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Experimental and numerical analysis of an earth-air heat exchanger

机译:土-空气热交换器的实验和数值分析

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The need to develop new technologies that allow the use of sustainable alternative sources of energy is increasingly evident. Thus, this work presents an experimental and numerical study of earth-air heat exchangers, which are used to reduce consumption of conventional energy for heating and cooling of built environments through the use of thermal energy contained in the soil. The experiment was conducted in southern Brazil in the city of Viamao, and its results were used to validate the computational modeling of heat exchangers. In the present work, the variation of air temperature inside the ducts, to an annual cycle, was investigated. The numerical solution of the conservation equations of the problem is performed with a commercial code (FLUENT) which is based on the Finite Volume Method (FVM). Turbulence is tackled with the Reynolds Stress Model (RSM). The transient temperature fields predicted numerically was compared with the experimental ones, the highest difference found was lower than 15%. The results showed the validity and effectiveness of the employed computational model, enabling its use for future researches and projects developments about earth-air heat exchangers.
机译:发展新技术以允许使用可持续替代能源的需求日益明显。因此,这项工作提出了一个对地-空气热交换器的实验和数值研究,该热交换器用于通过利用土壤中所含的热能来减少用于建筑环境的加热和冷却的常规能源的消耗。该实验在巴西南部的Viamao市进行,其结果被用于验证热交换器的计算模型。在目前的工作中,研究了管道内部空气温度到一年周期的变化。使用有限体积法(FVM)的商业代码(FLUENT)对问题的守恒方程进行数值求解。雷诺应力模型(RSM)解决了湍流问题。将数值预测的瞬态温度场与实验值进行了比较,发现的最高差值低于15%。结果表明所采用的计算模型的有效性和有效性,使其可用于未来有关地球空气热交换器的研究和项目开发。

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