Integrated cooling in automated tape libraries
US-2017323666-A1 · Nov 9, 2017 · US
US10172259B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10172259-B2 |
| Application number | US-201113261402-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 9, 2011 |
| Priority date | Mar 1, 2010 |
| Publication date | Jan 1, 2019 |
| Grant date | Jan 1, 2019 |
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The invention relates to a method for regulating a cooling device fitted in or to a switchgear cabinet, by means of a regulating device, wherein the temperature of the switchgear cabinet interior air is detected and an interior fan assigned thereto for generating an interior air flow through an evaporator and providing cooling air is switched on if the detected temperature of the switchgear cabinet interior air exceeds an upper setpoint temperature, and is switched off if the detected temperature falls below a lower setpoint temperature, and the invention relates to an apparatus for carrying out the method. A reduced energy consumption and an increased service life with reliable operation are achieved by virtue of the fact that after the interior fan has been switched off owing to the lower setpoint temperature being undershot, a timekeeping is started and the interior fan is switched on after a predetermined first time duration for a predetermined second time duration and is then switched off again if the detected temperature still falls below the upper setpoint temperature, as long as the second time duration proceeds, that the intermittent time-controlled mode of operation of the interior fan is cyclically repeated until the upper setpoint temperature is exceeded, after which the interior fan is operated in continuous operation, and that the timekeeping and the intermittent time-controlled mode of operation of the interior fan are started anew if the lower setpoint temperature is undershot.
Opening claim text (preview).
The invention claimed is: 1. A method for regulating a cooling device fitted in or to a switchgear cabinet with built-in components that produce dissipated heat mounted within the interior of the switchgear cabinet, the built in components comprising device fans for regulating airflow within the switchgear cabinet, the cooling device including an interior fan for generating an interior air flow through an evaporator and providing cooling air to the interior of the switchgear cabinet, comprising: detecting the temperature of the air within the interior of the switchgear cabinet; and regulating the cooling device in response to the detected temperature such that if the detected temperature of the switchgear cabinet interior air exceeds an upper setpoint temperature, the interior fan of the cooling device is switched on, and if the detected temperature falls below a lower setpoint temperature, the interior fan of the cooling device is switched off, wherein, when the interior fan has been switched off owing to the detected temperature falling below the lower setpoint temperature, an intermittent time-controlled mode of operation is started and the interior fan is switched on after a predetermined first time duration following the start of the intermittent time-controlled mode of operation, and remains on for a second predetermined time duration following the end of the first time duration, and is switched off again if the detected temperature is still below the upper setpoint temperature at the end of the second time duration, and wherein the intermittent time-controlled mode of operation of the interior fan is cyclically repeated until the upper setpoint temperature is exceeded, after which the interior fan is operated in continuous operation, and wherein the intermittent time-controlled mode is started anew if the detected temperature falls below the lower setpoint temperature, and wherein airflow within the switchgear cabinet is supported by the device fans independent of the interior fan being switched on or off. 2. The method of claim 1 , wherein the cooling device further comprises a compressor and an external fan, both of which are switched on and off in accordance with predetermined setpoint temperatures, even during the intermittent time-controlled mode of operation. 3. An apparatus for performing the method of claim 2 comprising a coolant circuit, wherein the coolant flows through a compressor and is cooled in a condenser arranged in an ambient air circuit, and comprising a regulating device by which the interior fan is switched on if the detected temperature in the interior air flow exceeds an upper setpoint temperature, and is switched off if the detected temperature falls below a lower setpoint temperature, wherein a time control unit is included, by which the intermittent time-controlled mode of operation may be triggered if the detected temperature falls below the lower setpoint temperature. 4. The apparatus of claim 3 , wherein operation of the time control unit is predetermined by a program. 5. An apparatus for performing the method of claim 1 , comprising a coolant circuit, wherein the coolant flows through a compressor and is cooled in a condenser arranged in an ambient air circuit, and comprising a regulating device by which the interior fan is switched on if the detected temperature in the interior air flow exceeds an upper setpoint temperature, and is switched off if the detected temperature falls below a lower setpoint temperature, wherein a time control unit is included, by which the intermittent time-controlled mode of operation may be triggered if the detected temperature falls below the lower setpoint temperature. 6. The apparatus of claim 5 , wherein the time-controlled mode of operation within the time control unit is predetermined by a program. 7. The method of claim 1 , wherein the cooling device further comprises a temperature sensor arranged within a subspace of the cooling device in flow communication with the switchgear interior and close to the interior fan, the temperature sensor detecting the temperature of the air within the interior of the switchgear cabinet by detecting the temperature of the air flowing from the interior of the switchgear cabinet into the subspace of the cooling device. 8. The method of claim 1 , wherein the cooling device further comprises a temperature sensor for detecting the temperature of the air within the interior of the switchgear cabinet, a regulating device by which the interior fan is switched on if the detected temperature in the interior air flow exceeds an upper setpoint temperature and is switched off if the detected temperature falls below a lower setpoint temperature, and a time control unit by which the intermittent time-controlled mode of operation may be triggered if the detected temperature falls below the lower setpoint temperature, and wherein the temperature sensor, the regulating device, and the time control unit are arranged within a subspace of the cooling device in flow communication with the switchgear interior.
Thermal management, e.g. cabinet temperature control · CPC title
Air circulating in closed loop within cabinets wherein heat is removed through air-to-liquid heat-exchanger · CPC title
Modifications to facilitate cooling, ventilating, or heating · CPC title
Cooling; Ventilation · CPC title
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