Tubular rhombic water collection type efficient demister

By adopting a diamond-shaped baffle design in the demister and tilting the fog-facing surface to form a drainage space, the problem of water mist adhesion after liquefaction is solved, and efficient water mist discharge and demisting effects are achieved.

CN223381270UActive Publication Date: 2025-09-26ZHEJIANG KEDA ENVIRONMENTAL ENG CO LTD
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Patent Information

Application Number
CN202422740479.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-09-26
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

In the prior art, the baffles are placed flat, which causes the water mist to directly adhere to the baffles after liquefaction, making it difficult to be discharged outward, thus affecting the demisting effect.

Method used

A diamond-shaped baffle is used, and the first and second fog-facing surfaces are designed to be inclined to form a drainage space. Gravity is used to make water in the mist flow along the fog-facing surface into the drainage space to prevent water droplets from adhering.

Benefits of technology

The demisting effect is improved, ensuring that the water in the mist can be effectively discharged, avoiding the adhesion of water droplets affecting the degree of liquefaction, and enhancing the efficiency of the demister.

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Abstract

The utility model discloses a tubular rhombic water collection type efficient demister, and belongs to the field of demisters. Comprising a plurality of baffle plates and a mounting frame, the mounting frame is used for forming a demisting area and a drainage area; the mounting frame forms a drainage space in the drainage area; the drainage spaces are positioned on two sides of the demisting area; wherein the plurality of baffle plates are arranged in parallel to form a first baffle area and a second baffle area; the first baffling area forms a first mist facing surface allowing water mist to enter; the second baffling area forms a second fog facing surface for water to enter; the first mist facing face and the second mist facing face are obliquely arranged, and water in the water mist flows into the drainage space along the first mist facing face and the second mist facing face; the baffle plate is of a rhombic structure. The demisting device has the beneficial effects that the first mist facing surface and the second mist facing surface are obliquely arranged, so that water on the baffle plate can be outwards discharged along the directions of the first mist facing surface and the second mist facing surface under the action of gravity, and even if the water on the baffle plate is discharged, the demisting effect is better ensured.
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Description

Technical Field

[0001] The present application relates to the field of demisters, and in particular to a tubular diamond-shaped water-collecting high-efficiency demister. Background Art

[0002] The demister mainly utilizes the process of water mist passing through the baffles. The water mist changes its flow direction in the baffles, so that the water mist contacts the baffles and liquefies the water in the water mist.

[0003] However, the baffles in the prior art are generally placed flat, which will cause the water mist to liquefy and directly adhere to the baffle, making it difficult to discharge outward. When the water mist passes through the baffle, there is a lot of water on the baffle, and the water will be partially vaporized or turned into small droplets flowing along with the water mist under the action of the wind force of the water mist, which will cause the originally liquefied water mist to turn into water mist again, affecting the demisting effect. Utility Model Content

[0004] The content of this application is used to briefly introduce concepts that will be described in detail in the detailed description section below. The content of this application is not intended to identify key features or essential features of the technical solution for which protection is sought, nor is it intended to limit the scope of the technical solution for which protection is sought.

[0005] In order to solve the technical problems mentioned in the above background technology section, some embodiments of the present application provide a tubular diamond-shaped water-collecting high-efficiency demister, including: a plurality of baffles and a mounting frame; the mounting frame is used to form a demisting area and a drainage area; a plurality of the baffles are installed in the demisting area, and the mounting frame forms a drainage space in the drainage area; the drainage space is located on both sides of the demisting area; wherein, the plurality of baffles are arranged in parallel to form a first deflection area and a second deflection area; the first deflection area forms a first fog-facing surface for water mist to enter; the second deflection area forms a second fog-facing surface for water to enter; the first fog-facing surface and the second fog-facing surface are both arranged at an angle, and water in the water mist flows into the drainage space along the first fog-facing surface and the second fog-facing surface; the baffle is a diamond structure.

[0006] Furthermore, at least two groups of the first baffle areas and the second baffle areas are provided, and the two groups of the first baffle areas and the second baffle areas are arranged vertically.

