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Designing and testing an air-PCM heat exchanger for building ventilation application coupled to energy storage

机译:设计和测试用于建筑物通风应用和储能的air-PCM热交换器

摘要

This paper studies a PCM heat exchanger coupled to a building ventilation system. This PCM module can either store heat during the day (e.g. by cooling solar PV panels) and restore it to the building during the night for space heating purposes or store coolness during the night and give it back during the day and thus act as a free cooling system. This project aims to develop a performing air-PCM heat exchanger providing latent energy storage of 0.5 kWh, this energy is delivered between 15 and 30°C. This heat exchanger is based on corrugated cells that can be easily filled, lined up and then locked in a box, letting the air pass between the cells. The PCM used for the prototype is c omposed of fatty acids. In order to develop an efficient PCM ventilation module, two different ways of investigation were followed and used in parallel. The first one used CFD simulations and the second one, a semi-empirical model based on correlations. The CFD simulations were able to predict the convection coefficient on the air side and also show the flow repartition between the different channels whereas the semi-empirical model allowed a parametrical study in order to identify the best geometry possible. Once the heat exchanger geometry was optimized, a test bench was built and a prototype of air-PCM heat exchanger was manufactured in order to measure its thermal and hydraulic performances. The tests consist in either a complete solidification or liquefaction of the PCM starting from respectively liquid PCM at 30°C or solid PCM at 15°C. The airflow rate was set to 45m³/h, which corresponds barely to the ventilation rate of a traditional room in a residential building. A comparison between the models and the measurements was carried out in order to calibrate the semi-empirical model. It will be shown that a simple semi-empirical model satisfactorily predicts the evolution of heat transfer rate for different operating conditions.
机译:本文研究了与建筑物通风系统耦合的PCM热交换器。该PCM模块既可以在白天存储热量(例如,通过冷却太阳能PV板),又可以在夜间将其恢复到建筑物中以进行空间供暖,或者在晚上存储凉意,并在白天将其回热,从而可以免费冷却系统。该项目旨在开发一种性能良好的空气PCM热交换器,可提供0.5 kWh的潜在能量存储,该能量在15至30°C之间输送。该换热器基于波纹状电池,可轻松填充,排成一行,然后将其锁定在盒子中,让空气在电池之间通过。用于原型的PCM由脂肪酸组成。为了开发高效的PCM通风模块,遵循了两种不同的研究方式并并行使用。第一个使用CFD模拟,第二个使用基于相关性的半经验模型。 CFD仿真能够预测空气侧的对流系数,还可以显示不同通道之间的流量分配,而半经验模型允许进行参数研究,以便确定可能的最佳几何形状。一旦优化了热交换器的几何形状,便建立了一个试验台并制造了空气PCM热交换器的原型,以测量其热性能和水力性能。测试包括分别从30°C的液态PCM或15°C的固态PCM开始PCM的完全固化或液化。气流速率设置为45m³/ h,几乎与住宅建筑中传统房间的通风速率相对应。为了校准半经验模型,对模型和测量值进行了比较。结果表明,简单的半经验模型可以令人满意地预测不同工况下传热速率的变化。

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