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Constant temperature response factors for fast calculation of sparse BHE field g-functions

机译:恒定温度响应因子,可快速计算稀疏BHE场g函数

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Ground Coupled Heat Pumps (GCHP) are efficient heating systems which mainly rely on the correct design of their ground heat exchangers for attaining the best performance. Such design process is often based on a ground response model which involves the solution of the transient conduction equation. A successful calculation technique for ground response predictions is based on basic thermal response factors also known as g-functions. These solutions can be built according to different boundary conditions and eventually taking into account the variation of the heat rate along the vertical borehole heat exchanger (BHE). The present paper describes a new technique for generating temperature response factors for different BHE field geometries by interrogating a table which provides temperature excess values at different dimensionless distances and times from a single, constant temperature, finite length heat source. In spite this method is not completely suitable for calculating the g -functions of densely packed BHE field in the late period, it is demonstrated that the present procedure is very fast and reliable for calculating the temperature response factors in medium time horizons (e.g. the 10 year deadline of the Ashrae Method) or even in the asymptotic time region of sparse BHE fields. (C) 2018 Elsevier Ltd. All rights reserved.
机译:地面耦合热泵(GCHP)是高效的加热系统,主要依靠其地面热交换器的正确设计来获得最佳性能。这种设计过程通常基于地面响应模型,该模型涉及瞬态传导方程的求解。一种成功的地面响应预测计算技术基于基本的热响应因子,也称为g函数。可以根据不同的边界条件构建这些解决方案,并最终考虑沿垂直井壁热交换器(BHE)的热量变化。本文介绍了一种新技术,该技术可通过查询一个表来生成针对不同BHE场几何形状的温度响应因子,该表提供了来自单个恒定温度,有限长度热源的不同无量纲距离和时间的温度超额值。尽管该方法并不完全适合于计算后期密集BHE场的g函数,但证明了本程序对于计算中等时间范围内的温度响应因子(例如10 Ashrae方法的最后期限),甚至在稀疏BHE场的渐近时间范围内。 (C)2018 Elsevier Ltd.保留所有权利。

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