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    • 1. 发明专利
    • Wave surface following type elevation/floating structure
    • 下面的波形表面高度/浮动结构
    • JP2007186028A
    • 2007-07-26
    • JP2006004647
    • 2006-01-12
    • Zeni Lite Buoy Co Ltd株式会社ゼニライトブイ
    • ASO YUJIHASHIMOTO SHINTARO
    • B63B22/18
    • PROBLEM TO BE SOLVED: To provide an elevation/floating structure excellent in wave surface following property by suppressing swing, particularly synchronous swing.
      SOLUTION: When a wavelength in the swinging of a buoy in synchronization with waves is Lwo, (a) the diameter Df of a float 1 is 50 to 70% of the wavelength Lwo, (b) the height Hf of the float 1 is 7 to 8% of the wavelength Lwo, and (c) a freeboard fa of the float 1 is 4 to 6% of the Lwo. If all of the conditions (a) to (c) are satisfied, the best wave surface following property is provided, and the most ideal buoy can be provided.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:通过抑制摆动,特别是同步摆动来提供波面跟随特性优异的仰角/浮动结构。 解决方案:当波浪同步波动的波长为Lwo时,(a)浮子1的直径Df为波长Lwo的50〜70%,(b)浮子的高度Hf 1为波长Lwo的7〜8%,(c)浮子1的干舷fa为Lwo的4〜6%。 如果满足所有条件(a)至(c),则提供最佳波面跟随特性,并且可以提供最理想的浮标。 版权所有(C)2007,JPO&INPIT
    • 2. 发明专利
    • Spar buoy for wave-crushing shallow sea area
    • 用于波浪破碎沙滩的SPAR BUO
    • JP2005186752A
    • 2005-07-14
    • JP2003430037
    • 2003-12-25
    • Zeni Lite Buoy Co Ltd株式会社ゼニライトブイ
    • ASO YUJIHASHIMOTO SHINTAROINOUE YUJI
    • B63B22/16
    • PROBLEM TO BE SOLVED: To prevent wearing of a mooring fitting of a beacon light in a wave-crushing shallow sea area more than required, to prevent a label body, a lamplight or the like from being failed by wave-crushing force, to prevent an anchor from being buried by floating sand or soaring thereof, to prevent the mooring fitting and a mooring cable from being worn by interposition of sand particle more than required and to make the label body thin and short such that the label is not conspicuous at the wave-crushing shallow sea area as less as possible.
      SOLUTION: The spar buoy for the wave-crushing shallow sea area is constituted such that a thinner label pillar 2 of circular cross section is continuously arranged above a pipe-like buoyancy 1 of circular cross section and the one lengthy label body 3 is formed on the midway of the label pillar 2 without providing a step or other materials and is moored to the anchor 4 by a universal joint 5. The label body 3 is made of stainless steel. The anchor 4 is made of a thin rectangular plate-like steel. It is made to a slide bearing of the universal joint 5. A dust seal is attached thereto. The lamplight of a lighting unit 6 is made to a lamp bulb. A retaining base is retained by a base with a vibration-proof device.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了防止在比所需的波浪破碎浅海区域佩戴信标灯的系泊配件,防止标签体,灯光等因波浪破碎而失败 ,以防止锚通过浮沙或翱翔而被埋葬,以防止系泊配件和系泊缆索穿过比所需要的砂粒更容易磨损,并使标签体薄而短,使得标签不是 在波浪破碎的浅海区域显眼,尽可能少。

