The invention relates to a condenser comprising a housing having an inlet opening for inputting fluid into the condenser and an outlet opening for outputting the fluid out of the condenser and a channel system for fluidically connecting the inlet opening and the outlet opening, wherein the channel system is arranged within the housing and comprises a splitting portion in which the inputted fluid is split to a plurality of channels and a grouping portion in which the plurality of channels is united to an outlet channel, wherein a first end of the outlet channel ends in the outlet opening and a second end of the outlet channel ends in the grouping portion. The condenser is characterized in that a distance between the second end of the outlet channel and a housing bottom in a vertical direction is between 0% to 80% of a distance between the housing bottom and an upper housing side in a vertical direction.
1 . A condenser comprising:
a housing formed as a flexible monolithic structure through roll-bonding, the housing having an inlet opening for inputting fluid into the condenser and an outlet opening for outputting the fluid out of the condenser; and
a channel system, defined by selectively inflated regions of the roll-bonded housing, for fluidically connecting the inlet opening and the outlet opening, wherein the channel system is arranged within the housing and comprises a splitting portion in which the inputted fluid is split to a plurality of channels, and a grouping portion in which the plurality of channels is united to an outlet channel;
wherein a first end of the outlet channel ends in the outlet opening and a second end of the outlet channel ends in the grouping portion; and
wherein a distance between the second end of the outlet channel and a housing bottom in a vertical direction is between 0% to 80% of a distance between the housing bottom and an upper housing side in the vertical direction; and
wherein the grouping portion of the channel system comprises a circle shaped channel defined within the housing, the circle shaped channel connected with the plurality of channels and the outlet channel.
2 . The condenser according to claim 1 , wherein;
the distance between the second end of the outlet channel and a housing bottom in the vertical direction is smaller than a distance between the second end of the outlet channel and the upper housing side in the vertical direction.
3 . The condenser according to claim 1 , wherein
a length of the outlet channel is smaller than a length of one channel extending between the splitting portion and the grouping portion.
4 . The condenser according to claim 1 , wherein:
the outlet channel comprises a straight portion between its first end and second end wherein the straight portion is longer than a remaining part of the outlet channel.
5 . The condenser according to claim 1 , wherein the outlet opening and the inlet opening are arranged at the same upper housing side.
6 . The condenser according to claim 1 , wherein a housing part comprising at least a part of the outlet channel protrudes from a remaining housing part.
7 . The condenser according to claim 6 , wherein:
a. the housing comprises a slot dividing at least a part of the housing part from the remaining housing part; and/or
b. at least a part of the housing part and the remaining housing part are arranged offset to each other.
8 . The condenser according to claim 1 , wherein the housing has a rectangular shape wherein a distance between two channels of the plurality of channels in direction along a short side of the housing is shorter than a distance between at least a part of the outlet channel and the channels of the plurality of channels in another direction along a length side of the housing.
9 . The condenser according to claim 1 , wherein:
at least one channel of the plurality of channels extending between the splitting portion and the grouping portion extends in a meandering pattern.
10 . The condenser according to claim 1 , wherein;
the housing bottom comprises an alignment means for aligning the condenser in an angular direction.
11 . The condenser according to claim 1 , wherein:
a. the inlet opening is arranged in an inlet portion of the housing that is separated from a remaining housing by at least one groove; and/or
b. the outlet opening is arranged in an outlet portion of the housing that is separated from the remaining housing by at least one other groove.
12 . A heat transfer system with a fluid tank and at least one condenser according to claim 1 , wherein the condenser is attached to the fluid tank in direct contact with the fluid tank, and wherein the housing is flexibly adapted to a shape of the fluid tank.
13 . The heat transfer system according to claim 12 , wherein
a further condenser is provided wherein the condenser and the further condenser are connected with each other.
14 . A heat pump comprising a heat transfer system according to claim 12 .
15 . The heat transfer system according to claim 12 , wherein an insulating element is arranged between a housing part and the fluid tank.
16 . A heat pump comprising a condenser according to claim 1 .
17 . The condenser according to claim 1 , wherein the channel system comprises a single grouping portion, and wherein a number of channels extending between the splitting portion and the grouping portion is constant.
18 . The condenser according to claim 1 , wherein the housing comprises a through hole for a fluid inlet connection of a fluid tank, and wherein at least a channel of the plurality of channels is arranged to pass around the through hole.
19 . The condenser according to claim 1 , wherein the distance between the second end of the outlet channel and the housing bottom is between 0% to 40% of the distance between the housing bottom and the upper housing side.
20 . The condenser according to claim 1 , wherein the outlet channel is adapted such that the fluid is not redirected between the second end of the outlet channel and the first end of the outlet channel or is redirected merely once between the second end of the outlet channel and the first end of the outlet channel.