Internally mounted radial flow intercooler for a combustion air changer
View Patent ↗An improved combustion air charger, such as a turbocharger or a supercharger, includes a housing ( 10 ) having a rotary shaft ( 18 ) journalled therein. At least one compressor wheel ( 20,22 ) is located on the shaft ( 18 ). The housing ( 10 ) includes an ambient inlet ( 30 ) as well as a compressed air outlet ( 32 ) and a heat exchanger ( 36 ) is located between at least one of the compressor wheels ( 20 ) and the outlet ( 32 ) and is arranged so that air flow through the heat exchanger ( 36 ) is generally in the radially inward direction.
1. In a rotary machine including a rotatable shaft having at least one compressor wheel thereon and a housing containing at least said one compressor wheel and having an inlet to said compressor wheel and an outlet;
a heat exchanger in said housing located between said compressor wheel and said outlet, said heat exchanger having a gas flow path having a substantial radial extent and having a gas inlet in fluid communication with said compressor wheel and a gas outlet in fluid communication with said housing outlet, said heat exchanger having a donut-shaped core with a central opening concentric about said shaft and with said gas inlet being defined by a radially outer periphery of the core and said gas outlet being defined by a radially inner periphery of the core, and coolant flow paths in said core extending generally from side to side therein, said coolant flow paths have common inlets and common outlets, said common inlets and common outlets being on the same side of the core and being defined by respective circular tanks having axially directed ports alignable with axially directed ports in said housing, said tank ports and said housing ports having sealed, mating, male/female constructions that allow the side of said core opposite said same side to move axially relative to said housing, said core being removably secured to said housing.
2. The rotary machine of claim 1 wherein said central opening is of larger radius than said compressor wheel.
3. The rotary machine of claim 1 wherein said central opening is of smaller radius than said compressor wheel.
4. The rotary machine of claim 3 wherein said heat exchanger is made up of a plurality of arcuate segments.
5. In a rotary machine including a rotatable shaft having at least one compressor wheel thereon and a housing containing at least said one compressor wheel and having an inlet to said compressor wheel and an outlet;
a heat exchanger in said housing located between said compressor wheel and said outlet, said heat exchanger having a gas flow path having a substantial radial extent and having a gas inlet in fluid communication with said compressor wheel and a gas outlet in fluid communication with said housing outlet, said heat exchanger having a donut-shaped core with a central opening concentric about said shaft and with said gas inlet being defined by a radially outer periphery of the core and said gas outlet being defined by a radially inner periphery of the core, and coolant tube construction in said core extending generally from side to side therein, said tube construction being canted to one side of radial lines extending through a rotational axis of said shaft and against a direction of swirl of gas exiting said compressor wheel such that a radially outermost portion of each tube in said tube construction is located circumferentially upstream with respect to a radially innermost portion of the same tube to reduce pressure drop.
6. The rotary machine of claim 5 wherein said tube construction is in at least two rows including a radially inner row and a radially outer row, where the inner row is encircled by the outer row, one serving as said gas inlet and the other serving as said gas outlet, and said canted tube construction is in at least one of the radially inner row and the radial outer row.
7. The rotary machine of claim 6 wherein said canted tube construction is in both said rows.