Heat disspiating system and device
The present invention discloses a heat dissipating system and device. The heat dissipating system includes a compressor having two pipelines; a heat dissipating for connecting a first combining tube of one of the two pipelines from the compressor, a plurality of heat dissipating fins disposed between the first combining tube and a second combining tube with the same shape of the first combining tube for defining a multilayer channel with the internal sides of the first and second combining tubes, two pipelines connected externally and separately to the second combining tube; an expansion valve; and an evaporator. The compressor is used for dispersing the heat of a conductive medium of a cooling fluid to conduct the heat of a heat source and lower the temperature of the heat source, so as to enhance the heat dissipation and performance of the heat dissipating system.
The present invention generally relates to a heat dissipating system and device, and more particularly to a heat dissipating system that effectively lowers the temperature of a heat source and improves the heat dissipating performance by using a compressor to carry a cooling fluid to disperse the heat produced by the heat source.
BACKGROUND OF THE INVENTIONAs components of air conditioners or heaters used for automobiles and home electric appliances are developed rapidly, the heat produced by such applicants becomes more and the internal temperature of the automobiles and home electric appliances also increases and seriously affects the stability of the operation of electronic components. Therefore, manufacturers usually build ventilation holes or a fan on a sidewall of the automobile and home electric appliances to enhance air convection, so that the hot air in automobile and home electric appliances can be discharged to the outside rapidly to assure the stability of the operation of electronic components.
At present, computer applications are used extensively in all areas of our life. As the speed of data processing is increased constantly, the heat produced during the operation of computer devices is increased as well. Thus, finding a solution for timely dissipating the heat for a normal computer operation demands immediate attention.
The structure of prior art heat dissipating devices used for personal computers or notebook computers generally includes a plurality of vertical heat dissipating fins connected to the top of a metal base and a plane disposed at the bottom of the base. An eccentric tool is used to install the heat dissipating device onto a heat generating component in a computer, such that the lower plane surface is in close contact with the heat generating component. A fan is mounted onto the heat dissipating fins. When the computer is operating, the heat produced by the computer components passes through the plane of the heat dissipating device to the base of the heat dissipating device according to the principle of heat conduction. The heat is further conducted to the heat dissipating fins and carried away by the air flow of the fan. Such arrangement simply relies on the efficiency of the thermal conduction of the metal and depends on the thermal conductivity of the material of the heat dissipating device. Since the thermal conductivity of a solid is low, the prior art heat dissipating device gives poor heat dissipating effects and has low practicability.
SUMMARY OF THE INVENTIONThe primary objective of the present invention is to overcome the shortcomings of the prior art by providing a heat dissipating system and device, wherein the heat dissipating system comprises two pipelines separately installed on a side of a compressor and connected to an end of a heat dissipating device, and the other end of the heat dissipating device includes two pipelines, and one of the two pipelines is connected to an expansion valve and then to an evaporator, and the other one of the two pipelines is connected to the evaporator, such that the heat dissipating system is fixed onto the internal surface of the air conditioner or heater of automobile and home electric appliances or computer systems. The heat produced by these appliances passes through the plurality of heat dissipating fins of the heat dissipating device, and the heat is dispersed by the operation of conductive media in an upper and a lower circuits.
Unlike the prior art fans or heat dissipating devices, the present invention has a heat dissipating effect as follows:
The heat dissipating device of the invention has a plurality of heat dissipating fins with non-interconnected upper and lower circuits and these heat dissipating fins are coupled with the combining tubes on both sides. A multilayer channel is partitioned by the horizontal partition and the plurality of vertical partitions of the two combining tubes, and the compressor is used to absorb, discharge and reabsorb the heat by the liquid-gas-liquid circulating mode of a cooling fluid. The operating heat produced by the heat source of the electronic components is absorbed by the foregoing heat dissipating fins. Therefore, a large amount of heat energy produced by the heat source is carried away rapidly that changes the traditional heat dissipating method of using a single metal conduction and thus greatly improves the stability of the operation of electronic components and the heat dissipating performance.
BRIEF DESCRIPTION OF THE DRAWINGS
To make it easier for our examiner to understand the objective of the invention, its structure, innovative features, and performance, we use a preferred embodiment and the attached drawings for the detailed description of the invention.
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Claims
1. A heat dissipating system, comprising:
- a compressor, having two pipelines disposed separately on a side of said compressor;
- a heat dissipating device, for connecting a first combining tube of one of said two pipelines from said compressor and defining a multilayer channel by the internal sides of said first combining tube and a second combining tube with the same shape of said first combining tube and a plurality of heat dissipating fins, and said second combining tube having two pipelines separately and externally coupled to said second combining tube;
- an expansion valve, having an end coupled to said pipeline of said second combining tube of said heat dissipating device and said pipeline coupled to said expansion valve; and
- an evaporator, having an inlet disposed at an end and coupled to said pipeline on said expansion valve and an outlet disposed at another end and coupled to another pipeline of said second combining tube of said heat dissipating device to define a circulated heat dissipating channel.
2. A heat dissipating device, comprising:
- a plurality of heat dissipating fins, having an upper and a lower circuits, and said upper and lower circuits are not interconnected;
- two combining tubes, engaged with said plurality of heat dissipating fins;
- a horizontal partition, disposed in the middle of said two combining tubes and defining an upper space and a lower space;
- a connecting pipe, disposed separately at upper and lower opposite corners of said two combining tubes, a plurality of embedding holes, disposed at an external side of said two combining tubes,
- a plurality of rectangular holes, disposed at an internal side, such that said plurality of embedding holes and said plurality of rectangular holes engage a plurality of vertical partitions with said plurality of heat dissipating fins; and
- a cover, disposed separately at an end of said two combining tubes.
3. The heat dissipating device of claim 2, wherein said combining tube is an ellipsoid.
4. The heat dissipating device of claim 3, wherein said combining tube is a tetrahedron and has a cover disposed at a distal end of said combining tube.
5. The heat dissipating device of claim 2, wherein said vertical partition has a side with the shape of an air pipe.
6. The heat dissipating device of claim 5, wherein said vertical partition has a circular hole thereon.
7. The heat dissipating device of claims 2 or 4, wherein said cover has a protruded member disposed at one side and coupled with said upper and lower spaces of said two combining tubes.
Type: Application
Filed: Apr 20, 2005
Publication Date: Oct 26, 2006
Inventor: Chin-Chang Huang (Tainan County)
Application Number: 11/109,806
International Classification: F25B 1/00 (20060101); F25B 41/00 (20060101);