WO2013143507A2 - 集装箱式数据中心集群 - Google Patents

集装箱式数据中心集群 Download PDF

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Publication number
WO2013143507A2
WO2013143507A2 PCT/CN2013/076242 CN2013076242W WO2013143507A2 WO 2013143507 A2 WO2013143507 A2 WO 2013143507A2 CN 2013076242 W CN2013076242 W CN 2013076242W WO 2013143507 A2 WO2013143507 A2 WO 2013143507A2
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WO
WIPO (PCT)
Prior art keywords
containerized data
data center
frame
data centers
maintenance door
Prior art date
Application number
PCT/CN2013/076242
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English (en)
French (fr)
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WO2013143507A3 (zh
Inventor
刘欣
冉启坤
李星
张敬
Original Assignee
艾默生网络能源有限公司
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Application filed by 艾默生网络能源有限公司 filed Critical 艾默生网络能源有限公司
Publication of WO2013143507A2 publication Critical patent/WO2013143507A2/zh
Publication of WO2013143507A3 publication Critical patent/WO2013143507A3/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D88/00Large containers
    • B65D88/02Large containers rigid
    • B65D88/022Large containers rigid in multiple arrangement, e.g. stackable, nestable, connected or joined together side-by-side
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D90/00Component parts, details or accessories for large containers
    • B65D90/0006Coupling devices between containers, e.g. ISO-containers
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/14Mounting supporting structure in casing or on frame or rack
    • H05K7/1485Servers; Data center rooms, e.g. 19-inch computer racks
    • H05K7/1497Rooms for data centers; Shipping containers therefor

Definitions

  • Containerized Data Center Cluster This application claims the priority of the Chinese Patent Application submitted to the China Patent Office on March 26, 2012, with the application number 201220117656.8, and the utility model name is "Container Data Center Cluster", the entire contents of which are incorporated by reference. In this application. Technical field
  • the present application relates to the field of communications technologies, and in particular, to a containerized data center cluster.
  • FIG. 1 shows the internal structure of a single-container data center.
  • a single-container data center is internally equipped with a Rack, an air-conditioning terminal (XDH), an air-conditioning host (XDC), and an uninterruptible power supply.
  • UPS air-conditioning terminal
  • XDC air-conditioning host
  • UPS uninterruptible power supply
  • BAT battery
  • BAT air conditioner outdoor unit
  • PUE Power Usage Effectiveness
  • the splicing of multiple single-container data centers to form a containerized data center cluster can solve the above problems in a single containerized data center, improve the integration of containerized data centers, and facilitate equipment maintenance.
  • the single-container data centers are not tightly sealed, the splicing is uneven, and the requirements of good isolation protection cannot be achieved, which directly affects the interior of the container.
  • the communication health of the device is not limited to, but not limited to form a containerized data center cluster.
  • the embodiment of the present application provides a containerized data center cluster, which is used to solve the problem of splicing multiple single container data centers in the prior art, and the single container data center is not tightly sealed, the splicing is uneven, and the splicing is not good.
  • the problem of isolation protection The technical solutions of the embodiments of the present application are as follows:
  • a containerized data center cluster includes: at least two containerized data centers arranged in a combined growth cube, and adjacent two box-type data frames of each of the two containerized data centers are coupled and passed through at least Two sets of connecting members are connected, wherein each set of connecting members comprises at least one coupling member, each coupling member is bridged on the box frame of the opposite two side plates and fixedly connected to the two box frames respectively.
  • a containerized data center cluster includes: at least two containerized data centers arranged side by side, at least two opposite side panels of each containerized data center including a maintenance door frame, and each adjacent two containerized data
  • Each of the two opposing two maintenance door frames is coupled between the centers and connected by at least two sets of connectors, wherein each set of connectors includes at least one coupling member, each coupling member being bridged between the opposite two maintenance doors On the frame, and fixedly connected to the two maintenance door frames.
