太阳能热水
热能储存
太阳能
储能
工艺工程
环境科学
软件部署
相变材料
储水式热水器
蓄热式加热器
废物管理
工程类
相变
工程物理
机械工程
电气工程
热交换器
热泵
热水器
物理
生态学
功率(物理)
软件工程
入口
生物
量子力学
作者
Mohamed Hany Abokersh,Mohamed Osman,Omnia El-Baz,Mohamed El-Morsi,Osama Sharaf
摘要
The shortage in energy resources combined with the climb in greenhouse emissions is the main incentive beyond the deployment of solar energy resource in various applications. One of the most successful applications is the utilization of solar energy in the domestic water heating systems (DWHS) because 70% of the consumed energy in the residential segment is utilized for space heating and appliances in cold climates 1. However, the full deployment of solar energy in domestic water heating is only possible when an energy storage system with acceptable price is available. Recently a new tendency for deploying phase change materials (PCMs) as an energy storage system is introduced in several solar DWHS. These systems are known as integrated PCM in solar DWHS and offer several advantages including high storage capacity, low storage volume, and isothermal operation during the charging and discharging phases. The present study reviews various techniques utilized for integrating the PCM in solar water heating systems and the utilized methods for enhancing the heat transfer characteristics of the PCM through the usage of extended surfaces and high conductive additives. Copyright © 2017 John Wiley & Sons, Ltd.
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