Air conditioner

By integrating the evaporator, condenser, compressor, and fan of the air conditioner into the same unit and using air ducts to transport gas, the problem of complex split air conditioner structures is solved, achieving a simplified structure and a low-noise user experience.

CN223677876UActive Publication Date: 2025-12-16DREAM INNOVATION TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202423323668.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-12-06
Filing Date
2024-12-31
Publication Date
2025-12-16
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing air conditioner's indoor and outdoor units are separated, resulting in a complex structure and troublesome installation.

Method used

The evaporator, condenser, compressor and fan are integrated into the same body, and the gas is delivered to the target space through the air supply duct, eliminating the traditional separate structure of indoor and outdoor units.

Benefits of technology

The air conditioner structure has been simplified, reducing installation difficulty, and it operates quietly when blowing air into the target space, thus improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an air conditioner and relates to the technical field of air conditioners. The air conditioner can comprise a machine body and at least one air supply pipeline, the machine body can comprise an evaporator, a condenser, a compressor and a first fan, and in other words, the machine body comprises components of an indoor unit and an outdoor unit of a traditional air conditioner. The purpose of conveying the gas in the machine body to the target space is achieved through the air supply pipeline, and meanwhile the gas in the target space flows back into the machine body. The air is conveyed into the target space only through the air supply pipeline, the size of the air conditioner can be effectively reduced, the air conditioner structure is simplified, and the installation difficulty is lowered. And meanwhile, only the air supply pipeline is arranged indoors, and machines such as an evaporator and a fan are not arranged indoors, so that the air conditioner is low in sound when blowing air in the target space, and the use experience of a user is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air conditioning technical field especially is related to a kind of air conditioners. BACKGROUND

[0002] Current conventional air conditioner, regardless of what type of model, are divided into indoor unit and outdoor unit, indoor unit is arranged in indoor, and outdoor unit is arranged in outdoor, and indoor unit is communicated with outdoor unit through pipe, to thereby transport refrigerant for the evaporator of indoor unit. Fan is arranged in indoor unit, and air is directly blown in indoor, to thereby reach the purpose of refrigeration and heating.

[0003] Since current indoor unit and outdoor unit are separated, and need independent shell and mounting structure, the structure is relatively complex, and installation is also relatively troublesome. INVENTION CONTENTS

[0004] One purpose of the first aspect of the utility model is to provide an air conditioner, to solve the problem that the structure is complex due to the separation of indoor unit and outdoor unit in the prior art.

[0005] In particular, the utility model provides an air conditioner, comprising:

[0006] Body, comprising shell and evaporator, condenser, compressor and first fan arranged in the shell, the shell includes first partition, the first partition separates the shell to form first containing cavity and second containing cavity, the evaporator and the first fan are located in the first containing cavity, and the condenser is located in the second containing cavity; and

[0007] At least one air supply pipeline, one end of each air supply pipeline is connected with the body, and the other end extends to a preset space, and the gas after heat exchange by the evaporator is blown into the air supply pipeline by the first fan, and then flows to the preset space, to cool or heat in the preset aperture.

[0008] Optionally, the first containing cavity is located above the second containing cavity.

[0009] Optionally, at least one first through hole is arranged at the first partition, and the first through hole is located at a position corresponding to the position of the condenser.

[0010] Optionally, the first partition is arranged obliquely, and the first partition is inclined towards the side with the condenser.

[0011] Optionally, the shell further comprises a second partition arranged in the first containing cavity, the second partition divides the first containing cavity to form a first sub-cavity and a second sub-cavity, the evaporator is arranged in the first sub-cavity, and the first fan is arranged in the second sub-cavity.

[0012] Optionally, a second through hole is arranged at the second partition plate, so that the air flowing into the first sub-cavity is blown by the second through hole to the second sub-cavity after heat exchange with the evaporator, and then the air is blown into the air supply pipeline by the first air blower.

[0013] Optionally, a fresh air inlet is arranged at the side wall of the first sub-cavity and / or the second sub-cavity, and a fresh air valve is arranged at the fresh air inlet, so that when the fresh air valve is opened, the first air blower blows part of the air flowing from the first sub-cavity into the second sub-cavity and part of the fresh air entering the fresh air inlet into the air supply pipeline.

[0014] Optionally, a third partition plate is further arranged in the second accommodating cavity, the third partition plate divides the second accommodating cavity into a third sub-cavity and a fourth sub-cavity, the condenser is arranged in the third sub-cavity, and the compressor is arranged in the fourth sub-cavity.

[0015] Optionally, a motor and a second air blower are further arranged in the third sub-cavity, the motor drives the second air blower to rotate to dissipate heat for the condenser.

[0016] Optionally, an air outlet is arranged at at least one side wall of the third sub-cavity, and a grille is arranged at the air outlet.

