Efficient energy-saving air energy heating and dehumidifying equipment

By designing an air-source heat pump heating and dehumidification equipment that includes a main housing, a first fan, dehumidification components, and heating components, the problem that existing equipment cannot simultaneously dehumidify and heat is solved, achieving efficient and energy-saving dehumidification and heating of air, and reducing the number of equipment and space occupation.

CN223925012UActive Publication Date: 2026-02-17HANGZHOU DENGHUA PLASTIC MASCH CO LTD
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Patent Information

Application Number
CN202520458574.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-02-17
Estimated Expiration
2035-03-17

AI Technical Summary

Technical Problem

Existing equipment cannot simultaneously meet the needs of dehumidification and heating, forcing users to purchase multiple devices, increasing costs and space requirements.

Method used

Design a high-efficiency and energy-saving air source heating and dehumidification device, including a main housing, a first fan, a dehumidification component and a heating component. The first fan blows air through the dehumidification chamber and the heating chamber in sequence. The air is heated by the heat generated by the metal pipes. The dehumidification and heating functions are combined through the baffle and deflector structure.

Benefits of technology

It achieves simultaneous dehumidification and heating of the air, reducing the need for users to purchase multiple devices and lowering costs and space requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses efficient and energy-saving air energy heating and dehumidifying equipment, and belongs to the field of dehumidifying and heating equipment. Comprising a main box body, a first fan, a dehumidification component and a heating component, the dehumidification component is used for discharging moisture in the air; the heating component is used for heating the air with moisture discharged; an air inlet, an air outlet, a dehumidification chamber and a heating chamber are formed in the main box body; the dehumidification component is located in the dehumidification cavity, and the heating component is located in the heating cavity; the first fan is arranged at the air inlet so that air can sequentially pass through the air inlet, the dehumidification cavity and the heating cavity to be exhausted from the air outlet. The air conditioner has the beneficial effects that moisture in air can be filtered through the dehumidification component in the dehumidification cavity, the air can be heated through the heating component in the heating cavity, a customer does not need to purchase multiple devices, and cost and occupied space are reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of dehumidification and heating equipment, in particular to a high-efficiency energy-saving air energy heating and dehumidification equipment. BACKGROUND

[0002] In daily life, in order to make the air humidity suitable, avoid the environment excessively humid, air dehumidification equipment is used for dehumidification operation to reduce the air humidity. Air heating equipment is usually used for heating air to make the air temperature rise to achieve the comfortable temperature required by users.

[0003] The existing equipment usually only has single dehumidification or heating function, which cannot meet the needs of users for dehumidification and heating at the same time, resulting in that users need to purchase multiple equipment, increasing the cost and space occupation. CONTENT OF THE UTILITY MODEL

[0004] The part of the content of the present application is used to introduce the concept in a brief form, which will be described in detail in the part of the specific embodiment. The part of the content of the present application is not intended to identify the key features or essential features of the claimed technical solution, nor is it intended to limit the scope of the claimed technical solution.

[0005] In order to solve the technical problems mentioned in the part of the background in the above, some embodiments of the present application provide a high-efficiency energy-saving air energy heating and dehumidification equipment, which comprises a main box body, a first fan, a dehumidification member and a heating member. The dehumidification member is used for discharging water in the air. The heating member is used for heating the air from which the water is discharged. An air inlet, an air outlet, a dehumidification chamber and a heating chamber are formed on the main box body. The dehumidification member is located in the dehumidification chamber, and the heating member is located in the heating chamber. The first fan is arranged at the air inlet to make the air pass through the air inlet, the dehumidification chamber and the heating chamber in sequence and be discharged from the air outlet.

[0006] Further, a metal pipeline in communication with the air outlet is arranged in the heating chamber. The heating member comprises an electricity storage carrier and a conductive wire. The conductive wire forms a connecting end connected with the positive and negative electrodes of the electricity storage carrier respectively. The conductive wire is used for winding on the outer wall surface of the metal pipeline to make the metal pipeline heat and further heat the air in the metal pipeline.

