Heat Transfer Enhancement of Phase Change Material in Triple-Tube
The inherent low thermal conductivity of phase change materials (PCMs) serious limits the thermal performance of latent heat thermal energy storage (LHTES) systems.
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The inherent low thermal conductivity of phase change materials (PCMs) serious limits the thermal performance of latent heat thermal energy storage (LHTES) systems.
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This article designs a high-altitude border guard post that can fully utilize the heat absorbed by solar collectors to continuously store thermal energy during the day and stably release
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This paper conducts a numerical simulation examination of the resultant impact of thermophysical parameters, such as thermal conductivity, specific heat capacity, and latent heat of
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In this study, we have established an experimental platform featuring a shell and tube heat exchanger (STHE) combined with phase change material (PCM) to investigate its energy
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Based on comprehensive analysis of energy storage/release rate and exergy loss, the shell-and-tube phase change heat exchanger could be high-efficiency for cooling down and waste
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Cascade phase change heat storage is also used; Varies structure and number of fins on the heat transfer fluid side or the phase change material side employed, too. In addition, the
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The performance of phase change thermal energy storage system is closely related to the thermophysical properties of phase change materials (PCMs) and the design of heat transfer
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Thermal storage technology has received increasing attention under the policy of encouraging the development of renewable energy and new clean energy.
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TES system utilizes phase change material (PCM), wherein energy is stored in latent heat during the lean time and released during peak load. Conventionally, in. a shell-and-tube PCM heat exchanger,
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Adding fins to a shell-and-tube phase change thermal storage is a simple and effective way to enhance the performance of the phase change heat storage unit, and the proper arrangement
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This study presents a detailed investigation of heat transfer performance in a phase change thermal energy storage unit with internal corrugated tubes, involving liquid fraction, average
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Addressing the issue of low energy storage/discharge rates in phase-change energy storage heat exchangers, this paper presents a shell-and-tube type phase-change energy storage heat exchanger
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So the discussion of the influence on multi-tube heat exchanger by natural convective is conductive to the enhancement of heat transfer and reduction in charging time. In this paper, a CFD
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Numerical analysis of fin optimization for a shell-and-tube phase change energy storage heat exchanger [J]. Energy Storage Science and Technology, 2025, 14 (4): 1394-1412.
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In this paper, a CFD model on the shell-and-tube phase change energy storage heat exchanger was established. In addition, the effects of the
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We experimentally evaluate the finned tube heat exchanger and evaluate the performance of TES in reducing building heating and cooling loads over 3–4 h of desired time of operation (e.g., peak load).
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It summarizes the enhanced heat transfer measures of various types of phase change thermal storage devices and discusses the role of structural parameters in enhanced heat transfer. It
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Abstract Phase change material (PCM) has promising applications as an energy storage material in thermal energy storage (TES) systems. However, the low thermal conductivity of PCM limits its
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The thermal conductivity of the PCM has a negligible impact on total heat storage. The choice and use of the PCM in shell and tube phase change
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Energy storage performance improvement of phase change materials-based triplex-tube heat exchanger (TTHX) using liquid–solid interface
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In this study, the phase change materials (PCM) thermal energy storage system utilizing a novel webbed tube heat exchanger was designed and numericall
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This study provides valuable insights into applying energy storage heat exchangers in data centers. Key words: phase change energy storage, shell-and-tube heat exchanger, numerical simulation, energy
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Abstract Experimental investigations of phase change processes in a shell-and-tube latent heat thermal energy storage unit with an inner square tube were carried out. Paraffin OP44E
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Detailed experimental investigation is presented for the heat transfer characteristics of an inclined shell-and-tube phase-change thermal energy storage unit.
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This work experimentally and numerically investigates the thermal performance of a vertical shell-and-tube heat exchanger, filled with a biological phase change material (PCM), linked
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Request PDF | Experimental and numerical analysis of a phase change material-based shell-and-tube heat exchanger for cold thermal energy storage | This work experimentally and
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For a three-tube latent heat thermal energy storage system (LHTES) filled with RT35 phase change material (PCM), this paper focuses on the heat transfer bottleneck caused by the low
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Semantic Scholar extracted view of "Study on the heat discharging performance for a horizontal latent heat thermal energy storage exchanger with movable inner tube" by Shaobin Zhou et al.
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Based on the problems of heat storage in the process of solar energy utilization and the advantages of finned tube heat exchanger, the finned tube is applied into the solar phase change
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Abstract Read online This study presents a numerical investigation of latent heat thermal energy storage (LHTES) systems employing phase change materials (PCMs) to enhance heat transfer performance.
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