DOUBLE PLATED HEAT EXCHANGER
A heat exchanger comprises double-plated material with good heat conductivity and endurance in the shape of drum with convex wall or cylinder or rectangular shape having inlet(s) for first fluid to be cooled to flow into space between the double layer and out through outlet(s). A plurality of heat exchangers are connected through an inlet tubing where first fluid flows into each heat exchanger and flows out through a connecting outlet tubing. Heat exchange is made between the first fluid and large volume of second fluid the heat exchanger immersed in, where the term fluid covering all types of liquids and gases. The present design efficiently allows heat exchange while clogging is avoided. Installation of elements within heat exchanger to cause change in direction of flow of first fluid increases rate of heat transfer. The disclosed heat exchanger is used as condenser in air-conditioner either in building or in vehicle.
The present invention relates to a double plated heat exchanger.
Field of the InventionEfficient heat changing of refrigerant for air-conditioning system is disclosed.
Description of Related ArtThe present invention relates to double plated heat exchanger(s) used to cause decrease in temperature of one fluid which flows into by exchanging heat with a second fluid the heat exchanger immerses in.
BACKGROUND OF THE INVENTIONThe heat exchanger especially the plate type available at present mostly are designed as a closed system both from the higher temperature side and the lower temperature side as a stack-type with multiple plurality of plates (U.S. Pat. Nos. 4,688,631 & 9,093,729). The interposition of joints between the successive plates being open in parts to connect the intermediate spaces or gaps created between two plates, with fluid inlet and return collectors. This creates great friction results in too much energy required for pumping limiting volume of fluid to flow into the system. Clogging also occurs easily due to calcium sediment, especially when water is used for cooling. This causes decrease in rate of water flow and thus rate of heat exchange reduced
The structure design in addition to the presence of such joints limit the utilization of said heat exchangers. As the system is closed, it is very difficult to avoid clogging and to clean up. In addition, the complicate system requires higher technology for manufacturing and the cost of production is too expensive unnecessarily Nonetheless, the use of this type of heat exchanger is limited due to many problems created by the structure designed.
The present invention, the double-layer heat exchanger therefore is designed to overcome all the problems cited regarding the manufacturing, operation and cost saving both on production and energy consumption. The present invention is designed as open system where the first fluid to be cooled flows into the heat exchanger and exchanges heat with large volume of second fluid the heat exchanger immersed in, where the term fluid covering all types of liquids and gases.
SUMMARY OF THE INVENTIONA heat exchanger comprises double-plated material with good heat conductivity and endurance in the shape of drum with convex wall or cylinder or rectangular shape having inlet(s) for first fluid to be cooled to flow into space between the double layer and out through outlet(s). Multiple heat exchangers are connected through an inlet tubing where first fluid flows into each heat exchanger and flows out through a connecting outlet tubing. Adding element(s) to change direction of flow of fluid in the double layer causes increase in rate of heat exchange. Heat exchange is made between the first ‘fluid’ and large volume of second fluid the heat exchanger immersed in and where the term fluid covering all types of liquids and gases. The disclosed heat exchanger is used as condenser in air-conditioner either in building or in vehicle.
In another embodiment,
To increase the rate of heat exchange, a half circle element F and G is mounted inside between wall A and wall B as shown in
Thus, installing element(s) within heat exchanger to change direction of flow of fluid increases rate of heat transfer to make the system more efficient.
A plurality of heat exchangers are connected to each other through tube 20 as shown in
Heat exchange is improved further by having fins 21 structure on outer surface of tray 11 and plate 12 as the isometric view shown in
The heat exchanger as described is used as condenser in air conditioner to exchange heat against air as shown in
Heat exchange between refrigerant and water is possible as shown in
The heat exchanger of the present invention, therefore, can be used for heat exchange either between the refrigerant against air as in
The heat exchanger 1 or 2 can be used for heat exchange of the refrigerant either against air or water similarly, as shown in
It will be understood that modifications can be made in the above description without departing from the scope of this invention by one of ordinary skill in the art. It is accordingly intended that all matter contained in the above description be interpreted as descriptive and illustrative rather than in a limiting sense.
It is also to be understood that the following claims are intended to cover all of the generic and specific features of the invention as described herein, and all statements of the scope of the invention which, as a matter of language, might be said to fall therebetween.
Claims
1. A heat exchanger comprising double-plated material with good heat conductivity and endurance, having one or more inlet for first fluid to be cooled to flow into space between the double layer and out through one or more outlet.
2. The heat exchanger of claim 1 having a shape of a drum with a convex wall.
3. The A heat exchanger of claim 1 having a shape of a cylinder.
4. The heat exchanger of claim 1 having a shape of a rectangle.
5. The heat exchanger of claim 1 where heat exchange is made between said first fluid and a large volume of a second fluid said heat exchanger is immersed in, where the fluid comprises any type of liquids and gases.
6. The heat exchanger of claim 1 installed as a condenser in an air-conditioning system.
7. A plurality of the heat exchanger of claim 1 which are connected through tubing and used as condenser in air-conditioning system.
8. The heat exchanger of claim 1 further comprising one or more element within to change direction of flow of fluid configured to increase rate of heat transfer.
Type: Application
Filed: Sep 18, 2015
Publication Date: Feb 7, 2019
Inventor: Nopparat THIPCHUWONG (Pathumthani)
Application Number: 15/760,655