[0017] The air conditioner can include a machine body and at least one air supply pipeline. The machine body can include an evaporator, a condenser, a compressor and a first air blower, that is, the machine body includes components of a traditional air conditioner indoor unit and outdoor unit. The air conditioner can deliver the air in the machine body to a target space through the air supply pipeline. The air is delivered to the target space through the air supply pipeline only, which can effectively reduce the size of the indoor machine, simplify the structure of the air conditioner, and thus reduce the installation difficulty. At the same time, since the indoor space only has the air supply pipeline and no evaporator and air blower, the air conditioner makes less noise when blowing air in the target space, improving the user experience.

[0018] The above and other objects, advantages and features of the present application will become more apparent from the following detailed description of some embodiments thereof, when taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0019] Some specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. The same reference numerals in the drawings denote the same or similar components or parts. Those skilled in the art should understand that the drawings are not necessarily drawn to scale. In the drawings:

[0020] Figure 1is a schematic perspective view of an air conditioner according to one specific embodiment of the present application installed at a target space;

[0021] Figure 2 is a schematic side view of an air conditioner according to one specific embodiment of the present application installed at a target space;

[0022] Figure 3 is a schematic structural view of a fuselage according to one specific embodiment of the present application;

[0023] Figure 4 is a partial exploded schematic view of a fuselage according to one specific embodiment of the present application;

[0024] Figure 5 is a partial schematic structural view of a fuselage according to one specific embodiment of the present application.

[0025] BRIEF DESCRIPTION OF DRAWINGS

[0026] Air conditioner - 100; Fuselage - 200; Shell - 210; First accommodating cavity - 211; Second accommodating cavity - 212; First sub-cavity - 213; Second sub-cavity - 214; Third sub-cavity - 215; Fourth sub-cavity - 216; Air outlet - 217; Grille - 218; Evaporator - 220; Condenser - 230; Compressor - 240; First fan - 250; First partition - 260; Second partition - 270; Second through hole - 271; Third partition - 280; Second fan - 290; Air supply duct - 300; Target space - 400. DETAILED DESCRIPTION

[0027] In the description of the present embodiment, it should be understood that the terms "length", "width", "height", "upper", "lower", "left", "right", "vertical", "horizontal", "bottom", "inner", "outer", "front", "back", and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0028] As one specific embodiment of the present application, as Figures 1 to 5As shown, the embodiment discloses an air conditioner 100, wherein the air conditioner 100 can include a machine body 200 and at least one air supply pipeline 300, wherein the machine body 200 can include a shell 210 and an evaporator 220, a condenser 230, a compressor 240 and a first fan 250 arranged in the shell 210. One end of each air supply pipeline 300 is connected with the machine body 200, and the other end extends to a target space 400, and the gas after heat exchange by the evaporator 220 is blown into the air supply pipeline 300 by the first fan 250 and then flows into the target space 400, so as to cool and heat the target space.

[0029] Specifically, the air conditioner 100 of the embodiment can include a machine body 200 and at least one air supply pipeline 300, wherein the machine body 200 can include an evaporator 220, a condenser 230, a compressor 240 and a first fan 250, that is, the machine body 200 contains the components of the indoor unit and the outdoor unit of the conventional air conditioner 100. The air conditioner 100 of the embodiment realizes the purpose of delivering the gas in the machine body 200 to the target space 400 through the air supply pipeline 300. That is, the air conditioner 100 of the embodiment places the evaporator 220, the condenser 230, the compressor 240 and the fan in the conventional indoor unit and outdoor unit in the same machine, and only delivers the gas to the target space 400 through the air supply pipeline 300, which can effectively reduce the volume of the air conditioner, simplify the structure of the air conditioning machine and reduce the installation difficulty. At the same time, since there is only the air supply pipeline 300 in the indoor unit without the evaporator 220 and the fan and the like, the air conditioner 100 makes the sound smaller when blowing air in the target space 400, thereby improving the user experience.

[0030] As a specific embodiment of the utility model, Figure 4 and Figure 5 As shown, the shell 210 of the embodiment can include a first partition plate 260, the first partition plate 260 divides the shell 210 to form a first accommodating cavity 211 located at the upper side and a second accommodating cavity 212 located at the lower side, the evaporator 220 and the first fan 250 are located in the first accommodating cavity 211, and the condenser 230 is located in the second accommodating cavity 212.

