The accompanying drawing shows in:
FIG. 1 an arrangement according to the invention with a pressure-regulating valve controllable by an input signal
FIG. 2 another arrangement according to the invention with a pressure-regulating valve controllable by a three-position controller.
The screw compressor according to the arrangement pursuant to the patent (FIG. 1) is driven at the drive-shaft end 5 forming a fixed part of the male rotor 2 via a coupling not shown. The interlobe spaces of the male rotor 2 and of the female rotor 3 form working chambers to which on the suction side adjoin inlet ports 6. Due to rotation of the rotors at the drive-shaft end 5, the volume of an interlobe space considered changes. Radial bearings 1 are arranged on the suction side of the shaft shoulders, while radial bearings 9 and axial bearings 10 are arranged on the discharge side of the shaft shoulders. For compensation of the axial thrust on the male rotor 2 exerted by the gas force due to compression of the working fluid, a rotating disk, the balancing piston 11, is arranged sealing hydraulically and contactlessly at its external diameter. On one side, it is loaded with pressurized oil directly coming from the oil separator arranged on the discharge side, or the oil is brought up to a higher pressure by an oil pump. On the other side of the balancing piston, there is nearly suction pressure. Thus, the force of the balancing piston 11 counteracts the gas force on the male rotor 2 in axial direction. As a result, the axial bearings 10 are unloaded. According to the embodiment of the invention shown the regulating device 12 is arranged as part of a controlled system. The control algorithm calculates the pressure on the balancing piston 11 depending on the pressure on the compressor suction side and on the torque at the drive-shaft end 5 (essentially from motor current in connection with both motor voltage and speed entered). Pressure and motor current are passed over to the control at the interfaces 13, 14. The regulating device 12 delivers the output signal 16 for the proportional pressure-regulating valve 17. According to the control characteristics of the proportional pressure-regulating valve 17, there is a proportional relationship between the input signal and the pressure at the outlet of the proportional pressure-regulating valve 17. It increases the pressure on the balancing piston 11 in case the regulating device 12 has calculated this from the algorithm and given a corresponding output signal. It decreases the pressure on the balancing piston 11 when the regulating device 12 calculates a lower pressure for the balancing piston.
In the arrangement according to the invention (FIG. 2), a pressure-measuring point 18 is located in the supply line between the proportional pressure-regulating valve 17 and the connection for admission of pressure to the balancing piston. The output signal of the regulating device 12 and the output signal 19 of the pressure-measuring point 18 are led to a three-position controller preferably arranged in the regulating device 12 and compared. Depending on the result of the comparison, the proportional pressure-regulating valve 17 will be opened more, when the pressure at the pressure-measuring point 18 lies below the calculated value of the regulating device 12, or will be closed more, when the pressure at the pressure-measuring point 18 exceeds the calculated value of the regulating device 12.