一种制冷机组冷凝器快速散热装置
By linking the dynamic spray system and the air-cooling components, the problem of insufficient heat dissipation in traditional condensers is solved, achieving uniform cooling and efficient heat dissipation on the condenser surface, reducing energy consumption and improving response speed.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG SEVENTY-TWO DEGREES REFRIGERATION EQUIP CO LTD
- Filing Date
- 2025-07-21
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional condenser heat dissipation methods are significantly affected by ambient temperature. Air cooling has limited efficiency, while water cooling is uneven and has low resource utilization. The lack of dynamic adjustment and linkage control leads to insufficient heat dissipation and high energy consumption.
The system employs a dynamic spray system linked with air-cooled components. The spray components are driven to move along the length of the condenser tubes via a bidirectional threaded screw. Combined with an integrated water storage tank and a dual reflux pump circulation system, this achieves uniform coverage of the condenser tube surface and efficient water recycling. Simultaneously, the design incorporates air inlet louvers and an exhaust fan to form a directional airflow channel, enhancing air velocity and heat dissipation efficiency.
It achieves uniform cooling and efficient heat dissipation on the condenser surface, improving heat dissipation efficiency, reducing energy consumption, and increasing response speed.
Smart Images

Figure CN224517065U_ABST
Abstract
Claims
1. A refrigeration unit condenser rapid heat dissipation device, comprising a heat exchange box (1), an exhaust box (2), a condenser pipe (3), a water-cooled heat dissipation device and an air-cooled heat dissipation assembly, characterized in that: A condenser tube (3) is fixedly connected to the inner wall of the heat exchange box (1). Multiple ventilation holes (101) of the same size are evenly opened on the front and rear side walls of the heat exchange box (1) of the condenser tube (3). Two support seats (4) are symmetrically arranged above the condenser tube (3) and fixed to both sides of the inner wall of the heat exchange box (1). An exhaust box (2) is fixedly connected to one side of the heat exchange box (1). A drive motor (8) is provided above the exhaust box (2). The output end of the drive motor (8) passes through the side wall of the heat exchange box (1) and is fixedly connected to the running screw (9). The running screw (9) is arranged parallel to the condenser tube (3) directly above it, and one end of the screw is fixedly connected to the condenser tube (3). The support base (4) is located in the middle of the inner wall of the heat exchange box (1). A sliding rod (10) is provided above the running screw (9). The two ends of the sliding rod (10) are fixed on the support base (4) on both sides of the heat exchange box (1). A moving block (11) is connected to the outer surface of the running screw (9) for screw transmission. There are two moving blocks (11). The top of the two moving blocks (11) is slidably connected to the sliding rod (10). A water storage tank (5) is provided in the bottom plate of the heat exchange box (1). A water-cooled heat dissipation device is connected through both sides of the water storage tank (5). An air-cooled heat dissipation component is provided in the exhaust box (2).
2. A refrigeration unit condenser rapid heat dissipation device as set forth in claim 1, characterized in that: The water-cooled heat dissipation device includes a reflux pump (61), a circulation pipe (62), a water storage tank (63), and a spray assembly (64). There are two reflux pumps (61), which are symmetrically arranged on both sides of the heat exchange box (1). One of them is located in the exhaust box (2). One end of the two reflux pumps (61) is connected to the water storage tank (5) through the circulation pipe (62) through both sides of the heat exchange box (1). The other end of the circulation pipe (62) is connected to the bottom of the water storage tank (63) through the reflux pump (61). There are two water storage tanks (63), which are symmetrically fixed to the side wall of the heat exchange box (1). The output end is connected to the spray assembly (64) through the side wall of the heat exchange box (1).
3. A refrigeration unit condenser rapid heat sink as set forth in claim 2, wherein: The spray assembly (64) includes a water collector (641), an atomizer (642), and a hose (643). The water collector (641) consists of two units, which are respectively fixed to the bottom of two movable blocks (11). One end of the hose (643) is symmetrically connected to one side of the two water collectors (641), and the other end of the hose (643) is connected to the output end of the water storage tank (63). The atomizer (642) is symmetrically arranged below the two water collectors (641), and the atomizer (642) is directly above the condenser tube (3).
4. The rapid heat dissipation device for a refrigeration unit condenser as described in claim 1, characterized in that: The heat exchange box (1) has air inlet louvers (102) at the bottom of both sides.
5. A condenser quick heat dissipating device for a refrigerating unit as claimed in claim 1 or 4, characterized in that: The air-cooled heat dissipation assembly includes a cooling fan (71) and an exhaust fan (72). The cooling fan (71) is located at the bottom of one side of the exhaust box (2) and corresponds to the air inlet louver (102) opened on one side of the heat exchange box (1). The exhaust fan (72) is provided on the top of the heat exchange box (1).
6. A refrigeration unit condenser rapid heat sink as set forth in claim 1, wherein: The water storage tank (5) has an integrated V-shaped structure, which facilitates better collection and recycling.
7. A refrigeration unit condenser rapid heat dissipation device as set forth in claim 1, characterized by: The surface thread of the operating screw rod (9) is bidirectional thread, and a limiting block (12) is arranged in the middle.