热能储存
材料科学
潜热
核工程
工艺工程
相变材料
储能
计算机数据存储
热的
焓
表征(材料科学)
热力学
计算机科学
功率(物理)
纳米技术
物理
工程类
操作系统
作者
Valeria Palomba,Vincenza Brancato,Giulia Palomba,Silvia Borsacchi,Claudia Forte,Angelo Freni,Andrea Frazzica
标识
DOI:10.1080/01457632.2018.1451236
摘要
The present paper presents the development of a thermal energy storage system for application with non-concentrating solar plants using phase change materials (PCMs). The outcomes of an experimental analysis on commercial PCMs and laboratory-grade chemical compounds suitable for latent heat storages in a temperature range of 80–100°C is presented, with main focus on to the enthalpy and the cycle stability of the materials. Particularly, a first evaluation of possible degradation mechanisms in hydrated salts was investigated by means of nuclear magnetic resonance spectroscopy. The best performing materials have been implemented in a numerical model, based on the enthalpy method, used for the design of a thermal storage system. The configuration of the system, starting from a simple shell-and-tube layout, has been optimized by inserting asymmetric fin-and-tubes and the results with two selected materials have been compared. The analysis has shown that the most promising materials are the commercial ones belonging to the classes of paraffinic materials and hydrated salts and that, with the designed configuration, it is possible to store up to 200 kJ/m3 and get a peak power during discharge of about 1.5 kW.
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