Refrigeration appliance with a fluid reservoir
10126044 ยท 2018-11-13
Assignee
Inventors
Cpc classification
F25D2323/122
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D23/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D17/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D11/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F25D23/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A refrigeration appliance, in particular a household refrigeration appliance, includes a heat-insulating wall which delimits a cooled storage chamber, a reservoir embedded or let in the wall and a conduit for a heat transfer fluid. Part of the conduit forms a first heat exchanger which is disposed in thermal contact with the reservoir. A shut-off element can be switched between a position allowing circulation of the heat transfer fluid and a position blocking circulation.
Claims
1. A refrigeration appliance or domestic refrigeration appliance, comprising: a heat-insulating wall delimiting a cooled storage chamber; a reservoir embedded in said wall; a conduit for a heat transfer fluid, said conduit being a closed heat transfer circuit, part of said conduit forming a first heat exchanger disposed in thermal contact with said reservoir, and said conduit having a second part forming a second heat exchanger disposed in thermal contact with said storage chamber; and a shut-off element to be switched between a position allowing circulation and a position blocking circulation of the heat transfer fluid in said conduit, said shut-off element including a water-filled expandable chamber.
2. The refrigeration appliance according to claim 1, wherein said heat transfer fluid is a liquid.
3. The refrigeration appliance according to claim 1, wherein said reservoir has a face facing said storage chamber, and said first heat exchanger is disposed on said face of said reservoir facing said storage chamber.
4. The refrigeration appliance according to claim 1, wherein said heat-insulating wall has an inner face, and said second heat exchanger is disposed on said inner face of said heat-insulating wall.
5. The refrigeration appliance according to claim 1, wherein said second heat exchanger is disposed above said first heat exchanger.
6. A refrigeration appliance or domestic refrigeration appliance, comprising: a heat-insulating wall delimiting a cooled storage chamber, said heat-insulating wall having an inner skin and an insulating material layer; a reservoir embedded in said wall; a conduit for a heat transfer fluid, said conduit being a closed heat transfer circuit, part of said conduit forming a first heat exchanger disposed in thermal contact with said reservoir and said conduit having a second part forming a second heat exchanger disposed in thermal contact with said storage chamber, said second heat exchanger being disposed between said inner skin and said insulating material layer of said heat-insulating wall; a shut-off element to be switched between a position allowing circulation and a position blocking circulation of the heat transfer fluid in said conduit.
7. The refrigeration appliance according to claim 6, which further comprises a pump disposed in said closed heat transfer circuit.
8. The refrigeration appliance according to claim 7, wherein said pump forms said shut-off element.
9. The refrigeration appliance according to claim 6, which further comprises a controlled valve forming said shut-off element.
10. A refrigeration appliance or domestic refrigeration appliance, comprising: a heat-insulating wall delimiting a cooled storage chamber; a reservoir embedded in said wall; a conduit for a heat transfer fluid, said conduit being a closed heat transfer circuit, part of said conduit forming a first heat exchanger disposed in thermal contact with said reservoir, and said conduit having a second part forming a second heat exchanger disposed in thermal contact with said storage chamber; and a shut-off element to be switched between a position allowing circulation and a position blocking circulation of the heat transfer fluid in said conduit; the heat transfer fluid having a freezing point, said storage compartment being configured for being cooled to a setpoint temperature below the freezing point of the heat transfer fluid, and said shut-off element being formed by at least one segment of said heat transfer circuit being closed off by freezing the heat transfer fluid.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
(1) Further features and advantages of the invention will emerge from the description of exemplary embodiments which follows with reference to the accompanying figures, in which:
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DESCRIPTION OF THE INVENTION
(7) The refrigeration appliance shown in a schematic section in
(8) An ice maker 5 is arranged directly below the evaporator chamber 4 in the storage chamber 3 so that it can be supplied directly with cold air from the evaporator chamber 4. Positioned below the ice maker 5 is a collector 6, which catches the ice cubes produced by the ice maker 5. A spiral conveyor 7 at the base of the collector 6 serves to convey ice cubes to an outlet 8 at an end of the collector 6 close to the door.
(9) A recess 12 is formed in a central region of the door 2, in which a user can position a container in order to dispense ice from the collector 6 therein, without opening the door 2. An upper wall of the recess 12 is located below the outlet 8 of the collector 6. A tubular or funnel-type passage, also referred to as the ice chute 9, extends through this wall. Arranged at the lower end of the ice chute 9 is a movable flap 10, which blocks the ice chute 9 in an airtight manner in the closed position so that warm air from the recess 12 cannot pass through the ice chute 9 into the storage chamber 3.
