[1]钟惠钰,李超,袁一炜.基于数字孪生场景的水工金属结构设备智能感知与安全评价模型[J].江苏水利,2025,(11):11-14,19.
 ZHONG Huiyu,LI Chao,YUAN Yiwei.Intelligent perception and safety evaluation model of hydraulic metal structure equipment based on digital twin scenarios[J].JIANGSU WATER RESOURCES,2025,(11):11-14,19.
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基于数字孪生场景的水工金属结构设备智能感知与安全评价模型()

《江苏水利》[ISSN:1006-6977/CN:61-1281/TN]

卷:
期数:
2025年11期
页码:
11-14,19
栏目:
水利信息化
出版日期:
2025-11-01

文章信息/Info

Title:
Intelligent perception and safety evaluation model of hydraulic metal structure equipment based on digital twin scenarios
文章编号:
1007-7839(2025)11-0011-0004
作者:
钟惠钰李超袁一炜
(太湖流域管理局苏州管理局,江苏 苏州 215011)
Author(s):
ZHONG Huiyu LI Chao YUAN Yiwei
(Suzhou Administration Bureau of Taihu Basin Authority, Suzhou 215011, China)
关键词:
太浦闸数字孪生水工金属结构安全监测安全评价
Keywords:
Taipu gate digital twin hydraulic metal structures safety monitoring safety evaluation
分类号:
TV663
文献标志码:
B
摘要:
为深入开展数字孪生太浦闸建设,太湖流域管理局苏州管理局在太浦闸试点开展了水工金属结构设备智能感知与安全评价模型构建。通过定制安装传感器,覆盖闸门门体、启闭机、控制柜、钢结构启闭机房等主要金属结构,实现了闸门应力、振动、姿态、卡阻、腐蚀防护,钢结构启闭机房变形等在线监测。基于上述监测指标,进一步构建了金属结构安全评价模型,实现金属结构健康度评价和设备安全评价,为数字孪生平台提供了算据和算法支撑。
Abstract:
In order to further carry out the construction of the digital twin Taipu sluice, Suzhou Administration Bureau of the Taihu Basin Authority has carried out the construction of intelligent perception and safety evaluation model of hydraulic metal structure equipment in the pilot Taipu sluice. By customizing and installing sensors to cover the main metal structures such as the gate body, hoist, control cabinet, and steel structure hoist room, online monitoring of gate stress, vibration, posture, jamming, corrosion protection, and deformation of steel structure hoist room has been achieved. Based on the above monitoring indicators, a metal structure safety evaluation model was further constructed to achieve metal structure health evaluation and equipment safety evaluation, providing computational and algorithmic support for the digital twin platform.

参考文献/References:

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备注/Memo

备注/Memo:
收稿日期:2025-04-10
作者简介:钟惠钰(1980—),男,高级工程师,硕士,主要从事水利工程管理、智慧水利建设工作。E-mail:38402508@qq.com
更新日期/Last Update: 2025-11-01