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Designing an air-to-air heat exchanger dedicated to single room ventilation with heat recovery

机译:设计专门用于单房间通风并进行热量回收的空对空热交换器

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摘要

The present paper focuses on the development steps of heat exchangers dedicated to single room ventilation unit with heat recovery (SRVHR) by proposing a numerical approach. A methodology is suggested in order to determine the best trade-off between hydraulic and thermal performance given a specific geometry. The methodology consists in a mapping of the coefficient of performance (COP) of the unit. The latter is defined as the ratio between recovered heat and the fan energy use, given a specific indoor/outdoor temperature difference. However, the energy performance should not be the only criterion to be taken into account in the frame of the design steps of a heat recovery exchanger: technical, economic and acoustic aspects should also be considered. This numerical methodology is illustrated by means of a real example of a newly developed heat exchanger dedicated to a SRVHR. The optimization is first performed while using a semi-empirical model (based on the use of correlations and on a spatial division of the studied heat exchanger). The semi-empirical model allows for the creation of a COP map in order to identify the most effective geometry parameters for the heat exchanger. The decision concerning the final geometry is made accounting for the so-called technical, economic and acoustic considerations. A discussion on some parameters needed for the COP establishment is also proposed.
机译:本文通过提出一种数值方法,重点研究专用于带热回收的单室通风单元的热交换器的开发步骤。建议使用一种方法,以在给定特定几何形状的情况下确定水力性能和热性能之间的最佳平衡。该方法包括单元性能系数(COP)的映射。后者定义为在给定的室内/室外温差下,回收热量与风扇能耗之间的比率。但是,在热回收交换器的设计步骤中,能源性能不应成为唯一要考虑的标准:还应考虑技术,经济和声学方面。通过专用于SRVHR的新开发热交换器的实际示例说明了这种数值方法。首先使用半经验模型(基于相关性的使用和所研究换热器的空间划分)执行优化。半经验模型允许创建COP图,以便为热交换器识别最有效的几何参数。做出关于最终几何形状的决定时要考虑到所谓的技术,经济和声学考虑。还提出了关于建立COP所需的一些参数的讨论。

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