Abstract:
A conditioned air delivery system is provided for parked aircraft. The system can accommodate elevated thermal loads while maintaining operation, albeit with reduced flow rates or slightly elevated temperatures. When temperature set points are not reached or cannot be maintained, a second compressor of a refrigeration unit is operated in parallel with a first compressor. When refrigerant pressure becomes excessive, a second fan is operated that is associated with a condenser of the system. Still higher pressures, indicative of higher thermal loads, can cause the system to shut down operation of one of the compressors, reducing the overall cooling capacity of the system, while maintaining the supply of refrigerated air to the aircraft. The airflow may be reduced to maintain an air temperature at or near the desired temperature. Coordination of several parallel and redundant refrigeration units may be provided with a single blower and coordinated control.
Abstract:
EQUIPMENT UPGRADE FOR ARTIFICIAL COOLING OF GRAINS AND SEEDS, refers to the present invention the improvement on an electric equipment that supplies cooling artificial air of grains and seeds in bulk, mobile or stationary, composed by a new automated control system and new shape of the coils that maintain humidity and temperature of the primary air in a safe variation range to the purpose for which is intended, independently of humidity and temperature of the ambient air. Advanced automatic control, allow fine modulation of refrigeration capacity, suction pressure control, control of the variable flow of air in the condensation coil and project parameters that allow safe operation under different climatic conditions and storage structures. These innovations also bring great advantages to control the primary air humidity and avoid freezing of the evaporator's coils.
Abstract:
A refrigerant system is provided with a variable speed drive for at least one of its fluid-moving devices, wherein the variable speed drive is provided by an automated mechanical drive. In the disclosed embodiment, one of the pulleys for driving the fluid-moving device has a variable diameter to vary the speed at which the fluid-moving device is driven. The pulley may include two plates that are biased in one direction by a spring or permanent magnet force, and in an opposed direction by a hydraulic or electro-magnetic force. A control adjusts the amount of hydraulic or electro-magnetic force delivered to the plates to achieve a desired speed for the fluid-moving device.
Abstract:
A refrigerator that is capable of achieving smooth flow of cool air therein and improving cooling efficiency of a cooled evaporator (10) and a control method of the same that is capable of controlling operation time of an evaporator (10) and a fan (20), thereby improving cooling efficiency of the refrigerator are disclosed.
Abstract:
Die Erfindung betrifft ein Kühl- und/oder Gefriergerät mit einem Eisbereiter, wobei das Gerät wenigstens einen dem Eisbereiter zugeordneten Ventilator aufweist, der derart angeordnet ist, dass dem Eisbereiter mittels des Ventilators Kaltluft zugeführt wird.
Abstract:
A refrigerator and a control method for the same are disclosed. Precise temperature control for plural cooling compartments can be achieved so that the cooling compartments can be respectively cooled down in various temperature zones, the temperature in the cooling compartments can be efficiently controlled, and a refrigerant does not remain in the system. Accordingly, the overall performance of the system is enhanced.
Abstract:
A wild frequency avionic refrigeration system and a controller therefore are provided. One embodiment of the refrigeration system includes: a refrigeration LRU including a vapor cycle system with a brushless DC compressor motor, a brushless DC condenser motor, a brushless DC evaporator motor and a plurality of sensors configured to output operating parameter data relative to the vapor cycle system; a power module configured to convert a wild frequency AC input voltage to at least one DC output voltage; a motor control module in communication with the brushless DC compressor, condenser and evaporator motors; and a processing module in communication with the plurality of sensors and the motor control module, wherein the processing module, according to the operating parameter data, outputs control signals to the motor control module for independently driving the brushless DC compressor, condenser and evaporator motors.
Abstract:
A refrigerant system heat exchanger is characterized by improved airflow distribution through the use of at least one of the fans operating in the pulse width modulation or variable speed mode. Improved airflow distribution can be used to alleviate the effects of refrigerant maldistribution, enhance heat exchanger performance, prevent compressor flooding and improve comfort in the conditioned space.
Abstract:
The present invention discloses a defrost operating method for a refrigerator which performs a defrost operation by controlling operations of a compressor and a fan on the basis of a continuous operation time of the compressor and surface temperatures of evaporators to prevent frost from being formed on the evaporators, when cool air is generated in a freezing chamber and a refrigerating chamber by circulating refrigerants through a refrigeration cycle built in a refrigerator main body and forcibly circulated bX rotating the fan. The defrost operating method for the refrigerator can omit a general defrosting heater by performing the defrost operation by using the compressor and the fan. In addition, the defrost operating method for the refrigerator improves heat exchange efficiency and reduces power consumption by efficiently performing the defrost operation.