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    • 1. 发明专利
    • Air-conditioning system
    • 空调系统
    • JP2012207872A
    • 2012-10-25
    • JP2011074526
    • 2011-03-30
    • Sanki Eng Co Ltd三機工業株式会社
    • MIZUSHIMA SHIGERUYAMASHITA TANEYAFUJISAWA TAKAHIROYAMAGUCHI MICHIAKI
    • F24F3/147F24F11/02
    • PROBLEM TO BE SOLVED: To use a natural energy for cooling and heating of outside air by reducing an outside air load of a desiccant air-conditioner unit, preventing deterioration on performance of the desiccant air-conditioner unit, and lowering the power consumption of an air supply fan of the desiccant air-conditioner unit.SOLUTION: The desiccant air-conditioner unit 52 includes a desiccant dehumidifying rotor 61 for dehumidifying air cooled and dehumidified with an entire heat exchanger unit 51, a cooling coil 63 for cooling and dehumidifying air from the desiccant dehumidifying rotor with cooling water generated by a cooling tower 66, a humidifier 64, and a heating coil 74 for heating the outside air OA through hot water heated with a solar heat collector 83 and generating air for reproducing the desiccant dehumidifying rotor at dehumidification. In dehumidifying the outside air OA, an air-conditioning system is composed so as to allow air supply from the desiccant air-conditioner unit. The air-conditioning system is composed so that supply air sent from the desiccant air-conditioner unit is 30°C or lower in summer peaks in dehumidifying the outside air.
    • 要解决的问题:为了通过减少干燥剂空调单元的外部空气负荷来使用天然能量来冷却和加热外部空气,防止干燥剂空调单元的性能劣化,并降低功率 消耗干燥剂空调机组的供气风扇。 解决方案:干燥剂空调单元52包括用于对整个热交换器单元51进行冷却和除湿的空气进行除湿的干燥剂除湿转子61,用于从产生冷却水的干燥剂除湿转子冷却和除湿空气的冷却盘管63 通过冷却塔66,加湿器64和加热线圈74,用于通过用太阳能集热器83加热的热水加热外部空气OA,并产生用于在除湿时再生干燥剂除湿转子的空气。 在对外部空气OA进行除湿时,构成空调系统,以便从干燥剂空调单元供应空气。 空调系统的组成是使干燥剂空调机组送出的空气在夏季达到30℃以上,除湿外部空气。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Steam compression refrigerator system
    • 蒸汽压缩式制冷系统
    • JP2010230267A
    • 2010-10-14
    • JP2009079717
    • 2009-03-27
    • Sanki Eng Co Ltd三機工業株式会社
    • MIZUSHIMA SHIGERUYAMASHITA TANEYAYOSHIOKA SEIKI
    • F25B1/00
    • PROBLEM TO BE SOLVED: To enhance the flexibility of a cooling system of a steam compression refrigerator system for securing a pressure difference between an evaporator and a condenser by a positional head in a refrigerating facility requiring cooling by high temperature cold water throughout the year. SOLUTION: In a steam compression refrigerator system, a shell-and-tube heat exchanger 21 is provided in the condenser 20, and cooling water piping 50 for connecting a cooling-water going 53 pipe to an outlet 21b of the shell-and-tube heat exchanger 21 of the condenser 20 and connecting a cooling-water return pipe 51 having a cooling water pump 52 to an inlet 21a of the shell-and-tube heat exchanger 21 of the condenser 20 is provided. Cooling water made to flow in the shell-and-tube heat exchanger 21 of the condenser 20 is connected to an open type cooling tower 55 via the cooling water piping 50. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提高蒸汽压缩式制冷系统的冷却系统的灵活性,用于通过需要通过高温冷水冷却的制冷设备中的位置头来确保蒸发器和冷凝器之间的压力差 年。 解决方案:在蒸汽压缩式制冷机系统中,在冷凝器20内设置管壳式热交换器21,以及将冷却水流入管53连接到壳 - 设置冷凝器20的管状热交换器21,将具有冷却水泵52的冷却水回流管51与冷凝器20的管壳式热交换器21的入口21a连接。 在冷凝器20的管壳式热交换器21中流动的冷却水通过冷却水配管50与开放式冷却塔55连接。(C)2011,JPO&INPIT
    • 4. 发明专利
    • TUNNEL TYPE CLEAN ROOM AIR-CONDITIONING SYSTEM
    • JPH08210678A