[0007] Further, a plurality of baffles are arranged in the metal pipeline. The baffles form a flow guide opening for the air to pass through. The plurality of baffles are linearly arranged in the metal pipeline, and the positions of the adjacent two flow guide openings in the metal pipeline are different.

[0008] Further, the dehumidification member comprises a plurality of baffle plates. The baffle plates form a flow guide surface for water to slide off.

[0009] Further, a water collecting tray is arranged in the main box body; the water collecting tray is used for collecting water sliding along the flow guide surface.

[0010] Further, a flexible filter screen and a second fan are arranged in the heating chamber; the flexible filter screen is used for filtering dust in air; the second fan is used for blowing dust in the flexible filter screen to the water collecting tray.

[0011] Further, a drain pipeline is arranged at the bottom of the water collecting tray; the drain pipeline is used for draining water in the water collecting tray.

[0012] Further, a filter member is arranged in the dehumidifying chamber; the filter member is detachably connected with the main box body.

[0013] The application has the following beneficial effects:

[0014] The first fan can suck air into the main box body, make the air pass through the dehumidifying chamber and the heating chamber in sequence, and make the air discharged from the air outlet; the dehumidifying member in the dehumidifying chamber can filter water in the air, and the heating member in the heating chamber can heat the air; thus, the customer does not need to purchase multiple devices, and the cost and space occupation are reduced. BRIEF DESCRIPTION OF DRAWINGS

[0015] The accompanying drawings, which form a part of the present application, are used to provide further understanding of the present application, make the purpose, features and advantages of the present application more apparent, and explain the present application. The schematic embodiment drawings of the present application and their descriptions are used to explain the present application, and do not constitute an improper limitation to the present application.

[0016] In addition, the same or similar reference signs are used to represent the same or similar elements throughout the drawings. It should be understood that the drawings are schematic, and the elements and elements are not necessarily drawn according to the scale.

[0017] In the drawings:

[0018] Figure 1 is a whole schematic view according to the embodiment of the present application;

[0019] Figure 2 is a structural schematic view of a part of the embodiment, mainly showing the structure of the metal pipeline and the surrounding part of the components;

[0020] Figure 3 is a partial sectional view of the embodiment, mainly showing the structure of the dehumidifying chamber and the heating chamber;

[0021] Figure 4 is a partial sectional view of the embodiment, mainly showing the structure of the second fan and the flexible filter screen;

[0022] Figure 5 is a partial sectional view of an embodiment, mainly showing the structure of the water pan and the drain pipe.

[0023] Reference signs:

[0024] 1, main box; 11, air inlet; 111, first fan; 12, air outlet; 13, dehumidification chamber; 131, baffle; 1311, flow guide surface; 132, filter component; 14, heating chamber; 141, power storage carrier; 142, conductive wire; 143, metal pipe; 1431, baffle; 1432, flow guide opening; 144, second fan; 145, flexible filter screen; 2, water pan; 21, drain pipe. DETAILED DESCRIPTION

[0025] Embodiments of the present disclosure will be described in more detail with reference to the drawings. Although certain embodiments of the present disclosure are shown in the 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 set forth herein. Rather, these embodiments are provided so that the present disclosure will be more thoroughly and completely understood. It should be understood that the drawings of the present disclosure are only for illustrative purposes and should not be construed as limiting the scope of protection of the present disclosure.

[0026] It should also be noted that, for the sake of brevity, only the parts of the drawings that are relevant to the present application are shown. The embodiments in the present disclosure and the features in the embodiments can be combined with each other without conflict.

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

[0028] It should be noted that the terms "one", "multiple" in the present disclosure are illustrative and not restrictive, and those skilled in the art should understand that, unless otherwise explicitly stated in the context, it should be understood as "one or more".

