Abstract:
A fan plenum for a refrigerated merchandiser, in which the refrigerated merchandiser includes a case defining a product display area and a lower flue, a first air passageway, and a second air passageway, and in which the first air passageway and second air passageway are in fluid communication with the lower flue and with the product display area, includes a top wall including a fan aperture for receiving a fan having a plurality of fan blades. The fan plenum further includes a side wall and a plenum base. An airflow divider partitions the fan plenum into a first duct and a second duct. The first duct is fluidly couplable with the first air passageway and the second duct is fluidly couplable with the second air passageway.
Abstract:
A cooling unit having, on two sides, supporting C-shaped lateral frames. The lateral frames are formed from frame profiles having a rear-sided vertical profile and a lower and an upper forward-projecting horizontal profile. A rear wall group having a heat-insulating outer covering is mounted on the vertical profiles, a base group is mounted on the lower horizontal profile and an upper group is mounted on the upper horizontal profile, and the groups surround a cooling chamber from behind, below and above. The construction has at least the outer covering of the rear wall group arranged on the inner side, facing the cooling chamber, of the vertical profile.
Abstract:
A refrigerated case includes a housing including an interior display volume and a heat exchanger. The heat exchanger includes a circuit defined by a heat exchanger section including a plurality of tubes that define a flow path, a reheat section including a reheat tube, and a connecting tube fluidly connecting the flow path of the heat exchanger section with the reheat tube. Air flows over the plurality of tubes of the heat exchanger section and rejects heat to a refrigerant flowing through the plurality of tubes to heat the refrigerant. The heated refrigerant then flows through the reheat tube. As the air passes over the reheat tube, the air accepts heat from the heated refrigerant flowing through the reheat tube.
Abstract:
There is disclosed a cooling device capable of simplifying attachment of a blower for a condenser and a structure of a drain path from an evaporator, and the cooling device includes a condenser constituting a part of a refrigerant circuit, a condenser blower which air-cools this condenser, and a fan casing attached to the condenser and provided with the condenser blower. The fan casing is integrally provided with a bracket part for attaching a motor of the condenser blower.
Abstract:
A temperature-controlled case is provided including a base having a deck, a tower having a cavity, and an improved air distribution system. The air distribution system provides enhanced air flow throughout the case and a more balanced cooling profile to maintain products at a more uniform temperature. The air distribution system may include a duct and/or one or more air diverting devices, such as scoops, to permit a first portion of an air flow to be received into the tower and to direct second portion toward the deck. Sub-portions of the first portion may be directed at the rear portions and the front portions of one or more product supporting surfaces. The tower may include an exterior wall having openings through which air is directed by diffusers. The exterior wall may be faceted and the cavity may be segmented into channels corresponding to the facets.
Abstract:
A refrigerated case (20) has a housing containing an interior volume (36) for storing items. Along an air flow path (510) through the case, a refrigerant-to-air heat exchanger (60) has an evaporator section (112) and a reheat section (114). A preconditioning section (110) may be upstream of the evaporator section (112) and the evaporator section is upstream of the reheat section (114). Along a refrigerant flow path (520), the reheat section (114) is downstream of the preconditioning section (110) (if any) and upstream of the evaporator section (112) and an expansion device (62) is between the reheat (114) and evaporator (112) sections.
Abstract:
Systems and methods are disclosed for maintaining a low internal temperature in items held in an open container system. Example embodiments generate a stationary, insulating layer of cold air that covers the exposed surface and slows the transfer of heat from the environment. One example embodiment includes a storage container employing a free convection cooling mechanism adjacent to an exposed surface of a perishable. The free convection cooling mechanism acts to chill the air immediately above the exposed surface, thereby creating an insulating layer of cold air. By raising or lowering the temperature of this layer, the example embodiment may further be able to raise or lower the internal temperature of the perishable.
Abstract:
A cooling apparatus for such things as convenience foods and beverages has a tilted, open faced bed from which persons may select objects. The apparatus is self-contained, and may run from a standard single phase electrical outlet. It may be carried by two people, and is suitable for mounting either on its own base in a recess in a checkout counter or other similar installation. The open faced be may have a channel depth of section that is relatively deep as compared with to its width, the flow path length, or the depth of the flow released to run along the channel, thereby tending to discourage mixing of the cooled flow with the surrounding ambient environment. The apparatus may include a two piece molded housing that defines the structural skeleton for both the cooling bed and a lodgement for various elements of the cooling system. The bed may include a porous deck, or drain panels, that may tend to encourgare cooled air to drain toward a cooling plenum intake panel. The bed may include a pooling region adjacent to the air intake plenum in which cooler, less buoyant air may collect.
Abstract:
A transportable cooler comprises a bottom panel having lateral and transverse edge portions and a plurality of upright panels attached thereto and extending upward therefrom forming a vessel with an interior adapted to hold fluid. The plurality of upright panels includes a front panel having a front surface and plurality of pockets extending from the front surface to the interior of the vessel. A lid provides access to the interior for filling the cooler with ice. The ice cools each pocket to chill a beverage container inserted in the pocket.