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Large-span bridge cantilever construction method based on Internet of Things monitoring
The invention provides a large-span bridge cantilever construction method based on Internet of Things monitoring, which belongs to the technical field of construction, and specifically comprises the following steps: setting Internet of Things nodes at alternative monitoring positions in a construction process by utilizing the set number of the Internet of Things nodes, and setting the Internet of Things nodes at alternative monitoring positions; when it is determined that no construction risk exists under the current construction progress according to the deviation condition of the stress of the Internet of Things nodes at the existing alternative monitoring positions and the simulated stress, determining an associated detection position at the next construction progress, and taking the associated detection position as a concerned detection position; whether the construction efficiency of the construction progress needs to be controlled and managed or not is determined by utilizing the historical deviation condition of the stress of the attention detection position in the historical construction process and the simulated stress, so that the construction safety is improved.
本发明提供一种基于物联网监测的大跨桥梁悬臂施工方法,属于施工技术领域,具体包括:利用物联网节点的设置数量,在施工过程中进行备选监测位置的物联网节点的设置,以现有的备选监测位置的物联网节点的受力与模拟受力的偏差情况确定当前的施工进度下不存在施工风险时,确定在下一施工进度的关联检测位置,并将其作为关注检测位置,利用关注检测位置在历史施工过程中的受力与模拟受力的历史偏差情况确定是否需要进行施工进度的施工效率的控制管理,从而提升了施工的安全性。
Large-span bridge cantilever construction method based on Internet of Things monitoring
The invention provides a large-span bridge cantilever construction method based on Internet of Things monitoring, which belongs to the technical field of construction, and specifically comprises the following steps: setting Internet of Things nodes at alternative monitoring positions in a construction process by utilizing the set number of the Internet of Things nodes, and setting the Internet of Things nodes at alternative monitoring positions; when it is determined that no construction risk exists under the current construction progress according to the deviation condition of the stress of the Internet of Things nodes at the existing alternative monitoring positions and the simulated stress, determining an associated detection position at the next construction progress, and taking the associated detection position as a concerned detection position; whether the construction efficiency of the construction progress needs to be controlled and managed or not is determined by utilizing the historical deviation condition of the stress of the attention detection position in the historical construction process and the simulated stress, so that the construction safety is improved.
本发明提供一种基于物联网监测的大跨桥梁悬臂施工方法,属于施工技术领域,具体包括:利用物联网节点的设置数量,在施工过程中进行备选监测位置的物联网节点的设置,以现有的备选监测位置的物联网节点的受力与模拟受力的偏差情况确定当前的施工进度下不存在施工风险时,确定在下一施工进度的关联检测位置,并将其作为关注检测位置,利用关注检测位置在历史施工过程中的受力与模拟受力的历史偏差情况确定是否需要进行施工进度的施工效率的控制管理,从而提升了施工的安全性。
Large-span bridge cantilever construction method based on Internet of Things monitoring
一种基于物联网监测的大跨桥梁悬臂施工方法
ZHANG GUOQI (Autor:in) / BIAN JUNPING (Autor:in) / YAN SONGLING (Autor:in) / WANG PAN (Autor:in) / LIU KUI (Autor:in) / SONG AO (Autor:in) / WANG YUELIANG (Autor:in) / LI XINGWANG (Autor:in) / BIAN JINSUO (Autor:in) / ZHANG YI (Autor:in)
27.12.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E01D
BRIDGES
,
Brücken
/
G06F
ELECTRIC DIGITAL DATA PROCESSING
,
Elektrische digitale Datenverarbeitung
/
G06Q
Datenverarbeitungssysteme oder -verfahren, besonders angepasst an verwaltungstechnische, geschäftliche, finanzielle oder betriebswirtschaftliche Zwecke, sowie an geschäftsbezogene Überwachungs- oder Voraussagezwecke
,
DATA PROCESSING SYSTEMS OR METHODS, SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL, SUPERVISORY OR FORECASTING PURPOSES
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