FIELD: compressor equipment.
SUBSTANCE: invention relates to compressor equipment, namely to thermocompressors for creating ultra-high gas pressures. The thermomechanical device consists of a compressor 1, a receiver 2 with a reserve of compressed gas, a thermocompressor 5, communicated with the receiver 2 through check valves 4, 8. The thermocompressor 5 is made in two sections, and each of its cavities 6, 9 is equipped with one of two series-connected sections of a thermoelectric battery 7, operating, depending on the polarity of its connection, in antiphase heating-cooling modes. The device is equipped with an ultra-high pressure cylinder 13 with a free-floating heat-insulated piston 14 and its return mechanism 15. The supra-piston cavity of the cylinder 13 is communicated with the sections of the thermocompressor 5 through valves 10, 11, made controlled. The sub-piston cavity of the cylinder 13 is communicated through the inlet check valve 17 with the receiver 2 and through the outlet check valve 19 with the filling cylinder 16.
EFFECT: invention is aimed at increasing the volumetric performance of a thermomechanical device for creating ultra-high pressures.
1 cl, 2 dwg
Title | Year | Author | Number |
---|---|---|---|
THERMOCOMPRESSOR | 0 |
|
SU950944A1 |
PULSE ALTITUDE TUBE | 2010 |
|
RU2439523C1 |
THERMOCOMPRESSOR | 2002 |
|
RU2230222C2 |
COMPRESSOR | 0 |
|
SU885604A1 |
ADIABATIC ENGINE | 2012 |
|
RU2541490C2 |
WIND TUNNEL | 2010 |
|
RU2436058C1 |
AERODYNAMIC TUBE | 2014 |
|
RU2578052C1 |
TURBO-PISTON ENGINE | 1991 |
|
RU2014476C1 |
PISTON TWO-STAGE COMPRESSOR | 2019 |
|
RU2722588C1 |
THERMOCOMPRESSOR | 0 |
|
SU1038552A1 |
Authors
Dates
2021-10-29—Published
2020-12-28—Filed