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A new modeling approach for improved ground temperature profile determination

机译:一种新的建模方法,用于改善地面温度曲线的确定

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摘要

The knowledge of the ground temperature profile with respect to time and depth is very important in many technological fields like geothermal heat pumps, solar energy systems and geotechnical applications. Many researches were performed in the past in order to evaluate this profile. The most common ones, known as energy balance models, use the energy balance equation as a boundary condition. Unfortunately the performance of these models strongly depends on an accurate estimation of several input factors. The objective of this paper is to develop an improved model for the prediction of the ground temperature profile in which the energy balance equation at the ground surface is supplemented by an empirical correlation for the annual average ground surface temperature calculation. This model is less sensitive to uncertainties of input factors. Furthermore, unlike the previous models, a periodic variation of the sky temperature is introduced instead of a previously assumed constant value. The model is validated against measured data in a site located in Varennes (Montreal-Canada) and two further sites, Fort Collins (Colorado) and Temple (Texas) in the U.S.A. (C) 2015 Crown Copyright and ELSEVIER Ltd. Published by ELSEVIER Ltd. All rights reserved.
机译:在许多技术领域,例如地热热泵,太阳能系统和岩土工程应用中,关于时间和深度的地面温度分布的知识非常重要。过去进行了许多研究,以评估该轮廓。最常见的模型称为能量平衡模型,它使用能量平衡方程式作为边界条件。不幸的是,这些模型的性能很大程度上取决于对几个输入因子的准确估计。本文的目的是开发一种改进的预测地面温度曲线的模型,其中通过经验相关性补充地表能量平衡方程,以计算年平均地表温度。该模型对输入因素的不确定性较不敏感。此外,与以前的模型不同,引入了天空温度的周期性变化,而不是先前假定的恒定值。该模型已针对位于Varennes(加拿大蒙特利尔)的一个站点以及另外两个站点(美国的柯林斯堡(科罗拉多州)和Temple(德克萨斯州))的测量数据进行了验证(2015年),Crown Copyright和ELSEVIER Ltd.,由ELSEVIER Ltd.发布。 版权所有。

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