IP Library › Granted Patent US 12,044,472
Granted Patent B2
US 12,044,472 · App. 17/718,384 · Granted Jul 23, 2024

Air drying system and method for drying compressed air using same

Inventor: In Ho Ko (Pyeongtaek-si, KR)
Assignee: EUNHA AIRTECHNOLOGY CO., LTD.
F26B21/001F26B7/005
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Quick Facts
Patent No.
US 12,044,472
App. No.
17/718,384
Granted
Jul 23, 2024
Kind
B2
Abstract

An air drying system includes a regeneration special dryer and at least one air dryer unit. The air dryer unit contains a pair of first and second air dryer dehumidification tanks in which a dehumidification process and a regeneration process are alternately performed; a main compressor to supply compressed wet air to an inlet line; a first direction switching valve unit configured to transfer the compressed wet air from the inlet line to first dehumidification tank performing dehumidification; a second direction switching valve unit configured to transfer the compressed dry air from the first dehumidification tank or transfer regeneration special dry air from a regeneration special dryer to second dehumidification tank performing the regeneration; a heating unit configured to heat the regeneration special dry air supplied from the regeneration special dryer; and a cooler configured to detach moisture from dehumidifying agent filled in the second dehumidification tank.

Claims (25)

1. An air drying system for supplying dry air continuously, the system comprising:

at least one air dryer unit and a regeneration special dryer, wherein the air dryer unit comprises:

a pair of first and second main air dryer dehumidification tanks in which a dehumidification process and a regeneration process are alternately performed;

a main compressor for compressing wet air to supply the wet air to an inlet line;

a first direction switching valve unit configured to transfer a path of the compressed wet air supplied from the inlet line to the first main air dryer dehumidification tank that performs the dehumidification process to produce compressed dry air or to transfer a path of regenerated air discharged from the second main air dryer dehumidification tank that performs the regeneration process;

a second direction switching valve unit configured to transfer the compressed dry air supplied from the first main air dryer dehumidification tank or transfer regeneration special dry air supplied from a regeneration special dryer to the second main air dryer dehumidification tank;

a heating unit configured to heat the regeneration special dry air supplied from the regeneration special dryer; and

a cooler configured to detach moisture from a dehumidifying agent filled in the second main air dryer dehumidification tank and generate condensate water,

wherein the regeneration special dryer is provided to transfer the regeneration special dry air to the first main air dryer dehumidification tank.

2. The air drying system of claim 1 , wherein a dew point temperature (y) of the regeneration special dry air supplied from the regeneration special dryer is equal to or lower than a dew point temperature (x) of the compressed dry air passing through the second main air dryer dehumidification tank, and the dew point temperature of the compressed dry air is −40 to −100° C.

3. The air drying system of claim 1 , further comprising a moisture separator connected to the cooler and to separate the condensate water.

4. The air drying system of claim 1 , further comprising a first valve and a second valve configured to transfer the path of the regeneration special dry air supplied from the regeneration special dryer to either one direction between a direction to an outlet line or a direction to the heating unit.

5. The air drying system of claim 1 , wherein a regeneration special compressor is provided to pressurize the regeneration special dry air such that a pressure of the regeneration special dry air has a pressure of 0.2 to 0.7 kgf/cm 2 G higher than a pressure of the wet air supplied from the inlet line and to connect a cooled dry air path through the cooler to the inlet line.

6. The air drying system of claim 1 , further comprising a third direction switching valve unit,

wherein the wet air is supplied through the third direction switching valve unit, and wherein the third direction switching valve unit is connected to the main compressor.

7. A method for drying compressed air, comprising:

pressurizing wet air using a main compressor and supplying the compressed wet air to an inlet line;

a dehumidification process in which the compressed wet air supplied from the inlet line is passing through a preset dehumidification tank between a pair of main air dryer dehumidification tanks in which a dehumidifying agent is filled, moisture of the wet air is absorbed in the dehumidifying agent to produce dry air, and the produced dry air is discharged to an outlet line;

a heating process in which separate regeneration special dry air is supplied from a regeneration special dryer and heated by a heating unit installed in a heating line to heat and regenerate the dehumidifying agent that absorbs moisture included in another dehumidification tank that has performed the dehumidification process already while the dehumidification process is progressing, and heated regeneration special dry air is supplied to the another dehumidification tank and passes therethrough, and then, the dehumidifying agent that absorbs the moisture is heated and the moisture is detached;

a cooling process of 1 to 3 hours such that hot air in a wet steam state reaches room temperature in a state in which power of the heating unit is shut off and driving is stopped after the heating process is finished; and

a process of setting a first valve configured to transfer a path of the regeneration special dry air supplied from the regeneration special dryer to either one direction between a direction to the outlet line or a direction to the heating unit such that the regeneration special dry air supplied from the regeneration special dryer is transferred to the outlet line.

8. The method for drying compressed air of claim 7 , wherein the dehumidification process for discharging the produced dry air to the outlet line further comprises blocking the first valve such that the regeneration special dry air supplied from the regeneration special dryer is not transferred to the outlet line.

9. The method for drying compressed air of claim 7 , further comprising:

cooling the wet steam passing through the cooling process through a cooler; and

separating moisture separated through the cooler through a moisture separator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2022
From: KO, IN HO
To: EUNHA AIRTECHNOLOGY CO., LTD.
Reel/Frame 059711/0084 →
Priority Claims (1)
KR 10-2021-0048685 · Apr 14, 2021 · national
Continuity (1)
Related Publication 20220333862A1 · Oct 20, 2022
Cited By (1)
US 12,290,781