WO2019223417A1 - 一种用于存储区块链大数据的散热机房 - Google Patents

一种用于存储区块链大数据的散热机房 Download PDF

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Publication number
WO2019223417A1
WO2019223417A1 PCT/CN2019/079701 CN2019079701W WO2019223417A1 WO 2019223417 A1 WO2019223417 A1 WO 2019223417A1 CN 2019079701 W CN2019079701 W CN 2019079701W WO 2019223417 A1 WO2019223417 A1 WO 2019223417A1
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wall
self
wind wall
wind
cooling
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PCT/CN2019/079701
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English (en)
French (fr)
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陈庆洪
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Chen Qinghong
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Publication of WO2019223417A1 publication Critical patent/WO2019223417A1/zh

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    • 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
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating

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  • the utility model relates to a computer room, in particular to a heat-dissipating computer room for storing block chain big data.
  • Existing computer rooms use ordinary cabinets, which are equipped with small fans to dissipate heat.
  • the racks in the entire computer room are arranged in rows, and central air conditioners such as central air conditioners are provided for overall heat dissipation.
  • the temperature in the entire machine room is very high, and in order to protect the movement of the electronic system, the dust content of the air intake in the machine room is relatively high, and the power consumption of the cooling fan is large.
  • the present utility model provides a heat-dissipating machine room for storing large data of a block chain, which has good heat dissipation effect and is adapted to harsh environments.
  • the present utility model provides a heat dissipation computer room for storing block chain big data, which includes: a self-cooling closed box and a support frame; the support frame is used for sequentially placing a plurality of self-cooled closed boxes in a vertical direction, There is a gap between the adjacent self-cooling closed enclosures; a bottom air wall is provided below the support frame, and there is a gap between the bottom air wall and the bottommost self-cooling closed enclosure; a support frame is provided above A top wind wall, which includes a gap between the top wind wall and the self-cooled closed cabinet at the top; a front wind wall is provided in front of the support frame, and a gap is included between the front wind wall and the self-cooled closed cabinet; The rear of the support frame is provided with a rear wind wall, and there is a gap between the rear wind wall and the self-cooling closed enclosure; the support frame also includes side wind walls on both sides; the top wind wall, the bottom wind wall, and the front wind wall.
  • the rear wind wall and the two side wind walls constitute a heat dissipation space; the lower part of the front wind wall is provided with an air inlet, which is lower than the top surface of the self-cooling closed enclosure at the bottom; Space top An air outlet is provided, and the air outlet is located higher than the self-cooling closed cabinet at the top, and the distance between the air outlet and the rear wind wall is smaller than the distance from the front wind wall.
  • a cooling fan is further included, and an exhaust end of the cooling fan is connected to the air inlet.
  • the gap is not less than 80 mm.
  • the machine room includes a ground, a ceiling, an external wall, and a partition wall; the top wind wall is a ceiling or a partition; the bottom wind wall is a floor or a partition; the front wind wall, the rear wind wall, and the side wind
  • the wall includes at least one of an outer wall, a partition wall, a partition, and a wind curtain.
  • the ceiling wind wall is a ceiling
  • the air outlet is located on the ceiling.
  • an upper cloth curtain is disposed under the ceiling, the upper cloth curtain is located between the air outlet and the front wind wall, and a gap is formed between a lower portion of the upper cloth curtain and a self-cooled closed cabinet at the top.
  • a plurality of the heat dissipation spaces are arranged side by side, and a plurality of the heat dissipation spaces arranged side by side constitute a rack; adjacent heat dissipation spaces share a side wind wall therebetween; between the rack and the machine room With pedestrian access.
  • a plurality of the racks are arranged side by side horizontally, and a pedestrian passage is provided between adjacent racks.
  • the support frame is overlapped by steel bars.
  • the utility model provides a heat-dissipating machine room for storing block chain big data, and a plurality of self-cooling closed enclosures are spaced within the heat-dissipating space through a support frame.
  • the air inlet is set at the bottom of the front wind wall, which can provide lateral cold air.
  • the cold air flows longitudinally and / or laterally from the bottom of the heat dissipation space to the air outlet at the top of the heat dissipation space, taking away the heat from the self-cooling closed enclosure.
  • the cold air does not directly contact the movement in the self-cooled closed case, and only passes through the surface of the self-cooled closed case.
