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    • 1. 发明公开
    • MODULAR DATA CENTER AND CONTROL METHOD THEREFOR
    • 模块化数据中心及其控制方法
    • EP2916083A1
    • 2015-09-09
    • EP12887551.5
    • 2012-11-02
    • Fujitsu Limited
    • ENDO, HiroshiKODAMA, HiroyoshiOGAWA, MasatoshiFUKUDA, Hiroyuki
    • F24F11/02F24F7/06G06F1/20H05K7/20
    • H05K7/20836H05K7/1488H05K7/20736H05K7/20745H05K7/20818
    • [Problem]
      To achieve low power consumption, while preventing electronic devices from cooling insufficiency, in a modular data center and a controlling method of a modular data center.
      [Solution]
      A modular data center includes fan 3a creating a first cooling wind B1, air conditioner 5 creating a second cooling wind B2, electronic device 6 taking in the cooling wind B1 and B2, and a control unit 20 adjusting an air volume of the first cooling wind B1 to cool a temperature of the electronic device 6 to a specified temperature T s . The air conditioner 5 is stopped when a first assumed value P 1 of a sum of air-conditioning power, which is assumed to be consumed by the air conditioner 5 and the fan 3a in the case of cooling the temperature of the electronic device 6 to the specified temperature T s by using the first cooling wind B1 while stopping the air conditioner 5, is smaller than a current value P 0 . The air conditioner 5 is operated when a second assumed value P 2 of the air-conditioning power, which is assumed to be consumed in the case of cooling the temperature of the electronic device 6 to the specified temperature T s by using the first cooling wind B1 and the second cooling wind B2 while operating the air conditioner 5, is smaller than the current value P 0 .
    • [问题]为了实现低功耗,防止电子设备冷却不足,模块化数据中心和模块化数据中心的控制方法。 解决方案模块化数据中心包括:产生第一冷却风B1的风扇3a,产生第二冷却风B2的空调器5,吸入冷却风B1和B2的电子设备6以及控制单元20,该控制单元20调节 第一冷却风B1将电子设备6的温度冷却到特定温度Ts。 当将电子设备6的温度冷却到空气调节器5和风扇3a的空调功率的总和的第一假定值P1停止时,空调5停止 在停止空气调节器5的同时使用第一冷却风B1的规定温度Ts小于电流值P0。 当通过使用第一冷却风B1将电子装置6的温度冷却到指定温度Ts的情况下假定消耗的空调功率的第二假定值P2和 在操作空调器5的同时第二冷却风B2小于当前值P0。
    • 2. 发明公开
    • MODULE-TYPE DATA CENTER
    • 模块型数据中心
    • EP2835715A1
    • 2015-02-11
    • EP12873691.5
    • 2012-04-02
    • Fujitsu Limited
    • ENDO, HiroshiKONDO, MasaoFUKUDA, HiroyukiOGAWA, Masatoshi
    • G06F1/20F24F3/14F24F11/02H05K7/20
    • H05K7/20836F24F2001/0048G06F1/206H05K7/1497H05K7/20736H05K7/20745Y02D10/16
    • [Objective] To provide a module-type data center capable of precisely controlling the circulation amount of warm air.
      [Solving Means] A module-type data center includes: a casing 30 having an intake vent 31a and an exhaust vent 31b; a rack 33 accommodating an electronic device 33a; and an air blower 32 configured to introduce outside air into the casing 30 through the intake vent 31a and pass air through the rack 33 from one of surfaces of the rack 33 to another one of the surfaces of the rack 33. Moreover, a shielding-slat unit 36 is placed on the exhaust vent 31b side. The shielding-slat unit 36 includes shielding slats 51 configured to change between an open state and a closed state and drive devices configured to drive the corresponding shielding slats. An inner space of the casing 30 is divided into a first space 41, 42 defined between the rack 33 and the intake vent 31a, a second space 43 defined between the rack 33 and the exhaust vent 31b, and a third space 44 defined above the rack 33 and allowing the second space 43 to communicate with the first space 41, 42.
