Claims
- 1. A laminated heat exchanger comprising:a tube element assembly including a plurality of tube elements laminated together along a direction of lamination, each of said tube elements including a pair of tank portions having through holes in the direction of lamination and a U-shaped passage communicating between said pair of tank portions, wherein each of tube elements has one of said pair of tank portions located on a first side of said tube element assembly to form a first tank group, and the other said pair of tank portions located on a second side of said tube element assembly to form a second tank group, a first tank subgroup constituted by a specific number of said tank portions of said first tank group which are disposed adjacent to each other so as to be fluidly connected an enlarged tank portion being formed in one tank portion of said first tank subgroup, a second tank subgroup constituted by a specific number of said tank portions of said second tank group which are disposed adjacent to each other, said second tank subgroup fluidly communicating with said first tank subgroup through said U-shaped passages of said tube elements forming said tank portions of said first and second tank subgroup, the specific number of tank portions in said second tank subgroup equaling the specific number of tank portions in said first tank subgroup, a first pass constituted by one side of said U-shaped passages directly communicating with said tanks of said first tank subgroup, a second pass constituted by another side of said U-shaped directly communicating with said tanks of said second tank subgroup, a third tank subgroup constituted by adjacent tank portions of said second tank group which are not in said second tank subgroup, said third tank subgroup fluidly communicating with said second tank subgroup, a fourth tank subgroup constituted by adjacent tank portions of said first tank subgroup which are not in said first tank subgroup, said fourth tank subgroup which are not in said first tank subgroup, said fourth tank subgroup fluidly communicating with said third tank subgroup through said U-shaped passages of said tube elements forming said tank portion of said third and fourth tank subgroup, a third pass constituted by one side of said U-shaped passages directly communicating with said tanks of said third tank subgroup, a fourth pass constituted by another side of said U-shaped passages directly communicating with said tanks of said fourth tank subgroup, and a partitioning portion dividing said first tank subgroup and said fourth tank subgroup such that said fourth tank subgroup being directly cut off from said first tank subgroup; a plurality of fins laminated alternately with said tube elements; a first end plate disposed at a first end of said tube element assembly in the direction of lamination, said first end plate being located adjacent to said fourth tank subgroup; a second end plate disposed at a second end of said tube element assembly in the direction of lamination, said second end plate being located adjacent to said first tank subgroup; a heat exchanging medium intake portion mounted on said first end plate; a communication pipe communicating between said heat exchanging medium intake portion and said enlarged tank portion of said first tank subgroup; and a heat exchanging medium outlet portion mounted on said first end plate and juxtaposed with said heat exchanging medium intake portion; wherein a constricting portion is formed by making said through hole in at least one of said tank portions smaller than said through holes in the other of said tank portions, said at least one tank portion being located at an upstream side with respect to an inflow direction of said heat exchanging medium in said third tank subgroup.
- 2. The laminated heat exchanger as claimed in claim 1, wherein a diameter of each of the other through holes is 15.7 mm and a diameter of said through hole forming said constricting portion is within a range of 8 mm to 14 mm.
- 3. The laminated heat exchanger as claimed in claim 1, wherein a cross sectional opening area of said constricting portion is S1 and a cross sectional opening area of each of said other through holes is S2, and S1 and S2 are selected so that 0.25≦S1/S2≦0.80.
- 4. The laminated heat exchanger as claimed in claim 3, wherein a diameter of each of said other through holes is 15.7 mm and a diameter of said through hole at said constricting portion is within a range of 8 mm to 14 mm.
- 5. A laminated heat exchanger comprising:a tube element assembly including a plurality of tube elements laminated together along a direction of lamination, each of said tube elements including a pair of tank portions having through holes in the direction of lamination and a U-shaped passage communicating between said pair of tank portions, wherein each of tube elements has one of said pair of tank portions located on a first side of said tube element assembly to form a first tank group, and the other said pair of tank portions located on a second side of said tube element assembly to form a second tank group, a first tank subgroup constituted by a specific number of said tank portions of said first tank group which are disposed adjacent to each other so as to be fluidly connected an enlarged tank portion being formed in one tank portion of said first tank subgroup, a second tank subgroup constituted by a specific number of said tank portions of said second tank group which are disposed adjacent to each other, said second tank subgroup fluidly communicating with said first tank subgroup through said U-shaped passages of said tube elements forming said tank portions of said first and second tank subgroup, the specific number of tank portions in said second tank subgroup equaling the specific number of tank portions in said first tank subgroup, a third tank subgroup constituted by adjacent tank portions of said second tank group which are not in said second tank subgroup, said third tank subgroup fluidly communicating with said second tank subgroup, a fourth tank subgroup constituted by adjacent tank portions of said first tank subgroup which are not in said first tank subgroup, said fourth tank subgroup which are not in said first tank subgroup, said fourth tank subgroup fluidly communicating with said third tank subgroup through said U-shaped passages of said tube elements forming said tank portion of said third and fourth tank subgroup, and a partitioning portion dividing said first tank subgroup and said fourth tank subgroup such that said fourth tank subgroup being directly cut off from said first tank subgroup; a plurality of fins laminated alternately with said tube elements; a first end plate disposed at a first end of said tube element assembly in the direction of lamination, said first end plate being located adjacent to said fourth tank subgroup; a second end plate disposed at a second end of said tube element assembly in the direction of lamination, said second end plate being located adjacent to said first tank subgroup; a heat exchanging medium intake portion mounted on said first end plate; a communication pipe communicating between said heat exchanging medium intake portion and said enlarged tank portion of said first tank subgroup; and a heat exchanging medium outlet portion mounted on said first end plate, said heat exchanging medium outlet portion being juxtaposed with said heat exchanging medium intake portion, wherein said through holes of said tank portions are circular, and a constricting portion is formed by making a diameter of said through hole in one of said tank portions smaller than all of the diameters of the other of said through holes, and wherein said one tank portion is located at an upstream side of said third tank subgroup with respect to an inflow direction of said heat exchanging medium in said third tank subgroup.
- 6. The laminated heat exchanger as claimed in claim 5, wherein each of the diameters of said other through holes is 15.7 mm, and the diameter of said through hole forming said constricting portion is within a range of 8 mm to 14 mm.
- 7. The laminated heat exchanger as claimed in claim 5, wherein a cross sectional opening area of said constricting portion is S1 and a cross sectional opening area of each of said other through holes is S2, and wherein S1 and S2 are selected so that 0.25≦S1/S2≦0.80.
- 8. The laminated heat exchanger as claimed in claim 7, wherein each of the diameters said other through holes is 15.7 mm, and the diameter of said through hole at said constricting portion is within a range of 8 mm to 14 mm.
Priority Claims (2)
Number |
Date |
Country |
Kind |
7-51722 |
Feb 1995 |
JP |
|
7-258165 |
Sep 1995 |
JP |
|
Parent Case Info
This is a divisional application of Ser. No. 08/600,276, filed Feb. 12, 1996, Abandoned.
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