Refrigerated dryer power saving controls
A control system for controlling a refrigerated dryer of a gas compressor system includes a controller and a flow sensor and can be selectively operated in a power saving mode in which the controller shuts down a refrigerant compressor included in the dryer system when the flow sensor indicates that no compressed gas is flowing through the dryer. The control system uses input from a temperature sensor to determine whether to activate the compressor regardless of the flow of compressed gas through the dryer.
1. A refrigerated gas dryer for a gas compressor system comprising: a refrigerant circuit including a compressor, a condenser, and an evaporator; a flow sensor structured to sense gas flow in a compressed gas circuit of the gas compressor system, the compressed gas circuit in thermal communication with the evaporator; a temperature sensor structured to provide temperature information of the evaporator; and a controller in communication with the flow sensor, the temperature sensor and the compressor, wherein the controller is configured to activate and deactivate the compressor based on sensed outputs from the flow sensor and the temperature sensor so that the compressor is deactivated in response to both a sensed flow of compressed gas through the compressed gas circuit meeting a first condition and a sensed temperature of the evaporator meeting a second condition;
wherein the evaporator defines a compressed gas passage, and wherein the first condition is characterized by no flow of the compressed gas through the compressed gas passage defined by the evaporator and the second condition is characterized by a temperature of the evaporator at or below a lower limit.
2. The refrigerated gas dryer of claim 1 , wherein the controller is configured to activate the compressor at a third condition characterized by the flow sensor indicating the presence of compressed gas in the compressed gas passage defined by the evaporator or activate the compressor at a fourth condition characterized by the temperature sensor indicating that the temperature of the evaporator is at or above an upper limit.
3. The refrigerated gas dryer of claim 1 , wherein the flow sensor is in operable communication with at least one of an inlet or an outlet of the compressed gas passage defined by the evaporator.
4. The refrigerated gas dryer of claim 1 , wherein the dryer is operably connected to a gas compressor and the gas is compressed by the gas compressor.
5. The refrigerated gas dryer of claim 4 , wherein the dryer includes a bypass valve configured to place an output line of the compressor in fluid communication with an output line of the evaporator.
6. The refrigerated gas dryer of claim 1 , wherein the controller is operable in first and second modes, wherein the first mode of operation is non-cyclic and the second mode deactivates the compressor under predetermined conditions.