  • the dust and harmful gas components carried in the cold air stay only on the outer surface of the self-cooled closed case, so that the movement is protected from dust. And harmful gas components.
  • the electronic system of the utility model has high reliability, long service life and low maintenance cost.
  • the cooling fan is used to provide cold air with higher wind speed. Due to the installation of the self-cooling closed enclosure, the requirement for the dust content of the cold air is reduced, no strict dust removal treatment is required, and the power required for the cooling fan is low.
  • Exterior walls, partition walls, floors, and ceilings are the self-contained structure of the computer room, and partitions and wind-blocking curtains are lighter. Using these structures or materials to form a heat dissipation space can save costs, and at the same time, the heat insulation and sealing effect is very good.
  • the air outlet is located on the ceiling to better exhaust hot air.
  • Setting the upper curtain can adjust the air flow between the ceiling and the top self-cooling closed cabinet, which is better for heat dissipation.
  • Pedestrian aisles are arranged between multiple rows of racks, which are used to repair equipment.
  • the support frame has a simple structure, good ventilation, and good heat dissipation effect.
  • FIG. 1 is a top view of a cooling machine room for storing big data of a blockchain
  • Fig. 2 is a cross-sectional view at A-A in Fig. 1.
  • multiple rows of racks are arranged in the equipment room.
  • the right side is the front side of the rack
  • the left side is the rear side of the rack.
  • Multiple racks are arranged in the front-rear direction, and there is a pedestrian passage 13 between adjacent racks, and between the rack and the machine room.
  • a passage curtain 5 is provided between the rack and the machine room. air flow. Pedestrians can pass through the passage curtain 5.
  • the front wind wall and the rear wind wall of the rack in the middle position are both composed of the partition plate 1, and the partition plate 1 can be disassembled as a whole or partly.
  • the rear wind wall of the leftmost frame is composed of the outer wall of the machine room.
  • Partition walls can also be set up in the machine room, and the rack in the middle position builds its own front wind wall or rear wind wall with the partition wall.
  • the ceiling position corresponding to each rack includes a long air outlet 12, or a plurality of air outlets 12 arranged in a dense arrangement.
  • the exhaust end of the cooling fan is connected to the air inlet 11, which can be arranged between two racks, or it can be located outside and communicate with the air inlet 11 through a pipe.
  • the rack includes a plurality of heat radiation spaces arranged side by side, and adjacent heat radiation spaces share the same side wind wall.
  • the side wind walls in FIG. 1 are all wind blocking cloth curtains 4.
  • a plurality of self-cooling closed enclosures 2 are placed in the vertical direction in the heat dissipation space in sequence, and the distance h between adjacent self-cooled closed enclosures 2 is 80 mm, and h may be greater than 80 mm.
  • the heat inside the self-cooling closed case 2 is transferred to the surface of the case through the thermal bridge, and the heat is taken away by the cold wind.
  • the closed case can isolate dust and harmful gas components such as oxygen, prevent oxidation and deterioration of the movement, and increase the life.
  • the floor of the equipment room is used as the bottom wind wall. In fact, it can also be set on a platform at a certain height from the ground.
  • a gap is left between the bottom wind wall, the front wind wall, and the rear wind wall and the self-cooling closed enclosure 2.
  • the front wind wall uses a removable partition 1. When cleaning is required, remove the partition 1 and use a vacuum cleaner to clean the outer surface of the self-cooling closed enclosure 2.
  • the rear wind wall is an external wall
  • the front wind wall is a partition 1, and the two are connected to the ceiling upward.
  • the lower part of the front wind wall includes an air inlet 11, and the position of the air inlet 11 is not higher than the top surface of the self-cooling sealed enclosure 2 at the bottom.
  • the ceiling distance in FIG. 2 is higher than the top self-cooling closed case 2.
  • the ceiling is provided with an air outlet 12 near the rear wall.
  • the air outlet 12 can also be set at the rear wall higher than the top The location of the self-cooling closed enclosure 2.
  • the air outlet 12 may be provided with an exhaust fan.
  • the ceiling is provided with a hanging upper cloth curtain 3, and a gap of not less than 80 mm is also maintained between the lower end of the upper cloth curtain 3 and the topmost self-cooling closed cabinet.
  • the upper cloth curtain 3 is used to improve the air flow pattern at the top of the heat dissipation space, so that the cold air on the front side flows closer to the self-cooled closed enclosure 2 to the air outlet 12.
  • the cooling air enters the cooling air from the air inlet 11 in the cooling space, and the cooling air flows upward or backward along the space between the self-cooling closed chassis 2 or the space between the self-cooling closed chassis 2 and each wind wall. Emitted heat.
  • the heat-carrying air is discharged from the air outlet 12 through the heat radiation space.
  • the support frame is made of thin iron bars or steel bars, which maximizes the surface of the self-cooling closed case for heat dissipation.