  • a containerized data center cluster includes: at least two containerized data centers arranged side by side, at least two opposite side panels of each containerized data center including a maintenance door frame, and each adjacent two containerized data
  • Each of the two opposite two maintenance door frames between the centers is connected by a connecting frame, and the connecting frame is a closed rectangular channel composed of four faces, and the two ends of the connecting frame and the opposite two maintenance doors respectively
  • the frame is coupled and connected by at least two sets of connecting members, wherein each set of connecting members comprises at least one coupling member, each coupling member is bridged on the connecting frame body and the maintenance door frame, and respectively connects the frame body and the maintenance door
  • the frame is fixedly connected.
  • a containerized data center cluster formed by arranging at least two containerized data centers, two opposite side panel cabinet frames between two adjacent containerized data centers Coupling, or opposite two maintenance door frame couplings, or two opposing maintenance door frames and one connection frame, and fixedly connecting the frames at the coupling by at least two sets of connectors, enabling a containerized data center
  • the sealing is tight and the splicing is smooth, which provides better isolation and protection for the equipment in the container data center, so that it can solve the single-container data center after splicing multiple single-container data centers in the prior art.
  • the problem of poor isolation and unsmooth splicing can not achieve good isolation protection.
  • FIG. 1 is a schematic diagram showing the internal structure of a single container type data center in the prior art
  • FIG. 2 is a top plan view of a containerized data center cluster according to an embodiment of the present application
  • 3 is a side view of a containerized data center cluster according to an embodiment of the present invention
  • FIG. 4 is a schematic view showing the installation of a rubber strip according to an embodiment of the present application
  • FIG. 5 is a top view of another containerized data center cluster according to an embodiment of the present disclosure
  • FIG. 6 is a top view of another containerized data center cluster according to an embodiment of the present disclosure
  • FIG. 8 is a schematic structural diagram of a specific implementation of the containerized data center cluster shown in FIG. 6. detailed description
  • FIG. 2 is a top view of a containerized data center cluster provided by an embodiment of the present application
  • FIG. 3 is a side view of the containerized data center cluster provided by the embodiment of the present application, as shown in FIG. 2 or FIG.
  • the data center cluster includes: at least two containerized data centers 1 arranged in a combined growth cube, each side panel of each container data center includes a box frame 11 and a panel 12, and each adjacent two containerized data centers
  • the opposite side frame box frames 11 are coupled and connected by at least two sets of connecting members, each set of connecting members at least one coupling member 21 and a bolt matching the screw hole on the coupling member 21 (in the figure) Not shown), each coupling member 21 is connected to the box frame 11 of the opposite two side plates, and is fixedly connected to the two box frames 11 by bolts respectively, thereby forming a flat and tightly sealed container type.
  • the coupling refers to the close connection of the cabinet frames of the two opposite side panels between two container data centers of the same size.
  • the coupling member can be installed with a plurality of coupling members uniformly according to the length of the actual container-type data center, or a plurality of coupling members can be installed at a non-equal distance according to the position of the container load-bearing column.
  • a protective pad (not shown) is provided between the coupling faces of the opposite side plates between each two containerized data centers, and the protective pad can be sealed, insulated, and protected from moisture. Its role is to protect the equipment inside the containerized data center.
  • a rubber strip 22 is further disposed between the coupling member 21 and the box frame 11; During the specific installation and implementation, one end of the rubber strip 22 may be fixed between one end of the coupling member 21 and the box frame 11 of a container type data center, and then the rubber strip 22 is reversely covered on the coupling member 21 .
  • the other end of the rubber strip 22 is then secured between the other end of the coupling member 21 and the box frame 11 of another containerized data center.
  • the rubber strip can play the role of sealing, heat insulation and moisture proof, and has a good protection effect on the equipment inside the container type data center.
  • the embodiments of the present application provide a manner of coupling between the following containerized data centers.
  • the frames of the two side panels in the opposite long sides of each adjacent two containerized data centers can be coupled, so that at least two containerized data centers can be connected in the long side direction.
  • the space utilization in the long-side direction is expanded to facilitate the deployment planning of the internal devices of the cluster, as shown in Figure 2.
  • the second method can couple the box frames of the side plates in the opposite two short sides of the adjacent two containerized data centers (not shown), so that at least two containerized data can be used.
