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首页> 外文期刊>Geothermics >Validation of modified one-dimensional models simulating the thermal behavior of earth-to-air heat exchangers-Comparative analysis of modelling and experimental results
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Validation of modified one-dimensional models simulating the thermal behavior of earth-to-air heat exchangers-Comparative analysis of modelling and experimental results

机译:模拟地对空换热器热行为的改进一维模型的验证-建模与实验结果的比较分析

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摘要

The integration of renewable energy technologies in existing HVAC systems is an approach for decreasing their nominal installed capacity and for increasing their energy efficiency. Earth-to-air heat exchangers are considered as alternative energy systems and consist of pipes, horizontally buried underground, through which ambient air is transported by properly sized fans and draws or dumps heat from/to the ground. Due to the high heat capacity of the ground, underground temperature is lower than the ambient during summer and higher during winter, allowing the air that flows inside the earth-to-air heat exchanger to exploit the temperature difference in order to preheat or precool the air before it is actually used for ventilation. In the present study, two common one-dimensional simulation models are modified and validated with theoretical and experimental data of other studies and compared with other existing numerical models that simulate the behavior of earth-to-air heat exchangers. The criterion for their selection was the simplicity of the calculation procedure, without consideration of too many parameters, so that results can be obtained quickly in order to be used for a preliminary sizing of an earth-to-air heat exchanger. The results indicate that both one-dimensional models exhibit similar accuracy in estimation of the temperature rise during the heating period, but quite different in estimating the temperature drop during the cooling period. One of the models exhibits a deviation of less than 10% compared to the measured values which is similar with the most time demanding and complicated CFD analysis.
机译:将可再生能源技术集成到现有的HVAC系统中是一种减少其标称装机容量并提高其能源效率的方法。地对空换热器被认为是替代能源系统,由水平埋在地下的管道组成,周围环境的空气通过大小合适的风扇传输,并从地面吸收热量或将热量排放到地面。由于地面的高热容量,夏季的地下温度低于周围环境的温度,而冬季则高于冬季,从而允许地对空热交换器内部流动的空气利用温度差来预热或预冷空气。实际用于通风之前的空气。在本研究中,使用其他研究的理论和实验数据对两个常见的一维模拟模型进行了修改和验证,并与其他现有的模拟地空热交换器行为的数值模型进行了比较。选择它们的标准是计算过程的简单性,而无需考虑太多参数,因此可以快速获得结果,以便用于土对空热交换器的初步定型。结果表明,这两个一维模型在估计加热期间的温度升高方面显示出相似的精度,但是在估计冷却期间的温度下降方面却存在很大差异。其中一种模型与测量值的偏差小于10%,这与最耗时和最复杂的CFD分析相似。

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