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  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

本申请涉及一种用于存储区块链大数据的散热机房,其包括:自冷密闭机箱和支撑架;支撑架的周围设置有底风壁、顶风壁、前风壁、后风壁和侧风壁;顶风壁、底风壁、前风壁、后风壁和两个侧风壁构成了散热空间;前风壁下部设置进气口,散热空间顶部设置出气口。本申请提供的用于存储区块链大数据的散热机房,多个自冷密闭机箱间隔地处于散热空间内。进气口提供横向的冷风,冷风从散热空间的底部纵向和/或横向流动到出气口,带走了自冷密闭机箱的热量。同时冷风不与自冷密闭机箱内的机芯直接接触,只从自冷密闭机箱表面经过,冷风中携带的尘土及有害气体成分只停留在自冷密闭机箱的外表面,使得机芯免受灰尘及有害气体成分侵扰。

Description

一种用于存储区块链大数据的散热机房 技术领域
本实用新型涉及机房,尤其是一种用于存储区块链大数据的散热机房。
背景技术
随着区块链技术的发展,区块链网络内需要存储的区块数据越来越多,且要求长时间、高可靠性的安全储存。其链式网络需要读取和记录数据的频率也越来越高。在高强度的使用过程中,计算机设备的散热功能压力很大。
现有的机房都采用普通机箱,机箱内部带有小风扇散热,整个机房内的机架成排布设,上方设置中央空调等整体散热。整个机房内温度很高,而且为了保护电子系统的机芯,对机房空间的进气含尘量要求较高,冷却风机的功耗较大。
实用新型内容
(一)要解决的技术问题
为了解决现有技术的上述问题,本实用新型提供一种散热效果好、适应恶劣环境的用于存储区块链大数据的散热机房。
(二)技术方案
为了达到上述目的,本实用新型提供一种用于存储区块链大数据的散热机房,其包括:自冷密闭机箱和支撑架;支撑架用于将若干自冷密闭机箱沿竖向依次放置,相邻所述自冷密闭机箱之间包括具有间隙;支撑架的下方设置有底风壁,所述底风壁与位于最底部的自冷密闭机箱之间包括具有间隙;支撑架的上方设置有顶风壁,所述顶风壁与位于最顶部的自冷密闭机箱之间包括具有间隙;支撑架的前方设置有前风壁,所述前风壁与自冷密闭机箱之间包括具有间隙;所述支撑架的后方设置有后风壁,所述后风壁与自冷密闭机箱之间包括具有间隙;所述支撑架两 侧还包括侧风壁;所述顶风壁、底风壁、前风壁、后风壁和两个侧风壁构成了一个散热空间;前风壁下部设置有进气口,所述进气口低于所述位于最底部的自冷密闭机箱的顶面;所述散热空间顶部设置出气口,所述出气口的位置高于位于最顶部的自冷密闭机箱,且所述出气口与后风壁的距离小于其与前风壁的距离。
优选的,还包括冷却风机,所述冷却风机的排气端与所述进气口相连。
优选的,所述间隙不小于80mm。
优选的,所述机房包括地面、天花板、外墙和隔断墙;所述顶风壁为天花板或隔板;所述底风壁为地面或隔板;所述前风壁、后风壁和侧风壁至少包括外墙、隔断墙、隔板和阻风布帘其中之一。
进一步的,所述顶风壁为天花板,所述出气口位于所述天花板。
进一步的,所述天花板下设置有上布帘,所述上布帘位于所述出气口与前风壁之间,所述上布帘的下部与最顶部的自冷密闭机箱之间具有间隙。
优选的,多个所述散热空间侧向并列设置,并列设置的多个所述散热空间构成机架;相邻所述散热空间共用二者间的侧风壁;机架与所述机房之间设有人行通道。
进一步的,多个所述机架横向并排设置,相邻所述机架之间设有人行通道。
优选的,所述支撑架为钢条搭接。
(三)有益效果
本实用新型提供一种用于存储区块链大数据的散热机房,通过支撑架使多个自冷密闭机箱间隔地处于散热空间之内。进气口设置在前风壁底部,可以提供横向的冷风,冷风从散热空间的底部纵向和/或横向流动到散热空间顶部的出气口,带走了自冷密闭机箱的热量。同时冷风不与自冷密闭机箱内的机芯直接接触,只从自冷密闭机箱表面经过,冷风中 携带的尘土及有害气体成分只停留在自冷密闭机箱的外表面,使得机芯免受灰尘及有害气体成分侵扰。