  • the center is connected to a corridor enclosed by hot and cold passages to further expand the application of inter-line air conditioning, reduce the PUE value of the container data center cluster, and improve the operational efficiency of the container data center cluster.
  • Method 3 The opposite bottom and top cabinet frames of each two containerized data centers can be coupled (not shown), which can expand the internal space height of the containerized data center and improve equipment accommodation. Space, which enables higher equipment to be placed inside a containerized data center.
  • the first mode, the second mode, and the third mode are combined to form a connected space structure inside the containerized data center cluster.
  • the containerized data center cluster includes: at least two containerized data centers 1 arranged side by side, each containerized data.
  • At least two opposing side panels of the center 1 include a maintenance door frame 13 coupled between each two opposing two maintenance door frames 13 between each adjacent two containerized data centers, and through at least two sets of connectors Connecting, wherein each set of connectors includes at least one coupling member 21 and Bolts on the coupling member 21 are fitted with bolts (not shown), and each coupling member 21 is bridged to the opposite two maintenance door frames 13 and fixedly connected to the two maintenance door frames 13 by bolts.
  • the containerized data center cluster provided in this embodiment also has the protective pad and the rubber strip as described in the first embodiment, and details are not described herein.
  • the embodiments of the present application provide a manner of coupling between the following containerized data centers.
  • Method 1 When the maintenance door frame 13 is located on the side panel in the longitudinal direction between the containerized data centers 1, the opposite two maintenance doors in the longitudinal direction between each adjacent two containerized data centers 1
  • the frame 13 is coupled so that a communication passage or a hot and cold air passage can be formed in the longitudinal direction of the containerized data center 1, and the coupling member can be mounted only at the maintenance door frame 13, which can reduce the construction difficulty.
  • Method 2 When the maintenance door frame 13 is located on the side panel in the short-side direction between the containerized data centers 1, the two opposite maintenance doors in the short-side direction between each adjacent two container-type data centers 1
  • the frame 13 is coupled, so that the short side direction of at least two containerized data centers 1 can be connected as a corridor closed by a hot and cold channel, the PUE value of the container data center cluster is reduced, and the operation efficiency of the container data center cluster is improved.
  • the coupling part is installed only at the maintenance door, and the construction difficulty can be reduced.
  • the containerized data center cluster includes: at least two containerized data centers 1 arranged side by side, each containerized data. At least two opposite side panels of the center 1 include a maintenance door frame 13 between each two adjacent two maintenance door frames 13 between adjacent two containerized data centers 1 through a connection frame 3 As shown in FIG.
  • the connecting frame 3 is a closed rectangular channel composed of four faces, and the frame connecting the two ends of the frame 3 has a bolt hole 31 , and the two ends of the connecting frame 3 and the opposite two maintenance door frames respectively 13 coupled and connected by at least two sets of connectors, wherein each set of connectors comprises at least one coupling member 21 and a bolt (not shown) adapted to the screw hole in the coupling member 21, each coupling member 21 It is connected across the connecting frame 3 and the maintenance door frame 13 and is fixedly connected to the connecting frame 3 and the maintenance door frame 13 by bolts, respectively.
  • the connection frame 13 is a sheet metal structure, which can improve the stability of the containerized data center cluster.
  • the containerized data center cluster provided in this embodiment also has the protective pad and the rubber strip as described in the first embodiment, and details are not described herein.
  • the embodiments of the present application provide the following methods for coupling between containerized data centers.
  • Method 1 When the maintenance door frame 13 is located on the side panel in the longitudinal direction between the containerized data centers 1, the opposite two maintenance doors in the longitudinal direction between each adjacent two containerized data centers 1
  • the frame 13 is respectively coupled with both ends of the connecting frame 3; this can be coupled to the maintenance door frame 13 by using the connecting frame 3 in the longitudinal direction according to specific terrain conditions during the specific construction process.
  • the installation of the data center cluster is fine-tuned to avoid making more difficult adjustments to the containerized data center.
  • Method 2 When the maintenance door frame 13 is located on the side panel in the short-side direction between the containerized data centers 1, the two opposite maintenance doors in the short-side direction between each adjacent two container-type data centers 1
  • the frame 13 is respectively coupled with both ends of the connecting frame 3; this can be coupled to the maintenance door frame 13 by using the connecting frame 3 in the short side direction according to specific terrain conditions during the specific construction process.
