Multi-duct assembly, refrigerator including the multi-duct assembly, and method of controlling the refrigerator
Disclosed are a multi-duct assembly, a refrigerator which includes the multi-duct assembly, and a method of controlling the refrigerator. The multi-duct assembly has a new structure for overcoming limitations of a related art. The multi-duct assembly may adjust opening states and sizes of cold air outlets formed at a multi-duct panel by moving a variable duct panel disposed on a rear surface of the multi-duct panel upward or downward.
1. A refrigerator comprising:
a body;
a storage compartment disposed in the body and comprising a plurality of storage cells;
a multi-duct assembly disposed on a surface of the storage compartment and comprising a plurality of cold air outlets, a cold air outlet of the plurality of cold air outlets located at a position corresponding to each of the storage cells;
an input portion configured to receive an input indicative of a cooling mode of the storage compartment; and
a controller configured to adjust an area of at least one of the cold air outlets in the multi-duct assembly according to the cooling mode,
wherein, when the cooling mode is an automatic cooling mode, the controller is configured to control the multi-duct assembly to open all the cold air outlets when a number of storage cells having an internal temperature that exceeds a preset reference temperature is greater than or equal to a preset reference number of storage cells, wherein the preset reference number of storage cells is less than a total number of storage cells in the storage compartment.
2. The refrigerator of claim 1 , wherein the multi-duct assembly comprises:
a multi-duct panel disposed on the surface of the storage compartment, the multi-duct panel including the cold air outlets;
a variable duct panel disposed on the multi-duct panel, the variable duct panel being slidably movable relative to the multi-duct panel and configured to open and close one or more of the cold air outlets; and
a driving unit configured to move the variable duct panel relative to the multi-duct panel.
3. The refrigerator of claim 2 , wherein the variable duct panel includes at least one adjustable cold air opening.
4. The refrigerator of claim 3 , wherein an area of the at least one adjustable cold air opening is larger than or equal to an area of an associated cold air outlet on the multi-duct panel.
5. The refrigerator of claim 3 , wherein corners of the at least one adjustable cold air opening and the associated cold air outlet include curves having a preset curvature.
6. The refrigerator of claim 1 , wherein, when the cooling mode is an automatic cooling mode, the controller is configured to open a cold air outlet corresponding to a storage cell having an internal temperature greater than or equal to the preset reference temperature.
7. The refrigerator of claim 1 , wherein, when the cooling mode is an intensive cooling mode, the controller is configured to control the multi-duct assembly to open only a cold air outlet corresponding to a storage cell selected from among the storage cells to be an object of intensive cooling.
8. The refrigerator of claim 1 , wherein, when the cooling mode is an automatic cooling mode, the controller is configured to control the multi-duct assembly to open only a cold air outlet corresponding to a storage cell having an internal temperature that exceeds the preset reference temperature when the number of storage cells having internal temperatures that exceed the preset reference temperature is less than the preset reference number.
9. The refrigerator of claim 1 , wherein the controller controls the multi-duct assembly to allow an opening area of the cold air outlet to be an area corresponding to an amount of cold air which flows into the storage cell.
10. The refrigerator of claim 2 , wherein the driving unit comprises:
a pinion gear engaged with a rack gear formed on one side of the variable duct panel; and
a driving motor which rotates the pinion gear.