工程安全监测与预警系统在大型基础设施运维中的应用Application of an Engineering Safety Monitoring and Early-Warning System in Large Infrastructure Operations
应用场景Application Scenario
脱敏项目编号 AIET-EAC-2024-02。案例来自大型基础设施运维场景,监测对象多、数据来源分散,传统巡检难以及时反映结构状态变化。项目重点围绕监测数据接入、风险分级和预警处置流程开展应用。Desensitized project code AIET-EAC-2024-02. The case comes from large infrastructure operations where there are many monitoring objects and dispersed data sources, while traditional inspection cannot always reflect structural status changes in time. The application focused on monitoring-data access, risk grading, and warning-response workflows.
成果摘要Outcome Summary
系统接入位移、振动、环境和人工巡检等多源数据,建立状态评估指标、分级预警规则和处置记录机制。脱敏证据包括监测点位说明、数据接入记录、预警规则文件、演练记录和专家复核意见摘要。The system integrated multi-source data including displacement, vibration, environmental indicators, and manual inspection records, and established status assessment indicators, graded warning rules, and response-record mechanisms. The desensitized evidence includes monitoring point descriptions, data access records, warning-rule files, drill records, and summaries of expert review opinions.
应用价值Application Value
该案例强化了大型基础设施运维中的风险识别和处置协同能力,使监测结果能够更快进入管理流程,并为日常巡检计划、应急演练和长期状态评估提供了持续数据支撑。The case strengthened risk identification and response coordination in large infrastructure operations, enabled monitoring results to enter management workflows more quickly, and provided continuous data support for routine inspection planning, emergency drills, and long-term condition assessment.
专家评价说明Expert Evaluation
评议小组认为,该案例能够体现系统工程方法在安全监测场景中的综合应用,证据链覆盖数据、规则、流程和复核意见,具备较好的完整性和可信度。The review panel found that the case demonstrates the integrated application of systems engineering methods in safety monitoring. The evidence chain covers data, rules, workflows, and review opinions, giving it solid completeness and credibility.