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In situ thermal properties characterization using frequential methods

机译:使用频繁方法进行原位热性能表征

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In numerous fields, especially that of geothermal energy, we need to know about the thermal behaviour of the soil now that the monitoring of renewable forms of energy is an ecological, economic and scientific issue. Thus heat from the soil is widely used for air-conditioning systems in buildings both in Canada and in the Scandinavian countries, and it is spreading. The effectiveness of this technique is based on the soils calorific potential and its thermophysical properties which will define the quality of the exchanges between the soil and a heat transfer fluid. This article puts forward a method to be used for the in situ thermophysical characterisation of a soil. It is based upon measuring the heat exchanges on the surface of the soil and on measuring a temperature a few centimetres below the surface. The system is light, inexpensive, well-suited to the taking of measurements in situ without the sensors used introducing any disturbance into the heat exchanges. Whereas the majority of methods require excitation, the one presented here is passive and exploits natural signals. Based upon a few hours of recording, the natural signals allow us to identify the soils thermophysical properties continuously. The identification is based upon frequency methods the quality of which can be seen when the thermophysical properties are injected into a model with finite elements by means of a comparison of the temperatures modelled and those actually measured on site.
机译:既然对可再生能源的监测是一个生态,经济和科学问题,那么在许多领域,特别是地热领域,我们需要了解土壤的热行为。因此,来自土壤的热量被广泛用于加拿大和斯堪的纳维亚国家的建筑物中的空调系统,并且正在扩散。该技术的有效性基于土壤的热势及其热物理性质,这将定义土壤与传热流体之间的交换质量。本文提出了一种用于土壤原位热物理表征的方法。它基于测量土壤表面的热交换和测量表面以下几厘米的温度。该系统重量轻,价格便宜,非常适合就地进行测量,而所使用的传感器不会对热交换造成任何干扰。尽管大多数方法都需要激励,但此处介绍的方法是被动的并利用自然信号。根据几个小时的记录,自然信号使我们能够连续识别土壤的热物理性质。识别基于频率方法,当通过比较建模温度和现场实际测量的温度将热物理特性注入具有有限元的模型中时,可以看出其质量。

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