本实用新型电子系统可靠性高,使用寿命长、维护成本低。
冷却风机用于提供风速更大的冷风。由于自冷密闭机箱的设置,使得冷风的含尘量要求降低,无需严格的除尘处理,冷却风机所需的功率较低。
间隙越大,风量越大,散热速度更快。
外墙、隔断墙、地面、天花板是机房的自有结构,隔板、阻风布帘较轻便。使用这些结构或材质构成散热空间,可以节省成本,同时隔热、密闭效果很好。
出气口位于天花板,可以更好地排出热气。
设置上布帘可以调整天花板与最顶部自冷密闭机箱间的空气流动,有利于更好地散热。
多个散热空间侧向并列设置,可以节省侧风壁设置数量,机房内可以设置更多的自冷密闭机箱用于工作。多排机架间设置人行通道,用于检修设备等。
支撑架结构简单,通风好,散热效果好。
附图说明
图1为一种用于存储区块链大数据的散热机房俯视图;
图2为图1中A-A处的剖视图。
【附图标记说明】
1:隔板;11:进气口;12:出气口;13:人行通道;2:自冷密闭机箱;3:上布帘;4:阻风布帘;5:通道布帘。
具体实施方式
为了更好的解释本实用新型,以便于理解,下面结合附图,通过具体实施方式,对本实用新型作详细描述。
如图1所示,机房内设置有多排机架,图1中右侧为机架的前侧,左侧为机架的后侧。多个机架沿前后方向排列,相邻机架之间、机架与机房之间留有人行通道13,机架与机房之间设置有通道布帘5,通道布帘5放下后用于阻挡空气流动。行人可以从通道布帘5通过。
中间位置的机架前风壁和后风壁都是由隔板1构成,隔板1可以整体拆卸,也可以部分地拆卸。最左侧机架的后风壁由机房的外墙构成。机房内也可以设置隔断墙,中间位置的机架借助隔断墙构建自己的前风壁或后风壁。每个机架对应的天花板位置都包括长条状的出气口12,也可以是密布排列的多个出气口12。
冷却风机的排气端与进气口11相连,其可以设置在两个机架之间,也可以设置在外部再通过管路连通进气口11。
机架包括并排设置的多个散热空间,相邻的散热空间共用同一个侧风壁。图1中侧风壁全部为阻风布帘4。其实也可以使用可拆卸的隔板1,或者下部使用隔板1,上部悬挂阻风布帘4。
如图2所示,散热空间内纵向依次放置有多个自冷密闭机箱2,相邻自冷密闭机箱2间的距离h=80mm,h也可以大于80mm。自冷密闭机箱2内部的热量经由热桥传递给机箱表面,热量再被冷风带走。密闭的机箱可以隔绝灰尘,也可以隔绝氧气等有害气体成分,防止机芯氧化变质,提高了寿命。图2中以机房地面为底风壁,实际上也可以设置在离地面一定高度的平台上。
底风壁、前风壁、后风壁都与自冷密闭机箱2之间留有间隙。前风壁使用可拆卸的隔板1。当需要清灰时,拆掉隔板1,使用吸尘器对自冷密闭机箱2外表面清灰。
图2中后风壁为外墙,前风壁为隔板1,二者向上连接天花板。前风壁下部包括进气口11,进气口11的位置不高于位于最底部的自冷密闭机箱2的顶面。图2中天花板距离位于最顶部的自冷密闭机箱2之上较高的位置,天花板上靠近后风壁的位置有出气口12,实际上出气口12也可 以设置在后风壁高于最顶部的自冷密闭机箱2的位置。出气口12也可以设置有排气扇。
天花板上设置有垂下来的上布帘3,上布帘3的下端与最顶部的自冷密闭机箱之间也保持不小于80mm的间隙。上布帘3用于改善散热空间顶部的空气流动方式,使得前侧的冷风以更贴近自冷密闭机箱2的位置流向出气口12。散热空间内从进气口11进入冷气,冷气沿自冷密闭机箱2之间的或自冷密闭机箱2与各风壁之间的空间向上或向后流动,流动中带走自冷密闭机箱2散发的热量。携带热量的空气从出气口12排出散热空间。
支撑架为细铁条或钢条搭接而成,最大限度地露出自冷密闭机箱的表面以供散热。
上实施例仅为本实用新型的较佳实施例,对于本领域的普通技术人员,依据本实用新型的思想,在具体实施方式及应用范围上均会有改变之处,本说明书不应理解为对本实用新型的限制。

