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    • 71. 发明授权
    • Cooling apparatus for computer subsystem
    • 计算机子系统冷却装置
    • US06115251A
    • 2000-09-05
    • US294305
    • 1999-04-15
    • Chandrakant PatelEdward M. AokiCullen Bash
    • Chandrakant PatelEdward M. AokiCullen Bash
    • G06F1/18G06F1/20G11B33/14H05K7/20
    • G06F1/184G06F1/182G06F1/187G06F1/20G11B33/1413H05K7/20545H05K7/20736H05K7/20818G06F2200/201
    • An improved apparatus is disclosed for cooling the power dissipating components of a computer subsystem, including microprocessors and hard disk drive assemblies. The apparatus utilizes the computer subsystem's chassis or enclosure, by configuring it as a roll bond panel formed from two sheets bonded together to define a fluid channel therebetween. Various concentrated sources of power dissipation are mounted within the enclosure on special component panels that themselves define a fluid channel. A working fluid is disposed within the channels of the component panels and the enclosure panel. During operation, heat generated by the sources of power dissipation is transferred to the working liquid within the fluid channels of the component panels and, in turn, to the working fluid disposed within the fluid channel of the enclosure panel, for dissipation by convection. In one disclosed embodiment, the working fluid undergoes a reversible phase change, to facilitate an efficient transfer of heat throughout the enclosure panel and thereby to heat the panel to a substantially uniform temperature.
    • 公开了一种用于冷却包括微处理器和硬盘驱动器组件的计算机子系统的功率耗散部件的改进的装置。 该装置利用计算机子系统的底盘或外壳,将其构成为由两片粘结在一起形成的流体通道形成的辊接合面板。 各种集中的功率消耗源在外壳内安装在其自身限定流体通道的特殊部件面板上。 工作流体设置在部件面板和外壳面板的通道内。 在操作期间,由功率耗散源产生的热量传递到组件面板的流体通道内的工作液体,并且转移到设置在外壳面板的流体通道内的工作流体,以便通过对流消散。 在一个公开的实施例中,工作流体经历可逆的相变,以便有效地将热量传递到整个外壳面板,从而将面板加热到基本均匀的温度。
    • 78. 发明申请
    • Data Center
    • 数据中心
    • US20110175498A1
    • 2011-07-21
    • US13121775
    • 2008-09-30
    • Cullen BashChandrakant Patel
    • Cullen BashChandrakant Patel
    • H05K5/02B23P11/00
    • F24F11/0001F24F12/002H05K7/20745Y02B30/563Y10T29/49616
    • A data center includes a mobile enclosure having an interior space. The interior space includes a first section and a second section, where the first section is separated from the second section by a first divider. The first section houses a rack having a first side and a second side, where the rack is positioned to separate the first section into a first aisle and a second aisle such that fluid flow between the first aisle and the second aisle is substantially prevented other than through the rack. The first aisle includes a fluid delivery device and the second aisle includes a fluid removal device, where the second section facilitates fluid communication between the fluid removal device and the fluid delivery device.
    • 数据中心包括具有内部空间的移动外壳。 内部空间包括第一部分和第二部分,其中第一部分通过第一分隔部与第二部分分离。 第一部分容纳具有第一侧和第二侧的齿条,其中齿条被定位成将第一部分分离成第一通道和第二通道,使得在第一通道和第二通道之间的流体流动基本上被阻止除了 通过机架。 第一通道包括流体输送装置,第二通道包括流体去除装置,其中第二部分便于流体移除装置和流体输送装置之间的流体连通。
    • 79. 发明授权
    • Cooling
    • 冷却
    • US07969727B2
    • 2011-06-28
    • US12432199
    • 2009-04-29
    • Robert TozerCullen BashChandrakant Patel
    • Robert TozerCullen BashChandrakant Patel
    • H05K7/20G06F1/20
    • H05K7/20818H05K7/20827
    • According to one embodiment, an equipment enclosure includes a plurality of equipment elements, each element having one or more heat generating sources. A heat exchanger is mounted towards the top of the equipment enclosure. The heat exchanger is thermally coupled to at least some of the heat generating sources. The enclosure includes an exhaust vent through which air heated by the heat exchanger may be evacuated, and an inlet vent through which air from outside the equipment enclosure may be drawn into the equipment enclosure to cool the heat exchanger by stack effect ventilation.
    • 根据一个实施例,设备外壳包括多个设备元件,每个元件具有一个或多个发热源。 热交换器朝向设备外壳的顶部安装。 热交换器热耦合到至少一些发热源。 外壳包括排气口,通过该排气口,由热交换器加热的空气可被排出,以及入口通气口,来自设备外壳外部的空气可通过该排气口被抽入设备外壳中,以通过堆叠效应通风来冷却热交换器。