  • the installation of the containerized data center cluster was fine-tuned to avoid making more difficult adjustments to the containerized data center.
  • the length of the rectangular channel formed by the connection frame may be set to be larger than the width of the maintenance door, so that the two ends of the connection frame 3 and the opposite two are respectively
  • the opening fan 14 of the maintenance door can also be opened 90 degrees and kept parallel with the connecting frame, so that the maintenance channel and the hot and cold air can be connected or blocked according to the specific conditions of the equipment operation.
  • the road can also be removed after the connection frame 3 is removed during transportation to meet the isolation protection requirements during transportation.
  • a containerized data center cluster formed by at least two containerized data centers
  • the opposite two side panel cabinet frames between two adjacent containerized data centers are coupled or relatively
  • the two maintenance door frames are coupled, or the opposite two maintenance door frames are coupled with a connecting frame, and the frames at the coupling are fixedly connected by at least two sets of connecting members, so that the container data centers can be tightly sealed.
  • the isolation protection function can solve the problem that the single container data center is not tightly sealed, the splicing is uneven, and the isolation protection function cannot be achieved after the splicing of multiple single container data centers existing in the prior art. .

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Computer Hardware Design (AREA)
  • General Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
  • Buffer Packaging (AREA)
  • Rigid Containers With Two Or More Constituent Elements (AREA)

