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    • 15. 发明专利
    • Nano bubble generator
    • NANO BUBBLE发电机
    • JP2011121002A
    • 2011-06-23
    • JP2009280699
    • 2009-12-10
    • Takenaka Komuten Co Ltd株式会社竹中工務店
    • NAKAKUKI YASUHIDEKAYANO HIDENORIKAWAHITO NAOMI
    • B01F5/06B01F3/04B01F5/00B01F5/04C02F1/50C02F1/78
    • PROBLEM TO BE SOLVED: To provide a nano bubble generator efficiently generating nano bubbles with a simple structure.
      SOLUTION: The nano bubble generator includes a bubble generating part 4 consisting of a liquid pressurizing means 6 and a gas injection means 8 and involving the bubbles into the pressurized liquid to form a gas-liquid mixed fluid, a microbubble feed part 10 including a microbubble generator 12 subdividing the bubbles in the gas-liquid mixed fluid into microbubbles, and a nano bubble generation part 26 formed to jet microbubbles as nano bubbles by throttling a part of a path where the gas-liquid mixed fluid containing the microbubbles passes and making the microbubble minute by injecting the microbubbles into a throttle part.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种以简单结构有效生成纳米气泡的纳米气泡发生器。 解决方案:纳米气泡发生器包括由液体加压装置6和气体注入装置8组成的气泡发生部分4,并将气泡包含在加压液体中以形成气液混合流体,微泡进料部分10 包括将气液混合流体中的气泡细分为微泡的微泡发生器12,以及通过节流包含微泡的气液混合流体通过的路径的一部分通过而形成为喷射微泡作为纳米气泡的纳米气泡生成部26 并通过将微泡注入节流部分来使微泡分钟。 版权所有(C)2011,JPO&INPIT
    • 16. 发明专利
    • Fluid tank
    • 流体槽
    • JP2003299759A
    • 2003-10-21
    • JP2002107831
    • 2002-04-10
    • Takenaka Komuten Co Ltd株式会社竹中工務店
    • NAKAKUKI YASUHIDEKAYANO HIDENORIKAWAHITO NAOMIHORIO MASAYUKINODA REIJIKIMURA SATOSHI
    • A63B69/10A63B69/12
    • PROBLEM TO BE SOLVED: To provide a fluid tank 12 which achieves kinetic effects equivalent to those by underwater motion without using water. SOLUTION: A large amount of solid particle M is stored in the tank 12. Air is blown out of the bottom part of the tank 12 to fluidize the solid particle M so that the nature of the liquid state like that of water can be produced simulatively. The users in the solid particle M thus fluidized can gain a higher kinetic efficiency to exercise themselves with a limited burden on their bodies without being wetted as in the water. By regulating the amount of the air fed into the tank 12, the physical load imposed on the users in the solid particle M can be controlled to adjust the pressure, buoyance and resisting forces working on the users. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种流体箱12,其实现与不使用水的水下运动相当的动力效应。 解决方案:大量的固体颗粒M储存在罐12中。空气从罐12的底部吹出,使固体颗粒M流化,使得像水的液体状态的性质可以 模拟地生产。 这样流化的固体颗粒M中的使用者可以获得较高的动力学效率,以在水中不受潮湿地对其身体施加有限的负担来运动自身。 通过调节供给到罐12中的空气的量,可以控制施加在固体颗粒M中的使用者的物理负荷,以调节对使用者施加的压力,浮力和抵抗力。 版权所有(C)2004,JPO
    • 18. 发明专利
    • SEA WATER PURIFYING DEVICE
    • JPH06178982A
    • 1994-06-28
    • JP33325492
    • 1992-12-14
    • TAKENAKA KOMUTEN CO
    • KAYANO HIDENORINAKAKUKI YASUHIDEONOMI TAKEHIKOWATANABE HIROKO
    • C02F1/76C02F1/46C02F1/50
    • PURPOSE:To perform sterilization of sea water and elimination of seaweed extending over the whole area by generating gaseous chlorine by electrolyzing sea water, and simultaneously, stirring the gaseous chlorine extending over the whole area of sea water by ascent of bubbles from a diffuser, and diffusing simply and automatically residual chlorine over the whole area of sea water. CONSTITUTION:To the positive electrode 2 and the negative electrode 3 opposed mutually and arranged in sea water, a current is supplied from a power source 4. Also, by a diffuser 13 positioned in the lower part of the positive electrode 2 in sea water, bubbles are supplied into the sea water. Moreover, by residual chlorine concentration detectors 6, 7, residual chlorine in the sea water is detected. By a residual chlorine concentration controller 8 connected to the residual chlorine concentration detectors 6, 7, an output instruction is given to the power source 4 in the case the residual chlorine concentration is smaller than set concentration. As a result, the residual chlorine can be diffused easily into the sea water, and also, concentration of the residual chlorine in the sea water can be set to prescribed concentration.