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    • 1. 发明申请
    • SEAWATER DESALINATION SYSTEM AND ENERGY EXCHANGE CHAMBER
    • 海水淡化系统和能源交换室
    • US20120061309A1
    • 2012-03-15
    • US13320351
    • 2010-05-17
    • Tamami TakahashiMasao ShinodaMasato EguchiMasanori Goto
    • Tamami TakahashiMasao ShinodaMasato EguchiMasanori Goto
    • B01D61/06C02F1/44B01D61/02
    • B01D61/06B01D61/025B01D61/08B01D61/10B01D63/02B01D2313/246C02F1/441C02F2201/004C02F2303/10Y02A20/131Y02W10/30
    • A seawater desalination system which can solve a problem of wear of a sliding member and can suppress mixing of concentrated seawater and seawater by making an energy exchange chamber no-piston configuration is provided.In a seawater desalination system for producing fresh water from seawater by passing the seawater pressurized by a pump through a reverse-osmosis membrane-separation apparatus (4) to separate the seawater into fresh water and concentrated seawater, an energy exchange chamber (20) for utilizing pressure energy of the concentrated seawater discharged from the reverse-osmosis membrane-separation apparatus (3) as energy for pressurizing part of the seawater is provided. The energy exchange chamber includes a concentrated seawater port (P1) for introducing and discharging the concentrated seawater, a seawater port (P2) for introducing and discharging the seawater, and a plurality of partitioned fluid passages (R) provided in the chamber to allow the concentrated seawater port (P1) and the seawater port (P2) to communicate with each other.
    • 能够解决滑动构件的磨损问题的海水淡化系统,能够通过制造能量交换室无活塞构造来抑制浓缩海水和海水的混合。 在通过使由泵加压的海水通过反渗透膜分离装置(4)将海水分离成淡水和浓缩海水的用于从海水生产淡水的海水淡化系统中,用于 利用从反渗透膜分离装置(3)排出的浓缩海水的压力能作为对海水的一部分加压的能量。 能量交换室包括用于引入和排出浓缩海水的集中海水口(P1),用于引入和排出海水的海水口(P2)和设置在室中的多个分隔流体通道(R),以允许 集中海水口(P1)和海水口(P2)相互通信。
    • 2. 发明授权
    • Seawater desalination system and energy exchange chamber
    • 海水淡化系统和能量交换室
    • US08771510B2
    • 2014-07-08
    • US13320351
    • 2010-05-17
    • Tamami TakahashiMasao ShinodaMasato EguchiMasanori Goto
    • Tamami TakahashiMasao ShinodaMasato EguchiMasanori Goto
    • B01D61/06B01D61/02C02F1/44B01D61/08B01D61/10
    • B01D61/06B01D61/025B01D61/08B01D61/10B01D63/02B01D2313/246C02F1/441C02F2201/004C02F2303/10Y02A20/131Y02W10/30
    • A seawater desalination system which can solve a problem of wear of a sliding member and can suppress mixing of concentrated seawater and seawater by making an energy exchange chamber no-piston configuration is provided. In a seawater desalination system for producing fresh water from seawater by passing the seawater pressurized by a pump through a reverse-osmosis membrane-separation apparatus (4) to separate the seawater into fresh water and concentrated seawater, an energy exchange chamber (20) for utilizing pressure energy of the concentrated seawater discharged from the reverse-osmosis membrane-separation apparatus (3) as energy for pressurizing part of the seawater is provided. The energy exchange chamber includes a concentrated seawater port (P1) for introducing and discharging the concentrated seawater, a seawater port (P2) for introducing and discharging the seawater, and a plurality of partitioned fluid passages (R) provided in the chamber to allow the concentrated seawater port (P1) and the seawater port (P2) to communicate with each other.
    • 能够解决滑动构件的磨损问题的海水淡化系统,能够通过制造能量交换室无活塞构造来抑制浓缩海水和海水的混合。 在通过使由泵加压的海水通过反渗透膜分离装置(4)将海水分离成淡水和浓缩海水的用于从海水生产淡水的海水淡化系统中,用于 利用从反渗透膜分离装置(3)排出的浓缩海水的压力能作为对海水的一部分加压的能量。 能量交换室包括用于引入和排出浓缩海水的集中海水口(P1),用于引入和排出海水的海水口(P2)和设置在室中的多个分隔流体通道(R),以允许 集中海水口(P1)和海水口(P2)相互通信。
    • 3. 发明申请
    • SEAWATER DESALINATION SYSTEM AND ENERGY EXCHANGE CHAMBER
    • 海水淡化系统和能源交换室
    • US20120267292A1
    • 2012-10-25
    • US13447518
    • 2012-04-16
    • Tamami TakahashiKazuaki MaedaMasanori Goto
    • Tamami TakahashiKazuaki MaedaMasanori Goto
    • B01D61/00
    • C02F1/441B01D61/06B01D2313/246C02F1/006C02F2103/08C02F2201/003C02F2301/022C02F2303/10Y02A20/131Y02W10/30
    • An energy exchange chamber is used for exchanging pressure energy between concentrated seawater discharged from a reverse-osmosis membrane-separation apparatus and a part of seawater to be treated by the reverse-osmosis membrane separation apparatus in a seawater desalination system. The energy exchange chamber includes a concentrated seawater distributor communicating with a concentrated seawater port and configured to distribute a flow of the concentrated seawater flowing therein all over a horizontal plane of an interior of a chamber, and a seawater distributor communicating with a seawater port and configured to distribute a flow of the seawater flowing therein all over a horizontal plane of the interior of the chamber. The concentrated seawater and the seawater introduced into the chamber are brought into direct contact with each other over the horizontal plane of the interior of the chamber to exchange pressure energy between the concentrated seawater and the seawater.