[0007] Furthermore, the multiple deflector plates also include a third deflection area and a fourth deflection area; the third deflection area forms a third fog-facing surface for allowing water mist to enter; the fourth deflection area forms a fourth fog-facing surface for allowing water to enter; the third fog-facing surface and the first fog-facing surface are symmetrically arranged along a preset plane; the fourth fog-facing surface and the second fog-facing surface are symmetrically arranged along the preset plane; the preset plane is parallel to the horizontal plane.

[0008] Furthermore, the third fog-facing surface is connected to the first fog-facing surface; and the fourth fog-facing surface is connected to the second fog-facing surface.

[0009] Further, when two groups of the first deflection area and the second deflection area are each set, one group of the third deflection area and the fourth deflection area is set; the first deflection area, the second deflection area, the third deflection area and the fourth deflection area form a water mist injection space; the water mist is injected into the water mist injection space and passes through the first deflection area, the second deflection area, the third deflection area and the fourth deflection area along multiple dimensions respectively.

[0010] Furthermore, the baffle forms a convex portion and a concave portion; the convex portion is located on one side of the baffle, and the concave portion is located on the other side of the baffle.

[0011] Furthermore, the concave portion and the convex portion are both arc-shaped structures.

[0012] Furthermore, the projection of the deflector on a vertical plane perpendicular to the horizontal plane is a rhombus, so that the projections of the first deflection area, the second deflection area, the third deflection area and the fourth deflection area on the vertical plane are all rhombuses; when the first deflection area is connected with the second deflection area, one end of the first deflection area abuts against one end of the second deflection area, so that the first fog-facing surface and the second fog-facing surface are both arranged at an angle.

[0013] The beneficial effect of the present application is that: by utilizing the inclined setting of the first fog-facing surface and the second fog-facing surface, the water on the baffle can be discharged outward along the direction of the first fog-facing surface and the second fog-facing surface under the action of gravity, so that the water on the baffle is discharged, thereby better ensuring the demisting effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] The drawings constituting a part of this application are used to provide a further understanding of this application and make other features, purposes and advantages of this application more apparent. The drawings and descriptions of the exemplary embodiments of this application are used to explain this application and do not constitute an improper limitation on this application.

[0015] In addition, throughout the drawings, the same or similar reference numerals represent the same or similar elements. It should be understood that the drawings are schematic and that the elements and components are not necessarily drawn to scale.

[0016] In the attached figure:

[0017] Figure 1 is an overall schematic diagram according to an embodiment of the present application;

[0018] Figure 2This is a structural diagram of a part of the embodiment, mainly showing the Figure 1 structure;

[0019] Figure 3 This is a schematic structural diagram of a portion of an embodiment, mainly showing a structure in which multiple baffles are arranged in parallel;

[0020] Figure 4 It is a structural schematic diagram of a part of the embodiment, mainly showing the position structure of the passage gap;

[0021] Figure 5 It is a structural schematic diagram of a part of the embodiment, mainly showing the structure of the first baffle area and the second baffle area;

[0022] Figure 6 It is a structural schematic diagram of a part of the embodiment, mainly showing the structure when the baffle is diamond-shaped.

[0023] Reference numerals:

[0024] 1. Baffle; 11. Passage gap; 12. Protrusion; 13. Recess; 2. Mounting frame; 21. Demisting area; 22. Drainage area; 3. First baffle area; 31. First fog-facing surface; 4. Second baffle area; 41. Second fog-facing surface; 5. Third baffle area; 51. Third fog-facing surface; 6. Fourth baffle area; 61. Fourth fog-facing surface; 7. Water mist injection space. DETAILED DESCRIPTION

[0025] Embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although certain embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be construed as being limited to the embodiments described herein. On the contrary, these embodiments are provided to provide a more thorough and complete understanding of the present disclosure. It should be understood that the drawings and embodiments of the present disclosure are for illustrative purposes only and are not intended to limit the scope of protection of the present disclosure.

[0026] It should also be noted that, for ease of description, only the parts related to the invention are shown in the drawings. In the absence of conflict, the embodiments and features in the embodiments of the present disclosure may be combined with each other.

