This invention pertains to the field of heat exchange and specifically to a more efficient design of heat exchangers.
Plate fin and tube heat exchangers or externally finned tube exchangers have long been employed to recover process heat. These exchangers are most often employed to heat or cool a low density gas stream located on the finned side against a denser fluid with higher heat transfer coefficient within the tubes. The extended surface on the finned exterior pass allows greater heat transfer surface than a bare tube and provides greater heat transfer at a low-pressure drop.
Multiple plate fin and tube heat exchangers have been installed in parallel. The tube side headers of each exchanger are typically individually connected to supply and return piping. The art has not heretofore recognized the unexpected advantage of using multiple parallel exchangers while interconnecting the tube side headers of multiple heat exchangers to minimize supply and return piping. This is accomplished by feeding the tube side supply fluid of multiple exchangers through a selected exchanger supply header and returning the tube side fluid of multiple exchangers through a selected return tube side header of a selected exchanger where the tube side headers of multiple exchangers are interconnected to simplify or eliminate manifold piping.
The invention provides a method of integrating the tube side streams in a plurality of plate fin and tube or finned tube exchangers to accomplish more efficient heat transfer, to simplify piping, or to provide a more compact design. The tube side supply and return headers of a plurality of coils are interconnected together. A selected coil can then be supplied the tube side fluid which is feed to the other coils through the interconnected supply headers. The return fluid interconnected headers can then return the fluid to external piping thought the tube side return header of a selected coil.
The invention may be employed to simplify the heat exchange of any gas turbine inlet air heating or cooling or exhaust heat recovery system or other device that produces a waste heat exhaust or is a source of process heat. Alternatively the arrangement may produce more efficient refrigeration at locations requiring refrigeration or cooling.
In summary, the invention provides a system for heat transfer in a plate fin and tube or finned tube exchanger by providing a simplified integrated tube side circuitry.
The invention is illustrated by the specific example set out below.
The invention may be described in several ways as alternate embodiments of the same novel discovery.
A method for operating a heat exchanger of the plate fin and tube or finned tube type that can be used in heat transfer system that comprises:
In a preferred embodiment the invention provides:
In a more preferred embodiment the invention further provides:
The inventive concept may also be embodied as a method for an energy recovery system for increasing the efficiency of a gas turbine inlet air or exhaust heat exchange by providing an integrated tube side cooling or heating circuitry to cool or heat a working fluid circuit(s) while cooling or heating the inlet or exhaust stream of the gas turbine.