[0031] Specifically, the machine body 200 of the embodiment can be provided with a first partition plate 260, and the shell 210 is divided into two accommodating cavities by the first partition plate 260, and the two accommodating cavities are respectively provided with the evaporator 220 and the condenser 230. The evaporator 220 is arranged at the first accommodating cavity 211 located at the upper side, and the first accommodating cavity 211 is connected with the air supply pipeline 300, so that the gas is discharged into the target space 400 through the air supply pipeline 300 after heat exchange through the evaporator 220. The condenser 230 located in the second accommodating cavity 212 exchanges heat for the liquid in the evaporator 220, so as to ensure that the evaporator 220 obtains a suitable heat exchange temperature. The arrangement of the first partition plate 260 also avoids the influence of the gas on the heat exchange effect through the space where the evaporator 220 is located and the space where the condenser 230 is located.

[0032] More specifically, the first partition plate 260 of the embodiment is provided with at least one first through hole (not shown in the figure), and the first through hole is located at a position corresponding to the position of the condenser 230. Specifically, when the evaporator 220 exchanges heat with the gas, condensate water is prone to appear and flow down the evaporator 220 and drop on the lower side. A water pan can be arranged below the evaporator 220, or the first partition plate 260 is the water pan. The first through hole arranged at the first partition plate 260 can make the condensate water drop downward along the first through hole. The first through hole is arranged at a position above the condenser 230, so that the condensate water directly falls on the condenser 230, thereby cooling the condenser 230 and improving the energy efficiency of the whole machine.

[0033] As another specific embodiment of the utility model, the first partition plate 260 of the embodiment is arranged to be inclined, and the first partition plate 260 is inclined towards the side where the condenser 230 is located. Specifically, the first partition plate 260 of the embodiment can be arranged to have an inclination angle, so that the condensate water flows along the first partition plate 260 towards one side and finally drops on the condenser 230, thereby cooling the condenser 230 and improving the energy efficiency of the whole machine.

[0034] As a specific embodiment of the utility model, the shell 210 of the embodiment can further include a second partition plate 270 arranged in the first accommodating cavity 211, the second partition plate 270 divides the first accommodating cavity 211 into a first sub-cavity 213 and a second sub-cavity 214, the evaporator 220 is arranged in the first sub-cavity 213, the first fan 250 is arranged in the second sub-cavity 214, and a second through hole 271 is arranged at the second partition plate 270 to make the air flowing into the first sub-cavity 213 exchange heat through the evaporator 220 and then flow to the second sub-cavity 214 through the second through hole 271, and then the gas is blown in by the first fan 250.

[0035] Specifically, the first accommodating cavity 211 is divided into the first sub-cavity 213 and the second sub-cavity 214 by the second partition plate 270, so that the air for outflow and the air for return can be separated, and the air for outflow can be prevented from flowing into the air supply pipeline 300 without heat exchange, thereby affecting the temperature of the air for outflow.

[0036] In addition, the second through hole 271 is arranged at the second partition plate 270, and the first fan 250 can be a centrifugal fan. The air inlet of the centrifugal fan is arranged at the second through hole 271, and the air outlet of the centrifugal fan can be directly communicated with the inlet of the air supply pipeline 300, so as to directly blow the air in the first sub-cavity 213 into the air supply pipeline 300.

[0037] More specifically, the sidewall of the first accommodating cavity 211 is provided with a fresh air inlet (not shown in the figure), and the fresh air inlet is provided with a fresh air valve (not shown in the figure). When the fresh air valve is opened, the first fan 250 blows the air flowing from the first sub-cavity 213 into the second sub-cavity 214 and the fresh air entering through the fresh air inlet into the air supply pipeline 300.

[0038] Specifically, the fresh air inlet is arranged at the sidewall of the first accommodating cavity 211. When the centrifugal fan blows the air in the first sub-cavity 213 into the air supply pipeline 300, the air outside can enter the second sub-cavity 214 through the fresh air inlet due to the negative pressure, and then be blown into the air supply pipeline 300 by the centrifugal fan.

[0039] Specifically, the fresh air valve is arranged at the fresh air inlet. When the temperature difference between indoor and outdoor is small, the fresh air valve can be opened, so that the fresh air and the air in the first sub-cavity 213 are blown into the air outlet duct 310 and then into the target space. When the temperature difference between indoor and outdoor is large, the fresh air valve can be closed, and only the air in the first sub-cavity 213 is blown into the target space.

[0040] Specifically, the fresh air inlet and the fresh air valve of the embodiment can be arranged at the sidewall of the first sub-cavity 213 or the sidewall of the second sub-cavity 214. Preferably, the fresh air inlet and the fresh air valve are arranged at the sidewall of the first sub-cavity 213, so that the fresh air can follow the air flowing from indoor, pass through the evaporator 220 for heat exchange, and then be blown into the air supply pipeline 300 by the centrifugal fan.

