利用 PCM 进行潜热储存的研究趋势,文献计量分析

IF 0.8 4区 工程技术 Q4 ENGINEERING, MECHANICAL
Atif Shezad, Muhammad Tufail, Muhammad Uzair
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引用次数: 0

摘要

潜热储能(LHTES)由于其储能密度高,是一种特别值得关注的储能技术。LHTES涉及使用相变材料(pcm)来存储热能,这些热能随后可用于加热和冷却应用以及发电。本文概述了用于分析TES和LHTES系统研究的现有文献的技术和工具。文献计量学是一种分析特定研究领域的书面出版物的统计方法,用于确定重要的发现和确定科学产出的过程。知识发展的战略分析对于发现该领域的机会和进步至关重要。这项研究为过去三十年来TES和LHTES领域的出版趋势提供了有价值的见解。此外,该研究还对LHTES系统的几何结构及其对正在进行和未来研究的潜在影响进行了彻底的检查。通过跟踪30多年的出版率,本研究提供了TES和LHTES研究如何演变的全面概述。了解这些趋势有助于研究人员和政策制定者在能源储存和热管理的背景下衡量这些领域的增长和相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trends in Research on Latent Heat Storage Using PCM, A Bibliometric Analysis
Latent heat thermal energy storage (LHTES) is particularly noteworthy thermal energy storage (TES) technology due to its high energy storage density. LHTES involves the use of phase change materials (PCMs) to store thermal energy, which can subsequently be used for heating and cooling applications as well as power generation. This paper outlines the techniques and tools employed to analyze existing literature on TES and LHTES systems research. Bibliometric, a statistical approach to analyzing written publications in specific fields of research, is used to identify significant findings and determine the course of scientific output. A strategic analysis of knowledge development is crucial for detecting opportunities and advancements within the field. This research offers valuable insights into the publication trends within the fields of TES and LHTES over the last three decades. Additionally, the study conducts a thorough examination of the geometric configurations of LHTES systems and their potential impacts on ongoing and future research. By tracking publication rates over thirty years, this study provides a comprehensive overview of how research in TES and LHTES has evolved. Understanding these trends helps researchers and policymakers gauge the growth and relevance of these fields in the context of energy storage and thermal management.
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来源期刊
CiteScore
2.30
自引率
0.00%
发文量
53
审稿时长
5 months
期刊介绍: Published since 1972, Transactions of the Canadian Society for Mechanical Engineering is a quarterly journal that publishes comprehensive research articles and notes in the broad field of mechanical engineering. New advances in energy systems, biomechanics, engineering analysis and design, environmental engineering, materials technology, advanced manufacturing, mechatronics, MEMS, nanotechnology, thermo-fluids engineering, and transportation systems are featured.
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