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    • 1. 发明专利
    • Protecting device of heat transfer tube
    • 保护换热管的装置
    • JP2011122775A
    • 2011-06-23
    • JP2009281180
    • 2009-12-11
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • MIZUNOE TOSHIOIMAMURA KENJI
    • F28F9/013
    • PROBLEM TO BE SOLVED: To provide a protecting device of a heat transfer tube, which easily mounts and demounts a protector, and is mounted even on the heat transfer tube located inside a heat exchanger.
      SOLUTION: This protecting device of the heat transfer tube disposed on the heat exchanger having a plurality of heat transfer tube straight tube sections 21 at intervals for protecting the outer peripheral faces of the heat transfer tube straight tube sections 21, includes long frames 2 respectively inserted between the plurality of heat transfer tube straight tube sections 21, the protectors 3 covering the outer peripheral faces of the heat transfer tube straight tube sections 21 in the longitudinal direction, and connecting members 4 including spindles 4a disposed along a long side of the protectors 3, and connecting the protectors 3 to the frames 2 in such manner that the protectors 3 rotate on the spindles 4a as supports.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种传热管的保护装置,其易于安装和拆卸保护器,并且甚至安装在位于热交换器内部的传热管上。 解决方案:设置在热交换器上的传热管的这种保护装置具有多个传热管直管段21,用于保护传热管直管段21的外周面的间隔,包括长框架 2分别插入在多个传热管直管部21之间,覆盖传热管直管部21的长度方向的外周面的保护件3以及沿着长度方向配置的包括主轴4a的连接部件4 保护器3,并且以保护器3作为支撑件在主轴4a上旋转的方式将保护器3连接到框架2。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Air refrigerant type refrigerator
    • 空气冷冻式制冷机
    • JP2006234312A
    • 2006-09-07
    • JP2005051191
    • 2005-02-25
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TSURUGA SHIGENORIMORII SHIGEKIIMAMURA KENJIMIHASHI MASATOOKUDA SEIICHI
    • F25B9/00
    • PROBLEM TO BE SOLVED: To provide an air refrigerant type refrigerator suitable for continuous operation for a long period.
      SOLUTION: A cyclone type dust collector is interposed in a circulation route for the air refrigerant of the air refrigerant type refrigerator. Means for promoting the solidification of moisture content in an air refrigerant are installed on the front stage of the cyclone. These means include a humidifier, a fine particle sprayer, or a bar-like member installed in a pipe. Accordingly, the moisture content is solidified and grown to ice particles of a grain size suitable for collecting them by the cyclone. The ice particles are collected by the cyclone and dry air is supplied to the refrigerator. In this refrigerator, since the supply of cooling air is not stopped for defrosting, dry cooling air is continuously supplied to the refrigerator over a long period.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供适合长时间连续操作的空气制冷剂型冰箱。 解决方案:旋风式集尘器插入空气制冷剂型冰箱的空气制冷剂的循环路径中。 用于促进空气制冷剂中的水分含量固化的方法安装在旋风分离器的前级。 这些装置包括加湿器,细颗粒喷雾器或安装在管中的条形部件。 因此,水分含量被固化并生长成适合于通过旋流器收集它们的粒度的冰颗粒。 冰颗粒由旋风分离器收集,干燥的空气被供应到冰箱。 在该冰箱中,由于冷冻空气的供给不停止除霜,干燥的冷却空气被长时间连续供给到冰箱。 版权所有(C)2006,JPO&NCIPI
    • 3. 发明专利
    • Control method and control system of water storage tank
    • 储水罐控制方法与控制系统
    • JP2011122318A
    • 2011-06-23
    • JP2009279263
    • 2009-12-09
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • SATO HIROSHIIMAMURA KENJI
    • E03B11/02E03B11/12
    • Y02A20/106
    • PROBLEM TO BE SOLVED: To provide a control method and a control system of a water storage tank allowing a worker to grasp accumulation in the water storage tank simply and accurately and prevent the occurrence of the accumulation.
      SOLUTION: In this control method of the water storage tank connected with a water service pipeline for supplying water into each house from a city water source, the water flowing in through an inlet formed on one side passes through the tank at a certain flow velocity and is drained through an outlet formed on the other side, water temperature in an upper layer and water temperature in a lower layer in the water storage tank are measured, and whether opening of a valve installed on an inlet side of the water storage tank must be adjusted or not is determined based on a difference between the water temperature in the upper layer and the water temperature in the lower layer.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种储水箱的控制方法和控制系统,其允许工人简单而准确地掌握储水箱中的积聚并防止积聚的发生。

      解决方案:在与用于从城市水源向每个房屋供水的供水管道连接的储水箱的控制方法中,通过一侧形成的入口流入的水通过一定的 流量通过另一侧形成的出口被排出,并且测量储水箱中的上层的水温和下层中的水温,以及是否安装在储水器的入口侧的阀的打开 基于上层的水温与下层的水温之间的差异来确定罐是否必须调节。 版权所有(C)2011,JPO&INPIT

    • 4. 发明专利
    • Air refrigerant type refrigerator
    • 空气冷冻式制冷机
    • JP2006234311A
    • 2006-09-07
    • JP2005051138
    • 2005-02-25
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TSURUGA SHIGENORIMORII SHIGEKIIMAMURA KENJIMIHASHI MASATOOKUDA SEIICHI
    • F25B9/00
    • PROBLEM TO BE SOLVED: To provide an air refrigerant type refrigerator suitable for continuous operation for a long period.