[0027] It should be noted that the concepts of "first" and "second" mentioned in this disclosure are only used to distinguish different devices, modules or units, and are not used to limit the order or interdependence of the functions performed by these devices, modules or units.

[0028] It should be noted that the modifications of "one" and "multiple" mentioned in the present disclosure are illustrative rather than restrictive, and those skilled in the art should understand that unless otherwise clearly indicated in the context, they should be understood as "one or more".

[0029] The present disclosure will be described in detail below with reference to the accompanying drawings and in conjunction with embodiments.

[0030] Reference Figure 1-6 ,

[0031] A tubular diamond-shaped water-collecting high-efficiency demister comprises: a plurality of baffles 1 and a mounting frame 2. The mounting frame 2 is used to form a demisting area 21 and a drainage area 22. The plurality of baffles 1 are installed in the demisting area 21, and the mounting frame 2 forms a drainage space in the drainage area 22. The drainage space is located on both sides of the demisting area 21. The drainage space refers to an idle space formed on the mounting frame 2. After the water mist passes through the plurality of baffles 1, the water in the water mist liquefies and becomes water, which can be discharged into the drainage space, mainly to facilitate the discharge of water. Among them, the plurality of baffles 1 are arranged side by side to form a first baffle area 3 and a second baffle area 4. After the plurality of baffles 1 are arranged side by side, a passage gap 11 is formed between the plurality of baffles 1, and the water mist is liquefied when passing through the passage gap 11. The first baffle area 3 forms a first fog-facing surface 31 for the water mist to enter, and the second baffle area 4 forms a second fog-facing surface 41 for the water to enter. The first and second fog-facing surfaces 31, 41 are both inclined, allowing water in the mist to flow into the drainage space along the first and second fog-facing surfaces 31, 41. Because the first and second fog-facing surfaces 31, 41 are inclined, the liquefied water droplets from the mist are moved by gravity due to the inclination, flowing into the drainage space. This inclined design facilitates the rapid discharge of water droplets from the multiple baffles 1, preventing them from adhering to the baffles 1 and causing contact between the water and the mist, which could affect the degree of mist liquefaction.

[0032] Specifically, at least two groups of the first baffles 3 and the second baffles 4 are provided, and the two groups of the first baffles 3 and the second baffles 4 are arranged vertically. This allows the mist to be discharged at multiple locations. By using a single mounting frame 2, multiple layers of the first baffles 3 and the second baffles 4 can be added at different heights, thereby achieving a greater demisting effect while occupying a smaller area.

[0033] Specifically, the plurality of baffles 1 further include a third baffle area 5 and a fourth baffle area 6; the third baffle area 5 forms a third fog-facing surface 51 for allowing water mist to enter; the fourth baffle area 6 forms a fourth fog-facing surface 61 for allowing water to enter; the third fog-facing surface 51 and the first fog-facing surface 31 are symmetrically arranged along a preset plane; the fourth fog-facing surface 61 and the second fog-facing surface 41 are symmetrically arranged along the preset plane; the preset plane is parallel to the horizontal plane. The third fog-facing surface 51 is connected to the first fog-facing surface 31; the fourth fog-facing surface 61 is connected to the second fog-facing surface 41. When two groups of the first baffles 3 and the second baffles 4 are provided, the third baffles 5 and the fourth baffles 6 are provided in one group; the first baffles 3, the second baffles 4, the third baffles 5, and the fourth baffles 6 form a water mist injection space 7; the water mist injected into the water mist injection space 7 passes through the first baffles 3, the second baffles 4, the third baffles 5, and the fourth baffles 6 in multiple dimensions. This ensures more complete contact between the water mist and the baffle plate 1, thereby improving the demisting effect.

[0034] Specifically, the baffle 1 is formed with a convex portion 12 and a concave portion 13; the convex portion 12 is located on one side of the baffle 1, and the concave portion 13 is located on the other side. Both the concave portion 13 and the convex portion 12 are arc-shaped. This is because when water mist passes through the baffle 1, it deflects and contacts the baffle 1, thereby facilitating the liquefaction of the water in the mist and allowing it to flow onto the baffle 1.

