Air-cooling and water-cooling integrated precise condenser structure
By designing an integrated air-cooled and water-cooled precision condenser, using welded and mechanically expanded outer and inner heat exchange tubes, combined with internal and external threaded structures and a fan, the applicability and noise issues of the condenser in different scenarios are solved, achieving integrated design within a limited space, improving usage flexibility and market competitiveness.
Patent Information
- Application Number
- CN202423109073.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Existing condensers have a fixed size for different usage scenarios, which limits their applicability and makes it difficult to integrate air-cooling and water-cooling structures in a limited space, affecting the flexibility of use and noise level.
Design a precision condenser that integrates air cooling and water cooling. It uses external and internal heat exchange tubes connected by welding and mechanical expansion, combined with internal and external threaded structure, equipped with a fan and fins, to achieve switching between air cooling and water cooling modes. The fan stops running in water cooling mode.
It achieves integrated air cooling and water cooling within a limited space, improving the unit's applicability and flexibility, reducing noise, and featuring a compact structure suitable for miniaturization design, thus enhancing market competitiveness.
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Figure CN223610399U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to condenser technical field, concretely is a kind of air-cooled water-cooled integrated precision condenser structure. BACKGROUND
[0002] Condenser is one of four big pieces of vapor compression type refrigeration system, and its main function is to utilize cold side medium and cool high-temperature gaseous refrigerant discharged from compressor high-pressure port into medium-temperature liquid refrigerant.
[0003] Condenser is divided into air-cooled condenser and water-cooled condenser according to cooling mode, wherein air-cooled condenser is air as cold side medium, and water-cooled condenser is cooling water as cold side medium, and existing condenser is usually fixed size, when aiming at different use scene, it is more inconvenient, due to volume;In limited space, wind-cooled heat dissipation and water-cooled heat dissipation structure are integrated design, can expand the application range of unit, improve the flexibility and universality of use, reduce operating noise, unit realizes miniaturization design, and it has important significance to improve the market competitiveness of product. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of air-cooled water-cooled integrated precision condenser structure to solve the problems raised in the above background.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of air-cooled water-cooled integrated precision condenser structure, including outside heat exchange pipe, inside heat exchange pipe, fan, fin, inside bend and outside bend, the outside heat exchange pipe one end is equipped with refrigerant side outlet, the inside heat exchange pipe two ends are equipped with water side outlet and water side inlet respectively.
[0006] Further optimization, the fin is arranged on the outside heat exchange pipe in multiple groups equidistantly.
[0007] Further optimization, the outside heat exchange pipe is connected with the outside bend by welding, and the outside bend is copper pipe.
[0008] Further optimization, the inside heat exchange pipe is connected with the inside bend by welding, and the inside bend is copper pipe.
[0009] Further optimization, the outside heat exchange pipe is connected with multiple fins by mechanical expansion or welding.
[0010] Further optimization, the outside heat exchange pipe is internally threaded structure, and plays the role of strengthening heat exchange.
[0011] Further optimization, the inside heat exchange pipe is internally threaded and externally threaded structure, and plays the role of double-sided strengthening heat exchange.
[0012] In a further optimized configuration, the fan is positioned at the upper end of the fins, the outer heat exchange tube, and the inner heat exchange tube. The air side is circulated by the fan to enhance the heat exchange effect. When switching to water cooling, the fan does not operate.
[0013] Beneficial effects
[0014] The air-cooled and water-cooled integrated precision condenser structure provided by this utility model features an outer heat exchange tube connected to the fins via mechanical expansion or welding, reducing thermal resistance. The outer heat exchange tube employs an internal thread structure to enhance heat transfer, while the inner heat exchange tube utilizes both internal and external threads for enhanced heat transfer on both sides. A fan circulates the air, further enhancing the heat transfer effect. When switching to water cooling, the fan does not operate. This condenser structure can satisfy both air-cooling and water-cooling requirements, and its compact structure, small footprint, and easy relocation, combined with the integrated design of air-cooling and water-cooling structures within a limited space, expands the unit's applicability, improves its flexibility and versatility, reduces operating noise, and achieves miniaturization, which is of great significance for enhancing the product's market competitiveness. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model. Detailed Implementation
[0016] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.
[0017] Example
[0018] like Figure 1 As shown, a precision condenser structure integrating air cooling and water cooling includes an outer heat exchange tube 7, an inner heat exchange tube 8, a fan 1, fins 2, an inner elbow 6 and an outer elbow 5. One end of the outer heat exchange tube 7 is provided with a refrigerant side outlet 10, and both ends of the inner heat exchange tube 8 are provided with a water side outlet 4 and a water side inlet 9, respectively.