    • [目的]提供一种能够精确控制暖风循环量的模块式数据中心。 [解决方案]模块型数据中心包括:壳体30,其具有进气口31a和排气口31b; 容纳电子装置33a的机架33; 以及鼓风机32,该鼓风机32构造成通过进气口31a将外部空气引入到壳体30中并且使空气从齿条33的一个表面穿过齿条33到另一个齿条33的表面。此外, 板条单元36放置在排气口31b侧。 屏蔽板单元36包括构造成在打开状态和闭合状态之间变换的屏蔽板条51以及构造成驱动相应屏蔽板条的驱动装置。 壳体30的内部空间被划分成限定在齿条33和进气口31a之间的第一空间41,42,限定在齿条33和排气口31b之间的第二空间43以及限定在齿条33和排气口31b之上的第三空间44。 使第二空间43与第一空间41,42连通。
    • 3. 发明公开
    • MODULE-TYPE DATA CENTER AND CONTROL METHOD THEREOF
    • 模块型数据中心及其控制方法
    • EP2921931A1
    • 2015-09-23
    • EP12888537.3
    • 2012-11-16
    • Fujitsu Limited
    • ENDO, HiroshiKODAMA, HiroyoshiOGAWA, MasatoshiFUKUDA, Hiroyuki
    • G06F1/20F24F7/007F24F11/02G06F1/32H05K7/20
    • H05K7/20754G05B15/02G06F1/206G06F1/325G06F1/3296H05K7/1497H05K7/207H05K7/20736H05K7/20745H05K7/20836Y02D10/16Y02D10/172Y02D50/20
    • [Problem]
      To achieve low power consumption while preventing electronic devices from excessive cooling in a modular data center and a controlling method of a modular data center.
      [Solution]
      A modular data center includes a fan 3a which creates a cooling wind B from outside air A, an electronic device 6 which discharges an exhaust flow E created from the taken-in cooling wind B, a flow passage L which guides part of the exhaust flow E to upstream of the fan 3a, an opening-closing portion 5 which opens and closes the flow passage L, and a control unit 20 which adjusts an air volume of the cooling wind B. The control unit 20 closes the opening-closing portion 5 when a first assumed value P 1 of power consumed by the fan 3a, which is assumed to be consumed in the case of bringing the temperature of the electronic device 6 to a specified temperature T s while closing the opening-closing portion 5, is smaller than a current value P 0 of the power. The control unit 20 opens the opening-closing portion 5 when a second assumed value P 2 of the power consumed by the fan 3a, which is assumed to be consumed in the case of bringing the temperature of each electronic device 6 to the specified temperature T s while opening the opening-closing portion 5, is smaller than the current value P 0 of the power.
    • [问题]为了实现低功耗,同时防止模块化数据中心中的电子设备过度冷却以及模块化数据中心的控制方法。 模块化数据中心包括:风扇3a,其从外部空气A产生冷却风B;电子设备6,其将从所取入的冷却风B产生的排气流E排出;流路L, 在风扇3a的上游侧设置有排气流E,对流路L进行开闭的开闭部5以及用于调整冷却风B的风量的控制部20。 当在关闭开闭部分5的同时使电子装置6的温度达到特定温度Ts的情况下假定消耗的由风扇3a消耗的功率的第一假定值P1为 小于电力的当前值P0。 控制部20在将各电子设备6的温度设定为规定温度Ts的情况下假设消耗的风扇3a的消耗电力的第二假定值P2的同时打开开闭部5 打开开关部分5的电流值小于电源的电流值P0。
    • 4. 发明公开
    • MODULAR DATACENTER AND METHOD FOR CONTROLLING SAME
    • VERFAHREN ZUR STEUERUNG DAVON的MODULARES DATENCENTER
    • EP2833237A1
    • 2015-02-04
    • EP12872623.9
    • 2012-03-29
    • Fujitsu Limited
    • FUKUDA, HiroyukiENDO, HiroshiOGAWA, MasatoshiUMEMIYA, ShigeyoshiKONDO, Masao
    • G06F1/20F24F3/14F24F11/02H05K7/20
    • H05K7/20736F24F2011/0006G06F1/20G06F2200/201H05K7/20745H05K7/20818H05K7/20836
    • [Objective] To provide a module-type data center and a method of controlling the same, which increase the air-conditioning efficiency of the data center.
      [Solving Means] Provided is a module-type data center including: a casing 21 including a first intake opening 21a, a second intake opening 21b, and an exhaust opening 21c; an air conditioner 31 provided in the casing 21 and configured to generate a first airflow B1 by taking in outside air A through the first intake opening 21a and bringing the outside air A into direct contact with a refrigerant W; a fan unit 38 provided in the casing 21 and configured to generate a second airflow B2 by taking in the outside air A through the second intake opening 21b; and an electronic device 44 provided in the casing 21 and configured to be exposed to a mixed airflow C of the first airflow B1 and the second airflow B1 and release an exhaust airflow E containing the mixed airflow C to the exhaust opening 21c. The first intake opening 21a and the second intake opening 21b are provided on the same surface 21y of the casing 21.
