Side tank design
A cooling system for a reciprocating engine includes a main cooling device and a side tank. The main cooling device includes at least one heat dissipation tube that contains an internal fluid for transporting excess heat developed by a reciprocating engine. The side tank is attached to the main cooling device and includes a plurality of exterior fins for dissipating heat to cool airflow. The exterior fins form an adjustable mounting location.
1. A cooling system, comprising:
a cooling device including a plurality of fins disposed between a plurality of heat dissipation tubes; and
at least one side tank defining a chamber and in fluid communication with the plurality of heat dissipation tubes, the at least one side tank having exterior T-shaped fins, said T-shaped fins are sized and shaped to define a T-channel extending substantially an entire length of said at least one side tank and the T-channel is adapted to capture a fastener and prevent said fastener from rotating while allowing the fastener to be slidably adjusted along the length of the T-channel.
2. The cooling system of claim 1 , comprising two side tanks.
3. The cooling system of claim 1 , wherein said side tank further includes at least one interior fin.
4. The cooling system of claim 1 , wherein said exterior fins are made from a heat conducting material for enhancing cooling characteristics of said cooling system.
5. The cooling system of claim 1 , wherein said main cooling device and said side tank form a radiator configuration selected from a group including a cross-flow configuration and a down-flow configuration.
6. A method for assembling a cooling system, comprising:
providing a main cooling device including a plurality of fins disposed between a plurality of heat dissipation tubes; and
attaching a side tank to said main cooling device, wherein said side tank is adapted to allow an internal fluid to transfer between said side tank and said a plurality of heat dissipation tubes, further wherein said side tank has a plurality of exterior fins, wherein said exterior fins are T-shaped and form at least two T-channels extending substantially an entire length of said side tank, each said T-channel being sized and shaped to capture a fastener and prevent said fastener from rotating while allowing the fastener to be slidably adjusted along the length of the T-channel and releasably secured thereto with a removable attachment device.
7. The method of claim 6 , wherein said side tank further includes at least one interior fin.
8. The cooling system of claim 1 , wherein the side tank has at least two T-channels on each of three sides of said side tank.
9. The method of claim 6 , wherein the side tank has at least two T-channels on each of three sides of said side tank.
10. The cooling system of claim 1 , wherein each of said plurality of exterior T-shaped fins has an arched top.
11. The cooling system of claim 1 , wherein said fastener includes at least a bolt head or a nut.
12. The method of claim 6 , wherein said fasteners includes at least a bolt head or a nut.
13. The cooling system of claim 1 , wherein said at least one side tank has rectilinear sides and is made from a heat conducting material for enhancing cooling characteristics of said cooling system.