WO2017016214A1 - 一种安装支架及机房 - Google Patents

一种安装支架及机房 Download PDF

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Publication number
WO2017016214A1
WO2017016214A1 PCT/CN2016/073926 CN2016073926W WO2017016214A1 WO 2017016214 A1 WO2017016214 A1 WO 2017016214A1 CN 2016073926 W CN2016073926 W CN 2016073926W WO 2017016214 A1 WO2017016214 A1 WO 2017016214A1
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WO
WIPO (PCT)
Prior art keywords
mounting bracket
cabinet
server
main frame
electric cable
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Application number
PCT/CN2016/073926
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English (en)
French (fr)
Inventor
郭雨龙
蒋钢
万钧
刘帆
翁建刚
王晓辉
Original Assignee
中兴通讯股份有限公司
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2017016214A1 publication Critical patent/WO2017016214A1/zh

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H5/00Buildings or groups of buildings for industrial or agricultural purposes
    • E04H5/02Buildings or groups of buildings for industrial purposes, e.g. for power-plants or factories
    • 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
    • H05K7/18Construction of rack or frame

Definitions

  • the present application relates to the field of computer room construction, and in particular to a mounting bracket and a machine room.
  • the application provides a mounting bracket and a machine room to solve the problem of slow construction speed of the existing equipment room.
  • the present application provides a mounting bracket including a main frame formed by a plurality of frames of a beam and a fixed beam; and a server cabinet for placing server equipment, the server cabinet being fixed to the frame of the main frame between.
  • server cabinets are fixed in parallel, symmetrically, and in a row between the frames of the main frame.
  • front and rear doors of the server cabinet are high opening rate venting doors.
  • the method further includes: an inter-line air conditioner disposed between adjacent columns of the server cabinet, and an air outlet of the inter-row air conditioner is opposite to the high opening rate ventilation door.
  • the method further includes: a chilled water distribution unit, and the chilled water distribution unit is connected to the inter-row air conditioner through a piping system designed as a main frame.
  • the method further includes: an access door and a top window disposed on a periphery of the main frame, and the access door and the top window are disposed around a position where the main frame is not provided with the server cabinet.
  • the utility model further comprises: a strong electric cable rack and a weak electric cable rack, and a safety distance exists between the strong electric cable rack and the weak electric cable rack.
  • the strong electric cable tray and the weak electric cable rack are disposed on the main frame.
  • the method further includes: a fiber optic cable rack.
  • the server cabinet is provided with a through hole through which the line passes.
  • the utility model further comprises a power distribution cabinet, a power supply device and a control cabinet connected with the power distribution cabinet, wherein the control cabinet is provided with software and hardware for controlling the power distribution cabinet.
  • the power supply device comprises: a high voltage DC cabinet and/or a battery cabinet.
  • the application provides a machine room including the mounting bracket provided by the present application and a server device, a server device Place it in the server cabinet of the mounting bracket.
  • the present application provides a mounting bracket, which includes a server cabinet for placing server equipment.
  • the installation bracket can be installed first, and then the server equipment can be placed in the server cabinet to complete the construction of the equipment room. .
  • FIG. 1 is a schematic view of a mounting bracket provided by a first embodiment of the present application
  • FIG. 2 is a schematic view of a mounting bracket provided by a second embodiment of the present application.
  • FIG. 3 is a schematic view showing a first use of a mounting bracket in a second embodiment of the present application
  • FIG. 4 is a schematic view showing a second use of the mounting bracket in the second embodiment of the present application.
  • Figure 5 is a third schematic view of the mounting bracket of the second embodiment of the present application.
  • FIG. 6 is a schematic diagram of a layout of a server cabinet in a second embodiment of the present application.
  • the mounting bracket provided by the present application includes: a main frame 1 , and the main frame 1 is fixed by the beam 1-11 A plurality of frames 1-12 of the beam are formed to cooperate with each other.
  • the mounting bracket also includes a plurality of server cabinets (not shown in FIG. 1) for placing server devices that are secured between the frames 1-12 of the main frame 1.