Abstract

本申请实施例公开了一种集装箱式数据中心集群,该集群包括:至少两个排列组合成长方体的集装箱式数据中心,相邻的每两个集装箱式数据中心之间相对的两个侧板的箱体框架耦合,并通过至少两套连接件相连接,其中每一套连接件包括至少一个耦合件,每一个耦合件跨接在相对两个侧板的箱体框架上,并分别和两个箱体框架固定连接。根据本申请实施例提供的集装箱式数据中心集群,能够使集装箱式数据中心之间密封严密、拼接平整,对集装箱数据中心内的设备起到较好的隔离保护作用,从而能够解决现有技术中存在的对多个单集装箱式数据中心进行拼接后,单集装箱式数据中心之间密封不严、拼接不平整、无法达到良好的隔离保护作用的问题。

Description

集装箱式数据中心集群 本申请要求于 2012 年 3 月 26 日提交中国专利局、 申请号为 201220117656.8、实用新型名称为"集装箱式数据中心集群"的中国专利申请 的优先权, 其全部内容通过引用结合在本申请中。 技术领域
本申请涉及通信技术领域, 尤其是涉及一种集装箱式数据中心集群。
背景技术
目前,现有的集装箱式数据中心的部署多采用单集装箱式数据中心独立运 行的方案。 图 1中示出了单集装箱式数据中心的内部结构, 如图 1可见, 单集 装箱式数据中心内部部署了机拒 (Rack )、 空调末端机(XDH )、 空调主机 ( XDC )、 不间断电源 ( UPS )、 电池( BAT )、 空调室外机 ( condenser ), 内部 空间狭小, 不易布置多种尺寸的设备, 气流通道过于小, 不同尺寸的设备之间 造成的转弯较多,能耗损失大,电源使用效率( PUE, Power Usage Effectiveness ) 值偏高, 且剩余空间过小, 不易于设备维护。
将多个单集装箱式数据中心进行拼接构成集装箱式数据中心集群,能够解 决单集装箱式数据中心存在的上述问题, 能够提高集装箱式数据中心的集成 度、便于设备维护。 但是, 在将多个单集装箱式数据中心进行拼接的具体实施 中, 存在单集装箱式数据中心之间密封不严、 拼接不平整、 无法达到良好的隔 离保护的要求的问题, 直接影响到了集装箱内部设备的通信运行状况。
可见, 目前在对多个单集装箱式数据中心进行拼接的技术中,存在单集装 箱之间密封不严、 拼接不平整、 无法达到良好的隔离保护的要求的问题。 发明内容
本申请实施例提供一种集装箱式数据中心集群,用以解决现有技术中对多 个单集装箱式数据中心进行拼接后,单集装箱式数据中心之间密封不严、拼接 不平整、 无法达到良好的隔离保护作用的问题。 本申请实施例技术方案如下:
一种集装箱式数据中心集群, 包括: 至少两个排列组合成长方体的集装箱 式数据中心,相邻的每两个集装箱式数据中心之间相对的两个侧板的箱体框架 耦合,并通过至少两套连接件相连接,其中每一套连接件包括至少一个耦合件, 每一个耦合件跨接在相对两个侧板的箱体框架上,并分别和两个箱体框架固定 连接。
一种集装箱式数据中心集群, 包括: 至少两个并排排列的集装箱式数据中 心,每个集装箱式数据中心的至少两个相对的侧板上包括维护门框架,相邻的 每两个集装箱式数据中心之间每两个相对的两个维护门框架耦合,并通过至少 两套连接件相连接, 其中每一套连接件包括至少一个耦合件,每一个耦合件跨 接在相对的两个维护门框架上, 并分别和两个维护门框架固定连接。
一种集装箱式数据中心集群, 包括: 至少两个并排排列的集装箱式数据中 心,每个集装箱式数据中心的至少两个相对的侧板上包括维护门框架,相邻的 每两个集装箱式数据中心之间每两个相对的两个维护门框架之间通过一个连 接框体连通, 连接框体为四个面组成的封闭式长方形通道, 连接框体的两端分 别和相对的两个维护门框架耦合, 并通过至少两套连接件相连接, 其中每一套 连接件包括至少一个耦合件, 每一个耦合件跨接在连接框体和维护门框架上, 并分别和连接框体和维护门框架固定连接。
根据本申请实施例的技术方案, 在由至少两个集装箱式数据中心排列形 成的集装箱式数据中心集群中,相邻的每两个集装箱式数据中心之间相对的两 个侧板的箱体框架耦合、或者相对的两个维护门框架耦合、或者相对的两个维 护门框架和一个连接框体耦合,并通过至少两套连接件将耦合处的框架固定连 接起来, 能够使集装箱式数据中心之间密封严密、 拼接平整, 对集装箱数据中 心内的设备起到较好的隔离保护作用,从而能够解决现有技术中存在的对多个 单集装箱式数据中心进行拼接后,单集装箱式数据中心之间密封不严、拼接不 平整、 无法达到良好的隔离保护作用的问题。