    • [目的]提供一种模块式数据中心及其控制方法,提高数据中心的空调效率。 [解决方案]提供一种模块型数据中心,包括:壳体21,包括第一进气开口21a,第二进气开口21b和排气开口21c; 设置在壳体21中并构造成通过从第一吸入口21a吸入外部空气A并使外部空气A与制冷剂W直接接触而产生第一气流B1的空调装置31; 风扇单元38,其设置在壳体21中,并且被构造成通过从第二吸入口21b吸入外部空气A而产生第二气流B2; 以及设置在壳体21中并且被配置为暴露于第一气流B1和第二气流B1的混合气流C并将包含混合气流C的排气气流E释放到排气口21c的电子设备44。 第一吸入口21a和第二吸入口21b设置在壳体21的同一面21y上。
    • 8. 发明公开
    • TEMPERATURE MANAGEMENT SYSTEM
    • TEMPERATURREGELUNGSSYSTEM
    • EP2977852A1
    • 2016-01-27
    • EP13878781.7
    • 2013-03-18
    • Fujitsu Limited
    • OGAWA, MasatoshiENDO, HiroshiFUKUDA, HiroyukiKONDO, Masao
    • G06F1/20F24F7/06H01L23/467H05K7/20
    • G06F1/206G05B15/02G05D23/1931G06F1/325H01L23/34H01L23/467H01L2924/0002H05K7/20745H05K7/20836Y02D10/16H01L2924/00
    • [Problem]
      To provide a temperature management system that is capable of achieving much more power saving than a conventional system by predicting a change of the ambient temperature and a change of the operational state of a heat generation component to properly control a cooling apparatus.
      [Solution]
      The temperature management system includes: a first temperature detection unit 32 configured to detect a temperature of a heat generation component 14a in an electronic device 14; a cooling apparatus 12 configured to circulate air in the electronic device 14 and to cool the heat generation component 14a; a second temperature detection unit 33 configured to detect a temperature of air flowing in the electronic device 14; a parameter setting unit 31 configured to set a target value of the temperature of the heat generation component 14a; and a control unit 30. The control unit 30 calculates a predicted value of a future temperature of the heat generation component 14a based on the outputs of the first temperature detection unit 32 and the second temperature detection unit 33, and the power consumption of the electronic device 14, and determines a manipulated variable of the cooling apparatus 12 based on the predicted value and the target value.
    • [问题]提供一种温度管理系统,其能够通过预测环境温度的变化和发热部件的操作状态的变化来实现比常规系统更多的功率节省,以适当地控制冷却装置。 [解决方案]温度管理系统包括:第一温度检测单元32,被配置为检测电子设备14中的发热部件14a的温度; 配置为使电子设备14中的空气循环并冷却发热部件14a的冷却装置12; 被配置为检测在电子设备14中流动的空气的温度的第二温度检测单元33; 被配置为设定发热部件14a的温度的目标值的参数设定部31; 和控制单元30.控制单元30基于第一温度检测单元32和第二温度检测单元33的输出来计算发热部件14a的未来温度的预测值,以及电子 装置14,并基于预测值和目标值确定冷却装置12的操纵变量。
    • 9. 发明公开
    • TEMPERATURE ADMINISTRATION SYSTEM
    • TEMPERATURVERWALTUNGSSYSTEM
    • EP2894524A1
    • 2015-07-15
    • EP12884059.2
    • 2012-09-04
    • Fujitsu Limited
    • OGAWA, MasatoshiENDO, HiroshiFUKUDA, HiroyukiKONDO, Masao
    • G05B11/42F24F11/02F24F11/04G06F1/20H05K7/20
    • G06F1/206G01K13/02G06F11/3051H05K7/20136H05K7/207H05K7/20836Y02D10/16
    • [Problem]
      There is provided a temperature management system capable of suppressing deterioration in control performance attributed to reset windup, and efficiently cooling an electronic device such as a computer.
      [Solution]
      A temperature management system includes: temperature detection units (32) which individually detect temperatures of a plurality of electronic devices each changing an amount of heat generation depending on its operational state; a cooling device (12) which cools the electronic devices; and a control unit (30) which controls the cooling device (12) depending on outputs from the temperature detection units (32). The control unit (30) includes: an idle state determination unit (44) which determines whether or not the electronic devices are in an idle state; a manipulated variable calculation unit (40) which has an integrator (50) and calculates a manipulated variable by using a difference between a target value and a controlled variable; and an accumulation value correction unit (45) which corrects an accumulation value of the integrator (50) with a predetermined value when the idle state determination unit (44) determines that the electronic devices are in the idle state.
    • [问题]提供了一种温度管理系统,其能够抑制归因于复位结束的控制性能的劣化,并且有效地冷却诸如计算机的电子设备。 [解决方案]温度管理系统包括:温度检测单元(32),其单独地检测根据其操作状态改变发热量的多个电子设备的温度; 冷却装置(12),其冷却电子装置; 以及根据来自温度检测单元(32)的输出来控制冷却装置(12)的控制单元(30)。 控制单元(30)包括:空闲状态确定单元(44),确定电子设备是否处于空闲状态; 具有积分器(50)并通过使用目标值和受控变量之间的差来计算操作变量的操作变量计算单元(40) 以及当空闲状态确定单元(44)确定电子设备处于空闲状态时,以预定值校正积分器(50)的累积值的累加值校正单元(45)。