Nova Patents
EP2498024A2

Cooling system for electronic equipment

Abstract

An electronic device which is required to perform a precise operation with a heat generation amount from itself being large, such as a computer and a server, can be efficiently cooled at low running cost. Server rooms (14A, 14B) in which a plurality of servers (28) are placed, an evaporator (34) which is provided close to each of the servers (28), and cools exhaust air from the server (28) by vaporizing a refrigerant with heat generating from the server (28), a cooling tower (38) which is provided at a place higher than the evaporator (34), cools the refrigerant by outside air and water sprinkling, and condenses the vaporized refrigerant, and a circulation line (40) in which the refrigerant naturally circulates between the evaporator (34) and the cooling tower (38).

EP2498024A2, drawing sheet 1
Sheet 1 of 6

Term

2.4 yearsto projected expiry

Projected expiry 9 February 2029, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

2 claims: 1 independent, 1 dependent

  1. 1
    A cooling system (10, 100, 200, 300) for an electronic device, comprising:a device room (14A, 14B) in which a plurality of electronic devices (28) are placed;an evaporator (34) which is provided close to each of the electronic devices (28), and cools exhaust air from the electronic device by vaporizing a refrigerant with heat generating from the electronic device;a cooling tower (38) which is provided at a place higher than the evaporator (34), cools the refrigerant by outside air, and condenses the vaporized refrigerant;a circulation line (40) in which the refrigerant naturally circulates between the evaporator (34) and the cooling tower (38);a heat exchanger (54) which cools the refrigerant;a refrigerator (68) for cooling the refrigerant which flows in the heat exchanger (54);a parallel line (58, 60, 64) which is a flow path for the refrigerant, connected to the circulation line (40), and is provided so that the heat exchanger has parallel relation with respect to the cooling tower (38);a parallel control mechanism which controls a refrigerant amount of the refrigerant which is fed to the parallel line (58, 60, 64) from the circulation line (40);an air-conditioning machine (78) which cools high-temperature air taken in from the device room, and returns the air into the device room;and an air-conditioning circulation line (88) which is branched from the circulation line, and circulates the refrigerant to and from a cooling part of the air-conditioning machine, wherein the parallel control mechanism comprises an outside air temperature sensor (63) which measures outside temperature, a parallel valve (59) which is provided in the parallel line (58, 60, 64), and regulates an amount of the refrigerant which is refrigerant gas returning from the evaporator (34) and flowing into the heat exchanger (54), and a parallel control part (71) which calculates capacity of cooling the refrigerant in the cooling tower (38) from a measurement result of the outside air temperature sensor (63), and regulates an opening degree amount of the parallel valve (59) from a result of the calculation to control a refrigerant amount which is fed to the heat exchanger (54).