wherein the back plate 31 is fixedly arranged at the outer end of the inclined connecting plate 21 and is fixedly connected with the outer sleeve 15, the outer sleeve plate 32 is fixedly sleeved on the outside of the outer sleeve 15, and the outer sleeve plate 32 is located above the back plate 31.
[0036] Thus, in order to facilitate the installation of the product, the inner sleeve 11 is pulled out from the inside of the outer sleeve 15, and then the inner sleeve 11 is passed through the water distribution hole from the inside of the water distribution groove until the upper limiting portion 12 is attached to the inner wall of the water distribution groove, and then the upper limiting portion 12 is pressed, and then the outer sleeve 15 is sleeved on the outside of the inner sleeve 11 from the bottom of the water distribution groove, in this process, the guide inclined surface 14 guides the outer sleeve 15, thereby reducing the difficulty of sleeving the outer sleeve 15, until the top of the lower limiting portion 16 is attached to the bottom of the water distribution groove, the outer sleeve 15 is sleeved, at this time, the plurality of guide inclined surfaces 14 fix the outer sleeve 15 on the outside of the inner sleeve 11 through friction, thereby completing the installation of the product, compared with the existing same type product, the structure is simple, easy to produce, and the installation process is relatively simple, which can be relatively convenient for the transformation of the water distribution groove of the existing cross-flow closed cooling tower.
[0037] In addition, it should be noted that the contents not described in detail in the present specification belong to the existing technology known to those skilled in the art.
[0038] Those skilled in the art should understand that the above embodiments are only for clearly illustrating the present disclosure, and are not intended to limit the scope of the present disclosure. Based on the above disclosure, other changes or modifications can be made by those skilled in the art, and the changes or modifications are still within the scope of the present disclosure.
Claims
1. A structure of a diffuser for a cross flow closed cooling tower, characterized by, The utility model relates to a quick installation mechanism, water dispersing mechanism and reinforcing mechanism, which are used for water column output from the bottom of the quick installation mechanism to be dispersed and the connection strength of the quick installation mechanism and the water dispersing mechanism to be enhanced. The quick installation mechanism comprises an inner sleeve, an upper limiting part, a friction part, a guide inclined surface, an outer sleeve, a lower limiting part and a reinforcing rib. The upper limiting part is located at the top of the outer side of the inner sleeve. The friction part is provided with a plurality of friction parts which are uniformly fixed on the outer side of the inner sleeve. The guide inclined surface is arranged at the bottom end of the friction part. The outer sleeve is sleeved on the outer side of the plurality of guide inclined surfaces and connected with the plurality of guide inclined surfaces through friction.
2. The water distributor structure of a crossflow closed cooling tower according to claim 1, characterized in that: The lower limiting part is located at the top of the outer side of the inner sleeve.
3. The water distributor structure of a crossflow closed cooling tower according to claim 2, characterized in that: The reinforcing rib is provided with two reinforcing ribs which are fixed on both sides of the outer sleeve.
4. The water distributor structure of the crossflow closed cooling tower according to claim 3, characterized in that: The inner sleeve, the upper limiting part, the friction part and the guide inclined surface are integrally formed by a mold.
5. The water distributor structure of the crossflow closed type cooling tower according to claim 4, characterized in that: The outer sleeve, the lower limiting part, the reinforcing rib, the water dispersing mechanism and the reinforcing mechanism are integrally formed by a mold. The water dispersing mechanism is used for dispersing the water column output from the bottom of the quick installation mechanism. The reinforcing mechanism is used for enhancing the connection strength of the quick installation mechanism and the water dispersing mechanism. The water dispersing mechanism comprises an inclined connecting plate which is fixed on one side of the bottom end of the outer sleeve. The water dispersing mechanism further comprises a connecting column and a water dispersing frame. The connecting column is fixed in the inner end of the inclined connecting plate. The water dispersing frame is fixed on the bottom end of the connecting column. The reinforcing mechanism comprises a back plate which is fixed on the outer end of the inclined connecting plate and fixedly connected with the outer sleeve. The reinforcing mechanism further comprises an outer sleeve plate which is fixedly sleeved on the outer side of the outer sleeve. The outer sleeve plate is located above the back plate.