Thermally conductive structure for multidirection flow through packed bed
A packed bed for a heat exchanger may comprise a frame and a first fin layer disposed within the frame. A second fin layer may be disposed within the frame. A first perforated sheet may be disposed between the first fin layer and the second fin layer. A sorbent material may be disposed within a volume of at least one of the first fin layer or the second fin layer.
1. A heat exchanger assembly, comprising:
a first packed bed having a first fin layer comprising first lanced offset fins, a second fin layer comprising second lanced offset fins, and a first sorbent material disposed within the first packed bed; and
a second packed bed in thermal communication with the first packed bed, the second packed bed having a third fin layer and a second sorbent material disposed within the second packed bed,
wherein the first lanced offset fins are staggered with the second lanced offset fins to facilitate multi-directional airflow and allow for a compact configuration of the first packed bed.
2. The heat exchanger assembly of claim 1 , wherein the first packed bed comprises a perforated sheet brazed with the first fin layer.
3. The heat exchanger assembly of claim 1 , wherein the first fin layer, the second fin layer and the perforated sheet comprise aluminum.
4. The heat exchanger assembly of claim 1 , wherein the first sorbent material and the second sorbent material are configured to adsorb and desorb carbon dioxide.
5. The heat exchanger assembly of claim 4 , wherein heat generated exothermically by adsorption of carbon dioxide by the first sorbent material is transferred to the second packed bed.
6. The heat exchanger assembly of claim 5 , wherein the second packed bed receives heat from the first packed bed, and wherein the heat exchanger assembly is substantially isothermal.