Bentley Systems发布基建研究 AI与数字孪生提
分类科技
来源CP
发布时间2026/08/03 09:00
详情描述
Bentley Systems发布的一项全球研究显示,基础设施组织正通过人工智能(AI)与数字孪生技术提升气候韧性。调查指出,虽然超过80%的组织已制定韧性策略,但数据碎片化与预算限制仍是主要障碍。
报告分析,由于数字系统之间缺乏连接,基础设施所有者难以全面掌握资产性能及气候风险。通过开放式数字孪生平台集成数据,组织可将维护模式从被动应对转向主动规划。
目前,数字技术投资正在加速。超过70%的受访组织计划在2027年前增加对数字孪生平台的投入。同时,用于检查、缺陷检测及资产健康预测的AI工具应用率也在快速提升。
研究列举了多个应用案例。在美国新奥尔良,工程公司Forte & Tablada为第17街运河泵站开发了云端数字孪生系统,在提升风暴防灾准备能力的同时,减少了约4000小时的工程工时。此外,该技术也已应用于明尼苏达州的桥梁检查等项目。
针对数字孪生在基建中的作用,该技术通过集成数据平台,实现对资产性能的全面监控。对于柬埔寨而言,此类技术可为德崇扶南运河等大型水利及交通项目提供数字化运维与防灾减灾的技术参考。
📋 简要摘要 ▸
Bentley Systems最新研究指出,全球基建组织正通过AI与数字孪生技术应对气候风险。研究发现,尽管80%的组织已有韧性策略,但数据碎片化仍是主要挑战。通过集成化平台,基建项目可从被动维护转向主动规划,显著提升资产性能并降低工程工时。
📋 完整原文 ▸
[来源: CP] [分类提示: NEWS]
标题: Bentley Systems Showcases AI and Digital Twins to Strengthen Climate-Resilient Infrastructure
A new global study commissioned by Bentley Systems has found that infrastructure organizations are increasingly turning to digital twins and artificial intelligence (AI) to strengthen climate resilience.
The research also shows that while more than 80% of organizations have resilience strategies in place, many still face challenges due to fragmented data and limited budgets.
According to the report, disconnected digital systems prevent infrastructure owners from gaining a complete view of asset performance and climate risks. Bentley says open digital twins can address this challenge by integrating data into a single platform, allowing organizations to move from reactive maintenance to proactive resilience planning.
The study also found that investment in digital technologies is accelerating. More than 70% of surveyed organizations expect to increase spending on digital twin platforms through 2027, while AI-powered tools for inspections, defect detection, and asset health forecasting are seeing rapid adoption.
The report highlights several Bentley-powered projects demonstrating these benefits. In New Orleans, engineering firm Forte & Tablada developed a cloud-based digital twin of the city’s 17th Street Canal pump station, improving storm preparedness while reducing engineering work by an estimated 4,000 hours.
Other case studies include bridge inspections in Minnesota and fl