US2015013940A1PendingUtilityA1
Commonly submersed, vertically removable servers in rack
Assignee: GREEN REVOLUTION COOLING INCPriority: Aug 11, 2008Filed: Jul 22, 2014Published: Jan 15, 2015
Est. expiryAug 11, 2028(~2.1 yrs left)· nominal 20-yr term from priority
H05K 7/20827H05K 7/2079H05K 7/20772H05K 7/203H05K 7/20H05K 7/20236G06F 1/20G06F 2200/201G06F 1/206Y10T29/4973H05K 7/20836H05K 7/20381H05K 7/20327H05K 7/20781F28D 15/00H05K 7/20763H05K 7/20281
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Claims
Abstract
Apparatus, systems, and method for efficiently cooling computing devices having heat-generating electronic components, such as, for example, independently operable servers, immersed in a dielectric liquid coolant in a tank.
Claims
exact text as granted — not AI-modified1 - 52 . (canceled)
53 . An apparatus for holding and cooling rack-mountable servers containing heat-generating electronic components, comprising:
at least one tank defining an open interior volume and having a coolant inlet for receiving a dielectric liquid coolant within the open interior volume and having a coolant outlet for allowing the coolant to flow from the open interior volume, the coolant inlet and the coolant outlet being fluidly coupled to each other; and one or more mounting members positioned within the interior volume and configured to hold a plurality of rack-mountable servers in a vertical orientation within the interior volume such that the plurality of rack-mountable servers can be commonly submersed in a volume of the dielectric liquid coolant in the at least one tank and such that, when the plurality of rack-mountable servers are commonly submersed in a volume of the dielectric liquid coolant, at least a portion of the dielectric liquid coolant can be vertically moved across heat producing components in at least two of the rack-mountable servers, wherein the rack-mountable servers are mountable in the at least one tank such that at least one of the rack-mountable servers is independently removable from a volume of dielectric liquid coolant and from the at least one tank without the need to remove the other rack-mountable servers from the volume of dielectric liquid coolant in the at least one tank and such that the other rack-mountable servers can remain operating while submersed in the volume of dielectric liquid coolant.
54 . The apparatus of claim 53 , wherein the tank comprises an open top, wherein the rack-mountable servers are mountable such that at least one of the rack-mountable servers can be removed from the tank through the open top while the other rack-mountable servers remain at least partially submersed in the dielectric liquid coolant and in operation.
55 . The apparatus of claim 53 , further comprising a controller configured to maintain liquid coolant exiting the rack-mountable servers at a temperature that is significantly higher than comfortable room temperature and lower than the maximum permissible temperature of the most sensitive heat generating electronic component of the rack-mountable servers.
56 . The apparatus of claim 53 , wherein at least one of the rack-mountable servers submersed in the dielectric liquid coolant comprises an unsealed case housing two or more electronic components of the at least one rack-mountable server.
57 . The apparatus of claim 53 , wherein at least one of the mounting members is configured to receive standard rack-mountable servers from at least two different sources such that the commodity servers are commonly in the volume of dielectric liquid coolant.
58 . The apparatus of claim 53 , further comprising one or more pumps configured to move a portion of the dielectric liquid coolant across the other rack-mountable servers while the at least one rack-mountable server is removed from the volume of dielectric liquid coolant.
59 . The apparatus of claim 53 , wherein the rack-mountable servers are mountable to allow vertical flow across heat producing components of the rack-mountable servers.
60 . The apparatus of claim 53 , further comprising a pump configured to move dielectric liquid coolant in the at least one tank, wherein the rack-mountable servers are arranged to allow the pump to produce parallel vertical flow of the dielectric liquid coolant across heat producing components in at least two of the rack-mountable servers commonly submerged in the volume of dielectric liquid coolant.
61 . The apparatus of claim 53 , further comprising a pump configured to move dielectric liquid coolant in the at least one tank, wherein the rack-mountable servers are arranged to allow the pump to produce parallel bottom-to-top flow of the dielectric liquid coolant across heat producing components in at least two of the rack-mountable servers commonly submerged in the volume of dielectric liquid coolant.
62 . The apparatus of claim 53 , wherein the dielectric coolant comprises mineral oil.
63 . The apparatus of claim 53 , wherein at least one of the rack-mountable servers comprises an enclosure, wherein flow of the dielectric liquid coolant around the plurality of rack-mountable servers is restricted such that flow through the enclosure of the at least one rack-mountable server is enhanced.
64 . The apparatus of claim 53 , wherein the apparatus comprises two or more racks, wherein each of the racks comprises a tank configured to hold a plurality of rack-mountable servers, further comprising one or more pumps, wherein a first one of the pumps is configured to move dielectric liquid coolant across heat producing components in at least two of the rack-mountable servers.
65 . The apparatus of claim 53 , wherein, when the plurality of rack-mountable servers are mountably received and the dielectric liquid coolant is moved in the at least one tank, at least two of the respective rack-mountable server is completely submerged within the dielectric liquid coolant such that a volume of dielectric liquid coolant collects in a common area above the plurality of rack-mountable servers and at or near the surface of the dielectric liquid coolant.
66 . The apparatus of claim 53 , further comprising a pump configured to move dielectric liquid coolant in the at least one tank, wherein at least some of the rack-mountable servers are held in a row, wherein, when the plurality of rack-mountable servers are mountably received in the at least one tank and the dielectric liquid coolant is moved within the at least one tank, heated dielectric liquid coolant at the surface of the volume of dielectric liquid coolant is moved crossways relative to the direction of the row of rack-mountable servers.
67 . The apparatus of claim 53 , wherein:
the one or more mounting members are configured to mountably receive the plurality of rack-mountable servers above the bottom of the at least one tank to form a volume between each respective rack-mountable server and the at least one tank to permit the flow of dielectric liquid coolant through the plurality of rack-mountable servers.
68 . The apparatus of claim 53 , further comprising:
a secondary cooling circuit comprising a second liquid coolant, and a liquid-to-liquid heat exchanger, wherein the liquid-to-liquid heat exchanger is configured transfer heat from the dielectric liquid coolant to the second liquid coolant, wherein the secondary cooling circuit is configured to reject heat to a location distal to the at least one tank.
69 . The apparatus of claim 53 , further comprising a plurality of nozzles configured to direct dielectric liquid coolant from the cooling inlet piping toward a desired entry point into the rack-mounted servers to augment the fluid velocity of the liquid coolant through the rack-mounted servers.
70 . A method for maintaining rack-mountable servers containing heat-generating electronic components, comprising:
removing one or more rack-mounted servers from a volume of dielectric liquid coolant in a rack while one or more other rack-mounted servers remain operating and submersed in the volume of dielectric liquid and while a portion of the dielectric liquid coolant is moved vertically over heat producing components of at least one of the rack-mountable servers; and replacing or reinstalling, while the other rack-mounted servers remain submersed in the volume of dielectric liquid coolant and in operation, at least one of the removed rack-mountable servers.
71 . The method of claim 70 , further comprising moving, while the one or more rack-mounted servers are being removed, at least a portion of the dielectric liquid coolant across heat producing components in at least one of rack-mountable servers remaining submersed in the rack.
72 . The method of claim 70 , further comprising disconnecting the replaced server and connecting the replacement server.Join the waitlist — get patent alerts
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