一款全新的用于空调机组内部的旋转换热器结构

By designing a rotary heat exchanger structure inside the air conditioning unit, the problem of declining energy efficiency ratio during long-term operation of the air conditioning system was solved, achieving energy saving, consumption reduction, and automatic control effects.

CN224516911UActive Publication Date: 2026-07-17DALIAN ICEBERG AIR CONDITIONING EQUIP

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DALIAN ICEBERG AIR CONDITIONING EQUIP
Filing Date
2025-07-17
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional air conditioning systems experience a significant drop in energy efficiency during long-term operation, leading to energy waste, and have high operating costs in spaces with requirements for temperature, humidity, and cleanliness.

Method used

A rotary heat exchanger structure for use inside an air conditioning unit is designed, including a vertical heat exchanger, a support frame, a rotary support mechanism, and a drive device. It can reduce airflow resistance when heat exchange is not required, reduce motor energy consumption by adjusting the angle of the rotary heat exchanger, and is equipped with an automatic control mechanism to achieve automatic control.

Benefits of technology

It achieves energy saving and consumption reduction without changing the traditional air conditioner model, thereby reducing air resistance, motor energy consumption, and preventing bacterial growth.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及空调换热技术领域,尤其涉及一款全新的用于空调机组内部的旋转换热器结构。本实用新型包括:立式换热器、支撑框架、内框架、旋转支撑机构、弯管旋转接头、驱动装置、下进水管、上出水管及直管旋转接头;支撑框架为口字形框架式结构;立式换热器固定装于内框架的内部;内框架的上下两端分别与固定装于支撑框架上下两端的旋转支撑机构相连接;下进水管和上出水管分别通过弯管旋转接头和直管旋转接头与立式换热器的下端与上端相连接,为立式换热器提供换热介质水;驱动装置固定装于支撑框架上,并与旋转支撑机构相连接,通过旋转支撑机构带动内框架旋转。本实用新型的技术方案解决了现有技术中的空调系统在长时间运行时,能效比显著下降,导致能源浪费的问题。
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Claims

1. A novel rotary heat exchanger structure for use inside an air conditioning unit, characterized in that: The novel rotary heat exchanger structure for use inside an air conditioning unit includes: a vertical heat exchanger (1), a support frame (2), an inner frame (3), a rotary support mechanism (4), a bent pipe rotary joint (5), a drive device (6), a lower water inlet pipe (8), an upper water outlet pipe (9), and a straight pipe rotary joint (10). The supporting frame (2) is a U-shaped frame structure; The vertical heat exchanger (1) is fixedly installed inside the inner frame (3); The upper and lower ends of the inner frame (3) are respectively connected to the rotating support mechanism (4) fixedly mounted on the upper and lower ends of the support frame (2); The lower inlet pipe (8) and the upper outlet pipe (9) are connected to the lower and upper ends of the vertical heat exchanger (1) respectively through the bent pipe rotary joint (5) and the straight pipe rotary joint (10) to provide heat exchange medium water to the vertical heat exchanger (1). The drive device (6) is fixedly mounted on the support frame (2) and connected to the rotating support mechanism (4), which drives the inner frame (3) to rotate.

2. The novel rotary heat exchanger structure for use inside an air conditioning unit according to claim 1, characterized in that: The inner frame (3) is equipped with a sealing structure (7) on the outside for sealing between the inner frame (3) and the support frame (2), ensuring that the airflow can completely pass through the heat exchanger during operation and achieve heat exchange.

3. A novel rotary heat exchanger structure for use inside an air conditioning unit according to claim 1 or 2, characterized in that: The external control system of the new rotary heat exchanger structure for use in air conditioning units is equipped with an automatic control mechanism. By detecting the air temperature at the front end of the vertical heat exchanger (1), the vertical heat exchanger (1) is automatically controlled to rotate / return to center according to the set logic.

4. A novel rotary heat exchanger structure for use inside an air conditioning unit according to claim 1 or 2, characterized in that: The supporting frame (2) is a steel structure support, which is formed by windbreak fence.

5. A novel rotary heat exchanger structure for use inside an air conditioning unit according to claim 1, characterized in that: The lower part of the support frame (2) is provided with a large-enclosed inclined condensate pan (11), which can completely and quickly drain the condensate generated by the heat exchanger to prevent bacterial growth.

6. A novel rotary heat exchanger structure for use inside an air conditioning unit according to claim 1, characterized in that: The vertical heat exchanger (1) consists of coils, fins, and manifolds; The materials used for the coils include, but are not limited to, copper tubes, stainless steel tubes, and carbon steel tubes; The materials of the fins include, but are not limited to, aluminum fins, stainless steel fins, and carbon steel fins; The materials of the manifold include, but are not limited to, copper manifolds, stainless steel manifolds, and carbon steel manifolds.

7. A novel rotary heat exchanger structure for use inside an air conditioning unit according to claim 1, characterized in that: The flange end of the lower water inlet pipe (8) is connected with the elbow flange of one end of the elbow rotary joint (5); The elbow rotary joint (5) is fixed to the lower part of the support frame (2), and the other end is connected with the water pipe arranged at the water inlet part of the vertical heat exchanger (1) through a flange, thereby providing heat exchange water for the vertical heat exchanger (1).

8. A new rotary heat exchanger structure for air conditioning unit according to claim 1, characterized in that: The flange end of the upper water outlet pipe (9) is connected with the straight pipe flange of one end of the straight pipe rotary joint (10); The other end of the straight pipe rotary joint (10) is connected with the water pipe arranged at the water outlet part of the vertical heat exchanger (1) through a copper pipe flange, thereby discharging the heat exchange water in the vertical heat exchanger (1).