Abstract:
A refrigerator, in which a main body includes a refrigerating chamber and a freezing chamber. A cold air generation chamber for the freezing chamber is provided on an uppermost part of the main body, communicates with the freezing chamber, and houses a freezing chamber evaporator. A cold air generation chamber for the refrigerating chamber is provided separate from the cold air generation chamber for the freezing chamber and houses a refrigerating chamber evaporator.
Abstract:
A refrigerator, in which a guide member is arranged at an inlet of a cold air generating compartment that houses an evaporator. The guide member uniformly distributes cold air introduced into the cold air generating compartment to upper and lower portions of the evaporator.
Abstract:
A refrigerator includes a cabinet having a plurality of storage compartments and a cold air generating compartment provided in an upper portion of the cabinet. The cold air generating compartment is in communication with the plurality of the storage compartments and houses a plurality of evaporators, with each evaporator corresponding to a particular storage compartment in the cabinet.
Abstract:
In a refrigerator, cold air discharged from a cold air fan is guided by a guide member such that it flows directly to an evaporator. The guide member reduces flow of air through a gap between an inner surface of a cold air generating compartment and the evaporator. The guide member also includes a drainage portion configured to guide defrost water generated at the cold air fan to a position beneath the evaporator.
Abstract:
A refrigerator includes an air guide provided with a defrost water hole and inclined with respect to a centrifugal direction of a cold air fan. The air guide guides cold air discharged from the cold air fan to a guide duct and also guides, to the defrost water hole, defrost water falling in the centrifugal direction of the cold air fan.
Abstract:
A refrigerant leak-preventive structure in a heat exchanger is described. The refrigerant leak-preventive structure includes a tube group having refrigerant leak-preventive grooves recessed at ends of the fin-tubes group, and headers having refrigerant leak-preventive projections formed by double injection molding solution introduced into and cooled in the refrigerant leak-preventive grooves when being coupled with the both ends of the tube group by a double injection molding.
Abstract:
A refrigerator, in which an evaporator and a cold air fan are horizontally arranged in a cold air generating compartment positioned at an upper portion of the refrigerator. The evaporator and the cold air fan extend along a depth of the refrigerator in forward and rearward directions of the refrigerator.
Abstract:
A refrigerator, in which a main body includes a refrigerating chamber and a freezing chamber. A cold air generation chamber for the freezing chamber, a cold air generation chamber for the refrigerating chamber, and a machine room are provided on an uppermost part of the main body to allow for increased space in the refrigerating and freezing chambers.
Abstract:
A refrigerator is provided. The refrigerator may include first and second refrigerant paths that separately distribute refrigerant, a first cooling chamber connected with a first cold air duct, a second cooling chamber connected with a second cold air duct, and a third cooling chamber connected with a third cold air duct. Cold air generated by a first evaporator is provided to the first cold air duct to cool the first cooling chamber, cold air generated by a second evaporator, which receives refrigerant from the first evaporator, is provided to the second cold air duct to provide concentrated cooling to the second cooling chamber, and cold air generated by a third evaporator is provided to the third cold air duct to cool the third cooling chamber.