Advanced Modeling Approaches for Latent Heat Thermal Energy Storage Systems

V. H. U. Eze, John S. Tamball
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Abstract

This paper highlights the significance of modeling Latent Heat Thermal Energy Storage (LHTES), temperature-based and enthalpy in an understanding phase transitions, emphasizing their distinct insights based on the specific application. LHTES systems addresses the escalating demand for efficient and environmentally friendly energy management across various sectors. These systems leverage Phase Change Materials (PCMs) to store and release thermal energy during phase transitions, offering significant advantages in terms of energy storage capacity and temperature regulation. This research provides an overview of the methodologies, applications and challenges associated with modeling LHTES systems, which have gained prominence in diverse fields such as phase change modeling, temperature-centric modeling, enthalpy modeling, porous medium approach, conduction-dominated and convection-dominated phase change. This research critically reviewed heat transfer coupled with phase change in simple configurations, exploring fundamental principles and modeling of heat storage units like packed beds. This research finally highlights the crucial importance of modeling underscores its significant role in propelling the development of LHTES technology. These review paper recommended the design and development of accurate, predictive models improve LHTES systems to enhance energy efficiency and reduce ecological impacts across a wide range of applications. Keywords: Phase change materials, Latent Heat Thermal Energy Storage, Packed beds and Porous medium approach
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潜热热能存储系统的先进建模方法
本文重点介绍了潜热热能储存(LHTES)建模、基于温度的建模和基于焓的建模在理解相变方面的重要意义,并强调了它们基于具体应用的独特见解。LHTES 系统可满足各行各业对高效、环保能源管理不断增长的需求。这些系统利用相变材料(PCM)在相变过程中储存和释放热能,在能量储存能力和温度调节方面具有显著优势。本研究概述了与 LHTES 系统建模相关的方法、应用和挑战,LHTES 系统在相变建模、以温度为中心的建模、焓建模、多孔介质方法、传导主导型相变和对流主导型相变等多个领域都取得了突出成就。本研究对简单配置中的传热与相变进行了严格审查,探索了填料床等蓄热装置的基本原理和建模方法。这项研究最终强调了建模的重要性,强调了建模在推动低温热交换器技术发展中的重要作用。这篇综述论文建议设计和开发精确的预测模型,以改进 LHTES 系统,从而在广泛的应用中提高能源效率并减少对生态的影响。关键词相变材料、潜热热能存储、填料床和多孔介质方法
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