Development of a digital twin of heat energy storage and retrieval system for performance evaluation through AR-based simulation

Q2 Engineering
Bhagyesh B. Deshmukh, Vijay A. Athavale, Aditya R. Vernekar, Yash R. Katkar, Anirudha K. Jahagirdar, Yash C. Waghmare, Sachin Salunkhe, Sharad Gawade
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引用次数: 0

Abstract

ABSTRACTThe research introduces an innovative method for creating a digital twin (DT) of heat energy storage and retrieval system (HESRS) for real-time monitoring and performance analysis. The HESRS, type of HVAC system, is evaluated based on parameters like stored heat energy, heat extraction via heat transfer fluid (HTF), and Phase Change Material (PCM) temperatures. Data from temperature sensors is sent to the cloud in real-time. A reduced-order model (ROM) analyses it on the cloud and sends results to an Android app. The DT is then simulated in augmented reality through our app, Twin-X, marking distinctive approach to digital twin development.KEYWORDS: Digital TwinIoTaugmented reality (AR)reduced order modelcloud computing AcknowledgmentsThis research is part of the project entitled ‘Development of a solar-based “Thermal Energy Storage (TES)” system using Phase Change Material (PCM) concerning textile industry’ funded by PAH Solapur University, Solapur. We acknowledge the support extended by PAH Solapur University, Solapur.Disclosure statementNo potential conflict of interest was reported by the author(s).
基于ar仿真的热能存储与检索系统的数字化孪生体开发
摘要介绍了一种创建热能存储与检索系统(HESRS)数字孪生体(DT)的创新方法,用于实时监测和性能分析。作为HVAC系统的一种,HESRS的评估基于存储的热能、通过传热流体(HTF)提取的热量以及相变材料(PCM)温度等参数。来自温度传感器的数据被实时发送到云端。降阶模型(ROM)在云中对其进行分析,并将结果发送到Android应用程序。然后通过我们的应用程序twin - x在增强现实中模拟DT,标志着数字双胞胎开发的独特方法。本研究是由PAH Solapur大学资助的“基于太阳能的“热能储存(TES)”系统的开发,该系统使用相变材料(PCM),涉及纺织工业”项目的一部分。我们感谢PAH Solapur大学给予我们的支持。披露声明作者未报告潜在的利益冲突。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cyber-Physical Systems
Cyber-Physical Systems Engineering-Computational Mechanics
CiteScore
3.10
自引率
0.00%
发文量
0
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