  • the server cabinets in the above embodiments are fixed in parallel, symmetric, and in-line between the frames 1-12 of the main frame 1.
  • the front and rear doors of the server cabinet in the above embodiments are high opening rate venting doors.
  • the mounting bracket in the above embodiment further includes: an inter-row air conditioner disposed between adjacent columns of the server cabinet, and the air outlet of the inter-row air conditioner is opposite to the high opening rate ventilation door.
  • the mounting bracket in the above embodiment further includes: a chilled water distribution unit connected to the inter-line air conditioner by a piping system designed as a main frame.
  • the mounting bracket in the above embodiment further includes: a passage door and a top window disposed at a periphery of the main frame, and the access door and the top window are disposed around a position where the main frame is not provided with the server cabinet.
  • the mounting bracket in the above embodiment further includes: a strong electric cable rack and a weak electric cable rack, and a safety distance exists between the high-voltage cable rack and the weak electric cable rack.
  • the strong electric cabling and the weak electric cabling rack in the above embodiment are disposed in the main frame.
  • the mounting bracket in the above embodiment further includes: a fiber optic cable rack.
  • the server cabinet 2 in the above embodiment is provided with a line through hole.
  • the mounting bracket in the above embodiment further includes a power distribution cabinet, a power supply device, and a control cabinet connected to the power distribution cabinet.
  • the control cabinet is internally provided with hardware and software for controlling the power distribution cabinet.
  • the mounting bracket power supply device in the above embodiment comprises: a high voltage DC cabinet and/or a battery cabinet.
  • the present application provides a machine room including the mounting bracket provided by the present application and a server device placed in a server cabinet of the mounting bracket.
  • the server cabinet is taken as an example.
  • the mounting bracket after complete assembly includes: main frame 1, server cabinet 2, access door 3, top window 5, channel wiring and lighting installation beam 5, high voltage DC cabinet 6, and chilled water distribution unit. 7.
  • the server cabinets 2 are arranged in two rows, face to face or back to back. The number of server cabinets 2 can be configured according to actual needs.
  • the inter-line air conditioners 10 are placed in the middle of the two rows of server cabinets 2, a total of six, located between the cabinets, and the actual position can be adjusted according to the number of cabinet configurations.
  • One of the power distribution cabinets 12 is installed in the left column of the entire channel.
  • One of the control cabinets 16 is installed in the right column of the entire channel.
  • One of the high voltage DC cabinets 6 is installed at the right side of the channel close to the power distribution cabinet 12.
  • One of the chilled water distribution units 7 is installed at the end of the other row of cabinets on the right side.
  • the weak electric cable trays 13 are respectively located outside the cabinets on both sides of the channel, and are connected at the end of the column through a cross-row cable rack.
  • the fiber optic cable rack 15 is mounted on the weak electric cable rack, one on each side, and no connection is needed.
  • the high-voltage cable racks 14 are respectively located inside the cabinets on both sides of the channel, and are connected at the column head through a cross-row cable rack.
  • the main frame, the access door and the top window close the passages in the form of two rows of cabinets, so that the cold air or hot air flow located therein does not overflow, ensuring a single circulation of the air flow to avoid air loss.
  • the main frame is 2500mm high and can be installed in all cabinets with a height of ⁇ 2500mm. When the height of the cabinet is lower than 2500mm, a baffle is installed between the cabinet and the frame beam for sealing.
  • the main frame 1 is installed on the ground by the frame 1-12 according to the actual demand quantity distribution, for example, by means of an expansion bolt or a chemical anchor, and is fixedly connected by the beam 1-11, and the frame on the rightmost side is required after installation.
  • the header cover 1-13 is separately installed for sealing; wherein the barriers 1-14 are installed on the inner side of the channel and between the frames for positioning when the cabinet of the server cabinet is installed.
  • the mounting bracket includes basic components such as main frame 1, server cabinet 2, access door 3, top window 5, channel wiring and photos Ming installation beam 5, high voltage DC cabinet 6, chilled water distribution unit 7, battery cabinet 8, switch box 9, inter-line air conditioner 10, pipeline 11, power distribution cabinet 12, weak electric cable tray 13, strong electric cable tray 14,
