System and method for controlling an economizer circuit
View Patent ↗A system and method for controlling an economizer circuit is provided. The economizer circuit includes a valve to regulate refrigerant flow between the economizer and the compressor. The valve can be opened to engage the economizer circuit or closed to disengage the economizer circuit based on the output frequency provided to the compressor motor by a variable speed drive and an operating condition of the economizer.
1. A system comprising:
a first circuit comprising a compressor having a motor, a condenser, an expansion valve and an evaporator connected in a closed refrigerant loop;
a second circuit connected to the first circuit, the second circuit comprising a vessel in fluid communication with the condenser, the evaporator and the compressor, and a valve positioned to control flow of refrigerant through the second circuit;
a sensor to measure an operating parameter of the system;
a controller, the controller comprising a connection to receive the measured operating parameter from the sensor and a microprocessor to execute a computer program to generate a signal to control a position of the valve based on the measured operating parameter from the connection; and
the controller generating a signal to incrementally close the valve in response to the measured operating parameter being greater than a predetermined value associated with an operating limit of the measured operating parameter, the predetermined value being less than a corresponding value of the measured operating parameter that initiates a system shutdown.
2. The system of claim 1 wherein the measured operating parameter comprises at least one of a compressor motor temperature, a compressor motor current, a discharge temperature of the compressor or a discharge pressure of the compressor.
3. The system of claim 1 wherein the vessel comprises a heat exchanger.
4. The system of claim 3 wherein the valve is positioned on an inlet to a boiling side of the heat exchanger and operates as an expansion valve.
5. The system of claim 4 further comprises at least one additional sensor positioned between the heat exchanger and the compressor, the at least one additional sensor permits the controller to control valve position on vapor superheat leaving the heat exchanger.
6. The system of claim 5 wherein the at least one additional sensor is selected from the group consisting of a pressure sensor and a temperature sensor.
7. The system of claim 1 wherein the vessel comprises a flash tank and the measured operating parameter comprises a level of liquid in the flash tank.
8. The system of claim wherein the valve comprises a stepper motor to incrementally adjust the position of the valve.
9. The system of claim 1 wherein the controller determines a position of the valve at a predetermined interval.
10. The system of claim 1 wherein:
the predetermined value is a first predetermined value;
the controller generates a signal to inhibit opening the valve in response to the measured operating parameter approaching the first predetermined value;
the controller generates a signal to close the valve in response to the measured operating parameter being above a second predetermined value; and
the controller generating a signal to shut down the compressor in response to the measured operating parameter being greater than a third predetermined value.
11. The system of claim 1 wherein the controller incrementally closes the valve by a fixed amount.
12. The system of claim 1 wherein the controller incrementally closes the valve by a variable amount based on or proportional to a difference between the measured operating parameter and the predetermined value.
13. The system of claim 1 wherein the valve incorporates multiple solenoid valves connected in parallel.
14. The system of claim 13 wherein the multiple solenoid valves provide steps of control using on-off control of the multiple solenoid valves.