Zero-drainage air conditioner heat exchange system with double sets of atomizers

By adopting a dual-atomizer structure and screw column design in the air conditioning heat exchange system, the problem of slow condensate atomization speed is solved, enabling timely discharge of condensate and sufficient cooling of condenser fins, thereby improving air conditioning performance and extending the service life of the atomizer.

CN223896130UActive Publication Date: 2026-02-10NINGBO DONGDA AIR CONDITIONING EQUIP
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Patent Information

Application Number
CN202520339115.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-02-10
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

The existing air conditioning heat exchange system has only one set of atomizers, and the atomization speed of condensate is not fast enough, which causes the condensate to be unable to be discharged in time, affecting the cooling effect of the condenser fins and the air conditioning performance is not optimized.

Method used

It adopts a dual-atomizer structure, combining a water pump motor and a water pump impeller. The two atomizers accelerate the atomization speed of condensed water, and the screw post prevents water from splashing onto the atomizer, thus extending its service life.

Benefits of technology

It enables timely drainage of condensate and sufficient cooling of condenser fins, improves air conditioning performance, achieves energy saving and emission reduction, and extends the service life of the atomizer.

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Abstract

A zero-drainage air conditioner heat exchange system with double groups of atomizers belongs to the technical field of air conditioner heat exchange and comprises a base plate, a condenser, a fan, an evaporator, a water fetching motor, a water fetching impeller, a control panel, a water collecting disc, a water fetching disc, a water fetching groove, a first group of atomizers, a second group of atomizers, a first group of screw columns and a second group of screw columns. The first group of atomizers comprises a plurality of atomizers, and the plurality of atomizers of the first group of atomizers are arranged on the water fetching disc body; the second group of atomizers comprises a plurality of atomizers, and the plurality of atomizers of the second group of atomizers are arranged on the water fetching disc body; the first group of screw columns comprises a plurality of pairs of screw columns; the second group of screw columns comprises a plurality of pairs of screw columns; and the screw column prevents water from splashing to the atomizer when the water fetching motor fetches water. The cooling water atomization device has the advantages that the cooling water atomization speed is increased, cooling water in the water disc can be discharged in time, and the performance of an air conditioner is optimized.
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Description

Technical Field

[0001] This utility model relates to an air conditioning heat exchange system, and more particularly to a dual-group atomizer zero-drainage air conditioning heat exchange system, belonging to the field of air conditioning heat exchange technology. Background Technology

[0002] An air conditioning heat exchange system includes a chassis, condenser, fan, evaporator, and atomizer structure. However, the atomizer structure is typically... Figure 4 As shown, there is only one atomizer, and the atomization speed of the condensate is not fast enough, so the condensate in the water pan cannot be discharged in time. The cooling of the condenser fins is insufficient, and energy saving and emission reduction cannot be fully achieved. The air conditioning performance is not optimized. Utility Model Content

[0003] The purpose of this invention is to address the shortcomings of existing air conditioning heat exchange systems, which have only one atomizer, resulting in insufficient atomization speed of condensate and inability to drain condensate in a timely manner. This invention provides a dual-atomizer zero-drainage air conditioning heat exchange system, which can accelerate the atomization speed of condensate, ensure timely drainage of condensate from the water pan, and optimize air conditioning performance.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a dual-group atomizer zero-drainage air conditioning heat exchange system, including a chassis, a condenser, a fan, an evaporator, a water pumping motor, a water pumping impeller, and a control board. The chassis includes a water collection tray on the right and a water pumping tray on the left. The water collection tray receives condensate produced by the evaporator. The water pumping tray includes a main body and a forward protrusion. A water pumping groove is provided on the right side of the main body of the water pumping tray, and the water pumping tray is connected to the water collection tray. The condenser is fixedly installed above the main body of the water pumping tray, the evaporator is fixedly installed above the water collection tray, and the fan is located behind the condenser. The water pumping motor is located on the forward protrusion, and the water pumping impeller is located above the water pumping groove. External air enters the air conditioner and passes through the evaporator, producing condensate. The condensate drips downwards into the water collection tray under the action of gravity, and then flows into the water pumping tray.

[0005] It includes a first set of atomizers, a second set of atomizers, a first set of screw posts, and a second set of screw posts. The first set of atomizers has several atomizers, which are arranged sequentially on the left side of the water dispensing tray. The second set of atomizers also has several atomizers, which are arranged sequentially in front of the first set of atomizers. The two sets of atomizers accelerate water atomization. Through the combined use of the water dispensing motor, the water dispensing impeller, and the two sets of atomizers, water is pumped onto the condenser fins to cool the condenser, improve air conditioning performance, achieve zero drainage, save energy by utilizing condensate, reduce power consumption, and correspondingly save energy and reduce emissions.

