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Foundation settlement testing system and method adopting resistance-sensitive geogrids

机译:采用电阻敏感土工格栅的地基沉降测试系统及方法

摘要

A foundation settlement testing system adopting resistance-sensitive geogrids comprises: measurement elements which do not affect performance parameters of a geogrid after being embedded. The measurement elements are embedded in a transverse direction and a longitudinal direction of each geogrid. The measuring elements are connected in parallel and an outer portion thereof is wrapped in an insulation layer. The insulation layer is connected to the measurement elements by means of bonding, and the insulation layer is connected to the geogrids by means of bonding. The geogrids in which the measurement elements are embedded are configured to be perpendicular to each other, and each layer of the geogrids are sequentially stacked. Deformation of the geogrids by a force causes deformation of the measurement elements, such that resistance values of the measurement elements are changed. The change in resistance values causes an electrical measurement signal to change. A monitoring point acquires data and transmits the data to a cloud server. The cloud server communicates with a remote control center. Further disclosed is a foundation settlement testing method adopting resistance-sensitive geogrids.
机译:采用电阻敏感土工格栅的地基沉降测试系统,包括:埋置后不影响土工格栅性能参数的测量元件。测量元件嵌入在每个土工格栅的横向和纵向上。测量元件并联连接,并且其外部包裹在绝缘层中。绝缘层通过粘结连接到测量元件,并且绝缘层通过粘结连接到土工格栅。嵌入有测量元件的土工格栅被构造成彼此垂直,并且土工格栅的每一层被顺序地堆叠。土工格栅由于力而变形会导致测量元件变形,从而改变测量元件的电阻值。电阻值的变化会导致电测量信号发生变化。监视点获取数据并将数据发送到云服务器。云服务器与远程控制中心通信。进一步公开了采用电阻敏感土工格栅的地基沉降测试方法。

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