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    • 2. 发明专利
    • Marine organism sticking prevention device for seawater utilization facility and seawater utilization facility
    • 用于海水利用设施和海水利用设施的海洋有机物防护装置
    • JP2014169609A
    • 2014-09-18
    • JP2013043314
    • 2013-03-05
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • HAMANO SHOGOSUMIDA KOICHI
    • E02B1/00C02F1/48
    • PROBLEM TO BE SOLVED: To provide a marine organism sticking prevention device for a seawater utilization facility, capable of reducing an installation cost, and facilitating installation in an existing seawater utilization facility.SOLUTION: A magnetic force generator H having a permanent magnet 14 is installed inside a seawater flow passage R for conducting seawater in a magnetization processing state of the conducting seawater, the magnetic force generator H is constituted so as to be supported to the seawater flow passage R by a plurality of elastic supports 15 dispersively arranged in the circumferential direction of the magnetic force generator H in a flow passage longitudinal directional view of the seawater flow passage R, and the elastic supports 15 are constituted in the form of having an abutting part 15b allowed to abut on an inner surface of the seawater flow passage R, on the tip of an elastic expansion part 15a elastically expandably energized to the extension side in the radial direction of the seawater flow passage R.
    • 要解决的问题:提供一种用于海水利用设施的海洋生物粘附防止装置,能够降低安装成本,并且便于在现有的海水利用设施中的安装。解决方案:安装有永磁体14的磁力发生器H 在用于在导电海水的磁化处理状态下进行海水的海水流路R内,磁力发生器H构成为通过沿圆周方向分散配置的多个弹性支撑件15支撑在海水流路R上 在海水流路R的流路纵向视图中的磁力发生器H的弹性支撑件15构成为具有抵靠部分15b的形式,该邻接部分15b抵靠在海水流路R的内表面上, 在弹性膨胀部分15a的尖端上弹性地可膨胀地通电到延伸侧 海水流路R的径向
    • 3. 发明专利
    • Marine organism adhesion prevention system and marine organism adhesion prevention method
    • 海洋有机粘合防治体系和海洋有机粘合防治方法
    • JP2014168766A
    • 2014-09-18
    • JP2013043313
    • 2013-03-05
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • HAMANO SHOGOSUMIDA KOICHI
    • C02F1/48E02B1/00
    • PROBLEM TO BE SOLVED: To miniaturize a magnetization treatment apparatus, to inhibit the manufacturing cost, and to abate the resistance to seawater within the magnetization treatment apparatus.SOLUTION: In a marine organism adhesion prevention system provided within a flow channel 54 through which seawater streams for preventing the adhesion, to a seawater-contacted site of the flow channel 54, of marine organisms with magnetized water, namely a body of water having been magnetized, multiple members of structures 51 each constituted by multiple magnets 53 arrayed along a first flow channel traverse direction A1 are configured via gaps within the flow channel, whereas gaps of the structures 51 are designated as seawater transmission parts 52 through which the seawater streaming through the flow channel 54 are transmitted, whereas a magnetized water generation means 50 for generating magnetized water within the seawater transmission parts 52 with an inductive electromotive force generated by the magnets 53 constituting the structures 51 is additionally provided.
    • 要解决的问题:为了使磁化处理装置小型化,抑制制造成本,并且减轻磁化处理装置内的海水的抵抗力。解决方案:在设置在流路54内的海洋生物粘附防止系统中,海水流 为了防止与磁化水(即已被磁化的水体)一起形成海水生物体与流路54的海水接触部位的粘合,多个结构体51由多个磁体53构成,多个磁体53沿第一流路 横向方向A1通过流道内的间隙构成,而结构51的间隙被指定为海水传输部分52,通过流动通道54流入的海水通过该海水传输部分52传递,而用于产生磁化水的磁化水产生装置50 具有感应电动势的海水传动部件52 附加地提供构成结构51的磁体53。
    • 7. 发明专利
    • Heat insulating structure for cylindrical pipe
    • AU2018369684A1
    • 2020-07-02
    • AU2018369684
    • 2018-11-16
    • ASAHI KOHSAN CORPNISSHINBO CHEMICAL INCOSAKA GAS CO LTD
    • SUMIDA KOICHICHIBA HIDEYUKIYOSHIMURA KAZUHIKO
    • F16L59/14
    • Provided is a heat insulating structure for a cylindrical pipe, wherein the heat insulating structure can suppress formation of a large gap between a pair of heat insulating members arranged adjacent to each other in the axial direction of the cylindrical pipe. On the outer periphery of the cylindrical pipe through which a low temperature fluid flows, a heat insulating wall is provided. The heat insulating wall is composed of a plurality of cylindrical layers having different diameters, and each of the cylindrical layers is formed of circular-arc heat insulating members (P) divided in the circumferential direction of the cylindrical pipe and the axial direction of the cylindrical pipe. With respect to the pair of heat insulating member (P) aligned adjacent to each other in the axial direction of the cylindrical pipe in at least a heat insulating wall on the inner side in the radial direction of the cylindrical pipe among the plurality of layers of the heat insulating wall, a connecting member (W) having a pair of locking portions (Wa) is provided so that the pair of locking portions (Wa) are separately inserted inward in the radial direction of the cylindrical pipe into the outer surface portions of the pair of heat insulating members (P).