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Pile foundation detection method
The invention relates to the technical field of engineering detection, and discloses a pile foundation detection method, which comprises a detection module, a first wireless communication module, a first power supply module and a server cluster, one end of the first wireless communication module is connected with the detection module, and the other end of the first wireless communication module is connected with the server cluster; the first wireless communication module and the detection module are respectively connected with the first power supply module; the detection module comprises a first processor, a vibration sensor and a positioner; one end of the first processor is connected with the first wireless communication module, and the other end of the first processor is connected with the vibration sensor and the positioner. According to the pile foundation detection method, effectiveness checking is carried out through the first processor according to the vibration data and the displacement data, that is, the data of the vibration sensor are directly judged and corrected through the wave velocity data converted from the displacement data measured by the differential GPS positioner, and the pile foundation detection precision is greatly improved.
本发明涉及工程检测技术领域,且公开了一种桩基检测方法,包括一检测模块、一第一无线通信模块、一第一电源模块以及一服务器集群;所述第一无线通信模块的一端与检测模块连接,另一端与所述服务器集群连接;所述第一无线通信模块以及检测模块均分别与第一电源模块连接;所述检测模块包括一第一处理器、一振动传感器以及一定位器;所述第一处理器的一端与第一无线通信模块连接,另一端与所述振动传感器以及定位器连接。该桩基检测方法,通过所述第一处理器依据振动数据以及位移数据进行有效性核查,即通过差分GPS定位器测量的位移数据换算出的波速数据直接对振动传感器的数据进行判断以及修正,极大的提升了桩基检测的精度。
Pile foundation detection method
The invention relates to the technical field of engineering detection, and discloses a pile foundation detection method, which comprises a detection module, a first wireless communication module, a first power supply module and a server cluster, one end of the first wireless communication module is connected with the detection module, and the other end of the first wireless communication module is connected with the server cluster; the first wireless communication module and the detection module are respectively connected with the first power supply module; the detection module comprises a first processor, a vibration sensor and a positioner; one end of the first processor is connected with the first wireless communication module, and the other end of the first processor is connected with the vibration sensor and the positioner. According to the pile foundation detection method, effectiveness checking is carried out through the first processor according to the vibration data and the displacement data, that is, the data of the vibration sensor are directly judged and corrected through the wave velocity data converted from the displacement data measured by the differential GPS positioner, and the pile foundation detection precision is greatly improved.
本发明涉及工程检测技术领域,且公开了一种桩基检测方法,包括一检测模块、一第一无线通信模块、一第一电源模块以及一服务器集群;所述第一无线通信模块的一端与检测模块连接,另一端与所述服务器集群连接;所述第一无线通信模块以及检测模块均分别与第一电源模块连接;所述检测模块包括一第一处理器、一振动传感器以及一定位器;所述第一处理器的一端与第一无线通信模块连接,另一端与所述振动传感器以及定位器连接。该桩基检测方法,通过所述第一处理器依据振动数据以及位移数据进行有效性核查,即通过差分GPS定位器测量的位移数据换算出的波速数据直接对振动传感器的数据进行判断以及修正,极大的提升了桩基检测的精度。
Pile foundation detection method
一种桩基检测方法
XIA CHUANJIANG (author) / LIU TONG (author) / MIAO HUI (author) / MEN YAO (author) / DU CHUNRUI (author) / XU SONG (author) / ZHANG MINGYANG (author) / LI KEXIN (author) / DU DONGCHEN (author) / YANG LELE (author)
2024-07-16
Patent
Electronic Resource
Chinese
Foundation pile foundation detection device for high pile
European Patent Office | 2021
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