Claims
- 1. A variable rotational speed oil free screw compressor, comprising:a low-pressure stage compressor body and a high-pressure stage compressor body, which are variable in rotational speed; a pipe connecting said high-pressure stage compressor body and said low-pressure stage compressor body; and a first blow-off valve for blowing off compressed air from said pipe connecting said high and low pressure stage compressor bodies to the atmosphere when the low-pressure stage compressor body is operated at a lower rotational speed in a no-load operation.
- 2. The variable rotational speed oil free screw compressor according to claim 1, further comprising an inter-cooler provided along said pipe connecting said high-pressure stage compressor body and said low-pressure stage compressor body, and an after-cooler provided on a discharge side of said high-pressure stage compressor body.
- 3. The variable rotational speed oil free screw compressor according to claim 2, further comprising a pressure detector provided on the discharge side of said high-pressure stage compressor body for detecting pressure of high-pressure air discharged from said high-pressure stage compressor body, and a controller provided to receive a signal of discharge pressure detected by said pressure detector and output a control signal for controlling said first blow-off valve.
- 4. The variable rotational speed oil free screw compressor according to claim 3, further comprising an electric motor for rotatingly driving said low-pressure stage compressor body and said high-pressure stage compressor body, and an inverter for driving said electric motor, and wherein said controller controls said inverter based on a signal of discharge pressure detected by said pressure detector.
- 5. The variable rotational speed oil free screw compressor according to claim 1, further comprising a pressure detector provided on the discharge side of said high-pressure stage compressor body for detecting pressure of high-pressure air discharged from said high-pressure stage compressor body, and a controller provided to receive a signal of discharge pressure detected by said pressure detector and output a control signal for controlling said first blow-off valve.
- 6. The variable rotational speed oil free screw compressor according to claim 5, further comprising an electric motor for rotatingly driving said low-pressure stage compressor body and said high-pressure stage compressor body, and an inverter for driving said electric motor, and wherein said controller controls said inverter based on a signal of discharge pressure detected by said pressure detector.
- 7. The variable rotational speed oil free screw compressor according to claim 1, further comprising a suction throttle valve provided on a suction side of said low-pressure stage compressor body, and a second blow-off valve provided on a discharge side of said high-pressure stage compressor body, said second blow-off valve interconnecting with said suction throttle valve.
- 8. The variable rotational speed oil free screw compressor according to claim 1, further comprising an after-cooler provided on a discharge side of said high-pressure stage compressor body, a pipe connecting said high-pressure stage compressor body to said after-cooler, and a second blow-off valve for blowing off compressed air from said pipe connecting said high-pressure stage compressor body to said after-cooler.
- 9. A method of controlling a variable rotational speed oil free screw compressor adapted to operate in accordance with a volume of consumed air on a usage side while changing rotational speeds of a low-pressure stage compressor body and a high-pressure stage compressor body, the method comprising the steps of: performing a load operation to change rotational speeds of said low-pressure stage compressor body and said high-pressure stage compressor body in a region, in which a volume of consumed air based on pressure detected by a pressure detector provided on a discharge side ranges from a maximum air volume to a preset volume of air; operating said low-pressure stage compressor body and said high-pressure stage compressor body at lower rotational speeds in a no-load operation, in which a volume of consumed air is substantially zero, and blowing off compressed air through a first blow-off valve from a pipe connecting said high-pressure stage compressor body and said low-pressure stage compressor body; and repeating said load operation and said no-load operation when a volume of consumed air is equal to or smaller than a set air volume.
- 10. The method of controlling an oil free screw compressor operating at variable speeds, according to claim 9, wherein during said load operation, the rotational speeds of said low-pressure stage compressor body and said high-pressure stage compressor body are changed substantially in proportion to a volume of consumed air.
- 11. The method of controlling a variable rotational speed oil free screw compressor, according to claim 10, wherein compressed air discharged from said high-pressure stage compressor body is blown off during said no-load operation.
- 12. The method of controlling an oil free screw compressor operating at variable speeds, according to claim 9, wherein compressed air discharged from said high-pressure stage compressor body is blown off during said no-load operation.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-337250 |
Oct 2000 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
This is a continuation of application Ser. No. 09/819,999, filed Mar. 29, 2001, now U.S. Pat. No. 6,561,766.
US Referenced Citations (10)
Foreign Referenced Citations (2)
Number |
Date |
Country |
2847311 |
Sep 1979 |
DE |
1082391 |
Mar 1998 |
JP |
Continuations (1)
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Number |
Date |
Country |
Parent |
09/819999 |
Mar 2001 |
US |
Child |
10/389769 |
|
US |