Heat augmentation features in a cast heat exchanger
A featured embodiment of a cast plate heat exchanger assembly includes a cast plate including a plate portion defining a plurality of internal passages. A plurality of fin portions extend from the plate portion. First augmentation structures are disposed on surfaces of the fin portions for conditioning cooling airflow to enhance transfer of thermal energy. A method is also disclosed.
1 . A cast plate heat exchanger assembly comprising:
a cast plate including a plate portion defining a plurality of internal passages extending between an inlet face and an outlet face and contained between a top surface and a bottom surface, a plurality of fin portions extending from an external surface of one of the top surface and the bottom surface, a first flow disrupting means for thermal energy transfer disposed on surfaces of the plurality of fin portions for conditioning cooling airflow to enhance transfer of thermal energy and a channel bottom defined as a portion of the external surface bounded by at least two of the plurality of fin portions with the first flow disrupting means for thermal energy transfer further disposed on the channel bottom.
2 . The heat exchanger as recited in claim 1 , wherein the plurality of internal passages include a second flow disrupting means for thermal energy transfer that are an integral part of the plate portion.
3 . The heat exchanger as recited in claim 1 , including an inlet manifold and an outlet manifold disposed on opposite ends of the cast plate and in fluid communication with the plurality of internal passages, wherein at least one of the inlet manifold and the outlet manifold include a flow disrupting means for thermal energy transfer.
4 . The heat exchanger as recited in claim 1 , wherein the plate portion, fin portions and the first means for thermal energy transfer are portions of a single unitary part.