[0019] In this embodiment, the fins 2 are arranged in multiple groups at equal intervals on the outer heat exchange tube 7.
[0020] The outer heat exchange tube 7 is connected to the outer elbow 5 by welding. The outer elbow 5 is a copper tube.
[0021] The inner heat exchange tube 8 and the inner elbow 6 are connected by welding. The inner elbow 6 is a copper tube.
[0022] The outer heat exchange tube 7 is connected to the multiple sets of fins 2 by mechanical expansion or welding to reduce the heat transfer resistance.
[0023] The outer heat exchange tube 7 has an internal thread structure, which enhances heat exchange.
[0024] The inner heat exchange pipe 8 is internally and externally threaded, and functions to enhance heat exchange on both sides.
[0025] The fan 1 is arranged at the upper end of the fin 2, the outer heat exchange pipe 7 and the inner heat exchange pipe 8, and air side is circulated by the fan to enhance heat exchange effect. When switched to water cooling, the fan does not operate.
[0026] The multifunctional condenser has small floor area, compact structure, excellent heat exchanger effect and is convenient to move.
[0027] In limited space, the air cooling and water cooling structure is integrated and designed, which can expand the application range of the unit, improve the flexibility and universality of use, reduce the operation noise, realize the miniaturization design of the unit, and has important significance for improving the market competitiveness of the product.
[0028] The outer heat exchange pipe is connected by welding of the outer elbow copper pipe.
[0029] The inner heat exchange pipe is connected by welding of the inner elbow copper pipe.
[0030] The outer heat exchange pipe and the fin are connected by mechanical expansion or welding to reduce heat transfer resistance.
[0031] The outer heat exchange pipe is internally threaded, and functions to enhance heat exchange.
[0032] The inner heat exchange pipe is internally and externally threaded, and functions to enhance heat exchange on both sides.
[0033] The air side is circulated by the fan to enhance heat exchange effect. When switched to water cooling, the fan does not operate. The outer heat exchange pipe and the fin are connected by mechanical expansion or welding to reduce heat transfer resistance. The outer heat exchange pipe is internally threaded, and functions to enhance heat exchange. The inner heat exchange pipe is internally and externally threaded, and functions to enhance heat exchange on both sides. The air side is circulated by the fan to enhance heat exchange effect. When switched to water cooling, the fan does not operate. The condenser structure can meet air cooling and water cooling. The multifunctional condenser has small floor area, compact structure, excellent heat exchanger effect and is convenient to move.
[0034] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application have been described in detail, for the skilled in the art, it still can be modified, or for the equivalent replacement of part of the technical features of the technical solutions recorded in the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, should be included in the scope of the present application.
Claims
1. A precision condenser structure integrating air cooling and water cooling, characterized in that: The heat exchange device comprises outer heat exchange pipes (7), inner heat exchange pipes (8), a fan (1), fins (2), an inner elbow (6) and an outer elbow (5), one end of the outer heat exchange pipes (7) is provided with a refrigerant side outlet (10), and two ends of the inner heat exchange pipes (8) are respectively provided with a water side outlet (4) and a water side inlet (9).
2. The air-cooled and water-cooled integrated precision condenser structure according to claim 1, characterized in that: The fins (2) are arranged in multiple groups and are equidistantly arranged on the outer heat exchange pipes (7).
3. The air-cooled and water-cooled integrated precision condenser structure according to claim 1, characterized in that: The outer heat exchange pipes (7) and the outer elbow (5) are connected through welding.
4. The air-cooled and water-cooled integrated precision condenser structure according to claim 1, characterized in that: The inner heat exchange pipes (8) and the inner elbow (6) are connected through welding.
5. The air-cooled and water-cooled integrated precision condenser structure according to claim 2, characterized in that: The outer heat exchange pipes (7) and the multiple groups of fins (2) are connected through mechanical pipe expansion or welding.
6. The air-cooled and water-cooled integrated precision condenser structure according to claim 1, characterized in that: The outer heat exchange pipes (7) are internally threaded.
7. The air-cooled and water-cooled integrated precision condenser structure according to claim 1, characterized in that: The inner heat exchange pipes (8) are internally and externally threaded.
8. The air-cooled and water-cooled integrated precision condenser structure according to claim 1, characterized in that: The fan (1) is arranged on the upper ends of the fins (2), the outer heat exchange pipes (7) and the inner heat exchange pipes (8).