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Design of earth-air heat exchangers

机译:地球空气换热器设计

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Earth-air heat exchangers, also called ground tube heat exchangers, are an interesting technique to reduce energy consumption in a building. They can cool or heat the ventilation air, using cold or heat accumulated in the soil. Several papers have been published in which a design method is described. Most of them are based on a discretisation of the one dimensional heat transfer problem in the tube. Three dimensional complex models, solving conduction and moisture transport in the soil are also found. These methods are of high complexity and often not ready for use by designers. In this paper a one dimensional analytical method is used to analyse the influence of the design parameters of the heat exchanger on the thermo-hydraulic performance. A relation is derived for the specific pressure drop, linking thermal effectiveness with pressure drop of the air inside the tube. The relation is used to formulate a design method which can be used to determine the characteristic dimensions of the earth-air heat exchanger in such a way that optimal thermal effectiveness is reached with acceptable pressure loss. The choice of the characteristic dimensions, becomes thus independent of the soil and climatological conditions. This allows designers to choose the earth-air heat exchanger configuration with the best performance.
机译:地球空气热交换器,也叫地管式换热器,是一个有趣的技术,以减少建筑能耗。它们可以冷却或加热通风空气,利用在土壤中积累的冷或热。有几篇论文已发表在其中的设计方法进行说明。他们中的大多数是基于在管中的一个维热传导问题的离散化。三维复杂的模型,解决传导和水汽输送在土壤中也有发现。这些方法的高复杂性,往往没有准备好由设计师使用。在本文中的一种维分析方法用于分析在热工水力性能的热交换器的设计参数的影响。一个关系导出用于特定的压力降,连接用管内的空气的压力降热效率。的关系被用于配制的设计方法,其可以用于确定在这样一种方式,最佳的热效能达到具有可接受的压力损失地球 - 空气热交换器的特征尺寸。特征尺寸的选择,因而变得独立于土壤和气候条件。这允许设计师选择具有最佳性能的地球空气热交换器的配置。

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