Claims (9)

  1. 一种用于存储区块链大数据的散热机房,其特征在于,包括:自冷密闭机箱(2)和支撑架;
    支撑架用于将若干自冷密闭机箱(2)沿竖向依次放置,相邻自冷密闭机箱(2)之间具有间隙;
    支撑架的下方设置有底风壁,所述底风壁与位于最底部的自冷密闭机箱(2)之间具有间隙;
    支撑架的上方设置有顶风壁,所述顶风壁与位于最顶部的自冷密闭机箱(2)之间具有间隙;
    支撑架的前方设置有前风壁,所述前风壁与自冷密闭机箱(2)之间具有间隙;
    所述支撑架的后方设置有后风壁,所述后风壁与自冷密闭机箱(2)之间具有间隙;
    所述支撑架两侧还包括侧风壁;
    所述顶风壁、底风壁、前风壁、后风壁和两个侧风壁构成了一个散热空间;
    前风壁下部设置有进气口(11),所述进气口(11)低于位于最底部的自冷密闭机箱(2)的顶面;
    所述散热空间顶部设置出气口(12),所述出气口(12)的位置高于位于最顶部的自冷密闭机箱(2),且所述出气口(12)与后风壁的距离小于其与前风壁的距离。
  2. 如权利要求1所述的用于存储区块链大数据的散热机房,其特征在于:还包括冷却风机,所述冷却风机的排气端与所述进气口(11)相连。
  3. 如权利要求1所述的用于存储区块链大数据的散热机房,其特征在于:所述间隙不小于80mm。
  4. 如权利要求1所述的用于存储区块链大数据的散热机房,其特征在于:所述机房包括地面、天花板、外墙和隔断墙;
    所述顶风壁为天花板或隔板(1);
    所述底风壁为地面或隔板(1);
    所述前风壁、后风壁和侧风壁至少包括外墙、隔断墙、隔板(1)和阻风布帘(4)其中之一。
  5. 如权利要求4所述的用于存储区块链大数据的散热机房,其特征在于:所述顶风壁为天花板,所述出气口(12)位于所述天花板。
  6. 如权利要求5所述的用于存储区块链大数据的散热机房,其特征在于:所述天花板下设置有上布帘(3),所述上布帘(3)位于所述出气口(12)与前风壁之间,所述上布帘(3)的下部与最顶部的自冷密闭机箱(2)之间具有间隙。
  7. 如权利要求1所述的用于存储区块链大数据的散热机房,其特征在于:多个所述散热空间侧向并列设置,并列设置的多个所述散热空间构成机架;
    相邻所述散热空间共用二者间的侧风壁;
    机架与所述机房之间设有人行通道(13)。
  8. 如权利要求7所述的用于存储区块链大数据的散热机房,其特征在于:多个所述机架横向并排设置,相邻所述机架之间设有人行通道(13)。
  9. 如权利要求1所述的用于存储区块链大数据的散热机房,其特征在于:所述支撑架为钢条搭接。
PCT/CN2019/079701 2018-05-22 2019-03-26 一种用于存储区块链大数据的散热机房 WO2019223417A1 (zh)

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CN208317236U (zh) * 2018-05-22 2019-01-01 陈庆洪 一种用于存储区块链大数据的散热机房
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