      SOLUTION: A cyclone type dust collector is interposed in a circulation route for the air refrigerant of the air refrigerant type refrigerator. The refrigerator comprises means for reducing frost adhered to the inner wall of a cyclone. These means include, for example, the layer of snow sliding agent formed in the inner wall of the cyclone and an ultrasonic vibrator installed on the outer wall of the cyclone. Other than these means, the refrigerator comprises a means covering the inner wall of the cyclone with glass fibers and rubbing off the front by pushing and pulling the glass fiber from the outside of the cyclone. Accordingly, even if the frost is adhered to the inner wall of the cyclone which can be easily defrosted without stopping the operation. In this refrigerator, since the supply of cooling air is not stopped for defrosting, dry cooling air is continuously supplied to the refrigerator over a long period.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供适合长时间连续操作的空气制冷剂型冰箱。 解决方案:旋风式集尘器插入空气制冷剂型冰箱的空气制冷剂的循环路径中。 冰箱包括用于减少附着在旋风分离器的内壁上的霜的装置。 这些装置包括例如形成在旋风分离器的内壁中的滑雪剂层和安装在旋风分离器的外壁上的超声波振动器。 除了这些手段之外,冰箱包括用玻璃纤维覆盖旋风分离器的内壁的装置,并且通过从旋风分离器的外部推动和拉动玻璃纤维而将前部摩擦。 因此,即使霜冻附着在旋风分离器的内壁上,能够容易地除霜,而不停止操作。 在该冰箱中,由于冷冻空气的供给不停止除霜,干燥的冷却空气被长时间连续供给到冰箱。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Air refrigerant type refrigerating machine
    • 空气冷冻式制冷机
    • JP2006234275A
    • 2006-09-07
    • JP2005049482
    • 2005-02-24
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TSURUGA SHIGENORIMORII SHIGEKIIMAMURA KENJIMIHASHI MASATOOKUDA SEIICHI
    • F25B9/00F25D11/00
    • PROBLEM TO BE SOLVED: To provide an air refrigerant type refrigerating machine suitable for long time continuous operation.
      SOLUTION: In this air refrigerant type refrigerating machine feeding cooling air to a refrigerating chamber, a cyclone dust collector is installed on the front stage of the refrigerating chamber. Ice particles contained in the cooling air manufactured by the air refrigerant type refrigerating machine are separated by a cyclone to reduce frost entering the refrigerating chamber. In the cyclone, conductance is not lowered due to clogging unlike a filter type defroster. To prevent this problem, in this type of refrigerating machine, since the supply of the cooling air is not stopped for defrosting, dry cooling air can be continuously fed to the refrigerating chamber over a long period.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供适合于长时间连续操作的空气制冷剂型制冷机。 解决方案:在将冷却空气送入冷藏室的空气制冷剂型制冷机中,旋风除尘器安装在冷藏室的前段。 由空气制冷剂型制冷机制造的冷却空气中所含的冰粒子被旋风分离,以减少进入冷藏室的结霜。 在旋风分离器中,与过滤式除霜器不同,电导不会因阻塞而降低。 为了防止这种问题,在这种制冷机中,由于冷冻空气的供给不会停止除霜,干燥的冷却空气能够长时间连续供给到冷藏室。 版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • WATER STOP DEVICE OF SLUICE GATE
    • JPH1060867A
    • 1998-03-03
    • JP21734296
    • 1996-08-19
    • MITSUBISHI HEAVY IND LTD
    • KIKUCHI AIKOKANEKO TORUOGUCHI KIKUONOGUCHI KOMEIIMAMURA KENJI
    • E02B7/20
    • PROBLEM TO BE SOLVED: To minimize an extrusion pressure by forming a presser metal fitting on the atmospheric pressure side more thickly than a presser metal fitting on the hydraulic pressure side. SOLUTION: A presser metal fitting 6 on the atmospheric pressure side is formed more thickly than a presser metal fitting 5 on the hydraulic pressure side while a clearance S2 on the atmospheric pressure side is made smaller than a clearance S1 on the hydraulic pressure side. In the case when a sluice gate door 3 is closed, the sluice gate door 3 is slidingly closed while the head of water stop rubber 7 projected by the hydraulic pressure on a rear side is being pushed transversely. The head of the rubber in the early stage is separated from the sluice gate door 3 but when the sluice gate door 3 comes in contact with the head of the door 3 of the sluice gate later, a hydraulic pressure is loaded transversely on the head of the rubber, thereby producing the falling down of the head of the rubber on the atmospheric side. The root of the head of the rubber is swollen to the atmospheric side by this falling down of the head. Since the presser metal fitting 6 on the atmospheric pressure side supports this swollen area, the amount of the falling down of the water stop rubber 7 is relieved. Therefore, the water stop rubber 7 when closing the door 3 of the sluice gate is not easily sandwiched with the door 3 of the sluice gate and the presser metal fitting, thereby extending the service life of the water stop rubber.