附图说明
图 1为现有技术中单集装箱式数据中心的内部结构示意图;
图 2为本申请实施例提供的集装箱式数据中心集群的俯视图; 图 3为本申请实施例提供的集装箱式数据中心集群的侧视图; 图 4为本申请实施例提供的胶皮护条的安装示意图;
图 5为本申请实施例提供的另一集装箱式数据中心集群的俯视图; 图 6为本申请实施例提供的另一集装箱式数据中心集群的俯视图; 图 7为本申请实施例提供的连接框体的结构示意图;
图 8为图 6所示集装箱式数据中心集群的具体实施的结构示意图。 具体实施方式
针对现有技术中存在的对多个单集装箱进行拼接后,单集装箱之间密封不 严、 拼接不平整、 无法达到良好的隔离保护作用的问题, 本申请实施例提出了 多种集装箱式数据中心集群, 用于解决该问题。
实施例一
图 2 示出了本申请实施例提供的集装箱式数据中心集群的俯视图, 图 3 示出了本申请实施例提供的集装箱式数据中心集群的侧视图, 如图 2 或图 3 所示, 该集装箱式数据中心集群包括: 至少两个排列组合成长方体的集装箱式 数据中心 1 ,每个集装箱数据中心的每一个侧板都包括箱体框架 11和面板 12, 相邻的每两个集装箱式数据中心之间相对的两个侧板的箱体框架 11耦合, 并 通过至少两套连接件相连接, 每一套连接件至少一个耦合件 21和与耦合件 21 上的螺孔相适配的螺栓(图中未示出),每一个耦合件 21跨接在相对的两个侧 板的箱体框架 11上, 并通过螺栓分别和两个箱体框架 11固定连接, 从而构成 拼接平整、 密封严密的集装箱式数据中心集群。 其中, 耦合是指两个尺寸相同 的集装箱式数据中心之间相对的两个侧板的箱体框架紧密对接。
一种优选的方式,耦合件的安装, 可以根据实际集装箱式数据中心的长度 均匀安装多个耦合件,也可以依据集装箱承重立柱的位置非等距离地安装多个 耦合件。
一种优选的方式,在每两个集装箱式数据中心之间相对的两个侧板的耦合 面之间具有防护垫(图中未示出), 该防护垫能够起到密封、 隔热、 防潮的作 用, 对集装箱式数据中心内部的设备起到良好的防护作用。 一种优选的方式, 如图 4所示, 耦合件 21在分别与集装箱式数据中心的 箱体框架 11固定连接时,在耦合件 21和箱体框架 11之间还包括胶皮护条 22; 在具体安装实施的过程中,可先将胶皮护条 22的一端固定在耦合件 21的一端 与一个集装箱式数据中心的箱体框架 11之间,再将胶皮护条 22反转覆盖在耦 合件 21上, 然后将胶皮护条 22的另一端固定在耦合件 21的另一端与另一个 集装箱式数据中心的箱体框架 11之间。 该胶皮护条能够起到密封、 隔热、 防 潮的作用, 对集装箱式数据中心内部的设备起到良好的防护作用。
具体地,本申请实施例提供了下列几种集装箱式数据中心之间进行耦合的 方式。
方式一、可将相邻的每两个集装箱式数据中心之间相对的两个长边方向上 的侧板的框架进行耦合,这样可以在长边方向上将至少两个集装箱式数据中心 连通起来, 扩大长边方向上的空间利用率, 便于集群内部设备的部署规划, 如 图 2所示。
方式二、可将相邻的每两个集装箱式数据中心之间相对的两个短边方向上 的侧板的箱体框架耦合(图中未示出 ), 这样可将至少两个集装箱式数据中心 连通为一个冷热通道封闭的长廊, 进一步扩大行间空调的应用, 降低集装箱数 据中心集群的 PUE值, 提高集装箱数据中心集群的运行效率。
方式三、可以将每两个集装箱式数据中心之间相对的底面和顶面的箱体框 架进行耦合(图中未示出 ), 这样可以扩展集装箱式数据中心的内部空间高度, 提高设备容置空间, 从而能够在集装箱式数据中心内部设置更高的设备。
此外,还可以根据具体实施时集装箱式数据中心排列组合的情况,组合使 用上述方式一、 方式二、 方式三, 以在集装箱式数据中心集群内部形成一个连 通的空间结构。
实施例二