  • the above equipment constitutes the infrastructure provided by the present application, and provides the necessary power distribution, cooling, lighting, wiring, etc. for the server equipment products.
  • the functional mounting of the above mounting brackets includes:
  • the cabinet includes front and rear doors that are all high opening rate venting doors.
  • the number of cabinets can be determined based on the actual business load.
  • the air conditioner consists of six inter-row air conditioners with a width of 300mm and a depth of 1200mm.
  • the air conditioner is installed between the server cabinets at intervals; and comprises a chilled water distribution unit for distributing chilled water to the air conditioner between the lines and a piping system with a width of 600 mm and a depth of 1200 mm, wherein the chilled water distribution unit is installed The right end of the channel is listed.
  • It includes a power distribution cabinet, 300mm deep and 1200mm wide, installed on the left side of the entire modular data center channel, as a column head power distribution cabinet; a high voltage DC cabinet, 600mm wide and 1200mm deep, used to provide high voltage DC power to the module. Installed on the left side of the two-row cabinet, behind the power distribution cabinet; two battery cabinets, 600mm wide and 1200mm deep, are used to provide backup power to the equipment, which are installed after the high-voltage DC cabinets on both sides of the cold aisle and after the control cabinet.
  • the control cabinet includes a control cabinet with internal control software and hardware.
  • the control cabinet is 300mm deep and 1200mm wide and is located at the right side of the channel.
  • It includes a strong electric cable tray, a weak electric cable tray and a fiber optic cable rack;
  • the frame type, the full decoupling design, the module infrastructure and the functional unit (cabinet) are separated, and the functional units can be installed, disassembled and replaced after the overall engineering is completed.
  • the entire module power supply system uses high-voltage DC plus AC dual-channel power supply, while cooling uses a water-cooled inter-column cooling mode with a chilled water distribution unit.
  • the entire module consists of a power distribution cabinet, a high voltage DC cabinet, two battery cabinets, six interline air conditioners, and a chilled water distribution unit as the basic configuration of the module's infrastructure.
  • the mounting bracket provided by the present application includes the following steps when constructing:
  • the first step is to install the main frame. Firstly, the frame is installed according to the pre-layout and fixed to the ground by expansion bolts. Then all the frames are connected by the beam, and then the inside of the channel is installed with the baffle between the frames; Complete the installation of the header cover;
  • the second step is to install the power distribution and refrigeration cabinets, first install the power distribution cabinet and the control cabinet; secondly, install the inter-row air conditioner, the chilled water distribution unit, and the pipeline between the connections;
  • the third step is to install the lighting and wiring system, first install the channel wiring and the lighting installation beam; secondly install the weak electric cable rack, the strong electric cable rack, the fiber optic cable rack; finally, on the channel wiring and the lighting installation beam Install the lamp.
  • the fourth step is to install the server cabinet according to the actual requirements.
  • the server cabinet When the server cabinet is installed, it only needs to be pushed into the cabinet and connected to strong and weak power. It does not need to be fixed with other equipment. When maintenance or whole cabinet replacement is required, Disconnect strong and weak power and pull out the cabinet for replacement. When the initial service does not meet the actual requirements and the server equipment is small, the corresponding cabinet position can be closed by the baffle.
  • the modular data center/computer room mode provided in this embodiment is a data center form that can simultaneously satisfy rapid deployment and efficient cooling efficiency. It can quickly realize the construction of data centers of various sizes through modular assembly and assembly through field modules. It is closed or completely enclosed by cold and hot channels, avoiding backflow and improving cooling efficiency.
  • the present application provides a mounting bracket, which includes a server cabinet for placing server equipment.
  • the installation bracket can be installed first, and then the server equipment can be placed in the server cabinet to complete the construction of the equipment room. .
  • the application provides a mounting bracket that can be applied to a machine room.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