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

[0030] Reference Figures 1-5 ,

[0031] The utility model provides an efficient energy-saving air energy heating and dehumidification equipment, which comprises a main box 1, a first fan 111, a dehumidification component and a heating component. The dehumidification component is used for discharging moisture in air. The heating component is used for heating the air from which moisture is discharged. The main box 1 is formed with an air inlet 11, an air outlet 12, a dehumidification chamber 13 and a heating chamber 14; the dehumidification component is located in the dehumidification chamber 13, and the heating component is located in the heating chamber 14. The first fan 111 is arranged at the air inlet 11. The first fan 111 can suck air into the main box 1, make the air pass through the dehumidification chamber 13 and the heating chamber 14 in sequence, and make the air discharge from the air outlet 12. The dehumidification component in the dehumidification chamber 13 can filter moisture in the air, and the heating component in the heating chamber 14 can heat the air. Therefore, the customer does not need to purchase multiple equipment, and the cost and space occupation are reduced.

[0032] Specifically, a metal pipeline 143 in communication with the air outlet 12 is arranged in the heating chamber 14. The metal pipeline 143 is made of conductive material, and in the embodiment, the metal pipeline 143 is made of iron. The heating component comprises an electricity storage carrier 141 and a conductive wire 142. In the embodiment, the conductive wire 142 is a copper wire, an aluminum wire, a gold wire or a silver wire, and in the embodiment, the copper wire is preferred. The copper wire has good heat conduction performance and low cost. The conductive wire 142 is formed with connecting ends connected with the positive and negative electrodes of the electricity storage carrier 141 respectively. The conductive wire 142 is used for winding on the outer wall surface of the metal pipeline 143, so that the metal pipeline 143 generates heat, and the air in the metal pipeline 143 is heated.

[0033] Specifically, a plurality of baffles 1431 are arranged in the metal pipeline 143. In the embodiment, the baffles 1431 are made of iron. The baffles 1431 are formed with flow guide openings 1432 through which air passes. The plurality of baffles 1431 are arranged linearly in the metal pipeline 143, and the positions of the two adjacent flow guide openings 1432 in the metal pipeline 143 are different. The flow guide openings 1432 formed by the baffles 1431 are used for forcing the air to change the flowing direction, so that the air stays in the metal pipeline 143 for a longer time, so that the air can sufficiently absorb heat.

[0034] Specifically, the dehumidification component comprises a plurality of baffle plates 131. The baffle plates 131 are formed with flow guide surfaces 1311 through which moisture slides. When the air is blown by the first fan 111 to the baffle plates 131, the moisture in the air slides along the flow guide surfaces 1311, so that the moisture in the air is removed.

[0035] Specifically, a water collecting tray 2 is arranged in the main box 1. The water collecting tray 2 is used for collecting the moisture that slides along the flow guide surfaces 1311.

[0036] Specifically, the flexible filter screen 145 and the second fan 144 are arranged in the heating chamber 14. The flexible filter screen 145 is used to filter dust in the air. The second fan 144 is used to blow the dust in the flexible filter screen 145 to the water collecting tray 2. In the embodiment, the second fan 144 is arranged above the flexible filter screen 145. The second fan 144 blows the dust on the flexible filter screen 145 by intermittent forward rotation or reverse rotation. When the second fan 144 rotates forward, the flexible filter screen 145 deforms towards the second fan 144, filters dust in the air, and enables the air in the dehumidification chamber 13 to quickly enter the heating chamber 14. The second fan 144 can also blow the air stagnating in the metal pipe 143 through the air outlet. When the second fan 144 rotates reversely, the flexible filter screen 145 deforms away from the second fan 144, and the dust on the flexible filter screen 145 is blown off and falls into the water collecting tray 2.

