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    • 2. 发明授权
    • 광섬유센서를 이용한 경사계 및 이를 이용한 대상물 경사측정방법
    • 광섬유센서를이용한경사계및이를이용한대상물경사측정방광섬
    • KR100909650B1
    • 2009-07-27
    • KR1020070058860
    • 2007-06-15
    • 한국건설기술연구원한국유지관리 주식회사
    • 황윤국박기태이우상주봉철최준성정성훈
    • G01C9/00
    • 본 발명은 대상물의 경사에 의하여 회전되는 진자의 회전변위를 수직변위로 변환시키고, 상기 수직 변위량을 광섬유 센서가 부착된 탄성변형체 및 광섬유 센서 시스템을 이용하여 측정하고, 대상물의 경사각도와 수직변위량을 기초로 한 상관관계에 의하여 구해진 비례상수를 상기 수직변위량에 곱하는 방식으로. 대상물의 경사를 보다 안정적이며 정밀하게 측정할 수 있는 광섬유센서를 이용한 경사계 및 이를 이용한 대상물의 경사 측정방법에 관한 것이다.
      경사계, 진자, 비례상수,
    • 提供一种使用光纤电缆传感器的角度计及使用该角度计的倾斜度测量方法,以通过使用具有光纤电缆传感器的角度计而不考虑外部而精确地测量物体在两个方向上的倾斜角度 诸如温度或湿度的条件。 旋转单元(200)具有相对于安装在与对象一起移动的壳体部件(100)中的旋转轴(110)旋转的摆锤。 旋转位移产生单元(200)具有连接到旋转单元的线并且根据旋转单元的旋转产生旋转位移。 位移感应单元(400)具有用于将旋转位移生成单元的旋转位移引导至预定方向的辊。 弹性变形单元具有弹性弹簧(500),弹性弹簧(500)在一侧连接到旋转位移发生单元的一端并且在另一侧与壳体部分固定,以将旋转位移发生单元的旋转位移转换为感应 位移时,弹性弹簧安装有光缆传感器(510)。
    • 4. 发明公开
    • 광섬유센서를 이용한 경사계 및 이를 이용한 대상물 경사측정방법
    • 使用光纤电缆传感器的放大器和对象的内置测量方法
    • KR1020080110293A
    • 2008-12-18
    • KR1020070058860
    • 2007-06-15
    • 한국건설기술연구원한국유지관리 주식회사
    • 황윤국박기태이우상주봉철최준성정성훈
    • G01C9/00
    • G01C9/06G01B11/16G01C9/12G01C2009/064G01N2201/08
    • An angle meter using an optical fiber cable sensor and an inclination measuring method using the same are provided to measure an inclination angle of a subject precisely not in a direction but in two direction by using the angle meter having the optical fiber cable sensor regardless of external conditions such as temperature or humidity. A rotation unit(200) has a pendulum rotating with respect to a rotation shaft(110) mounted in a housing part(100) which moves together with a subject. A rotation displacement generating unit(200) has a wire connected to the rotation unit and generates rotation displacement according to the rotation of the rotation unit. A displacement inducing unit(400) has a roller for inducing the rotation displacement of the rotation displacement generating unit in a predetermined direction. An elastic deformation unit has an elastic spring(500), which is connected to an end of the rotation displacement generating unit at a side and fixed with the housing part at the other side for converting the rotation displacement of the rotation displacement generating unit to induction displacement, the elastic spring is mounted with an optical fiber cable sensor(510).
    • 提供使用光纤电缆传感器的角度计和使用其的倾斜测量方法,通过使用具有光纤电缆传感器的角度计来测量被摄体精确地不是在方向上但是在两个方向上的倾斜角度,而不管外部 条件如温度或湿度。 旋转单元(200)具有相对于安装在与被摄体一起移动的壳体部分(100)中的旋转轴(110)旋转的摆。 旋转位移产生单元(200)具有连接到旋转单元的线,并且根据旋转单元的旋转产生旋转位移。 位移感应单元(400)具有用于引导旋转位移产生单元沿预定方向的旋转位移的辊。 弹性变形单元具有弹性弹簧(500),该弹性弹簧(500)在一侧与旋转位移产生单元的一端连接并且在另一侧与壳体部分固定,用于将旋转位移产生单元的旋转位移转换为感应 弹性弹簧安装有光缆传感器(510)。
    • 7. 发明公开
    • 해중 공간을 구비한 해상 부유식 구조물 직접 시공 방법
    • 具有水下空间的离岸浮式结构,以及海上直接施工方法
    • KR1020120120678A
    • 2012-11-02
    • KR1020110038406
    • 2011-04-25
    • 한국건설기술연구원
    • 정연주황윤국유영준이두호
    • B63B35/34B63B35/44E01D15/14B63B9/06
    • PURPOSE: A floating offshore structure with an underwater space and a direct construction method thereof are provided to actively utilize not only an offshore space but also an underwater space by forming the conical underwater space. CONSTITUTION: A floating offshore structure with an underwater space comprises upper plate structures or pontoons(160), an underwater structure, and upper facilities(170). The upper plate structures are floated on the sea by using buoyancy. The underwater structure is formed under the upper structures or the pontoons at one or more floors. The upper facilities are formed on the top of the upper plate structures or the pontoons. The underwater structure is connected by extending a housing and a pillar from the lowermost floor to the uppermost floor. Cables are connected to the pillar.
    • 目的:提供一种具有水下空间和直接施工方法的浮式海上结构,通过形成锥形水下空间,积极利用海上空间,同时通过水下空间。 构成:具有水下空间的浮式海上结构包括上板结构或浮筒(160),水下结构和上部设施(170)。 上板结构通过浮力浮在海上。 水下结构形成在一个或多个楼层的上部结构或浮筒下面。 上部设施形成在上板结构或浮筒的顶部。 通过将外壳和支柱从最底层延伸到最上层来连接水下结构。 电缆连接到支柱。