      解决方案:波浪破碎浅海区域的翼梁浮标构成为,圆形截面的薄型标签柱2连续地布置在圆形横截面的管状浮力1上方,并且一个冗长的标签体3 形成在标签柱2的中途,而不设置台阶或其他材料,并通过万向接头5系泊到锚固件4上。标签体3由不锈钢制成。 锚4由薄的矩形板状钢制成。 制成万向接头5的滑动轴承。附着有防尘密封。 照明单元6的灯具被制成灯泡。 保持基座由具有防振装置的基座保持。 版权所有(C)2005,JPO&NCIPI

    • 3. 发明专利
    • Drag reducing device for offshore structure including pillar shaped member
    • 用于海底结构的减速装置,包括支柱构件
    • JP2003054486A
    • 2003-02-26
    • JP2001247629
    • 2001-08-17
    • Oyo CorpZeni Lite Buoy Co Ltd応用地質株式会社株式会社ゼニライトブイ
    • ASO YUJIOTANI RYOICHITAKAMI TAKESHI
    • E02B17/00B63B22/18
    • PROBLEM TO BE SOLVED: To greatly reduce drag in a tidal current and waves or the like by sliding a cover 1 on a cylindrical pillar member 2 in case of receiving the tidal current or waves from a direction of an arrow (1) which is parallel with a major axis of the cover 1, sliding the cover 1 in a reverse direction of the direction mentioned above in a case of receiving the tidal current or waves from a reverse direction of the arrow (1), and rotating the cover 1 around the cylindrical pillar member 2 to a state indicated with chain line in case that a direction of flow changes from the direction indicated by the arrow (1) to an arrow (2).
      SOLUTION: The cover 1 of ellipse or a shape similar to the same is slidably, or rotatably or slidably and rotatably arranged on the cylindrical pillar member 2 of an offshore structure.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了在从平行的箭头(1)的方向接收潮汐流或波浪的情况下,通过在圆柱形柱构件2上滑动盖1来大大减少潮汐流和波浪等中的阻力 在盖1的长轴上,在从箭头(1)的相反方向接收潮流或波浪的情况下,使盖1沿着与上述方向相反的方向滑动,并且将盖1围绕 在从箭头(1)所示的方向向箭头(2)的方向变化的情况下,圆柱形柱构件2处于由链线指示的状态。 解决方案:椭圆形或类似形状的盖1可滑动或可旋转或可滑动和可旋转地布置在离岸结构的圆柱形柱构件2上。
    • 4. 发明专利
    • Marine phenomenon measuring method by spar buoy, and device therefor
    • 海洋海洋测量方法及其设备
    • JP2007327853A
    • 2007-12-20
    • JP2006159289
    • 2006-06-08
    • Japan Aerospace Exploration AgencyZeni Lite Buoy Co Ltd株式会社ゼニライトブイ独立行政法人 宇宙航空研究開発機構
    • ASO YUJIKOMORI SHIGENORIYAMAGUCHI ISAOKASAI TOKIOIGAWA HIROTAKAHARIKAE MASATOSHI
    • G01C13/00B63B22/18G01S19/14G01W1/08
    • PROBLEM TO BE SOLVED: To very easily, precisely and stably obtain marine phenomenon information in real time based on a GPS positioning data.