    • 1996-08-20
    • JP31059795
    • 1995-11-29
    • SANKI ENG CO LTD
    • MIZUSHIMA SHIGERUYOSHIZAKI SEISHIROUSUGAFUJI KAZUNORI
    • F24F7/06
    • PURPOSE: To permit coping with a thermal load generated locally in a tunnel type clean room by a method wherein a coil, through which refrigerant flows, is arranged in a fan filter unit, in which production facilities are positioned, while a heat exchanging unit is arranged at the outside of the tunnel type clean room. CONSTITUTION: A coil 90, through which the refrigerant of a refrigerant circulating multi-system, whose phase is changed between gas and liquid, flows, is arranged on the upper surface of a fan filter unit 30, in which production facilities 29 in a tunnel type clean room 21 are positioned On the other hand, the heat exchanging unit 92 of the refrigerant circulating multi-system or a heat exchanging unit 93 for cooling the refrigerant, whose phase is changed between gas and liquid, is arranged at the outside of the tunnel type clean room 21. The refrigerant, cooled by the heat exchanging unit 92 and whose phase is changed between gas and liquid, is circulated through the coil 90 while air, cooled by the coil 90, flows into the high-speed flow area (a) of the tunnel type clean room 21 through a high performance filter 35 by the fan filter unit 30. Accordingly, it is not required that a damper is provided in a boundary area to regulate the flow speed in a low-speed flow area.
    • 8. 发明专利
    • Heating medium piping system
    • 加热中管系统
    • JP2010112699A
    • 2010-05-20
    • JP2009234498
    • 2009-10-08
    • Sanki Eng Co Ltd三機工業株式会社
    • MIZUSHIMA SHIGERUNOGUCHI SATORU
    • F24D3/00F24F5/00
    • PROBLEM TO BE SOLVED: To provide a heating medium piping system capable of reducing carrying power of a heating medium.
      SOLUTION: The heating medium piping system includes: temperature control piping systems for conditioning air in a plurality of zones independently and a heat source machine loop. The heat source machine loop includes a heat source device, a primary pump, a secondary pump with an inverter, and a bypass pipe between headers for interconnecting a going header and a return header, and achieve the necessary minimum amount of a supplied heating medium by changing a flow rate of the secondary pump by a pressure difference between an inlet and an outlet including each temperature control piping system and a flow rate on the secondary side. Each of the temperature control piping systems sequentially includes a pump with an inverter, an air conditioner and an ON/OFF two-way valve from the upstream side toward the downstream side. The pump with the inverter includes a control device for controlling movement of the pump with the inverter and the two-way valve so that rotational frequency of an impeller is controlled based on deviation between a temperature measured value and a set value in the zone which is a target of the air conditioner and that the two-way valve is closed at start of the pump with the inverter and is fully opened after the rotational frequency of the pump with the inverter reaches predetermined rotational frequency.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够降低加热介质的携带能力的加热介质管道系统。 解决方案:加热介质管道系统包括:用于独立调节多个区域中的空气的温度控制管道系统和热源机器回路。 热源机回路包括一个热源装置,一个主泵,一个带有逆变器的二次泵,以及一个用于连接集管和回流头的集管之间的旁通管,并通过 通过包括每个温度控制管道系统的入口和出口之间的压力差和次级侧的流量来改变次级泵的流量。 每个温度控制管道系统依次包括具有逆变器的泵,空调和从上游侧到下游侧的ON / OFF双向阀。 具有逆变器的泵包括控制装置,用于控制泵与逆变器和双向阀的移动,使得基于温度测量值与区域中的设定值之间的偏差来控制叶轮的旋转频率, 空调的目标,并且在与逆变器的泵的启动时,二通阀关闭,并且在具有变频器的泵的转速达到预定的转速之后,完全打开。 版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • HVAC