一种安装支架及机房,该安装支架包括主框架(1),主框架(1)由横梁(1-11)及固定横梁(1-11)的多个框架(1-12)相互配合形成。该安装支架还包括多个用于放置服务器设备的服务器机柜(2),服务器机柜(2)固定于主框架(1)的框架(1-12)之间。在使用时,可以先完成安装支架的安装,然后将服务器设备放置在服务器机柜(2)内即可完成机房的建设,机房建设速度快。

Description

一种安装支架及机房 技术领域
本申请涉及机房建设领域,尤其涉及一种安装支架及机房。
背景技术
传统机房(又称数据中心)在建设时,需要先设置服务器设备,在服务器设备设置后,进行布线、冷却***的设置,最后构建框架,安装门窗等;其存在建设周期长等问题,满足不了客户应用需求。
因此,如何提供一种可以快速建设的机房技术,是本领域技术人员亟待解决的技术问题。
发明内容
本申请提供了一种安装支架及机房,以解决现有机房建设速度慢的问题。
本申请提供了一种安装支架,其包括主框架,主框架由横梁及固定横梁的多个框架相互配合形成;还包括多个用于放置服务器设备的服务器机柜,服务器机柜固定于主框架的框架之间。
进一步的,服务器机柜平行、对称、呈列式地固定于主框架的框架之间。
进一步的,服务器机柜的前门和后门都为高开孔率通风门。
进一步的,还包括:设置于服务器机柜相邻列之间的行间空调,行间空调的出风口与高开孔率通风门相对。
进一步的,还包括:冷冻水分配单元,冷冻水分配单元通过为主框架设计的管路***而与行间空调连接。
进一步的,还包括:设置于主框架***的通道门及顶窗,通道门及顶窗围绕主框架未设置服务器机柜的位置设置。
进一步的,还包括:强电走线架和弱电走线架,强电走线架与弱电走线架之间存在安全距离。
进一步的,强电走线架和弱电走线架被设置在主框架上。
进一步的,还包括:光纤走线架。
进一步的,服务器机柜设置有供线路经过的通孔。
进一步的,还包括配电柜、供电装置以及与配电柜连接的管控柜,管控柜的内部设置有用于管控配电柜的软硬件。
进一步的,供电装置包括:高压直流柜和/或电池柜。
本申请提供了一种机房,其包括本申请提供的安装支架以及服务器设备,服务器设备 放置于安装支架的服务器机柜内。
本申请的有益效果:
本申请提供了一种安装支架,其包括用于放置服务器设备的服务器机柜,在使用时,可以先完成安装支架的安装,然后将服务器设备放置在服务器机柜内即可完成机房的建设,速度快。
附图说明
图1为本申请的第一实施例提供的安装支架的示意图;
图2为本申请的第二实施例提供的安装支架的示意图;
图3为本申请的第二实施例中安装支架的第一使用示意图;
图4为本申请的第二实施例中安装支架的第二使用示意图;
图5为本申请的第二实施例中安装支架的第三使用示意图;
图6为本申请的第二实施例中服务器机柜布局示意图。
具体实施方式
现通过具体实施方式并结合附图对本申请做出进一步的诠释说明。
第一实施例
图1为本申请的第一实施例提供的安装支架的示意图,由图1可知,在本实施例中,本申请提供的安装支架包括:主框架1,主框架1由横梁1-11及固定横梁的多个框架1-12相互配合形成。安装支架还包括,多个用于放置服务器设备的服务器机柜(图1未示出),服务器机柜固定于主框架1的框架1-12之间。
在一些实施例中,上述实施例中的服务器机柜平行、对称、呈列式地固定于主框架1的框架1-12之间。
在一些实施例中,上述实施例中的服务器机柜的前门和后门都为高开孔率通风门。
在一些实施例中,上述实施例中的安装支架还包括:设置于服务器机柜相邻列之间的行间空调,行间空调的出风口与高开孔率通风门相对。
在一些实施例中,上述实施例中的安装支架还包括:冷冻水分配单元,冷冻水分配单元通过为主框架设计的管路***而与行间空调连接。
在一些实施例中,上述实施例中的安装支架还包括:设置于主框架***的通道门及顶窗,通道门及顶窗围绕主框架未设置服务器机柜的位置设置。
在一些实施例中,上述实施例中的安装支架还包括:强电走线架和弱电走线架,强电走线架与弱电走线架之间存在安全距离。
在一些实施例中,上述实施例中的强电走线架和弱电走线架被设置在主框架。
在一些实施例中,上述实施例中的安装支架还包括:光纤走线架。
在一些实施例中,上述实施例中的服务器机柜2设置有线路通孔。
在一些实施例中,上述实施例中的安装支架还包括配电柜、供电装置以及与配电柜连接的管控柜,管控柜的内部设置有用于管控配电柜的软硬件。
在一些实施例中,上述实施例中的安装支架供电装置包括:高压直流柜和/或电池柜。
对应地,本申请提供了一种机房,其包括本申请提供的安装支架以及服务器设备,服务器设备放置于安装支架的服务器机柜内。
第二实施例
现结合图2-图6及具体应用场景对本申请做进一步的诠释说明,在本实施例中,以服务器机柜为2排为例进行说明。
由图2至图6可知,完全组装之后的安装支架包括:主框架1、服务器机柜2、通道门3、顶窗5、通道走线及照明安装梁5、高压直流柜6、冷冻水分配单元7、电池柜8、交换机框9、行间空调10、管道11、配电柜12、弱电走线架13、强电走线架14、光纤走线架15和管控柜16。其中,服务器机柜2共两排,面对面或背靠背地放置,服务器机柜2的数量可以根据实际需求进行配置。