[0041] As a specific embodiment of the utility model, the second accommodating cavity 212 of the embodiment can further include a third partition plate 280, the third partition plate 280 divides the second accommodating cavity 212 to form a third sub-cavity 215 and a fourth sub-cavity 216, the evaporator 220 is located in the third sub-cavity 215, and the compressor 240 is located in the fourth sub-cavity 216. The third sub-cavity 215 can further include a motor and a second fan 290, the motor drives the second fan 290 to rotate to dissipate heat for the condenser 230. The second motor drives the second fan 290 to rotate, and the second fan 290 takes away heat at the condenser 230 in the process of rotation, so that the temperature of the condenser 230 is prevented from being too high.

[0042] As a specific embodiment of the utility model, at least one side wall of the third sub-cavity 215 of the embodiment is provided with an air outlet 217, and the air outlet 217 is provided with a grille 218. The condenser 230 is arranged around the side wall of the third sub-cavity 215 without the air outlet 217. The grille 218 of the specific embodiment can block dust from the outside into the second accommodating cavity 212, and can also protect the outside, so that the fan does not cause harm to people outside.

[0043] Specifically, the second fan 290 of the embodiment can be an axial fan.

[0044] As a specific embodiment of the utility model, the air supply pipeline 300 of the hole of the embodiment has an air inlet air volume of 650m 3 / h~11000m 3 / h. For example, the air inlet air volume can be 650m 3 / h, 700m 3 / h, 750m 3 / h, 800m 3 / h, 900m 3 / h, 1000m 3 / h or 1100m 3 / h, etc.

[0045] Specifically, when the fresh air valve of the embodiment is not opened, the air supply pipeline 300 is limited to a diameter of 160mm, and the air inlet air volume of the embodiment can reach 650m 3 / h~700m 3 / h. When the fresh air valve of the embodiment is opened, the air supply pipeline 300 of the embodiment can reach 1100m 3 / h or even higher. Specifically, the air inlet air volume is related to the pipe diameter of the air supply pipeline 300 and the power of the centrifugal fan, and of course, the size of the fresh air opening also has certain influence on the air inlet air volume.

[0046] Thus far, those skilled in the art will recognize that while the present application has been shown and described herein in terms of a few illustrative embodiments, numerous other variations or modifications could be determined or deduced from the disclosure of the present application without departing from the spirit or scope of the present application. Accordingly, the scope of the present application should be understood and appreciated to cover all such other variations or modifications.

Claims

1. An air conditioner characterized by comprising: Comprise: a machine body comprising a shell and an evaporator, a condenser, a compressor and a first fan arranged in the shell, the shell comprising a first partition plate, the first partition plate separating the shell into a first accommodating cavity and a second accommodating cavity, the evaporator and the first fan being arranged in the first accommodating cavity, and the condenser being arranged in the second accommodating cavity; and at least one air supply duct, one end of each of the air supply ducts being connected to the machine body, and the other end extending to a preset space, air after heat exchange by the evaporator being blown into the air supply duct by the first fan and then flowing into the preset space to cool or heat the preset space.

2. The air conditioner of claim 1, wherein the first accommodating cavity is arranged above the second accommodating cavity.

3. The air conditioner of claim 1, wherein at least one first through hole is arranged on the first partition plate, and the first through hole is arranged at a position corresponding to the position of the condenser.

4. The air conditioner of claim 1 or 3, wherein the first partition plate is arranged obliquely, and the first partition plate is inclined towards the side with the condenser.

5. The air conditioner of any one of claims 1-3, wherein the shell further comprises a second partition plate arranged in the first accommodating cavity, the second partition plate separating the first accommodating cavity into a first sub-cavity and a second sub-cavity, the evaporator being arranged in the first sub-cavity, and the first fan being arranged in the second sub-cavity.

6. The air conditioner of claim 5, wherein a second through hole is arranged on the second partition plate to allow air flowing into the first sub-cavity to pass through the evaporator for heat exchange, and then flow into the second sub-cavity through the second through hole, and then be blown into the air supply duct by the first fan.

7. The air conditioner of claim 6, wherein a fresh air inlet is arranged on a side wall of the first sub-cavity and / or the second sub-cavity, and a fresh air valve is arranged on the fresh air inlet, so that when the fresh air valve is opened, part of the air flowing from the first sub-cavity into the second sub-cavity and part of the fresh air entering the fresh air inlet are blown into the air supply duct together by the first fan.

8. The air conditioner of any one of claims 1-3, wherein the second accommodating cavity further comprises a third partition plate, the third partition plate separating the second accommodating cavity into a third sub-cavity and a fourth sub-cavity, the condenser being arranged in the third sub-cavity, and the compressor being arranged in the fourth sub-cavity.

9. The air conditioner of claim 8, wherein a motor and a second fan are further arranged in the third sub-cavity, the motor driving the second fan to rotate to dissipate heat for the condenser.

10. The air conditioner of claim 8, wherein an air outlet is arranged on at least one side wall of the third sub-cavity, and a grille is arranged on the air outlet. ​