Abstract:
A cooling arrangement for a kitchen provided for installation in a means of transport comprises a cooling circuit which can have a cooling medium flowing through it and in which a condenser and an evaporator are arranged. The condenser is accommodated in a condenser housing and is arranged in a first installation space which is intended to form a first sub-region of the kitchen. The evaporator is accommodated in an evaporator housing formed separately from the condenser housing, and is arranged in a second installation space which is intended to form a second sub-region of the kitchen.
Abstract:
A cooling arrangement for a galley for installation in a transport apparatus includes a cooling energy consumer with a housing with a cooling fluid inlet opening and a cooling fluid outlet opening for the supply and removal of a cooling fluid to and from the housing. A cooling compartment includes an interior for taking up the cooling energy consumer, a cooling air inlet for supplying cooling air to the cooling compartment and a cooling air outlet for removing cooling air from the cooling compartment. The cooling air inlet can conduct the cooling air supplied to the interior over an outer surface of the cooling energy consumer. A conveying device is configured to conduct the cooling air supplied to the interior and conducted over the outer surface of the cooling energy consumer through the housing of the cooling energy consumer via the cooling fluid inlet opening and cooling fluid outlet opening.
Abstract:
A galley cooling system for an aircraft includes a trolley compartment s which includes a cooling unit. A first cooling fluid manifold connects to a cooling fluid outlet or a cooling fluid inlet and has a first cooling fluid manifold wall defining a portion of a lateral boundary of a receiving space of the trolley compartment. A first cooling fluid opening is in the first cooling fluid manifold wall connecting the first cooling fluid manifold to the receiving space of the trolley compartment. A second cooling fluid manifold connected to the cooling fluid inlet or outlet of the cooling unit has a second cooling fluid manifold wall defining a portion of an upper boundary of the receiving space of the trolley compartment, a second cooling fluid opening in the second cooling fluid manifold wall to connect the second cooling fluid manifold to the receiving space of the trolley compartment.
Abstract:
A cooling system with a heat exchanger, which is designed or configured for through-flow of a coolant and a fluid to be cooled, a fluid line, which is designed or configured for through-flow of fluid emerging from the heat exchanger, and a conveying device, which is designed or configured to convey the fluid through the heat exchanger and the fluid line. A control device is designed or configured to control the conveying device in such a manner that the fluid flows through the heat exchanger and the fluid line in the same direction when the cooling system is in a normal mode and when in a de-icing mode. In addition, there is a water separator disposed in the fluid line.