(10) Arranged on the outer face of the flap 10 is a water outlet 11, by way of which a container positioned in the recess 12 can also be filled with cold water from a reservoir 13. The reservoir 13 is let into a wall of the recess 12, in this instance a rear wall, and is separated from both the recess 12 and the storage chamber 3 by a heat-insulating layer 14, so that during stationary operation the temperature in the reservoir 13 is between the temperature of the storage chamber 3 and that of the environment.
(11) The reservoir 13 is connected to a domestic water supply line (not shown) by way of a conduit 15 that extends through the door 2 and walls of the body 1. When water is drawn from the reservoir 13 into a container in the recess 12, a solenoid valve 16 in the conduit is opened so that cold water from the reservoir 13 is displaced by relatively warm water flowing in behind it from the domestic water supply line. If this water could only output its heat to the storage chamber 3 by way of the heat-insulating layer 14, it would be a long time before it was possible to draw off cold water again. To avoid this, it is necessary to be able to intensify the exchange of heat between the reservoir 13 and the storage chamber 3. However it must also be possible, if necessary, to stop said flow of heat again in order to prevent the water in the reservoir 13 freezing.
(12) To this end two heat exchangers 17, 18 are connected to one another in a heat transfer medium circuit 22 in the door 2, with a heat transfer medium liquid circulating therein. One of these, also referred to here as the cold heat exchanger 17, is arranged on an inner face of the door 2 in close thermal contact with the storage chamber 3. It is preferably concealed behind an inner skin of the door 2, which is generally made of deep-drawn plastic. To allow a fast exchange of heat, the cold heat exchanger 17 can have a conduit with a flattened cross section resting against the inner skin; alternatively or additionally an adhesive layer in a space delimited by the outer skin and a rounded section of the pipe can enlarge the surface on which an intensive exchange of heat is possible. The freezing point of the heat transfer medium liquid is below the lowest setpoint temperature that can be set for the storage chamber 3, so the heat transfer medium liquid in the cold heat exchanger 17 cannot freeze. The heat transfer medium liquid can be for example an antifreeze solution for use in motor vehicle cooling systems.
(13) The other, warm heat exchanger 18 is in contact with the reservoir 13. The warm heat exchanger 18 here is located on a face of the reservoir 13 facing the storage chamber 3 in order to be insulated from the environment by the reservoir 13 itself and thus to avoid unnecessary heat absorption from the environment.
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(15) The heat exchangers 17, 18 and conduits 19, 20 can be formed as cohesive single parts from a pipe or hose made of metal or plastic, extending in vertical meanders as shown in
(16) The pump 21 is connected to a temperature sensor 23, which is arranged on an upper face of the reservoir 13. The temperature sensor 23 starts the pump 21 when a detected high temperature or temperature rise indicates that fresh water has flowed in from the domestic water supply line and switches the pump 21 off as soon as the detected temperature drops below a limit temperature of several degrees above 0 C.
(17) The design of the pump 21 is such that it blocks the circulation of heat transfer medium liquid through the heat exchangers 17, 18 when switched off. The pump 21 used could therefore be a gear wheel pump.
(18) If for example a rotary pump is used or generally a pump which does not block the heat transfer medium circuit 22 when stopped, a valve should be provided in the heat transfer medium circuit, which serves as a shut-off unit when the pump is switched off. This reliably prevents the reservoir 13 being cooled by way of the heat transfer medium circuit 22 if the temperature of the water in the reservoir 13 is close to 0 C.
(19) In the embodiment in
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REFERENCE CHARACTERS
(22) 1 Body 2 Door 3 Storage chamber 4 Evaporator chamber 5 Ice maker 6 Collector 7 Spiral conveyor 8 Outlet 9 Ice chute 10 Flap 11 Water outlet 12 Recess 13 Reservoir 14 Heat-insulating layer 15 Conduit 16 Solenoid valve 17 Heat exchanger 18 Heat exchanger 19 Conduit 20 Conduit 21 Pump 22 Heat transfer medium circuit 23 Temperature sensor 24 Valve 25 Heat conducting body 26 Inner skin 27 Constriction 28 Layer 29 Chamber 30 Piston