[0037] Specifically, the bottom of the water collecting tray 2 is provided with a drain pipe 21. The drain pipe 21 is used to drain water in the water collecting tray 2. The water collecting tray 2 is arranged below the baffle 131 and the flexible filter screen 145. The dust on the flexible filter screen 145 can directly fall into the water collecting tray 2 and flow out through the drain pipe 21.

[0038] Specifically, the dehumidification chamber 13 is further provided with a filter member 132. The filter member 132 is a filter screen. The filter member 132 is detachably connected to the main box body 1. The filter member 132 is arranged at the air inlet 11 and can first filter large dust in the air. The main box body 1 is formed with a mounting groove, and the filter member 132 is formed with a mounting portion matching the mounting groove. The mounting portion is a block structure. After the filter member 132 is used for a period of time, the surface thereof may be covered with dust. The detachable connection is arranged to facilitate the user to clean. In other embodiments, in order to increase the dehumidification effect of the dehumidification chamber 13, a desiccant is arranged in the dehumidification chamber 13 to dehumidify the air.

[0039] The above description is only some of the preferred embodiments of the present disclosure and the explanation of the applied technical principles. Those skilled in the art should understand that the scope of the application involved in the embodiments of the present disclosure is not limited to the technical solutions formed by the specific combinations of the above technical features, and should also cover other technical solutions formed by any combination of the above technical features or equivalent features without departing from the above inventive concept. For example, the above features are replaced with the technical features disclosed in the embodiments of the present disclosure (but not limited to) having similar functions to form technical solutions.

Claims

1. A high-efficiency and energy-saving air source heat pump heating and dehumidification device, characterized in that, include: Main housing, first fan, dehumidification components, and heating components; The dehumidification component is used to remove moisture from the air; The heating element is used to heat the air that has been vented of moisture; The main housing has an air inlet, an air outlet, a dehumidification chamber, and a heating chamber; the dehumidification component is located in the dehumidification chamber, and the heating component is located in the heating chamber. The first fan is located at the air inlet so that air passes through the air inlet, the dehumidification chamber and the heating chamber in sequence and is discharged from the air outlet.

2. The high-efficiency energy-saving air source heating and dehumidification equipment according to claim 1, characterized in that: A metal pipe connected to the air outlet is installed inside the heating chamber; The heating component includes: an energy storage carrier and a conductive wire; The conductive wires form connection ends that are respectively connected to the positive and negative electrodes of the energy storage carrier; The conductive wire is used to wrap around the outer wall of the metal pipe, causing the metal pipe to heat up, thereby heating the air inside the metal pipe.

3. The high-efficiency energy-saving air source heating and dehumidification equipment according to claim 2, characterized in that: Multiple baffles are installed inside the metal pipe; The baffle forms an opening through which air can pass; The baffles are arranged linearly inside the metal pipe, and the positions of two adjacent flow guides inside the metal pipe are different.

4. The high-efficiency energy-saving air source heating and dehumidification equipment according to claim 3, characterized in that: The dehumidification component includes multiple baffles; The baffle plate forms a guide surface for water to slide off.

5. The high-efficiency energy-saving air source heating and dehumidification equipment according to claim 4, characterized in that: A water receiving tray is installed inside the main tank; The water receiving tray is used to collect water that slides down the guide surface.

6. The high-efficiency energy-saving air source heating and dehumidification equipment according to claim 5, characterized in that: The heating chamber is equipped with a flexible filter and a second fan. The flexible filter screen is used to filter dust in the air; the second fan is used to blow the dust in the flexible filter screen into the water receiving tray.

7. The high-efficiency energy-saving air source heating and dehumidification equipment according to claim 6, characterized in that: The bottom of the water receiving tray is equipped with a drainage pipe; The drainage pipe is used to drain the water from the water receiving tray.

8. The high-efficiency energy-saving air source heating and dehumidification equipment according to claim 7, characterized in that: The dehumidification chamber is also equipped with a filter component; the filter component is detachably connected to the main housing.