IP Library Granted Patent US 7,644,983
Granted Patent B2
US 7,644,983 · App. 11/975,291 · Granted Jan 12, 2010

Evaporatively pre-cooled seat assembly

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Quick Facts
Patent No.
US 7,644,983
App. No.
11/975,291
Granted
Jan 12, 2010
Kind
B2
Abstract

An evaporatively pre-cooled seat assembly comprising a seat cushion, an auxiliary cooler, and an evaporative cooler. The evaporative cooler includes a plurality of parallel tubular dry channels and a plurality of tubular wet channels. The dry channels and wet channels are arranged such that they alternate from dry channel to wet channel from channel to channel. Each of the channels is defined by two parallel side walls, a top, and a bottom. A first plurality of dry channels defines a plurality of apertures in the side walls thereof for conveying air out of the respective dry channel and into an adjacent wet channel. A second plurality of dry channels alternates with the first plurality and is disposed between two wet channels and defines a plurality of cooler apertures in the tops thereof for conveying cooled air out of the second plurality of alternating dry channels and to the auxiliary cooler.

Claims (34)

1. An evaporatively pre-cooled seat assembly comprising;

a seat cushion,

an auxiliary cooler for providing cooling air to said seat cushion, an evaporative cooler in fluid communication with said auxiliary cooler for providing cooled cool air thereto,

said evaporative cooler including a plurality of spaced and parallel side walls closed by a top and a bottom to define tubular channels with open front and rear ends,

alternate of said channels being closed at said rear ends to define dry channels with said channels between said dry channels being closed at said front ends to define wet channels,

a first plurality of said dry channels defining a plurality of apertures in said side walls thereof for conveying air out of said respective dry channel and into at least one adjacent wet channel to cool the air in said adjacent dry channels, and

a second plurality of said dry channels alternating with said first plurality and disposed between two of said wet channels and defining a plurality of cooler apertures in said tops thereof for conveying cooled air out of said second plurality of alternating dry channels and to said auxiliary cooler,

wherein said wet channels, said first plurality of dry channels, and said second plurality of dry channels are substantially parallel and coplanar.

2. An assembly as set forth in claim 1 wherein each of said wet channels are lined with a wicking material for retaining a liquid to be evaporated by the air conveyed by said apertures in said side walls of said dry channels to extract heat from said adjacent dry channels thereby cooling the air in said adjacent dry channels.

3. An assembly as set forth in claim 2 including a liquid source for supplying the liquid to said wicking material of each of said wet air channels.

4. An assembly as set forth in claim 1 wherein said seat cushion includes a seating surface having a plurality of passages extending from said surface and into said seat cushion for conveying air.

5. An assembly as set forth in claim 1 wherein said auxiliary cooler is embedded in said seat cushion for providing cooling air to said passages in said seat cushion to exit said cooling air over said surface of said seat cushion.

6. An assembly as set forth in claim 5 said evaporative cooler is embedded in said seat cushion and in fluid communication with said auxiliary cooler for providing pre-cooled air to said auxiliary cooler.

7. An evaporatively pre-cooled seat assembly comprising:

a seat cushion having a seating surface,

said seat cushion having a plurality of passages extending from said surface and into said seat cushion for conveying air,

an auxiliary cooler embedded in said seat cushion for providing cooling air to said passages in said seat cushion to exit said cooling air over said surface of said seat cushion,

an evaporative cooler embedded in said seat cushion and in fluid communication with said auxiliary cooler for providing pre-cooled air to said auxiliary cooler,

said evaporative cooler including a plurality of spaced and parallel side walls closed by a top and a bottom to define tubular channels with open front and rear ends,

alternate of said channels being closed at said rear ends to define dry channels with said channels between said dry channels being closed at said front ends to define wet channels,

each of said wet channels being lined with a wicking material for retaining a liquid,

a liquid source for supplying the liquid to said wicking material of each of said wet air channels,

a first plurality of said dry channels defining a plurality of apertures in said sidewalls thereof for conveying air out of said respective dry channel and into at least one adjacent wet channel to evaporate liquid from said wicking material to extract heat from the air in said adjacent dry channels thereby cooling the air in said adjacent dry channels, and

a second plurality of said dry channels alternating with said first plurality and disposed between two of said wet channels and defining a plurality of cooler apertures in said tops thereof for conveying cooled air out of said second plurality of alternating dry channels and to said auxiliary cooler;

wherein said wet channel, said first plurality of dry channels, and said second plurality of dry channels are substantially parallel and coplanar.

8. An evaporator assembly comprising;

an evaporative cooler for providing cooled air,

said evaporative cooler including a plurality of spaced and parallel side walls closed by a top and a bottom to define tubular channels with open front and rear ends,

alternate of said channels being closed at said rear ends to define dry channels with said channels between said dry channels being closed at said front ends to define wet channels,

a first plurality of said dry channels defining a plurality of apertures in said side walls thereof for conveying air out of said respective dry channel and into at least one adjacent wet channel to cool the air in said adjacent dry channels, and

a second plurality of said dry channels alternating with said first plurality and disposed between two of said wet channels and defining a plurality of cooler apertures in said tops thereof for conveying cooled air out of said second plurality of alternating dry channels;

wherein said wet channels, said first plurality of dry channels, and said second plurality of dry channels are substantially parallel and coplanar.

9. An assembly as set forth in claim 8 wherein each of said wet channels are lined with a wicking material for retaining a liquid to be evaporated by the air conveyed by said apertures in said side walls of said dry channels to extract heat from said adjacent dry channels thereby cooling the air in said adjacent dry channels.

10. An assembly as set forth in claim 9 including a liquid source for supplying the liquid to said wicking material of each of said wet air channels.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2016
From: DELPHI TECHNOLOGIES, INC.
To: MAHLE INTERNATIONAL GMBH
Reel/Frame 037640/0036 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2007
From: WOLFE, EDWARD, IV; KADLE, PRASAD SHRIPAD; REYZIN, ILYA; BHATTI, MOHINDER SINGH
To: DELPHI TECHNOLOGIES, INC.
Reel/Frame 020036/0753 →