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Analysis of inter-seasonal heat fluxes in soils

机译:土壤季节间热通量分析

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Assessment of the practical implementation of systems for subsurface inter-seasonal storage and recovery of solar energy requires a modelling capability which can represent heat transfer processes at the soil surface, at depth in the soil profile, and within the energy collector system itself. This study presents initial findings related to the development of both analytical and numerical tools to represent various components of such inter-seasonal heat storage facilities. In particular two aspects are considered; firstly the use of widely available averaged meteorological data to be employed in an analytical solution of a simplified version of the problem and secondly the use of a more comprehensive finite element solution to explore the detailed thermal response of the ground in terms of seasonal energy storage. Initial comparisons against field measurements from a large scale demonstration project (undertaken by others) are presented and preliminary conclusions related to the key factors affecting the representation of the surface boundary condition made. The analytical approach developed appears to offer a representative and practical way of estimating initial conditions for both initial assessment of potential for energy collection and storage and for use in defining initial conditions in any subsequent numerical analysis of a detailed inter-seasonal heat storage facility.
机译:评估地下季节间跨季存储和回收太阳能系统的实际实施情况需要建模能力,该建模能力可以表示土壤表面,土壤剖面深处以及能量收集器系统内部的传热过程。这项研究提出了与分析和数值工具的发展有关的初步发现,这些工具代表了这种季节间储热设施的各个组成部分。特别是要考虑两个方面。首先,使用广泛使用的平均气象数据来分析问题的简化版本,其次,使用更全面的有限元解决方案来探究地面在季节性能量存储方面的详细热响应。提出了与大型示范项目(由他人进行)的现场测量结果的初步比较,并得出了与影响表面边界条件表示的关键因素有关的初步结论。所开发的分析方法似乎为初始条件的估计提供了一种有代表性的实用方法,既可以对能量收集和存储的潜力进行初始评估,也可以用于详细的季节间储热设施的任何后续数值分析中定义初始条件。

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