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    • 1. 发明申请
    • Mobile data center
    • 移动数据中心
    • US20060082263A1
    • 2006-04-20
    • US11251587
    • 2005-10-14
    • Barry RimlerNeil Rasmussen
    • Barry RimlerNeil Rasmussen
    • A47B53/00
    • B60P3/14G06F1/20H05K7/1497
    • At least one version is directed to a mobile data center that includes a trailer having a length greater than a width and having an interior, the trailer being configured to be transported in a direction generally parallel to the length, and a plurality of equipment enclosures installed in the interior of the trailer to form a row, with the row being parallel to the length of the trailer, wherein the row is positioned in the interior such that a first aisle is on a front side of the row and a second aisle is on a back side of the row. The mobile data center also includes at least one cooling unit constructed and arranged to draw warm air from the second aisle and provide cool air to the first aisle to cool equipment contained in the plurality of equipment enclosures.
    • 至少一个版本被引导到移动数据中心,该移动数据中心包括具有大于宽度的长度并具有内部的拖车,所述拖车被配置为沿大致平行于所述长度的方向传送,并且安装了多个设备外壳 在拖车的内部形成一排,其中该行平行于拖车的长度,其中该行位于内部,使得第一过道位于行的前侧,而第二过道处于 一排的背面。 移动数据中心还包括至少一个冷却单元,其被构造和布置成从第二通道抽取暖空气,并向第一通道提供冷空气以冷却包含在多个设备外壳中的设备。
    • 5. 发明申请
    • SYSTEM AND METHOD FOR ASSESSING AND MANAGING DATA CENTER AIRFLOW AND ENERGY USAGE
    • 用于评估和管理数据中心气流和能源使用的系统和方法
    • US20100131109A1
    • 2010-05-27
    • US12277715
    • 2008-11-25
    • Neil RasmussenJames W. VanGilderXuanhang Zhang
    • Neil RasmussenJames W. VanGilderXuanhang Zhang
    • F24F11/00G05D23/19G05B13/02G05B15/02
    • G06F1/206G06F17/5004G06F2217/16G06F2217/34G06F2217/80H05K7/20836Y02D10/16
    • A system and method for providing energy assessment and optimization in a data center that includes at least one cooling provider, and at least one cooling consumer, the at least one cooling consumer having cooling requirements. The method according to one aspect includes receiving data regarding cooling availability and power consumption for the at least one cooling consumer, cooling capacity of the at least one cooling provider, and a physical relationship between the at least one cooling consumer and the at least one cooling provider in the data center, storing the received data, determining airflow distribution effectiveness between the at least one cooling consumer and the at least one cooling provider, and displaying at least one value representative of the effectiveness of the distribution of airflow in the data center between the at least one cooling consumer and the at least one cooling provider.
    • 一种用于在数据中心中提供能量评估和优化的系统和方法,所述数据中心包括至少一个冷却提供者以及至少一个冷却消费者,所述至少一个冷却消费者具有冷却需求。 根据一个方面的方法包括接收关于至少一个冷却消费者的冷却可用性和功率消耗的数据,所述至少一个冷却供应商的冷却能力以及所述至少一个冷却消耗者与所述至少一个冷却 数据中心的提供者,存储所接收的数据,确定至少一个冷却消费者和至少一个冷却提供者之间的气流分布效能,以及显示代表在数据中心之间的气流分布的有效性的至少一个值 所述至少一个冷却消耗器和所述至少一个冷却提供器。
    • 9. 发明授权
    • Rack enclosure
    • US07033267B2
    • 2006-04-25
    • US10436886
    • 2003-05-13
    • Neil Rasmussen
    • Neil Rasmussen
    • H05K7/20
    • H05K7/20572
    • An enclosure is provided for housing electronic equipment that accommodates the different cooling and ventilating requirements of different types of equipment. The enclosure is constructed and arranged to support cooling airflow in a front-to-back configuration through the enclosure and in a side-to-side configuration from one side to an opposite side of the enclosure. The enclosure can thereby provide within a single enclosure means cooling air for components using front-to-back airflow for cooling, such as information technology (IT) equipment, and for components using side-to-side airflow, such as certain types of telecommunications equipment. The enclosure can thereby support a mix of IT and telecommunications equipment, providing flexibility and adaptability in network room and data center configuration. The enclosure is further configured to separate intake air used by equipment for cooling from exhaust air vented by equipment into its interior during operation. As a result, the enclosure promotes sufficient equipment cooling and prevents/minimizes equipment overheating.