为落实智能高铁2.0国铁规划目标,实现铁路建造数字化转型、低碳智能建造及运营升级。本研究依托成渝中线铁路施工智能化升级项目,对该标段桥梁施工全流程的施工人员、预制梁场及装配搭建技术进行智能化、低碳化和环保改造升级。该技术...为落实智能高铁2.0国铁规划目标,实现铁路建造数字化转型、低碳智能建造及运营升级。本研究依托成渝中线铁路施工智能化升级项目,对该标段桥梁施工全流程的施工人员、预制梁场及装配搭建技术进行智能化、低碳化和环保改造升级。该技术对标段桥梁建造具有重大指导和革新作用,实现了桥梁智能化2.0改造目标。该技术成果的工程运用效果良好,验证了升级措施的有效性及可靠性,对推动铁路桥梁信息化、数字化、智慧化升级具有重要意义。同时,对桥梁建造技术升级改造具有重要参考及借鉴作用。To implement the planning goals of the Intelligent High-speed Rail 2.0 National Railway and achieve the digital transformation of railway construction, low-carbon intelligent construction, and operational upgrading. This study is based on the intelligent upgrade project of the Chengdu Chongqing Middle Line Railway construction and aims to upgrade the construction personnel, prefabricated beam yard, and assembly technology of the entire bridge construction process in this section through intelligent, low-carbon, and environmentally friendly transformation. This technology has a significant guiding and innovative role in the construction of bridge sections, achieving the goal of intelligent 2.0 transformation of bridges. The practical application of this technological achievement has verified the effectiveness and reliability of the upgrade measures, which is of great significance for promoting the informatization, digitization, and intelligent upgrading of railway bridges. At the same time, it has important references and values for upgrading and transforming bridge construction technology.展开更多
文摘为落实智能高铁2.0国铁规划目标,实现铁路建造数字化转型、低碳智能建造及运营升级。本研究依托成渝中线铁路施工智能化升级项目,对该标段桥梁施工全流程的施工人员、预制梁场及装配搭建技术进行智能化、低碳化和环保改造升级。该技术对标段桥梁建造具有重大指导和革新作用,实现了桥梁智能化2.0改造目标。该技术成果的工程运用效果良好,验证了升级措施的有效性及可靠性,对推动铁路桥梁信息化、数字化、智慧化升级具有重要意义。同时,对桥梁建造技术升级改造具有重要参考及借鉴作用。To implement the planning goals of the Intelligent High-speed Rail 2.0 National Railway and achieve the digital transformation of railway construction, low-carbon intelligent construction, and operational upgrading. This study is based on the intelligent upgrade project of the Chengdu Chongqing Middle Line Railway construction and aims to upgrade the construction personnel, prefabricated beam yard, and assembly technology of the entire bridge construction process in this section through intelligent, low-carbon, and environmentally friendly transformation. This technology has a significant guiding and innovative role in the construction of bridge sections, achieving the goal of intelligent 2.0 transformation of bridges. The practical application of this technological achievement has verified the effectiveness and reliability of the upgrade measures, which is of great significance for promoting the informatization, digitization, and intelligent upgrading of railway bridges. At the same time, it has important references and values for upgrading and transforming bridge construction technology.