      SOLUTION: A motion displacement caused by an oscillation of a spar buoy upper part is measured time-serially as a three-dimensional position data, by a GPS type motion measuring sensor 2 mounted on the upper part of the buoy, and a pitching amplitude ϕ and a motion period Tw of the spar buoy caused by a wave are found based on the three-dimensional position data obtained time-serially. An approximate value of a wave height Hw is found based on the pitching amplitude ϕ and a numeral value of the motion period Tw of the spar buoy obtained therein, and a wave height of a marine wave is estimated based on a numerical value thereof. This measuring method of the present invention uses an interpolation calculation method by table look-up of a motion characteristic table prepared preliminarily, as a method of finding the approximate value. The marine phenomenon information is obtained very easily, precisely and stably in the real time based on the GPS positioning data, in the present invention. The motion measuring sensor 2 used conventionally for the existing spar buoy is posteriorly attached easily, and a great merit is provided in an aspect of a cost.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:基于GPS定位数据,实时地非常容易,精确和稳定地获得海洋现象信息。 解决方案:通过安装在浮标的上部的GPS型运动测量传感器2,时间序列地测量由翼梁浮标上部的振动引起的运动位移作为三维位置数据,以及 基于时间顺序获得的三维位置数据,找到由波引起的翼梁浮标的俯仰幅度φ和运动周期Tw。 基于俯仰振幅φ和其中获得的翼梁浮标的运动周期Tw的数值,找到波高Hw的近似值,并且基于其数值来估计海浪的波高。 本发明的测量方法是通过预先制作的运动特性表的表查询来进行插值计算的方法,作为求出近似值的方法。 在本发明中,基于GPS定位数据,实时地实时地获得海洋现象信息。 传统上用于现有的翼梁浮标的运动测量传感器2容易地后连接,并且在成本方面提供了很大的优点。 版权所有(C)2008,JPO&INPIT
    • 5. 发明专利
    • Buoy for high ocean waves
    • BUOY为高海浪
    • JP2007008288A
    • 2007-01-18
    • JP2005190490
    • 2005-06-29
    • Zeni Lite Buoy Co Ltd株式会社ゼニライトブイ
    • ASO YUJIOBATA NOBUTSUGU
    • B63B22/00B63B22/18
    • PROBLEM TO BE SOLVED: To provide a buoy for high ocean waves, capable of relieving an impact force against a high impact force from below, and capable of suppressing vertical motions in normal time.
      SOLUTION: A tail cylinder 2 is disposed immediately under a cylindrical float body 1, and a lower end of the tail pipe 2 is moored. A bottom part of the float body 1 is in a shape of an inverted truncated cone. A ring-like motion control member 4 whose side faces are in the shape of the inverted truncated cone is disposed around the tail pipe 2. At least lower end of the ail pipe 2 is tapered.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于高海浪的浮标,能够缓解来自下方的高冲击力的冲击力,并且能够在正常时间内抑制垂直运动。 解决方案:尾筒2立即设置在圆柱形浮子体1的下方,尾管2的下端系泊。 浮体1的底部呈倒锥体的形状。 在尾管2的周围配置有侧面为倒立圆锥体的环状的运动控制部件4.在此,管状管2的至少下端呈锥形。 版权所有(C)2007,JPO&INPIT
    • 6. 发明专利
    • Small observation buoy system
    • 小型观察系统
    • JP2013184531A
    • 2013-09-19
    • JP2012050345
    • 2012-03-07
    • Kyushu Univ国立大学法人九州大学Zeni Lite Buoy Co Ltd株式会社ゼニライトブイ
    • KODERAYAMA WATARUNAKAMURA MASAHIKOASO YUJIHASHIMOTO SHINTAROASANO TATSUO
    • B63B22/00B63B21/20B63B22/04B63B22/18
    • PROBLEM TO BE SOLVED: To achieve a reduction in size of an observation buoy 1 as well as a reduction in weight of a mooring line A, because impact energy of a series of objects to be moored can be suppressed and specifications of the optimum submerged mooring line A can be determined by three dimensional numerical calculation by a lumped mass method.SOLUTION: An observation buoy 1 is disposed at the center, a marker buoy 2 is disposed outside the observation buoy 1 via intermediate floats 3, and floats 4 at both ends are disposed further outside thereof. The mooring line A is installed in a direction perpendicular to a wave direction of excessive external force during stormy weather. The floats 4 at both ends, the marker buoy 2, the intermediate floats 3, and the observation buoy 1 are submerged in this order, and a two-point mooring line is transformed from a trapezoidal shape to an inverted V shape in the water. A balanced state of a small observation buoy system S such as the shape and tension of the mooring line A is calculated by three dimensional numerical calculation by a lumped mass method, and specifications of the optimum submerged mooring line A are determined with an external force threshold from these values.
