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Assessment of a heat storage system within an indirect solar dryer to improve the efficiency and the dynamic behavior

机译:间接太阳能干燥器内的蓄热系统评估,以提高效率和动态行为

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摘要

The development and performance analysis of an indirect solar dryer (ISD) was investigated. The whole system studied was integrated with a heat storage system in form of copper tubes filled with PCM, placed in the side-mounted plenum chamber. The Ansys Fluent software was used to predict the thermal and the dynamic behavior of the solar dryer, under the meteorological conditions of Oujda city (Eastern of Morocco), in order to study the solar dryer realistically. To do so, a subroutine code written in C++ was integrated into Ansys Fluent. The effect of PCM tubes on the dynamic and thermal behavior was investigated, as well the effect of the number of tube layers, and the effect of different phase change materials that have different properties. A new concept of dryer efficiency is introduced in this paper, based on the temperature required to dry the product. The results showed that the solar dryer with a heat storage system increases the efficiency by about 3.12% at night compared to the case without storage. Regarding the multiple materials studied, the Paraffin RT58 showed a better performance, where the temperature differences between the two cases with and without PCM reach 11 degrees at night.
机译:研究了间接太阳能干燥机(ISD)的开发和性能分析。研究的整个系统与填充有PCM的铜管形式的储热系统集成在侧安装的增压室中。 ANSYS流畅的软件用于预测太阳能干燥器的热量和动态行为,在Oujda市(摩洛哥东部)的气象条件下,以便现实地研究太阳能烘干机。为此,将在C ++中编写的子程序代码集成到ANSYS流畅。研究了PCM管对动态和热行为的影响,以及管层数量的效果,以及不同相变材料的效果。本文介绍了一种新的干燥效率概念,基于干燥产品所需的温度。结果表明,与储热系统的太阳能烘干机在没有储存的情况下将夜晚提高约3.12%。关于所研究的多种材料,石蜡RT58表现出更好的性能,其中两种情况之间的温度差异在夜间达到11度。

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