其中行间空调10分别放置在两排服务器机柜2中间,共六台,位于机柜之间,实际位置可根据机柜配置数量进行调整。
其中配电柜12共一台,安装在整个通道左侧列头。
其中管控柜16共一台,安装在整个通道右侧列头。
其中高压直流柜6共一台,安装在通道右侧紧靠配电柜12的位置。
其中冷冻水分配单元7共一台,安装于整个右侧另一排机柜列尾。
其中电池柜8共两台,一台安装在高压直流柜6旁边的位置,一台安装在对面列管控柜的位置。
其中弱电走线架13分别位于通道两侧的柜体外侧,并在列尾通过一条跨列走线架进行连接。
其中光纤走线架15安装于弱电走线架上,两侧各一条,无需连接。
其中强电走线架14分别位于通道两侧的柜体内侧,并在列头通过一条跨列走线架进行连接。
在使用中,主框架、通道门和顶窗对两列机柜形式的通道进行了封闭,使得位于其中的冷气流或热气流不会外溢,确保气流形式单一循环,避免气流损失。主框架内高2500mm,可以适应于≤2500mm高规格的所有机柜安装,当机柜高度低于2500mm时,在机柜和框架横梁之间安装挡板用于封闭。
其中,主框架1由框架1-12根据实际需求数量分布例如通过膨胀螺栓或化学锚栓等手段安装在地面,并通过横梁1-11进行固定连接,位于最右侧的框架在安装完毕后需要分别安装列头盖板1-13进行封闭;其中,档条1-14安装于通道内侧、框架之间,用于在服务器机柜的柜体安装时定位。
安装支架包含基础构件如主框架1、服务器机柜2、通道门3、顶窗5、通道走线及照 明安装梁5、高压直流柜6、冷冻水分配单元7、电池柜8、交换机框9、行间空调10、管道11、配电柜12、弱电走线架13、强电走线架14、光纤走线架15、管控柜16,还包含其他必要的设施,如LED灯、声光报警器、门禁等等。以上设备构成了本申请提供的基础设施架构,为服务器设备产品提供必要的配电、制冷、照明、布线等。
将上述安装支架进行功能分类,其包括:
1、结构封闭子***;
包含模块框架、通道门、顶窗。
2、机柜子***;
包含两排服务器机柜,两排机柜面对面地放置,中间形成冷通道或热通道。机柜包括均为高开孔率通风门的前后门。机柜的数量可根据实际业务负载来确定。
3、冷却子***;
包含六台宽300mm、深1200mm的行间空调。该空调间隔地安装在服务器机柜之间;包含一台宽600mm、深1200mm的用于给行间空调分配冷冻水的冷冻水分配单元以及它们之间的管路***,其中冷冻水分配单元安装于通道右侧列尾。
4、电气子***;
包含一台配电柜,深300mm、宽1200mm,安装于整个模块化数据中心通道左侧,作为列头配电柜;一台高压直流柜,宽600mm、深1200mm,用于给模块提供高压直流电,安装于两排机柜左侧,配电柜之后;两台电池柜,宽600mm、深1200mm,用于给设备提供备用电源,分别安装于冷通道两侧高压直流柜之后及管控柜之后。
5、管控子***;
包含一台管控柜,内部包含管控相关软硬件,该管控柜尺寸为深300mm、宽1200mm,位于通道右侧列头。
6、布线子***;
包含强电走线架、弱电走线架及光纤走线架;
与现有技术相比较,采用框架式、全解耦设计,模块基础架构和功能单元(柜体)分离,各功能单元可以在整体工程完毕后安装、拆卸及替换。
整个模块供电***采用高压直流加交流双路供电,制冷则采用带冷冻水分配单元的水冷列间冷却模式。
整个模块包含一台配电柜、一台高压直流柜、两台电池柜、六台行间空调、一台冷冻水分配单元作为该模块的基础设施的基本配置。
其模块化架构可以实现数据中心的快速搭建,且内部包含冷却、配电、布线等模块,可以适应大、中、小型数据中心快速部署。
本申请提供的安装支架在进行搭建时,包括以下步骤:
第一步、进行主框架的安装,首先把框架按照预先的布局对地进行安装,通过膨胀螺栓固定在地面;然后通过横梁连接所有框架,之后在通道内侧,框架之间安装档条;最后 完成列头盖板的安装;
第二步、进行配电、制冷柜体的安装,首先安装配电柜、管控柜;其次安装行间空调、冷冻水分配单元以及连接之间的管路;
第三步、进行照明、布线***的安装,首先安装通道走线及照明安装梁;其次安装弱电走线架、强电走线架、光纤走线架;最后在通道走线及照明安装梁上安装灯管。
第四步、根据实际需求进行服务器机柜的安装,服务器机柜在安装时,仅需要推入机柜位、连接强弱电即可,无需和其他设备进行固定;当需要维护或整机柜替换时,断开强弱电,拉出机柜进行替换即可;而当一开始业务未达到实际需求,服务器设备较少时,则通过挡板封闭相应机柜位即可。
本实施例提供的模块化数据中心/机房的模式就是一种可以同时满足快速部署和高效冷却效率的数据中心形式。它通过模块化的拼装形式,通过现场模块拼装可以快速实现各种规模数据中心的搭建。它通过冷、热通道分别封闭或全部封闭的形式,避免了回流现象,提升了冷却效率。
综上可知,通过本申请的实施,至少存在以下有益效果:
本申请提供了一种安装支架,其包括用于放置服务器设备的服务器机柜,在使用时,可以先完成安装支架的安装,然后将服务器设备放置在服务器机柜内即可完成机房的建设,速度快。
以上仅是本申请的具体实施方式而已,并非对本申请做任何形式上的限制,凡是依据本申请的技术实质对以上实施方式所做的任意简单修改、等同变化、结合或修饰,均仍属于本申请技术方案的保护范围。
工业适用性
本申请提供一种安装支架,其能够应用于机房。

