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    • 5. 发明专利
    • Oil spill recovery treatment apparatus
    • 油泄漏恢复治疗装置
    • JP2009061376A
    • 2009-03-26
    • JP2007230361
    • 2007-09-05
    • Port & Airport Research Institute独立行政法人港湾空港技術研究所
    • FUJITA ISAMUYOSHIE MUNEOTAKEZAKI KENJIHAYASHI YOSUKE
    • C02F1/40
    • PROBLEM TO BE SOLVED: To provide an oil spill recovery treatment apparatus which can obtain a high oil recovery efficiency and enables the dispersion treatment of high viscosity oil as well as treatment of oil spill while staying on the spot for a long time.
      SOLUTION: The oil spill recovery treatment apparatus comprises an oil spill suction means 1 equipped with a steam ejector 2 sucking an emulsion of the oil spill drifting on the water surface, an oil recovery means 11 separating and recovering oil from the emulsion sucked by the oil spill suction means 1, an oil collection means 16 installed around the steam ejector 1, water guns 21 releasing water toward the steam ejector 2, a chemical injection means 24 injecting a chemical, such as an emulsion breaking agent or dispersing agent, or the like, into at least either the steam ejector 2 or the water guns 21, and three-way switching valves 28a, 28b as an operation mode switching means switching an oil recovery mode and an emulsion dispersion mode.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够获得高油回收效率并能够在高粘度油的分散处理以及长时间停留在现场的情况下处理溢油的溢油回收处理装置。 解决方案:溢油回收处理装置包括一个装有蒸汽喷射器2的吸油装置1,该蒸汽喷射器2吸附漂浮在水面上的漏油的乳液,一个从吸附的乳液中分离和回收油的油回收装置11 通过漏油抽吸装置1,安装在蒸汽喷射器1周围的油收集装置16,向蒸汽喷射器2释放水的水枪21,注入化学物质(例如破乳剂或分散剂)的化学喷射装置24, 至少是蒸汽喷射器2或水枪21,以及作为切换油回收模式和乳液分散模式的操作模式切换装置的三通切换阀28a,28b。 版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • Device and method for detecting drifting material
    • 用于检测转移材料的装置和方法
    • JP2008281419A
    • 2008-11-20
    • JP2007125354
    • 2007-05-10
    • Mitsui Zosen Akishima Kenkyusho:KkOsaka UnivPort & Airport Research Institute国立大学法人大阪大学株式会社三井造船昭島研究所独立行政法人港湾空港技術研究所
    • KATO NAOZOCHIGA HIDEAKIYOSHIE MUNEOFUJITA ISAMUTAKEZAKI KENJIIGARASHI KAZUYUKIOKUYAMA ETSURO
    • G01V9/00G01N11/14
    • PROBLEM TO BE SOLVED: To provide a detection device and method for detecting drifting material, capable of determining whether the device is in a floating material such as a heavy oil or not, surely and easily even in waves, where the device is a simple device mountable on a floating body such as a buoy for unmanned drifting material monitoring or a fixed point buoy, or mountable on a support installed on a fixed point on a coast part or the like.
      SOLUTION: This drifting material detection device 30 is equipped with a rotary drum 31 whose part is floating in the state of penetrating the water surface W.L. by setting a rotation axis direction Z in the vertical direction during detection, a rotation driving device 33 for rotating the rotary drum 31, a control means for controlling rotation driving of the rotation driving device 33, a detection means for detecting a rotational frequency or driving power, and a determination means for determining whether the drifting material detection device 30 is in the drifting material or not based on the rotational frequency or the driving power. The device 30 is constituted so that the rotary drum 31 is moved vertically following vertical movement of the water surface W.L.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种用于检测漂移材料的检测装置和方法,能够确定该装置是否处于诸如重油的浮动材料中,即使在波浪中也能够容易且容易地在装置中 可安装在浮体上的简单装置,例如用于无人漂移材料监测的浮标或固定点浮标,或可安装在安装在海岸部分等上的固定点上的支架上。 解决方案:该漂移材料检测装置30配备有旋转鼓31,其旋转滚筒31的一部分以穿透水面W.L的状态漂浮。 通过在检测期间沿垂直方向设定旋转轴方向Z,旋转驱动装置33,用于旋转旋转鼓31,用于控制旋转驱动装置33的旋转驱动的控制装置,用于检测旋转频率或驱动的检测装置 功率和确定装置,用于基于旋转频率或驱动功率确定漂移材料检测装置30是否处于漂移材料中。 装置30构成为使得旋转滚筒31在水面W.L的垂直运动之后垂直移动。 版权所有(C)2009,JPO&INPIT
    • 8. 发明专利
    • Unmanned monitoring buoy for drifting material, monitoring system for drifting material and method thereof
    • 用于减少材料的监测监测系统,用于减少材料的监测系统及其方法
    • JP2008100536A
    • 2008-05-01
    • JP2006282230
    • 2006-10-17
    • Mitsui Zosen Akishima Kenkyusho:KkOsaka UnivPort & Airport Research Institute国立大学法人大阪大学株式会社三井造船昭島研究所独立行政法人港湾空港技術研究所
    • KATO NAOZOCHIGA HIDEAKIYOSHIE MUNEOFUJITA ISAMUOMORI HIDEYUKINAKAGAWA HIROYUKI
    • B63B22/18B63B35/00B63B35/32
    • PROBLEM TO BE SOLVED: To provide an unmanned monitoring buoy for drifting materials, a monitoring system for drifting materials and a method thereof which can detect the position of the drifting materials by facilitating collection of the drifting materials such as heavy oil on the water and automatically tracking by detecting the position of the drifting materials in order to reduce the effect on the natural environment and local economy due to oil spill incident such as heavy oil, and can detect the data of hydrographical/meteorological phenomenon of the drifting water area of the drifting materials and transmit the data to the base station in real time.
      SOLUTION: The unmanned monitoring buoy (10) for drifting materials is put in a water area having the drifting materials (Fo), and automatically repeats surfacing and downwelling in the water area. The monitoring buoy detects the existence or non-existence and the position of the drifting materials (Fo) on the water surface part when it is under the water surface. After detecting, the monitoring buoy floats toward the position of the drifting material (Fo) to be detected, and sends the position information and the data of hydrographical/meteorological phenomenon or the like when floating in the area of the drifting materials (Fo) on the water surface.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供用于漂移材料的无人监控浮标,用于漂移材料的监控系统及其方法,其可以通过促进漂移材料(例如重油)上的漂移材料的收集来检测漂移材料的位置 通过检测漂移材料的位置自动跟踪,以减少因重油等溢油事件对自然环境和当地经济的影响,并可以检测到漂流水域的水文/气象现象数据 的漂移材料,并将数据实时传输到基站。