[0006] The first set of screw posts includes several pairs of screw posts, with two screw posts in each pair located on two sides of each atomizer in the first set of atomizers; the second set of screw posts includes several pairs of screw posts, with two screw posts in each pair located on two sides of each atomizer in the second set of atomizers; the screw posts prevent water from splashing onto the atomizer from the water pump motor, preventing secondary damage, increasing usage time, and reducing damage to components.

[0007] The water collection tray on the right and the water dispensing tray on the left are separate components. A drain pipe is provided at the left end of the water collection tray. The water collection tray and the water dispensing tray are connected by the drain pipe. A sealing ring is provided at the connection between the drain pipe and the water dispensing tray.

[0008] The centers of several atomizers in the first group of atomizers and the centers of several pairs of screw posts in the first group of screw posts are on the same straight line A. The centers of several atomizers in the second group of atomizers and the centers of several pairs of screw posts in the second group of screw posts are on the same straight line B. The straight lines A and B are parallel to each other.

[0009] A waterproof cover is installed above the water pump motor.

[0010] The water pump motor and the two sets of atomizers are all electrically connected to the control board.

[0011] The first group of atomizers has 3 atomizers; the second group of atomizers has 3 atomizers; the first group of screw posts includes 3 pairs of screw posts; the second group of screw posts includes 3 pairs of screw posts.

[0012] Compared with the prior art, the beneficial effects of this utility model are: the adoption of a two-set atomizer installation structure accelerates the atomization speed of condensate water, allows the condensate water in the water tray to be discharged in time, and enables the condenser fins to be fully cooled, thus achieving energy saving and emission reduction and optimizing air conditioning performance; at the same time, two sets of screw posts are set for the two sets of atomizers to prevent water splashing from the water pump motor onto the atomizers, preventing secondary damage, increasing service life, and reducing damage to atomizer components. Attached Figure Description

[0013] Figure 1 Yes: Main sectional view of this utility model;

[0014] Figure 2 Yes: Top view of the chassis and the water pump motor, water pump impeller, first atomizer and second atomizer assembled on the chassis;

[0015] Figure 3 yes: Figure 2 Enlarged view of part A (structural diagram of the first group of screw posts and the second group of screw posts);

[0016] Figure 4 Yes: Background Technology Diagram.

[0017] Explanation of reference numerals in the attached diagram: 1. Waterproof cover; 2. Condenser; 3. Evaporator; 4. Water pumping motor; 5. Water pumping impeller; 6. Water collection tray; 7. Water pumping tray; 8. First group of atomizers; 9. Second group of atomizers; 10. Water pumping trough; 11. First group of screw posts; 12. Second group of screw posts. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0019] like Figures 1 to 3 As shown, a dual-atomizer zero-drainage air conditioning heat exchange system includes a chassis, a condenser 2, a fan (not shown), an evaporator 3, a water pumping motor 4, a water pumping impeller 5, and a control board (not shown). The chassis includes a water collection tray 6 on the right and a water pumping tray 7 on the left. The water collection tray 6 receives condensate produced by the evaporator 3. The water pumping tray 7 includes a main body and a forward protrusion. A water pumping groove 10 is provided on the right side of the main body of the water pumping tray 7, and the water pumping tray 7 is connected to the water collection tray. The condenser 2 is fixedly installed above the main body of the water pumping tray 7, the evaporator 3 is fixedly installed above the water collection tray, and the fan (not shown) is located behind the condenser 2. The water pumping motor 4 is located on the forward protrusion, and the water pumping impeller 5 is located above the water pumping groove 10. External air enters the air conditioner and passes through the evaporator 3, producing condensate. The condensate drips downwards into the water collection tray 6 under the action of gravity, and then flows into the water pumping tray 7.

[0020] It includes a first set of atomizers 8, a second set of atomizers 9, a first set of screw posts 11, and a second set of screw posts 12. The first set of atomizers 8 has three atomizers, which are arranged sequentially on the left side of the water dispensing tray 7. The second set of atomizers 9 also has three atomizers, which are arranged sequentially in front of the first set of atomizers 8. The two sets of atomizers accelerate the atomization of water. Through the combined use of the water dispensing motor 4, the water dispensing impeller 5, and the two sets of atomizers, water is pumped onto the fins of the condenser 2 to cool the condenser 2, improve the air conditioning performance, achieve zero drainage, save energy by utilizing condensate, reduce power consumption, and achieve corresponding energy saving and emission reduction.

