Abstract:
A refrigerator includes an air guide that is provided with a defrost water hole and that is inclined toward the defrost water hole. 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 generated at the cold air fan.
Abstract:
A refrigerator is provided. The refrigerator may include a cold air generation chamber provided in a body of the refrigerator, the cold air generation chamber having an evaporator installed therein. A cold air duct may form a path through which cold air generated in the cold air generation chamber is circulated to a freezer compartment, and a quick freezer compartment. The quick freezer compartment may be connected with the cold air duct, and may be positioned substantially nearer to the evaporator than the freezer compartment. A damper may be installed in the cold air duct to selectively shut off the flow of cold air to the freezer compartment. The quick freezer compartment may be quickly cooled using cold air directly supplied from the cold air generation chamber. Furthermore, cold air may be directed into the quick freezer compartment by selectively shutting off the supply of cold air into the freezer or refrigerator compartment.
Abstract:
Disclosed is a refrigerator which maximally obtains an internal volume and efficiently performs heat radiation of the inner area of a machinery chamber (100) provided in the upper portion of a main body of the refrigerator.
Abstract:
The present invention provides a refrigerator which enable to make effective arrangement elements in a machine room on a top of the refrigerator, and to absorb and cut off noise and vibration from the elements enabling quiet operation. To do this, the refrigerator includes a body formed to have a freezing chamber and a refrigerating chamber, a machine room formed on a top of the body to have a front region and a rear region, and a vibration isolating member for attenuating vibration in the machine room.
Abstract:
A refrigerator is disclosed. The refrigerator includes a cabinet comprising a freezing compartment and a refrigerating compartment, a cold air generation chamber for the freezing compartment provided in an upper portion of the cabinet, in communication with the freezing compartment, the cold air generation chamber configured to accommodate an evaporator for the freezing compartment, a machine room provided in an upper portion of the cabinet, a cold air generation chamber for the refrigerating compartment independently provided from the cold air generation chamber for the freezing compartment, the cold air generation chamber for the refrigerating compartment configured to accommodate an evaporator for the refrigerating compartment, and a defrosted-water treating part configured to receive defrosted-water generated from the evaporator for the freezing compartment and the evaporator for the refrigerating compartment.
Abstract:
A refrigerator and a method for manufacturing the same. The refrigerator includes a main body which has a specified space and a open front surface, and a plate having a specified thickness, in which the plate is inserted into the main body through one side of the open front surface of the main body to sectionalize the space provided in the main body.
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, 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:
The present invention relates to a defroster, and more particularly, to a defroster in a refrigerator in which a damper mounted to an inlet to a circulating duct (60) controls air to flow in a reverse direction toward an evaporator (20) for maximizing defrosting efficiency by using not only radiant heat but also convective heat. For this, the defroster in a refrigerator includes an evaporator (20), a heater (10) for defrosting the evaporator (20) by radiation, and flow control means (50) for controlling air circulated by a fan (30) to flow in a reverse direction toward the evaporator (20) in the defrosting.
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.