    • 要解决的问题:为了实现观察浮标1的尺寸的减小以及系泊绳A的重量的减轻,由于可以抑制待系泊的一系列物体的冲击能量和最佳淹没系泊的规格 线A可以通过集中质量法的三维数值计算来确定。解决方案:观察浮标1设置在中心处,标记浮标2经由中间浮子3设置在观察浮标1的外部,并且在两端浮起4 被设置在其外部。 在暴雨天气期间,系绳A安装在与外力过大的波浪方向垂直的方向。 两端的浮标4,标记浮标2,中间浮子3和观察浮标1依次被淹没,并且两点系泊线在水中从梯形变形为倒V形。 通过集中质量法的三维数值计算来计算小型观察浮标系统S的平衡状态,例如系泊线A的形状和张力,并且利用外力阈值来确定最佳淹没系泊绳A的规格 从这些值。
    • 7. 发明专利
    • Gasket for water sealed container
    • 水密封容器垫圈
    • JP2005036926A
    • 2005-02-10
    • JP2003275848
    • 2003-07-17
    • Zeni Lite Buoy Co Ltd株式会社ゼニライトブイ
    • ASO YUJIKURIYAMA TAKAMICHI
    • F16L1/24F16J15/10
    • PROBLEM TO BE SOLVED: To provide a gasket having a longer life and further improved sealing performance by making a gentle progress of permanent compressive distortion without causing the crush of a rubber tissue. SOLUTION: The cross section area ratio of the gasket which is fitted into a flange groove as a water sealed portion of a water sealed container to the flange groove is set closer to 1:1. The volume of the gasket is set not to exceed the volume of the flange groove. The cross section of the gasket is in an approximate H-shape. The protrusions of the gasket which contacts a flange face are in two light and left lines. The packing is prevented from running out of the flange groove, no compressive force is locally applied to the gasket when under pressure, a space for escape during compressive deformation is produced in a recessed area formed on the upper, lower, right and left sides, and free directivity is obtained in use. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:通过在不引起橡胶组织破碎的情况下使永久压缩变形得到平缓进行,提供具有更长寿命和进一步提高的密封性能的垫圈。 解决方案:将与水密封容器的水密封部分配合到凸缘槽的凸缘槽中的垫圈的横截面积比设置为接近1:1。 垫圈的体积不超过法兰槽的体积。 垫圈的横截面为大致H形。 接触凸缘面的垫圈的突出部分分成两条光线和左线。 防止填料从凸缘槽流出,在压力作用下不会对垫圈局部施加压缩力,在形成在上,下,左,右两侧的凹陷区域产生压缩变形期间的逸出空间, 在使用中获得了自由的方向性。 版权所有(C)2005,JPO&NCIPI
    • 9. 发明专利
    • MANUFACTURE OF LANTERN
    • JPH0644808A
    • 1994-02-18
    • JP19004992
    • 1992-06-23
    • ZENI LITE BUOY CO LTD
    • ASO YUJIARIMURA TADAHIRO
    • F21S2/00G02B3/08F21Q3/00
    • PURPOSE:To facilitate manufacture of a lantern having a large angle of divergence and provide easy perceptivity for any vessel cruising even when the lantern is tilting by dislocating the lens focus from the position of a light source, and enlarging the vertical divergence angle of the emitted light. CONSTITUTION:The light source 3 of an electric bulb 2 lies in the center of the cylinder of a cylindrical lens 1 (having a radius R), wherein the focal distance (f) of the lens is greater than the radius R, and the light source is positioned dislocated from the focus F of the lens. Accordingly the vertical divergence angle of the emitted light becomes greater than when the focal distance (f) is identical with the light source as in any conventional arrangement, and perception of the light is easier even with fluctuation due to waves. The cylindrical lens is of Fresnel type embodied by bending a thin transparent film into a cylindrical form where a fine prism-form Fresnel lens surface is generated, and the lens focus is dislocated from the position of light source by changing the dia. of the cylinder while the focal distance (f) is left unchanged, and thereby the vertical divergence angle of the emitted light can be adjusted over a wide range.