Claims
- 1. An orifice pulse tube refrigerator having flow resistance, compliance, and inertance components connected to a pulse tube for establishing a phase relationship between oscillating pressure and oscillating velocity in the pulse tube, the improvement comprising:
a temperature regulating system for heating or cooling a working gas in at least one of the flow resistance and inertance components; and a temperature control system connected to the temperature regulating system for controlling the temperature of the working gas in the at least one of the flow resistance and inertance components and maintaining a control temperature that is indicative of a desired temporal phase relationship between oscillating pressure and oscillating velocity of the working gas.
- 2. The orifice pulse tube refrigerator according to claim 1, further including a temperature sensor located to establish the control temperature.
- 3. The orifice pulse tube refrigerator according to claim 2, wherein the temperature sensor is located to sense a temperature of the pulse tube midway between a cold end and an ambient end of the pulse tube.
- 4. The orifice pulse tube refrigerator according to claim 1, wherein the temperature regulating system further includes:
a temperature control jacket covering at least one of the flow resistance and inertance components; and a flow control system for adjusting the flow of cooling or heating fluid to the temperature control jacket.
- 5. The orifice pulse tube refrigerator according to claim 1, wherein the temperature regulating system further includes electrical resistance heating elements adjacent at least one of the flow resistance and inertance components.
- 6. The orifice pulse tube refrigerator according to claim 1, wherein the temperature regulating system further includes a flow control system for adjusting fluid flow to an ambient heat exchanger in the pulse tube to provide temperature adjustment of the working gas in the flow resistance and inertance components.
- 7. A method for controlling a phase relationship between oscillating pressure and oscillating velocity in a pulse tube of an orifice pulse tube refrigerator having flow resistance, compliance, and inertance components connected to the pulse tube comprising:
regulating the temperature of a working gas in at least one of the inertance or resistive components to maintain the phase relationship.
- 8. The method of claim 7, wherein regulating the temperature of the working gas includes controlling the flow rate of a fluid through a temperature control jacket covering at least one of the inertance and flow resistance components.
- 9. The method of claim 7, wherein regulating the temperature of the working gas includes controlling the flow rate of a fluid through an ambient heat exchanger located between the pulse tube and the flow resistance, compliance, and inertance components to adjust the temperature of the working gas in at least one of the inertance and flow resistance components.
- 10. The method of claim 7, wherein regulating the temperature of the working gas includes controlling heating elements located adjacent at least one of the inertance and flow resistance components.
- 11. The method of claim 7, further including the step of sensing a control temperature of the pulse tube to output a control signal for regulating the temperature of the working gas.
- 12. The method of claim 11, wherein the control temperature is a temperature midway between a cold end and an ambient end of the pulse tube.
STATEMENT REGARDING FEDERAL RIGHTS
[0001] This invention was made with government support under Contract No. W7405-ENG-36 awarded by the U.S. Department of Energy. The government has certain rights in the invention.