[0035] Specifically, the projection of the deflector 1 on a vertical plane perpendicular to the horizontal plane is a rhombus, so that the projections of the first deflection area 3, the second deflection area 4, the third deflection area 5 and the fourth deflection area 6 on the vertical plane are all rhombuses; when the first deflection area 3 is connected with the second deflection area 4, one end of the first deflection area 3 abuts against one end of the second deflection area 4, so that the first fog-facing surface 31 and the second fog-facing surface 41 are both arranged at an angle.

[0036] The above description is only an illustration of some preferred embodiments of the present disclosure and the technical principles used. Those skilled in the art should understand that the scope of the invention involved in the embodiments of the present disclosure is not limited to the technical solutions formed by the specific combination of the above-mentioned technical features, but should also cover other technical solutions formed by any combination of the above-mentioned technical features or their equivalent features without departing from the above-mentioned inventive concept. For example, the above-mentioned features are replaced with (but not limited to) technical features with similar functions disclosed in the embodiments of the present disclosure.

Claims

1. A tubular diamond-shaped water-collecting high-efficiency demister, characterized in that ,include: A plurality of baffles and mounting frames; the mounting frames are used to form a demisting area and a drainage area; A plurality of baffles are installed in the demisting area, and the mounting frame forms a drainage space in the drainage area; the drainage space is located on both sides of the demisting area; Wherein, a plurality of said baffles are arranged in parallel to form a first baffle area and a second baffle area; the first baffle area forms a first fog facing surface for water mist to enter; the second baffle area forms a second fog facing surface for water to enter; The first fog facing surface and the second fog facing surface are both inclined, and water in the water mist flows into the drainage space along the first fog facing surface and the second fog facing surface; The baffle is a diamond-shaped structure.

2. The tubular diamond-shaped water-collecting high-efficiency demister according to claim 1 is characterized in that: At least two groups of the first baffle areas and the second baffle areas are provided, and the two groups of the first baffle areas and the second baffle areas are arranged vertically.

3. The tubular diamond-shaped water-collecting high-efficiency demister according to claim 1 is characterized in that: The plurality of baffles further include a third baffle area and a fourth baffle area; the third baffle area forms a third fog facing surface for water mist to enter; the fourth baffle area forms a fourth fog facing surface for water to enter; The third fog-facing surface and the first fog-facing surface are symmetrically arranged along a preset plane; the fourth fog-facing surface and the second fog-facing surface are symmetrically arranged along the preset plane; The preset plane is parallel to the horizontal plane.

4. The tubular diamond-shaped water-collecting high-efficiency demister according to claim 3 is characterized by: The third fog-facing surface is connected to the first fog-facing surface; the fourth fog-facing surface is connected to the second fog-facing surface.

5. The tubular diamond-shaped water-collecting high-efficiency demister according to claim 3 is characterized by: When two groups of the first baffle area and the second baffle area are provided, the third baffle area and the fourth baffle area are provided in one group; The first deflection area, the second deflection area, the third deflection area and the fourth deflection area form a water mist injection space; the water mist injected into the water mist injection space passes through the first deflection area, the second deflection area, the third deflection area and the fourth deflection area along multiple dimensions.

6. The tubular diamond-shaped water-collecting high-efficiency demister according to claim 1, characterized in that: The baffle forms a convex portion and a concave portion; the convex portion is located on one side of the baffle, and the concave portion is located on the other side of the baffle.

7. The tubular diamond-shaped water-collecting high-efficiency demister according to claim 6, characterized in that: The concave portion and the convex portion are both arc-shaped structures.

8. The tubular diamond-shaped water-collecting high-efficiency demister according to claim 5, characterized in that: The projection of the baffle on a vertical plane perpendicular to the horizontal plane is a rhombus, so that the projections of the first baffle area, the second baffle area, the third baffle area and the fourth baffle area on the vertical plane are all rhombuses; When the first deflecting area is connected to the second deflecting area, one end of the first deflecting area abuts against one end of the second deflecting area, so that the first fog facing surface and the second fog facing surface are both arranged inclined.