    • 空调设备
    • JP2008215679A
    • 2008-09-18
    • JP2007051523
    • 2007-03-01
    • Sanki Eng Co Ltd三機工業株式会社
    • SHIMADA KAZUMASAMIZUSHIMA SHIGERUNOGUCHI SATORU
    • F24F5/00F24F11/02
    • Y02B30/542
    • PROBLEM TO BE SOLVED: To provide air conditioning equipment capable of manufacturing cold water only by a cooling tower even at an outside air wet-bulb temperature higher than a conventional one and lengthening a yearly free cooling operation time. SOLUTION: When an outside air wet-bulb temperature becomes higher than a first set value, the control to operate a second refrigerating machine and a second cooling tower is performed by closing a first valve, a second valve and a third valve and opening a forth valve, when the outside air wet-bulb temperature becomes a second set value or more, lower than the first set value, the control to cool the cooling water of a cooling water circulation passage for free cooling in two stages, is performed by stopping the second refrigerating machine, opening the second valve and the third valve, closing the first valve and the forth valve, and communicating the cooling tower for free cooling and the second cooling tower in series, and further when the outside air wet-bulb temperature becomes lower than the second set value, the second cooling tower is stopped, the first valve is opened, the second valve and the third valve are closed, and the cooling water is carried to a heat exchanger through the cooling water circulation passage for free cooling. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:即使在高于常规的外部空气湿球温度的情况下,也能够仅通过冷却塔来制造能够制造冷水的空调设备,并且延长每年免费冷却操作时间。 解决方案:当外部空气湿球温度变得高于第一设定值时,通过关闭第一阀,第二阀和第三阀来执行操作第二冷冻机和第二冷却塔的控制,以及 打开第四阀,当外部空气湿球温度成为比第一设定值低的第二设定值以上时,进行冷却水循环通路的冷却水的冷却水的冷却水的控制,分别进行两级自由冷却 通过停止第二制冷机,打开第二阀和第三阀,关闭第一阀和第四阀,并且使冷却塔与第二冷却塔串联连通,此外,当外部空气湿球 温度变得低于第二设定值,第二冷却塔停止,第一阀打开,第二阀和第三阀关闭,冷却水被运送到热交换器通道 呃冷却水循环通道自由冷却。 版权所有(C)2008,JPO&INPIT
    • 10. 发明专利
    • Antibacterial filter
    • 抗菌过滤器
    • JPH11276823A
    • 1999-10-12
    • JP1705699
    • 1999-01-26
    • Sanki Eng Co Ltd三機工業株式会社
    • MIZUSHIMA SHIGERUSASAKI MOTOYOSHI
    • A61L2/16A01N59/12B01D39/14
    • PROBLEM TO BE SOLVED: To exterminate/remove bacteria contained in air flowing in the ventilation passage of an air conditioner. SOLUTION: In an antibacterial filter 1 which is arranged in the ventilation passage of an air conditioner and exterminates/removes bacteria in air, nonwoven fabrics 3, 4 which are impregnated or incorporated with an iodinated disinfectant resin are stuck on both surfaces of a medium performance filter 2. In this constitution, bacteria contained in air can be caught surely by the medium performance filter 2, and the caught bacteria are exterminated/removed by contact with iodine. In this way, bacteria can be removed at a nearly 100% removal ratio so that troubles of secondary infection, or the like, in hospitals, or the like, can be prevented.
    • 要解决的问题:消除/去除在空气调节器的通风通道中流动的空气中所含的细菌。 解决方案:在布置在空气调节器的通风通道中并在空气中消除/去除细菌的抗菌过滤器1中,浸渍或掺入碘化消毒树脂的非织造织物3,4被粘贴在介质性能的两个表面上 过滤器2.在这种结构中,空气中包含的细菌可以被中等性能过滤器2确定地捕获,并且捕获的细菌通过与碘接触而被消除/去除。 以这种方式,可以以几乎100%的去除率去除细菌,从而可以防止在医院等中的次级感染等的麻烦。