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A simplified approach for modelling latent heat storages: Application and validation on two different fin-and-tubes heat exchangers

机译:一种模拟潜热存储器的简化方法:两种不同翅片热交换器的应用和验证

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摘要

Latent thermal energy storage systems represent a promising alternative to traditional sensible storages, but their exploitation requires a careful design of the system, The present paper reports a mathematical model for the simulation of thermal energy storage systems with phase change materials (PCMs). The model is suitable for the description of a latent heat storage using a fin-and-tube heat exchanger. Accuracy and computational effort are both taken into consideration, by coupling a 1D model for the tubes of the heat exchanger and a reduced 3D model for the material and fin domains. The developed model has been validated for two systems, realised at ITAE and ISE, differing for the PCM employed and the constructive characteristics of the heat exchanger. Results show that the model has a good accuracy and could predict the behaviour of the storages within 40 W error in case of powers and 1 K in case of heat transfer fluid temperatures. When a stable PCM was used, the average deviation between the PCM temperature in experiments and simulation was lower than 0.6 K. (C) 2017 Elsevier Ltd. All rights reserved.
机译:潜热能存储系统代表了传统的合理存储器的有希望的替代品,但它们的开发需要仔细设计系统,本文报告了一种用相变材料(PCM)模拟热能储存系统的数学模型。该模型适用于使用翅片和管热交换器的潜热存储器的描述。通过耦合热交换器管的1D模型以及材料和翅片域的减少的3D模型,通过耦合1D模型来考虑精度和计算工作。开发的模型已被验证为在ITAE和ISE实现的两个系统,不同于PCM采用的PCM和热交换器的建设性特性。结果表明,该模型具有良好的精度,并且可以预测电力和传热流体温度的电力和1K内的40W内误差内的存储的行为。当使用稳定的PCM时,实验和模拟中PCM温度之间的平均偏差低于0.6 K.(c)2017 Elsevier Ltd.保留所有权利。

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