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Earth-air heat exchangers in the Belgian climate : Analysis of the potential with a 3D modelling technique

机译:比利时气候中的地球换热器:3D建模技术的潜力分析

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Earth-air heat exchangers can be used to reduce energy consumption in building ventilation systems. The idea is to pre-heat air in winter and pre-cool air in summer using the thermal capacity of the soil. To do this concrete and plastic tubes are put underground, through which the ventilation air is drawn. In this paper a 3D unstructured finite volume model is derived, which allows evaluating the earth-air heat exchanger. The model solves conduction through the soil and the convection from air to the tube wall. The air ground-surface heat transfer is described by the heat flux through convection and solar radiation. The model is used to study the performance of the earth-air heat exchanger in the Belgian climate. It is shown that in summer the air can be cooled with about 9 °C at sufficient depth (3m) and tubes of about 50 m. In winter heating of 7 °C can be realised. It is also shown that a good control strategy is important.
机译:地球换热器可用于降低建筑通风系统中的能耗。这个想法是使用土壤的热容量在冬季预热空气和预冷的空气。为了做这种混凝土和塑料管,将绘制通风空气。在本文中,推导出3D非结构化有限体积模型,其允许评估地球空气热交换器。该模型解决了通过土壤的传导和从空气到管壁的对流。通过对流和太阳辐射通过热通量描述空气地面传热。该模型用于研究比利时气候中的地球热交换器的性能。结果表明,在夏季,空气可以在足够的深度(3米)和约50μm的管中以约9℃冷却。可以实现冬季加热7°C。还表明,良好的控制策略很重要。

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