Radiator structure, outdoor unit, air conditioning unit and control method

A control method and technology of air-conditioning units, which are applied in heating methods, air-conditioning systems, space heating and ventilation, etc., can solve problems such as the inability to guarantee the cooling efficiency of air-conditioning units and the fixed direction of heat sinks, etc., to improve the maximum operating frequency range, Achieve maximum, performance-enhancing effects

Pending Publication Date: 2022-01-28
GREE ELECTRIC APPLIANCES INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] One of the purposes of the present invention is to propose a radiator structure and its control method, which solves the technical problem in the prior art that the direction of the radiator fins of the fixed radiator is fixed, and the heat dissipation efficiency of the air conditioning unit cannot be maximized

Method used

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  • Radiator structure, outdoor unit, air conditioning unit and control method
  • Radiator structure, outdoor unit, air conditioning unit and control method
  • Radiator structure, outdoor unit, air conditioning unit and control method

Examples

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Embodiment 1

[0035] This example will be described in detail with the heat sink structure of the present invention.

[0036] The heat sink structure of the present embodiment includes a heat dissipation module 1 and a fixed module 2, such as figure 1 Indicated. Preferably, the fixed module 2 is provided with a first fixing portion 21 and a second fixing portion 22, and the heat dissipation member is fixed to the first fixing portion 21, and the heat dissipation module 1 includes a plurality of heat sink 11 that are parallel to each other and spaced apart. The heat dissipation module 1 is rotatably mounted at the second fixing portion 22, and the heat dissipating fin 11 is parallel to the heat dissipation air flow, such as Figure 1 ~ 4 Indicated. More preferably, the first fixing portion 21 and the second fixing portion 22 are located on both sides of the fixed module 2, such as image 3 and Figure 4 Indicated. The heat sink structure of the present embodiment is a split structure, and by the an...

Embodiment 2

[0044] This example will be described in detail in the control method of the heat sink structure of any of the technical solutions in Example 1.

[0045] The control method of the present embodiment regulates the rotation angle of the heat dissipating fin 11 by manually or automatically rotating the heat dissipation module 1, and maintains the heat dissipating fin 11 from the heat dissipation air. The control method of the present embodiment adjusts the rotation angle of the heat dissipating fin 11 by manually or automatically rotating the heat dissipation module 1, and maintains the heat dissipating fin 11 and the heat dissipation stream to be parallel, thereby achieving the smooth finishing Different heat, ensuring heat dissipation efficiency; at the same time, the control method of this embodiment can also achieve the generalization design of the heat sink structure, the same heat sink structure can be applied to different variable frequency air conditioning units. That is, the...

Embodiment 3

[0056] This example will be described in detail with the outdoor unit of the present invention.

[0057] The outdoor unit of the present embodiment includes a body, an IPM module, and a heat sink structure. Preferably, the heat sink structure is a heat sink structure of any of the technical solutions in Example 1, and the IPM module is fixed to the first fixing portion 21 of the fixed module 2. The body is part of the outdoor unit in addition to the IPM module and the radiator structure. The structure of the IPM module can be the same as the configuration in the prior art, and details are not described herein again. The outdoor unit of the present embodiment, through the radiator structure of any of the technical solutions in Example 1, the heat dissipation efficiency is maximized, enhances the heat dissipation effect of the radiator structure on the IPM module, thereby helping to improve the maximum air conditioning unit. The frequency range can be run.

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PUM

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Abstract

The invention discloses a radiator structure, an outdoor unit, an air conditioning unit and a control method, which relate to the technical field of air conditioning units, and solve the technical problem that the direction of radiating fins of a fixed radiator in the prior art is fixed, so that the radiating efficiency of the air conditioning unit cannot be maximized. The radiator structure comprises a heat dissipation module and a fixing module, the fixing module is provided with a first fixing part and a second fixing part, a part to be cooled is fixed to the first fixing part, the heat dissipation module comprises a plurality of heat dissipation fins which are parallel to one another and arranged at intervals, the heat dissipation module is rotatably installed at the second fixing part, and the heat dissipation fins are parallel to heat dissipation airflow. According to the radiator structure, downstream heat dissipation of the heat dissipation fins and a wind field can be achieved, and it is guaranteed that the heat dissipation efficiency is maximized; meanwhile, the universal design of the radiator structure can be achieved, and the same radiator structure can be suitable for different variable frequency air conditioning units.

Description

Technical field [0001] The present invention relates to the field of air conditioning units, and more particularly to a heat sink structure including an outdoor unit of the radiator structure, an air conditioning unit including the outdoor unit, and a control method of the heat sink structure. Background technique [0002] In the current inverter air conditioner, in the outer machine drive circuit, the dissipation of the IPM module is fixed by a fixed heat sink. When the heat sink is fixed in the heat sink, the air conditioner uses the air-cooling mode to heat the heat, the air conditioner is the largest. change. Specifically, for example, the air-conditioning duct has two forms of back wind and lower back wind. The heat sink of the fixed radiator cannot be achieved at the same time to ensure that these two retransmission is smooth (smooth heat dissipation). The toner is parallel to the toner in the air flow direction, and the heat dissipation air flows smoothly flows through the...

Claims

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Application Information

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IPC IPC(8): F24F1/24F24F11/30F24F11/64F24F11/61F24F11/70
CPCF24F1/24F24F11/30F24F11/64F24F11/61F24F11/70
Inventor 吴超郑铁军金永生
Owner GREE ELECTRIC APPLIANCES INC
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