[0021] The first set of screw posts 11 includes 3 pairs of screw posts, with 2 screw posts in each pair located on 2 sides of each atomizer in the first set of atomizers 8; the second set of screw posts 12 includes 3 pairs of screw posts, with 2 screw posts in each pair located on 2 sides of each atomizer in the second set of atomizers 9; the screw posts prevent water from splashing onto the atomizers from the water pump motor 4, preventing secondary damage, increasing usage time, and reducing damage to components.

[0022] The water collection tray 6 on the right and the water dispensing tray 7 on the left are separate components. A drain pipe is provided at the left end of the water collection tray 6. The water collection tray 6 and the water dispensing tray 7 are connected by the drain pipe. A sealing ring is provided at the connection between the drain pipe and the water dispensing tray 7.

[0023] The centers of several atomizers in the first group of atomizers 8 and the centers of several pairs of screw posts in the first group of screw posts 11 are on the same straight line A. The centers of several atomizers in the second group of atomizers 9 and the centers of several pairs of screw posts in the second group of screw posts 12 are on the same straight line B. The straight lines A and B are parallel to each other.

[0024] A waterproof cover 1 is installed above the water pump motor 4.

[0025] The water pumping motor 4 and the two sets of atomizers are all electrically connected to the control board.

[0026] The embodiments described above are merely preferred embodiments of this utility model. Ordinary variations and substitutions made by those skilled in the art within the scope of this utility model's technical solution should be included within the protection scope of this utility model.

Claims

1. A dual-group atomizer zero-drainage air conditioning heat exchange system, comprising a chassis, a condenser, a fan, an evaporator, a water pumping motor, a water pumping impeller, and a control board, wherein the chassis includes a water collection tray on the right and a water pumping tray on the left, the water collection tray receiving condensate generated by the evaporator; the water pumping tray includes a main body and a forward protrusion, a water pumping groove is provided on the right side of the main body of the water pumping tray, and the water pumping tray is connected to the water collection tray; the condenser is fixedly disposed above the main body of the water pumping tray, the evaporator is fixedly disposed above the water collection tray, and the fan is disposed behind the condenser; the water pumping motor is disposed on the forward protrusion, and the water pumping impeller is disposed above the water pumping groove; characterized in that: It includes a first group of atomizers, a second group of atomizers, a first group of screw posts, and a second group of screw posts; the first group of atomizers has several atomizers, which are arranged sequentially on the left side of the water dispensing tray; the second group of atomizers has several atomizers, which are arranged sequentially in front of the first group of atomizers. The first group of screw posts includes several pairs of screw posts, with the two screw posts of each pair located on two sides of each atomizer in the first group of atomizers; the second group of screw posts includes several pairs of screw posts, with the two screw posts of each pair located on two sides of each atomizer in the second group of atomizers.

2. The dual-atomizer zero-drainage air conditioning heat exchange system according to claim 1, characterized in that: The water collection tray on the right and the water dispensing tray on the left are separate components. A drain pipe is provided at the left end of the water collection tray. The water collection tray and the water dispensing tray are connected by the drain pipe. A sealing ring is provided at the connection between the drain pipe and the water dispensing tray.

3. The dual-atomizer zero-drainage air conditioning heat exchange system according to claim 1, characterized in that: The centers of several atomizers in the first group of atomizers and the centers of several pairs of screw posts in the first group of screw posts are on the same straight line A. The centers of several atomizers in the second group of atomizers and the centers of several pairs of screw posts in the second group of screw posts are on the same straight line B. The straight lines A and B are parallel to each other.

4. The dual-atomizer zero-drainage air conditioning heat exchange system according to claim 1, characterized in that: A waterproof cover is installed above the water pump motor.

5. A dual-atomizer zero-drainage air conditioning heat exchange system according to claim 1, characterized in that: The water pump motor and the two sets of atomizers are all electrically connected to the control board.

6. A dual-atomizer zero-drainage air conditioning heat exchange system according to claim 1, characterized in that: The first group of atomizers has 3 atomizers; the second group of atomizers has 3 atomizers; the first group of screw posts includes 3 pairs of screw posts; the second group of screw posts includes 3 pairs of screw posts.