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      装配式岸线工程数字化场景平台构建研究

      Research on digital scene platform construction for prefabricated shoreline engineering

      • 摘要: 为提升装配式岸线工程在复杂水文环境下的智能建造与全生命周期管理能力, 提出装配式岸线工程“数字化场景”构建方法, 并依托保定市“一干三支”生态廊道治理工程, 研制出融合感知建模、智能分析与任务反馈的一体化平台。平台基于“状态驱动-模型联动-任务闭环”的建造逻辑, 构建感知建模层、分析服务层、应用交互层与数据中台4层架构, 打通BIM、GIS与水动力模型之间的语义壁垒, 实现构件级至系统级的动态协同。平台融合多源传感数据与实时建模能力, 支持任务触发、路径优化与结构预警等多场景响应, 有效适应多专业耦合与工况扰动频繁的复杂需求。相比传统数字孪生系统, 所构建的数字化场景平台更强调语义中间层支撑下的多模型联动、状态感知驱动的任务响应与多角色协同机制。该平台已在典型城市水系治理工程中部署应用, 在建造效率、运维适应性与组织管理等方面表现出良好效果, 为装配式水利工程的智能建造提供了系统支撑。

         

        Abstract: To enhance intelligent construction and full-lifecycle management of prefabricated shoreline projects in complex hydrological settings, this study proposes a Digital Scenario methodology and develops, using the One Main Stem and Three Tributaries ecological-corridor improvement in Baoding as the case, an integrated platform that unifies sensing and modeling, intelligent analytics, and closed-loop task execution. Guided by a state-driven, model-linkage, task-closure logic, the platform adopts a four-layer architecture, sensing/modeling, analysis services, application interaction, and a data middle platform, and employs a semantic middle layer to bridge BIM, GIS, and hydrodynamic models, thereby enabling dynamic collaboration from the component level to the system level. By fusing multi-source sensor data with real-time modeling, the platform supports multi-scenario responses, including task triggering, path optimization, and structural early warning, so as to accommodate multidisciplinary coupling and frequent operating-condition disturbances. Relative to conventional digital-twin systems, the digital scenario places greater emphasis on semantic-layer-enabled multi-model linkage, state-perception-driven task responses, and multi-role collaboration. This platform has been deployed and verified in representative urban water system renovation projects and and show great performance in construction efficiency, operation-and-maintenance adaptability, and organizational coordination, providing a systematic support for the intelligent delivery of prefabricated hydraulic engineering.

         

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