Effect of hot air inclined jet impingement to container for controlling of energy storage of PCM: experimental and numerical investigation

IF 4 3区 工程技术 Q1 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS
Hakan F. Oztop, Burak Kiyak, Ishak Gökhan Aksoy
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引用次数: 0

Abstract

Purpose

This study aims to focus on understanding how different jet angles and Reynolds numbers influence the phase change materials’ (PCMs) melting process and their capacity to store energy. This approach is intended to offer novel insights into enhancing thermal energy storage systems, particularly for applications where heat transfer efficiency and energy storage are critical.

Design/methodology/approach

The research involved an experimental and numerical analysis of PCM with a melting temperature range of 22 °C–26°C under various conditions. Three different jet angles (45°, 90° and 135°) and two container angles (45° and 90°) were tested. Additionally, two different Reynolds numbers (2,235 and 4,470) were used to explore the effects of jet outlet velocities on PCM melting behaviour. The study used a circular container and analysed the melting process using the hot air inclined jet impingement (HAIJI) method.

Findings

The obtained results showed that the average temperature for the last time step at Ф = 90° and Re = 4,470 is 6.26% higher for Ф = 135° and 14.23% higher for Ф = 90° compared with the 45° jet angle. It is also observed that the jet angle, especially for Ф = 90°, is a much more important factor in energy storage than the Reynolds number. In other words, the jet angle can be used as a passive control parameter for energy storage.

Originality/value

This study offers a novel perspective on the effective storage of waste heat transferred with air, such as exhaust gases. It provides valuable insights into the role of jet inclination angles and Reynolds numbers in optimizing the melting and energy storage performance of PCMs, which can be crucial for enhancing the efficiency of thermal energy storage systems.

热空气倾斜喷射撞击容器对控制 PCM 储能的影响:实验和数值研究
目的本研究旨在重点了解不同的喷射角度和雷诺数如何影响相变材料(PCMs)的熔化过程及其储能能力。该方法旨在为增强热能储存系统提供新的见解,尤其是在传热效率和能量储存至关重要的应用中。设计/方法/途径该研究涉及在各种条件下对熔化温度范围为 22 ℃-26 ℃ 的 PCM 进行实验和数值分析。测试了三种不同的喷射角(45°、90° 和 135°)和两种容器角(45° 和 90°)。此外,还使用了两种不同的雷诺数(2 235 和 4 470)来探索射流出口速度对 PCM 熔化行为的影响。研究结果表明,与 45° 的喷射角相比,在 Ф = 90° 和 Re = 4,470 时,最后一个时间步骤的平均温度在 Ф = 135° 和 Ф = 90° 时分别高出 6.26% 和 14.23%。还可以看出,喷射角,尤其是 Ф = 90° 时,是比雷诺数更重要的储能因素。换句话说,射流角可以用作能量存储的被动控制参数。它就喷射倾角和雷诺数在优化 PCM 熔化和储能性能方面的作用提供了有价值的见解,这对于提高热能存储系统的效率至关重要。
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
CiteScore
9.50
自引率
11.90%
发文量
100
审稿时长
6-12 weeks
期刊介绍: The main objective of this international journal is to provide applied mathematicians, engineers and scientists engaged in computer-aided design and research in computational heat transfer and fluid dynamics, whether in academic institutions of industry, with timely and accessible information on the development, refinement and application of computer-based numerical techniques for solving problems in heat and fluid flow. - See more at: http://emeraldgrouppublishing.com/products/journals/journals.htm?id=hff#sthash.Kf80GRt8.dpuf
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