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    • 24. 发明授权
    • Air conditioning equipment operation system and air conditioning equipment designing support system
    • 空调设备运行系统和空调设备设计支撑系统
    • US07225171B2
    • 2007-05-29
    • US10445057
    • 2003-05-27
    • Hiroshige KikuchiTadakatsu NakajimaKeiji Sasao
    • Hiroshige KikuchiTadakatsu NakajimaKeiji Sasao
    • G01R11/56G01M1/38
    • G06Q50/06F24F11/30F24F11/47F24F11/62F24F2130/00F24F2130/10
    • A control server includes a device information database storing device characteristic data constituting the air conditioning equipment, a fuel/power rate database storing price and rate data regarding gas, oil, power and the like, a device characteristic and price database, an air conditioning equipment simulator for calculating running costs by using the data stored in the fuel/power rate database, and communication portion for performing communications through a network. The control server, and an air conditioning management controller for managing and controlling the air conditioning equipment provided with the communication portion for performing communications through the network, are connected to the network. An operation plan is made by the control server, the operation plan is transmitted to the air conditioning equipment management controller for controlling the air conditioning equipment through the network, and the air conditioning equipment is controlled and operated according to the operation plan.
    • 控制服务器包括存储构成空调设备的设备特征数据的设备信息数据库,存储关于气体,油,电力等的价格和费率数据的燃料/电力数据库,设备特性和价格数据库,空调设备 用于通过使用存储在燃料/电力数据库中的数据计算运行成本的模拟器,以及用于通过网络执行通信的通信部分。 控制服务器和用于管理和控制设置有用于通过网络进行通信的通信部分的空调设备的空调管理控制器连接到网络。 操作计划由控制服务器进行,​​运行计划通过网络传送到空调设备管理控制器,用于控制空调设备,空调设备根据运行计划进行控制和运行。
    • 25. 发明申请
    • Air conditioning apparatus
    • 空调设备
    • US20070107450A1
    • 2007-05-17
    • US11528653
    • 2006-09-28
    • Keiji SasaoTadakatsu Nakajima
    • Keiji SasaoTadakatsu Nakajima
    • F25D17/04F25D17/02
    • F24F11/0008F24F11/30F24F2110/12F24F2110/20
    • An air conditioning apparatus comprises an air-conditioning unit including at least a cooling coil as a heat exchanger, a blower, a chiller, and a coolant pump for conducting air-conditioning, wherein the coolant pump pumps the coolant cooled by the chiller to the cooling coil, the cooling coil cools the air through heat exchange of the coolant and the air, the blower supplies the cooled air into a room. Coolant temperature of the chiller, the coolant flow rate of the coolant pump, and the air flow rate of the blower are calculated in accordance with the set points of the indoor temperature and the indoor humidity, and the chiller, coolant pump, and blower are controlled on the basis of the arithmetic calculation results. Thereby, the indoor temperature and indoor humidity are independently controlled in the central air-conditioning system.
    • 空调装置包括至少包括作为热交换器的冷却盘管,鼓风机,冷却器和用于进行空调的冷却水泵的空调单元,其中,冷却剂泵将由冷却器冷却的冷却剂泵送到 冷却盘管,冷却盘管通过冷却剂和空气的热交换冷却空气,鼓风机将冷却的空气送入房间。 根据室内温度和室内湿度的设定点计算冷却器的冷却液温度,冷却水泵的冷却剂流量和鼓风机的空气流量,制冷机,冷却水泵和鼓风机均为 在算术计算结果的基础上进行控制。 因此,室内温度和室内湿度在中央空调系统中独立控制。
    • 27. 发明授权
    • Absorption refrigerator and the method of producing the same
    • 吸收式冰箱及其制造方法
    • US06247331B1
    • 2001-06-19
    • US09497339
    • 2000-02-03
    • Akira NishiguchiRyoko SakiyamaTadakatsu NakajimaTomihisa Ohuchi
    • Akira NishiguchiRyoko SakiyamaTadakatsu NakajimaTomihisa Ohuchi
    • F25B1500
    • F25B15/06F25B15/008Y02A30/277Y02B30/62
    • Refrigerant vapor generated in a high temperature regenerator is condensed in a condenser, and the refrigerant vapor is changed to refrigerant liquid. Then it is conducted to a first evaporator. The refrigerant vapor evaporated in the first evaporator is absorbed in a solution in a first absorber. The refrigerant liquid conducted from the condenser without vaporizing in the first evaporator is introduced to a second evaporator, and it evaporates in the second evaporator. The refrigerant vapor in the second evaporator is absorbed in the solution in a second absorber. The first and the second evaporator and the first and the second absorber are made of a unitary chamber. The first evaporator is juxtaposed to the second absorber with a heat transfer member. The concentration of the refrigerant in the second evaporator is controlled by a refrigerant liquid controller that controls a flow rate of the refrigerant liquid flowing from the first evaporator at the predetermined value.
    • 在高温再生器中产生的制冷剂蒸气在冷凝器中冷凝,制冷剂蒸气变成制冷剂液体。 然后将其传导到第一蒸发器。 在第一蒸发器中蒸发的制冷剂蒸气被吸收在第一吸收器中的溶液中。 在第一蒸发器中从冷凝器传导而不蒸发的制冷剂液体被引入第二蒸发器,并且在第二蒸发器中蒸发。 第二蒸发器中的制冷剂蒸气被吸收在第二吸收器中的溶液中。 第一和第二蒸发器和第一和第二吸收器由整体室制成。 第一蒸发器与传热构件并置到第二吸收器。 第二蒸发器中的制冷剂的浓度由控制从第一蒸发器流动的制冷剂液体的流量以预定值控制的制冷剂液体控制器来控制。
    • 29. 发明授权
    • Cooling systems and electronic apparatus
    • 冷却系统和电子设备
    • US07903407B2
    • 2011-03-08
    • US12370651
    • 2009-02-13
    • Hitoshi MatsushimaHiroshi FukudaTadakatsu Nakajima
    • Hitoshi MatsushimaHiroshi FukudaTadakatsu Nakajima
    • H05K7/20
    • H05K7/20745
    • Temperature variation among electronic apparatuses installed in the data center is reduced, enhancement in reliability of the electronic apparatuses, and increase in service life are achieved, and efficient cooling of an electronic apparatus group is realized. Further, an electronic apparatus with low noise is provided. A front cover is provided on a front surface of an electronic apparatus, and a back cover is provided on a rear surface of it. A supplied air opening is formed at a lower side of the front cover, and an exhaust air opening is formed at an upper side of the back cover. The supplied air opening is connected to a blowing in opening from below the floor level, and the exhaust air opening is connected to a ceiling air duct. The ceiling air duct is provided with a heat exchanger, and indirect heat exchange is performed with external air.
    • 安装在数据中心的电子设备之间的温度变化减小,电子设备的可靠性提高,使用寿命延长,实现电子设备组的有效冷却。 此外,提供了具有低噪声的电子设备。 前盖设置在电子设备的前表面上,后盖设置在其后表面上。 在前盖的下侧形成供气口,在后盖的上侧形成有排气开口。 所供给的空气开口与地板下方的开口连通,排气口与天花板导风管连接。 天花板风管设有热交换器,并且用外部空气进行间接热交换。