实验室研究与探索2024,Vol.43Issue(11) :118-124.DOI:10.19927/j.cnki.syyt.2024.11.023

超临界雾化结晶实验工艺数字孪生系统

Research on the Digital Twin System of Supercritical Atomization Crystallization Process

蔡兴旺 杨继华 付东来 裴耀强 李宸欣
实验室研究与探索2024,Vol.43Issue(11) :118-124.DOI:10.19927/j.cnki.syyt.2024.11.023

超临界雾化结晶实验工艺数字孪生系统

Research on the Digital Twin System of Supercritical Atomization Crystallization Process

蔡兴旺 1杨继华 2付东来 1裴耀强 1李宸欣1
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作者信息

  • 1. 中北大学 软件学院,太原 030051
  • 2. 中北大学 环境与安全工程学院,太原 030051
  • 折叠

摘要

为解决超临界雾化结晶纳米生产工艺中存在设备智能化程度低、安全风险高、生产过程需要人为干预、无法真正实现人机分离等问题,设计一套数字孪生解决方案.通过融合物联网、互联网、数字孪生和虚拟现实等技术,建立数字虚拟生产平台.采用以虚代实、以虚控实、虚实结合的方法,实现生产数据采集与处理的可视化、远程监测、远程遥控、智能预警和生产教学培训等功能.经验证,该方案具有可行性,能有效提升超临界雾化结晶工艺的安全生产水平、降低生产对工人经验的依赖,提升工艺的数字化水平.

Abstract

To address challenges such as low equipment intelligence,high safety risks,the need for human intervention,and the inability to achieve true human-machine separation in the supercritical atomization crystallization nanomanufacturing process,a digital twin solution was developed.By integrating IoT,the Internet,digital twin,and virtual reality technologies,a digital virtual production platform was established.This platform leverages virtual simulations to control real-world processes,seamlessly combining virtual and physical elements to enable production data collection and processing,visualization,remote monitoring,remote control,intelligent early warning,and production training.Experimental validation confirms the feasibility of this solution,demonstrates its ability to enhance the safety and efficiency of the supercritical atomization crystallization process,reduce reliance on workers'experience,and improve the overall digitization of production.

关键词

超临界/含能材料/数字孪生/物联网/虚拟现实

Key words

supercritical process/energetic material/digital twin/internet of things/virtual reality

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出版年

2024
实验室研究与探索
上海交通大学

实验室研究与探索

CSTPCD北大核心
影响因子:1.69
ISSN:1006-7167
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