Cryocooler with grooved flow straightener
A cryocooler system having at least one flow straightener which has a system of grooves on its perforated surface for enhancing gas flow uniformity through the system wherein pulsing gas which does not initially pass through the flow straightener through a perforation flows along the surface of the flow straightener within a groove prior to passing through a perforation and is effectively redistributed across the surface of the flow straightener and thus the cross section of the regenerator or thermal buffer tube.
1. A pulse tube type cryocooler comprising a pressure wave generator and a regenerator which contains heat transfer media, and having at least one flow straightener to enhance gas flow uniformity through the regenerator, the at least one flow straightener positioned at least at one end of the regenerator and perpendicular to a longitudinal axis running through the regenerator, in direction of the gas flow of the heat transfer media so as to retain the heat transfer media within the regenerator, the at least one flow straightener comprising a plate having a plurality of perforations, radially oriented grooves and at least one circular shaped groove intersecting the radially oriented grooves in the plate surface to enable the gas flow striking the plate to preferentially be distributed along the grooves to the perforations.
2. The cryocooler of claim 1 wherein the flow straightener additionally comprises at least one screen.
3. The cryocooler of claim 2 wherein the flow straightener comprises a plurality of screens of differing mesh sizes.
4. A pulse tube type cryocooler comprising a pressure wave generator and a thermal buffer tube, and at least one flow straightener to enhance gas flow uniformity through the thermal buffer tube, the at least one flow straightener positioned at least at one end of the thermal buffer tube and perpendicular to a longitudinal axis running through the thermal buffer tube in a direction of the gas flow and comprising a plate having a plurality of perforations and a plurality of radially oriented grooves at least one circular shaped groove intersecting the radially oriented grooves in the plate surface to enable the gas flow striking the plate to preferentially be distributed along the grooves to the perforations.
5. A method for operating a pulse tube type cryocooler comprising generating a pulsing gas flow within the cryocooler which contains at least one flow straightener comprising a plate oriented at right angles to the pulsing gas flow and having a plurality of perforations and a plurality of radially oriented grooves and at least one circular shaped groove intersecting the radially oriented grooves in the plate surface, and passing some of said gas along the plate surface within the grooves prior to passing the gas through said perforations.