      解决方案:漂移材料的无人监控浮标(10)放入具有漂移材料(Fo)的水域,并自动重复水面中的堆焊和下流。 监测浮标在水面下方检测水面部分的漂移材料(Fo)的存在或不存在以及位置。 检测结束后,监测浮标朝漂浮物(Fo)的位置浮动,并在漂浮在漂浮物(Fo)的区域内发送位置信息和水文/气象现象等数据 水面。 版权所有(C)2008,JPO&INPIT

    • 9. 发明专利
    • Construction method by remote operation
    • 远程操作的施工方法
    • JP2005325684A
    • 2005-11-24
    • JP2005220760
    • 2005-07-29
    • Port & Airport Research InstituteSaeki Kensetsu Kogyo Co Ltd佐伯建設工業株式会社独立行政法人港湾空港技術研究所
    • YOSHIE MUNEOUCHIUMI MAKOTOHIRABAYASHI JOJIIWATA HIROOYANO HIROAKIKANAYAMA HIROYUKIYAMAMOTO YASUSHI
    • E02F5/00E02D15/10
    • PROBLEM TO BE SOLVED: To provide a construction method and a system by remote operation for performing construction by remotely operating a construction means without directly visually confirming a construction state by visual observation and a photographing image by an operator for remotely operating the construction means.
      SOLUTION: A three-dimensionally processed computer graphic image displayed on a display device 20 is formed by a control part 12 on the basis of contact information by transmitting the detected contact information to the control part 12 remotely arranged to a construction machine 11 via a cable 13 by detecting the contact information on the construction machine 11 and a construction object. The construction machine 11 is remotely operated by transmitting operation control information corresponding to the construction state to the construction machine 11 via the cable 13 by obtaining a virtual actual feeling of the construction state by looking at the computer graphics image.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了通过远程操作来提供施工方法和系统,通过远程操作施工装置进行施工,而不需要通过目视观察直接目视确认施工状态,并且由操作者进行遥控操作的拍摄图像 手段。 解决方案:显示装置20上显示的三维处理的计算机图形图像由控制部分12基于接触信息形成,通过将检测到的联系信息发送到远程布置到施工机器11上的控制部分12 通过电缆13检测建筑机械11上的接触信息和施工对象。 通过通过查看计算机图形图像获得施工状态的虚拟实际感觉,通过电缆13将对应于施工状态的操作控制信息发送给施工机械11,远程操作施工机械11。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • Remote-operated construction method and system
    • 远程操作施工方法与系统
    • JP2003278159A
    • 2003-10-02
    • JP2002088761
    • 2002-03-27
    • Port & Airport Research InstituteSaeki Kensetsu Kogyo Co Ltd佐伯建設工業株式会社独立行政法人港湾空港技術研究所
    • YOSHIE MUNEOUCHIUMI MAKOTOHIRABAYASHI JOJIIWATA HIROOYANO HIROAKIKANAYAMA HIROYUKIYAMAMOTO YASUSHI
    • E02F9/20E02D15/10
    • PROBLEM TO BE SOLVED: To provide remote-operated construction method and system enabling an operator remote-operating a construction means to remote-operate the construction means to perform construction without directly visually confirming the status of construction through visual observation or a photo image.
      SOLUTION: Contact information between construction machine 11 and a construction object is detected, the detected contact information is transmitted to a control part 12 disposed remote to the construction machine 11 through a cable 13, and according to the contact information, a computer graphics image three-dimensionally processed to be displayed on a display device 20 is formed by the control part 12. A virtual real feeling of the status of construction is obtained by watching the computer graphics image, whereby the operation control information corresponding to the status of construction is transferred to the construction machine 11 through the cable 13, thereby remote- operating the construction machine 11.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了提供远程操作的施工方法和系统,使操作者能够远程操作施工装置,以便远程操作施工装置进行施工,而无需通过目视观察或照片直接目视确认施工状态 图片。

      解决方案:检测到施工机械11与施工对象之间的接触信息,检测到的接触信息通过电缆13传送到远离建筑机械11的控制部分12,根据接触信息,计算机 通过控制部分12形成三维处理以显示在显示装置20上的图形图像。通过观看计算机图形图像获得构造状态的虚拟真实感觉,从而获得对应于 施工通过电缆13传送到施工机械11,从而远程操作施工机械11.版权所有(C)2004,JPO