Light-Weight Temporary Bridge System and Building Method thereof
    2.
    发明申请
    Light-Weight Temporary Bridge System and Building Method thereof 审中-公开
    轻型临时桥梁系统及其建筑方法

    公开(公告)号:US20160160457A1

    公开(公告)日:2016-06-09

    申请号:US14727821

    申请日:2015-06-01

    Abstract: A light-weight temporary bridge system includes a weight balance structure-module, constructed at a first abutment; a bridge tower structure-module, including a bottom part fixed to the weight balance structure-module and a top part coupled to the weight balance structure-module via at least one first cable; and a crossing structure-module constructed between the first abutment and a second abutment, coupled to the weight balance structure-module and coupled to the top part of the bridge tower structure-module via at least one second cable.

    Abstract translation: 轻量临时桥系统包括在第一基台处构造的重量平衡结构模块; 桥塔结构模块,包括固定到重量平衡结构模块的底部和经由至少一个第一电缆耦合到重量平衡结构模块的顶部; 以及交叉结构模块,其构造在所述第一邻接部和第二抵接部之间,所述交叉结构模块经由所述至少一个第二缆线联接到所述重量平衡结构模块并且经由所述桥塔结构模块的顶部部分连接。

    Environment monitoring system and vibration sensing device

    公开(公告)号:US10180509B2

    公开(公告)日:2019-01-15

    申请号:US14876812

    申请日:2015-10-06

    Abstract: An environment monitoring system is utilized for monitoring an environmental variation status of a riverbed, a lake floor, or a seabed. The environment monitor system includes a wire drawing device configured at a monitoring point for releasing and tightening a transmission wire; a fixing pipe laid between the monitoring point and a structure layer for containing the transmission wire; a plurality of vibration sensing devices respectively configured on the transmission wire for converting sensed vibration energy to a plurality of electric signals and transmitting the plurality of electric signals by the transmission wire; an analyzing device coupled with the wire drawing device and the transmission wire for obtaining a released length of the transmission wire by the wire drawing device and determining the environmental variation status according to the released length and the plurality of electric signals to perform monitoring.

    Geomorphological structure monitoring system

    公开(公告)号:US10914855B2

    公开(公告)日:2021-02-09

    申请号:US16105200

    申请日:2018-08-20

    Abstract: A geomorphological structure monitoring system is disclosed, which comprises a supporting base having an accommodating space and a plurality of through holes, and at least a portion of the supporting base is embedded under a ground; a plurality of sensing devices arranged in the accommodating space vertically and embedded under the ground, the sensing devices may generate a sensing signal when the sensing devices are exposed from the ground due to the structural change of the ground; a signal processing device receiving and processing the sensing signal; and a transmission device connecting the sensing devices in series and the signal processing device.

    Environment Monitoring System and Vibration Sensing Device
    5.
    发明申请
    Environment Monitoring System and Vibration Sensing Device 审中-公开
    环境监测系统和振动传感装置

    公开(公告)号:US20160154128A1

    公开(公告)日:2016-06-02

    申请号:US14876812

    申请日:2015-10-06

    CPC classification number: G01V1/18 G01H1/00 G01V1/166

    Abstract: An environment monitoring system is utilized for monitoring an environmental variation status of a riverbed, a lake floor, or a seabed. The environment monitor system includes a wire drawing device configured at a monitoring point for releasing and tightening a transmission wire; a fixing pipe laid between the monitoring point and a structure layer for containing the transmission wire; a plurality of vibration sensing devices respectively configured on the transmission wire for converting sensed vibration energy to a plurality of electric signals and transmitting the plurality of electric signals by the transmission wire; an analyzing device coupled with the wire drawing device and the transmission wire for obtaining a released length of the transmission wire by the wire drawing device and determining the environmental variation status according to the released length and the plurality of electric signals to perform monitoring.

    Abstract translation: 利用环境监测系统监测河床,湖底或海底的环境变化状况。 环境监视器系统包括配置在用于释放和紧固传输线的监控点处的拉丝装置; 位于监测点和用于容纳传输线的结构层之间的固定管; 分别配置在所述传输线上的多个振动感测装置,用于将检测到的振动能量转换为多个电信号,并通过所述传输线传输所述多个电信号; 与拉丝装置和传输线耦合的分析装置,用于通过拉丝装置获得传输线的释放长度,并根据释放的长度和多个电信号确定环境变化状态以进行监视。

    Sensing system and sensing method using the same

    公开(公告)号:US09945667B2

    公开(公告)日:2018-04-17

    申请号:US15186881

    申请日:2016-06-20

    CPC classification number: G01C9/06 G01C9/20 G01C2009/066 G01D5/353 G01D5/35345

    Abstract: The present invention relates to a sensing system and a sensing method using the same. The sensing system includes at least one tested unit and an optical fiber measuring unit. The tested unit includes a container, a strain arm and a float. The container can be filled with a fluid, and the strain arm is connected with the float and combined with a measuring portion of the optical fiber measuring unit. When the container is disposed on a body of interest, the surface inclination or settlement of the body of interest would cause changes of buoyant force on the floating element and induce bending deformation of the strain arm. Accordingly, the surface deformation of the body of interest can be determined by detecting the bending deformation of the strain arm using the measuring portion combined with the strain arm.

    Seismically suspended isolation device with displacement suppressing mechanism

    公开(公告)号:US12241275B2

    公开(公告)日:2025-03-04

    申请号:US18518707

    申请日:2023-11-24

    Abstract: A seismically suspended isolation device is installed in a suspended configuration at a fixed end and comprises a first support module, a second support module, a first displacement suppressing module and a second displacement suppressing module. The first support module includes a first fixing element, a first moving element, and at least one first roller. The first roller is disposed between the first fixing element and the first moving element. The second support module includes a second fixing element, a second moving element, and at least one second roller. The second roller is disposed between the second fixing element and the second moving element. The first support module and the second support module are stacked together in an orthogonal manner, so that the seismically suspended isolation device generates motion in the first direction and the second direction when the seismically suspended isolation device subjected to an external force.

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