Claims (13)

  1. 一种安装支架,其特征在于,包括主框架,所述主框架由横梁及固定所述横梁的多个框架相互配合形成;还包括多个用于放置服务器设备的服务器机柜,所述服务器机柜固定于所述主框架的框架之间。
  2. 如权利要求1所述的安装支架,其特征在于,所述服务器机柜平行、对称、呈列式地固定于所述主框架的框架之间。
  3. 如权利要求2所述的安装支架,其特征在于,所述服务器机柜的前门和后门都为高开孔率通风门。
  4. 如权利要求3所述的安装支架,其特征在于,还包括:设置于所述服务器机柜相邻列之间的行间空调,所述行间空调的出风口与高开孔率通风门相对。
  5. 如权利要求4所述的安装支架,其特征在于,还包括:冷冻水分配单元,所述冷冻水分配单元通过为所述主框架设计的管路***而与所述行间空调连接。
  6. 如权利要求1所述的安装支架,其特征在于,还包括:设置于所述主框架***的通道门及顶窗,所述通道门及顶窗围绕所述主框架未设置所述服务器机柜的位置设置。
  7. 如权利要求1所述的安装支架,其特征在于,还包括:强电走线架和弱电走线架,所述强电走线架与弱电走线架之间存在安全距离。
  8. 如权利要求7所述的安装支架,其特征在于,所述强电走线架、弱电走线架被设置在所述主框架上。
  9. 如权利要求7所述的安装支架,其特征在于,还包括:光纤走线架。
  10. 如权利要求9所述的安装支架,其特征在于,所述服务器机柜设置有供线路经过的通孔。
  11. 如权利要求1至10任一项所述的安装支架,其特征在于,还包括配电柜、供电装置以及与所述配电柜连接的管控柜,所述管控柜的内部设置有用于管控所述配电柜的软硬件。
  12. 如权利要求11所述的安装支架,其特征在于,所述供电装置包括:高压直流柜和/或电池柜。
  13. 一种机房,其特征在于,包括如权利要求1至12任一项所述的安装支架以及服务器设备,所述服务器设备放置于所述安装支架的服务器机柜内。
PCT/CN2016/073926 2015-07-28 2016-02-17 一种安装支架及机房 WO2017016214A1 (zh)

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CN109302824A (zh) * 2017-07-24 2019-02-01 中兴通讯股份有限公司 通信设备的模块化组件及具有该框架的机房

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