图 5示出了本申请实施例提供的集装箱式数据中心集群的俯视图, 如图 5 所示, 该集装箱式数据中心集群包括: 至少两个并排排列的集装箱式数据中心 1 , 每个集装箱式数据中心 1的至少两个相对的侧板上包括维护门框架 13, 相 邻的每两个集装箱式数据中心之间每两个相对的两个维护门框架 13耦合, 并 通过至少两套连接件相连接, 其中每一套连接件包括至少一个耦合件 21和与 耦合件 21上的螺孔相适配的螺栓(图中未示出), 每一个耦合件 21跨接在相 对的两个维护门框架 13上, 并通过螺栓分别和两个维护门框架 13固定连接。
一种优选的方式, 本实施例提供的集装箱式数据中心集群,也具有如上述 实施例一中所述的防护垫和胶皮护条, 这里不再赘述。
具体地,本申请实施例提供了下列几种集装箱式数据中心之间进行耦合的 方式。
方式一、 维护门框架 13位于集装箱式数据中心 1之间长边方向上的侧板 上时,将相邻的每两个集装箱式数据中心 1之间长边方向上的相对的两个维护 门框架 13进行耦合, 这样能够在集装箱式数据中心 1的长边方向上构成连通 的维护通道或者冷热风道, 并且仅在维护门框架 13处进行耦合件的安装, 能 够减小施工难度。
方式二、 维护门框架 13位于集装箱式数据中心 1之间短边方向上的侧板 上时,将相邻的每两个集装箱式数据中心 1之间短边方向上的相对的两个维护 门框架 13进行耦合, 这样能够将至少两个集装箱式数据中心 1的短边方向上 连通为一个冷热通道封闭的长廊, 降低集装箱数据中心集群的 PUE值, 提高 集装箱数据中心集群的运行效率, 并且仅在维护门处进行耦合件的安装,还能 减小施工难度。
实施例三
图 6示出了本申请实施例提供的集装箱式数据中心集群的俯视图, 如图 5 所示, 该集装箱式数据中心集群包括: 至少两个并排排列的集装箱式数据中心 1 , 每个集装箱式数据中心 1的至少两个相对的侧板上包括维护门框架 13, 相 邻的每两个集装箱式数据中心 1之间每两个相对的两个维护门框架 13之间通 过一个连接框体 3连通,如图 7所示, 连接框体 3为四个面组成的封闭式长方 形通道, 连接框体 3两端的边框具有螺栓孔 31 , 连接框体 3的两端分别和相 对的两个维护门框架 13耦合, 并通过至少两套连接件相连接, 其中每一套连 接件包括至少一个耦合件 21和与耦合件 21上的螺孔相适配的螺栓(图中未示 出), 每一个耦合件 21跨接在连接框体 3和维护门框架 13上, 并通过螺栓分 别和连接框体 3和维护门框架 13固定连接。 一种优选的方式, 连接框体 13为钣金结构, 这样能够提高集装箱式数据 中心集群的稳固性。
一种优选的方式, 本实施例提供的集装箱式数据中心集群,也具有如上述 实施例一中所述的防护垫和胶皮护条, 这里不再赘述。
具体地, 本申请实施例提供了下列几种集装箱式数据中心之间耦合的方 式。
方式一、 维护门框架 13位于集装箱式数据中心 1之间长边方向上的侧板 上时,将相邻的每两个集装箱式数据中心 1之间长边方向上的相对的两个维护 门框架 13分别和连接框体 3的两端进行耦合;这样能够在具体施工的过程中, 根据具体的地形条件, 通过在长边方向上使用连接框体 3与维护门框架 13进 行耦合,对集装箱式数据中心集群的安装进行微调,避免了对集装箱式数据中 心进行较大难度的调整。
方式二、 维护门框架 13位于集装箱式数据中心 1之间短边方向上的侧板 上时,将相邻的每两个集装箱式数据中心 1之间短边方向上的相对的两个维护 门框架 13分别和连接框体 3的两端进行耦合;这样能够在具体施工的过程中, 根据具体的地形条件来, 通过在短边方向上使用连接框体 3与维护门框架 13 进行耦合,对集装箱式数据中心集群的安装进行微调,避免了对集装箱式数据 中心进行较大难度的调整。
方式三、 在具体实施的过程中, 如图 8所示, 可将连接框体形成的长方形 通道的长度设置为大于维护门的宽度,这样在将连接框体 3的两端分别和相对 的两个维护门框架 13耦合并固定连接后, 还可以将维护门的开启扇 14打开 90度、 与连接框体保持平行, 这样就能根据设备运行的具体情况来连通或隔 断维护通道及冷热风道, 还能在运输时拆除连接框体 3 后将维护门开启扇关 闭, 满足运输过程中的隔离防护要求。
