Abstract:
A commutate silencer of a computer system is described. The commutate silencer of the computer system is installed at the back end of the computer system, and comprises a shield device, a commutate device and at least one partition. The shield device comprises a first shield and a second shield, in which the first shield comprises an opening, the first shield and the second shield construct a first cavity, and the first cavity includes a plurality of outlets. The commutate device comprises a frame and a plurality of commutate diversion plates, in which the frame construct a second cavity, the diversion plates traverse the second cavity, the second cavity has an inlet and a ventilated opening, and the ventilated opening is connected to the opening of the first shield. The at least one partition is located in the first cavity and the second cavity, so as to separate the inlet, the ventilated opening and the outlets into a plurality of sub-inlets, a plurality of sub-ventilated openings and a plurality of sub-outlets, respectively.
Abstract:
A cooling apparatus for server rack is disclosed, which is disposed above at least one server rack. The cooling apparatus for server rack includes a fan module disposed at a back end above the least one server rack, a heat exchanger module disposed at a front end above the least one server rack, and an air guide connecting the fan module and the heat exchanger module. A hot air exhausted from the back end of the least one server rack is extracted by the fan module and is sent to the heat exchanger module through the air guide, and the hot air is cooled by the heat exchanger module, and a cool air is exhausted from the front end of the least one server rack.
Abstract:
A commutate silencer of a computer system is described. The commutate silencer of the computer system is installed at the back end of the computer system, and comprises a shield device, a commutate device and at least one partition. The shield device comprises a first shield and a second shield, in which the first shield comprises an opening, the first shield and the second shield construct a first cavity, and the first cavity includes a plurality of outlets. The commutate device comprises a frame and a plurality of commutate diversion plates, in which the frame construct a second cavity, the diversion plates traverse the second cavity, the second cavity has an inlet and a ventilated opening, and the ventilated opening is connected to the opening of the first shield. The at least one partition is located in the first cavity and the second cavity, so as to separate the inlet, the ventilated opening and the outlets into a plurality of sub-inlets, a plurality of sub-ventilated openings and a plurality of sub-outlets, respectively.
Abstract:
A heat dissipation device with heat pipes is described. The heat dissipation device includes at least one U-shaped heat pipe, a plurality of heat fins, and a heat sink base. A middle portion of the U-shaped heat pipe is coupled to the heat sink base to receive thermal energy and transmit the same to two arm portions of the U-shaped heat pipe so as to improve the heat dissipation efficiency. A fixing plate is further utilized to fix the U-shaped heat pipe onto the heat sink base. The fixing plate further absorbs the thermal energy and the thermal energy is transmitted from the middle portion of the U-shaped heat pipe to the two arm portions of the U-shaped heat pipe and then to the heat fins. Therefore, the heat dissipation device can increase the heat dissipation efficiency while reducing the space it occupies in an electrical device.
Abstract:
An energy saving air conditioning system is disclosed which provides different air conditioning modes, including a closed-loop mode, an open-loop mode, and a partial-loop mode, for controlling the environment in a high-density apparatus room. The energy saving air conditioning system uses a cloud operating center to monitor the temperature and the moisture inside and outside the high-density apparatus room. The cloud operating system dynamically selects the air conditioning mode in such a manner that energy can be saved and the environment in the high-density apparatus room can be optimally managed.
Abstract:
An energy saving air conditioning system is disclosed which provides different air conditioning modes, including a closed-loop mode, an open-loop mode, and a partial-loop mode, for controlling the environment in a high-density apparatus room. The energy saving air conditioning system uses a cloud operating center to monitor the temperature and the moisture inside and outside the high-density apparatus room. The cloud operating system dynamically selects the air conditioning mode in such a manner that energy can be saved and the environment in the high-density apparatus room can be optimally to managed.
Abstract:
A cooling apparatus for server rack is disclosed, which is disposed above at least one server rack. The cooling apparatus for server rack includes a fan module disposed at a back end above the least one server rack, a heat exchanger module disposed at a front end above the least one server rack, and an air guide connecting the fan module and the heat exchanger module. A hot air exhausted from the back end of the least one server rack is extracted by the fan module and is sent to the heat exchanger module through the air guide, and the hot air is cooled by the heat exchanger module, and a cool air is exhausted from the front end of the least one server rack.