Claims
- 1. An apparatus for the generation of cold on a very low temperature level, comprising:
- a compressor for compressing a low-boiling gaseous coolant;
- a cooler downstream of said compressor for abstracting compression heat from the compressed gaseous coolant;
- a counterflow heat exchanger downstream and in addition to said cooler for exchanging heat between said compressed gaseous coolant and a cold gaseous low-pressure coolant;
- an expansion nozzle downstream of said heat exchanger for expanding and partially liquefying the compressed gaseous coolant substantially isentropically to produce a cold partially liquefied fluid;
- a cold consumer downstream of said expansion nozzle for transferring heat to said cold partially liquefied fluid;
- means for returning the part of said fluid leaving the cold consumer in the gaseous state to the counterflow heat exchanger as said cold gaseous low-pressure coolant; and
- an expansion turbine connected ahead of said nozzle for work-expanding a portion of the compressed gaseous coolant, the balance of the compressed gaseous coolant being substantially isentropically expanded in said nozzle.
- 2. The apparatus defined in claim 1, further comprising a liquid-gas separator downstream from said expansion nozzle for separating said fluid into a liquid phase and a gas phase, the gas phase being returned as said cold gaseous low-pressure coolant to said counterflow heat exchanger.
- 3. In a method for the generation of cold at a very low temperature level in which a low-boiling coolant is liquefied, the method comprising the steps of:
- compressing the low-boiling gaseous coolant quasi-isothermically;
- removing the heat of compression of the compressed gaseous coolant by cooling same;
- cooling further the compressed gaseous coolant by passing it in countercurrent heat exchange with a cold gaseous low-pressure coolant;
- expanding and thereby partially liquefying the compressed coolant cooled by countercurrent heat exchange; and
- using the part of the coolant remaining in the gaseous state or the part of the liquiefied coolant re-evaporating during heat exchange with a heat consumer as the cold gaseous low-pressure coolant in the countercurrent heat exchange, the improvement which comprises:
- expanding and partially liquefying said cold compressed coolant in an expansion nozzle substantially isentropically during the expansion and partial liquefaction step, a portion of the compressed coolant being work-expanded in an expansion machine while the balance of the compressed coolant is expanded in said nozzle.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2548240 |
Oct 1975 |
DEX |
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Parent Case Info
This is a continuation of application Ser. No. 736,081, filed Oct. 27, 1976, now abandoned.
US Referenced Citations (5)
Non-Patent Literature Citations (1)
Entry |
Engineering Thermodynamics, Textbook, Herman J. Stoever, copyright 1951 by John Wiley & Sons, pp. 381-383 & 354-357. |
Continuations (1)
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Number |
Date |
Country |
Parent |
736081 |
Oct 1976 |
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