综上所述,在由至少两个集装箱式数据中心排列形成的集装箱式数据中心 集群中, 相邻的每两个集装箱式数据中心之间相对的两个侧板的箱体框架耦 合、或者相对的两个维护门框架耦合、或者相对的两个维护门框架和一个连接 框体耦合, 并通过至少两套连接件将耦合处的框架固定连接起来, 能够使集装 箱式数据中心之间密封严密、拼接平整,对集装箱数据中心内的设备起到较好 的隔离保护作用,从而能够解决现有技术中存在的对多个单集装箱式数据中心 进行拼接后, 单集装箱式数据中心之间密封不严、 拼接不平整、 无法达到良好 的隔离保护作用的问题。
显然,本领域的技术人员可以对本申请进行各种改动和变型而不脱离本申 请的精神和范围。这样,倘若本申请的这些修改和变型属于本申请权利要求及 其等同技术的范围之内, 则本申请也意图包含这些改动和变型在内。

Claims

权 利 要 求
1、 一种集装箱式数据中心集群, 其特征在于, 包括: 至少两个排列组合 成长方体的集装箱式数据中心,相邻的每两个集装箱式数据中心之间相对的两 个侧板的箱体框架耦合, 并通过至少两套连接件相连接, 其中每一套连接件包 括至少一个耦合件,每一个耦合件跨接在相对两个侧板的箱体框架上, 并分别 和两个箱体框架固定连接。
2、 根据权利要求 1所述的集装箱式数据中心集群, 其特征在于, 所述相 邻的每两个集装箱式数据中心之间相对的两个侧板的箱体框架耦合具体包括: 相邻的每两个集装箱式数据中心之间相对的两个长边方向上的侧板的箱 体框架耦合; 或者
相邻的每两个集装箱式数据中心之间相对的两个短边方向上的侧板的箱 体框架耦合; 或者
相邻的每两个集装箱式数据中心之间相对的底面和顶面的箱体框架耦合。
3、 根据权利要求 1所述的集装箱式数据中心集群, 其特征在于, 相邻的 两个集装箱式数据中心之间相对的两个侧板的箱体框架耦合的耦合面之间还 具有防护垫。
4、 根据权利要求 1所述的集装箱式数据中心集群, 其特征在于, 所述连 接件还包括至少两个胶皮护条,所述胶皮护条分别位于所述耦合件与所述相对 的两个侧板的箱体框架之间。
5、 一种集装箱式数据中心集群, 其特征在于, 包括: 至少两个并排排列 的集装箱式数据中心,每个集装箱式数据中心的至少两个相对的侧板上包括维 护门框架,相邻的每两个集装箱式数据中心之间每两个相对的两个维护门框架 耦合,并通过至少两套连接件相连接,其中每一套连接件包括至少一个耦合件, 每一个耦合件跨接在相对的两个维护门框架上,并分别和两个维护门框架固定 连接。
6、 根据权利要求 5所述的集装箱式数据中心集群, 其特征在于, 所述维 护门框架位于集装箱式数据中心之间长边或者短边方向上的侧板上。
7、 根据权利要求 5所述的集装箱式数据中心集群, 其特征在于, 相邻的 每两个集装箱式数据中心之间每两个相对的两个维护门框架耦合的耦合面之 间还具有防护垫。
8、 根据权利要求 5所述的集装箱式数据中心集群, 其特征在于, 所述连 接件还包括至少两个胶皮护条,所述胶皮护条分别位于所述耦合件与所述两个 相对的维护门框架之间。
9、 一种集装箱式数据中心集群, 其特征在于, 包括: 至少两个并排排列 的集装箱式数据中心,每个集装箱式数据中心的至少两个相对的侧板上包括维 护门框架,相邻的每两个集装箱式数据中心之间每两个相对的两个维护门框架 之间通过一个连接框体连通, 所述连接框体为四个面组成的封闭式长方形通 道, 所述连接框体的两端分别和相对的两个维护门框架耦合, 并通过至少两套 连接件相连接, 其中每一套连接件包括至少一个耦合件,每一个耦合件跨接在 连接框体和维护门框架上, 并分别和连接框体和维护门框架固定连接。
10、 根据权利要求 9所述的集装箱式数据中心集群, 其特征在于, 所述维 护门框架位于集装箱式数据中心之间长边或者短边方向上的侧板上。
11、 根据权利要求 9所述的集装箱式数据中心集群, 其特征在于, 所述连 接框体形成的长方形通道的长度大于维护门的宽度。
12、 根据权利要求 9所述的集装箱式数据中心集群, 其特征在于, 所述连 接框体的两端分别和相对的两个维护门框架耦合的耦合面之间还具有防护垫。
13、 根据权利要求 9所述的集装箱式数据中心集群, 其特征在于, 所述连 接件还包括至少两个胶皮护条,所述胶皮护条分别位于所述耦合件与所述连接 框体和两个所述维护门框架之间。
PCT/CN2013/076242 2012-03-26 2013-05-27 集装箱式数据中心集群 WO2013143507A2 (zh)

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