    • 能量交换室用于在由反渗透膜分离装置排出的浓缩海水与在海水淡化系统中由反渗透膜分离装置进行处理的部分海水之间交换压力能量。 能量交换室包括集中的海水分配器,其与集中的海水端口连通并且被配置为分配在其中流过其中的集中海水的流动在室的内部的水平面上,以及与海水端口连通并配置的海水分配器 以便在室的内部的水平平面上分布流过其中的海水的流动。 引入室中的浓缩海水和海水在室内部的水平面上彼此直接接触,以在集中的海水和海水之间交换压力能量。
    • 4. 发明授权
    • Seawater desalination system and energy exchange chamber
    • 海水淡化系统和能量交换室
    • US09011688B2
    • 2015-04-21
    • US13447518
    • 2012-04-16
    • Tamami TakahashiKazuaki MaedaMasanori Goto
    • Tamami TakahashiKazuaki MaedaMasanori Goto
    • B01D61/06C02F1/44C02F1/00C02F103/08
    • C02F1/441B01D61/06B01D2313/246C02F1/006C02F2103/08C02F2201/003C02F2301/022C02F2303/10Y02A20/131Y02W10/30
    • An energy exchange chamber is used for exchanging pressure energy between concentrated seawater discharged from a reverse-osmosis membrane-separation apparatus and a part of seawater to be treated by the reverse-osmosis membrane separation apparatus in a seawater desalination system. The energy exchange chamber includes a concentrated seawater distributor communicating with a concentrated seawater port and configured to distribute a flow of concentrated seawater all over a horizontal plane of an interior of a chamber, and a seawater distributor communicating with a seawater port and configured to distribute a flow of seawater all over the horizontal plane of the interior of the chamber. The concentrated seawater and the seawater introduced into the chamber are brought into direct contact with each other over the horizontal plane of the interior of the chamber to exchange pressure energy between the concentrated seawater and the seawater introduced into the chamber.
    • 能量交换室用于在由反渗透膜分离装置排出的浓缩海水与在海水淡化系统中由反渗透膜分离装置进行处理的部分海水之间交换压力能量。 能量交换室包括集中的海水分配器,其与集中的海水端口连通并且构造成在室的内部的整个水平面上分布集中的海水流;以及海水分配器,其与海水端口连通并且被配置为分配 在整个室内水平面上的海水流动。 引入室中的浓缩海水和海水在室的内部的水平面上彼此直接接触,以在集中的海水和引入室中的海水之间交换压力能量。
    • 6. 发明申请
    • Assembly of optical fiber and optical fiber holder with end portion of optical fiber housed in recess
    • 组装光纤和光纤保持器,光纤端部容纳在凹槽中
    • US20110182559A1
    • 2011-07-28
    • US12656367
    • 2010-01-27
    • Masanori GotoMasahiro Onishi
    • Masanori GotoMasahiro Onishi
    • G02B6/00G02B6/30
    • G02B6/423G02B6/4239G02B6/4242
    • The present invention is directed to an assembly of an optical fiber and an optical fiber holder for holding the optical fiber, the optical fiber having an end surface formed at an end portion thereof, the end surface being configured to perform light coupling with a light emitting element or with a light receiving element. The optical fiber holder comprises; a throughhole which extends through the optical fiber holder and a recess that is positioned on a surface of the optical fiber holder and that is provided with an opening of the throughhole. The optical fiber is inserted through the throughhole and an adhesive is filled in a gap between an inner wall of the throughhole and an outer periphery of the optical fiber, the adhesive being used for adhering the optical fiber to the optical fiber holder. The end portion, on which is formed the end surface of the optical fiber, protrudes from the opening and terminates within the recess.
    • 本发明涉及一种用于保持光纤的光纤和光纤保持器的组件,所述光纤具有形成在其端部的端面,所述端面被配置为执行与发光的光耦合 元件或光接收元件。 光纤保持架包括: 延伸穿过光纤保持器的通孔和位于光纤保持器的表面上并且设置有通孔的开口的凹部。 光纤穿过通孔插入,并且粘合剂填充在通孔的内壁和光纤的外周之间的间隙中,该粘合剂用于将光纤粘附到光纤保持器。 形成光纤端面的端部从开口突出并终止于凹部内。