US2007199683A1PendingUtilityA1
Cooler and method of cooling a medium
Est. expiryAug 24, 2021(expired)· nominal 20-yr term from priority
Inventors:Karsten Emrich
F02B 29/0412F28D 9/0012F28F 1/34F28D 7/06F28F 1/32F28F 2215/00Y02T10/12F28D 7/1676F02B 29/0462F28D 2021/0082
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Claims
Abstract
The invention relates to a cooler having means for directing a cooling medium, means for directing a medium to be cooled, and an essentially axially symmetrical housing. The means for directing the medium to be cooled is arranged in such a way that the medium to be cooled, in at least one first region, flows in an essentially axial direction, and the medium to be cooled, in at least one second region, flows in a direction having a radial component. The invention also relates to a method of cooling a medium and to various uses of a cooler according to the invention.
Claims
exact text as granted — not AI-modified1 . A cooler having
a first passageway for directing a cooling medium, at least one second passageway for directing a medium to be cooled, and an essentially axially symmetrical housing, wherein the at least one second passageway for directing the medium to be cooled is arranged in such a way that the medium to be cooled, in at least one first region, flows in an essentially axial direction, and the medium to be cooled, in at least one second region, flows in a direction having a radial component.
2 . The cooler as claimed in claim 1 , wherein the at least one second passageway is arranged such that the medium to be cooled, in a radially inner region, flows in an axial direction into the cooler, and the medium to be cooled flows out of a cooling region of the cooler in a direction having a radial component.
3 . The cooler as claimed in claim 1 , comprising a multiplicity of essentially axially symmetrical baffle plates arranged in layers one above the other, the baffle plates having a radially inner aperture forming the first passageway for the medium to be cooled, and
a plurality of tubes extending essentially in the axial direction for directing the cooling medium and passing through openings in the baffle plates, wherein flow paths are defined between the baffle plates for the medium to be cooled, these flow paths having a radial component.
4 . The cooler as claimed in claim 1 , wherein the baffle plates each have the shape of a conical envelope and enclose an angle of about 45° with the axis of the cooler.
5 . The cooler as claimed in claim 1 , wherein
a plurality of essentially axially symmetrical disks are arranged in layers one above the other, the disks are arranged as disk pairs which form passageways, running in the circumferential direction, for the cooling medium, the disks have through-openings that define an axial passage through the disks arranged in layers one above the other, and cooling fins are arranged between the disk pairs and oriented so that the medium to be cooled flows through these cooling fins essentially perpendicularly to the axis of the cooler.
6 . The cooler as claimed in claim 1 , wherein the cooling fins comprise corrugated fins placed on a radius.
7 . The cooler as claimed in claim 1 , wherein the cooling fins comprise fin plates having essentially parallel fin flanks.
8 . A method of cooling a medium, in which a cooling medium and a medium to be cooled are directed in an essentially axially symmetrical housing, comprising:
directing the medium to be cooled, in at least one first region, in an essentially axial direction, and directing the medium to be cooled, in at least one second region, in a direction having a radial component.
9 . The method as claimed in claim 8 , wherein
the medium to be cooled, in a radially inner region, flows in an axial direction into the cooler, and the medium to be cooled flows out of a cooling region of the cooler in a direction having a radial component.
10 . The method as claimed in claim 8 , wherein the medium to be cooled is deflected from an essentially axial flow direction into a flow direction which forms an angle of about 45° with the axial flow direction.
11 . The method as claimed in claim 8 , wherein the medium to be cooled is deflected from an essentially axial flow direction into a radial flow direction.
12 . In an automotive engine assembly having a charge-air pre-cooler, the charge air cooler comprising a cooler as defined by claim 1 .
13 . In an engine assembly having an exhaust-gas cooler, the exhaust gas cooler comprising a cooler as defined by claim 1 .
14 . In an engine assembly having an oil cooler, the oil cooler comprising a cooler as defined by claim 1 .
15 . In a fuel tank assembly including a fuel cooler, the fuel cooler comprising a cooler as defined by claim 1.Join the waitlist — get patent alerts
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