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A versatile one-dimensional numerical model for packed-bed heat storage systems

机译:用于填充床储热系统的通用一维数值模型

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摘要

Thanks to their versatility and their relatively low cost, packed-bed sensible heat storage systems are promising for various applications like in concentrated solar power plants, adiabatic compressed energy storage and pumped thermal energy storage. A versatile one-dimensional numerical model able to describe many packed-bed configurations is developed and presented. This model is able to treat liquid and gaseous heat transfer fluids, and packed bed with a monomodal or a bimodal particle size repartion, i.e. consisting of a mixture of large and small solid particles (such as rocks and sand). This configuration is commonly encountered in the literature due to the advantages it procures. The model is compared and validated with specific experimental data and results from the literature covering wide ranges of configurations and operating conditions: several heat transfer fluids (molten salts, thermal oil, air), solid materials (rocks, sand, ceramics), fluid velocities, temperature levels and packed bed configurations are successfully tested. This shows the versatility of the developed model. The influence of the fluid velocity on heat losses, thermal diffusion and fluid/solid heat exchange are analysed. It enables to determine the optimal velocity which maximizes the performance of the storage system. (C) 2018 Elsevier Ltd. All rights reserved.
机译:凭借其多功能性和相对较低的成本,填充床显热存储系统有望用于各种应用,例如在集中式太阳能发电厂,绝热压缩能量存储和抽运热能存储中。开发并展示了一种能够描述许多填充床配置的通用一维数值模型。该模型能够处理液态和气态传热流体,以及具有单峰或双峰粒度分布的填充床,即由大的和小的固体颗粒(例如岩石和沙子)的混合物组成。由于其优点,这种配置在文献中经常遇到。该模型与特定的实验数据进行了比较和验证,并获得了涵盖范围广泛的配置和操作条件的文献结果:几种传热流体(熔融盐,导热油,空气),固体材料(岩石,沙子,陶瓷),流体速度,温度水平和填充床配置已成功测试。这显示了开发模型的多功能性。分析了流体速度对热损失,热扩散和流体/固体热交换的影响。它可以确定最佳速度,从而使存储系统的性能最大化。 (C)2018 Elsevier Ltd.保留所有权利。

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