US 12,111,119 B2
Heat exchanger, cooled device assembly comprising the heat exchanger, and method for manufacturing the heat exchanger
Vesa Palojoki, Helsinki (FI)
Assigned to ABB Schweiz AG, Baden (CH)
Filed by ABB Schweiz AG, Baden (CH)
Filed on Jun. 29, 2022, as Appl. No. 17/809,571.
Claims priority of application No. 21182270 (EP), filed on Jun. 29, 2021.
Prior Publication US 2022/0412661 A1, Dec. 29, 2022
Int. Cl. F28D 9/00 (2006.01); F28F 3/00 (2006.01)
CPC F28D 9/0025 (2013.01) [F28F 3/005 (2013.01); F28F 2225/06 (2013.01); F28F 2230/00 (2013.01)] 20 Claims
OG exemplary drawing
 
1. A heat exchanger comprising:
a corrugated heat transfer sheet having a first surface and a second surface on opposite sides thereof, the corrugated heat transfer sheet comprising a plurality of ridges and grooves which alternate in a width direction, and have crests and troughs spaced apart in a depth direction, wherein the width direction, the depth direction and a longitudinal direction are mutually perpendicular directions;
a first flow channel for a first fluid flow in a first flow direction parallel to the longitudinal direction;
a second flow channel for a second fluid flow in a second flow direction parallel to the longitudinal direction, the second flow direction being opposite to the first flow direction, and
a channel dividing system which provides the first flow channel and the second flow channel on opposite sides of the corrugated heat transfer sheet such that the first fluid flow is adapted to be in contact with the first surface, and the second fluid flow is adapted to be in contact with the second surface,
wherein the channel dividing system comprises a first channel dividing element and a second channel dividing element spaced apart in the longitudinal direction, the first channel dividing element and the second channel dividing element having first blocking portions adapted to block top portions of the ridges, and second blocking portions adapted to block bottom portions of the grooves,
wherein dimensions of the first blocking portions and second blocking portions in the longitudinal direction are less than or equal to 10% of a dimension of the corrugated heat transfer sheet in the longitudinal direction, and
where both the first flow channel and the second flow channel comprise an inlet for an inflow and an outlet for an outflow such that both the inflow and the outflow are parallel to the longitudinal direction.
 
5. A heat exchanger comprising:
a corrugated heat transfer sheet having a first surface and a second surface on opposite sides thereof, the corrugated heat transfer sheet comprising a plurality of ridges and grooves which alternate in a width direction, and have crests and troughs spaced apart in a depth direction, wherein the width direction, the depth direction and a longitudinal direction are mutually perpendicular directions;
a first flow channel for a first fluid flow in a first flow direction parallel to the longitudinal direction;
a second flow channel for a second fluid flow in a second flow direction parallel to the longitudinal direction, the second flow direction being opposite to the first flow direction, and
a channel dividing system which provides the first flow channel and the second flow channel on opposite sides of the corrugated heat transfer sheet such that the first fluid flow is adapted to be in contact with the first surface, and the second fluid flow is adapted to be in contact with the second surface,
wherein the channel dividing system comprises a first channel dividing element and a second channel dividing element spaced apart in the longitudinal direction, the first channel dividing element and the second channel dividing element having first blocking portions adapted to block top portions of the ridges, and second blocking portions adapted to block bottom portions of the grooves,
wherein dimensions of the first blocking portions and second blocking portions in the longitudinal direction are less than or equal to 10% of a dimension of the corrugated heat transfer sheet in the longitudinal direction,
wherein the heat exchanger comprises sealing means providing sealing between the channel dividing system and the corrugated heat transfer sheet, thereby improving separation between the first flow channel and the second flow channel, and
wherein the sealing means comprises a first end support element co-operating with the first channel dividing element for sealing the corrugated heat transfer sheet against the first channel dividing element, wherein a portion of the corrugated heat transfer sheet is located between the first end support element and the first channel dividing element in the depth direction, and the first end support element presses the portion of corrugated heat transfer sheet against the first channel dividing element in the depth direction.
 
20. A heat exchanger comprising
a corrugated heat transfer sheet having a first surface and a second surface on opposite sides thereof, the corrugated heat transfer sheet comprising a plurality of ridges and grooves which alternate in a width direction and have crests and troughs spaced apart in a depth direction, wherein the width direction the depth direction and a longitudinal direction are mutually perpendicular directions;
a first flow channel for a first fluid flow in a first flow direction parallel to the longitudinal direction;
a second flow channel for a second fluid flow in a second flow direction parallel to the longitudinal direction, the second flow direction being opposite to the first flow direction, and
a channel dividing system which provides the first flow channel and the second flow channel on opposite sides of the corrugated heat transfer sheet such that the first fluid flow is adapted to be in contact with the first surface, and the second fluid flow is adapted to be in contact with the second surface,
wherein the channel dividing system comprises a first channel dividing element and a second channel dividing element spaced apart in the longitudinal direction, the first channel dividing element and the second channel dividing element having first blocking portions adapted to block top portions of the ridges, and second blocking portions adapted to block bottom portions of the grooves,
wherein dimensions of the first blocking portions and second blocking portions in the longitudinal direction are less than or equal to 10% of a dimension of the corrugated heat transfer sheet in the longitudinal direction, and
wherein a length of the first flow channel is equal to a length of the second flow channel.