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Modelling Of The Thermal Behavior Of Walls And Floors In Contact With The Ground

机译:与地面接触的墙壁和地板的热行为建模

摘要

One of the most complex configuration to model in detail, both in the dynamic simulation of buildings and in the analytical quasi steady-state calculations, is the thermal dispersion through the walls and the floor in contact with the ground. The problem consists in determining the boundary conditions of the external wall surface directly exposed to the soil, whose temperature cannot be considered undisturbed. Different studies, both experimental and numerical, have been carried out in the last decades in order to determine the ground boundary conditions, some of which have been used to elaborate the technical standard EN ISO 13370. This standard gives some indications about the conditions to be considered in the use of quasi steady-state methods and within the dynamic simulation. The evaluation of the simulation software in the specific context of the ground heat transmission, has also driven the IEA to define a specific series of validation cases, the BESTEST In-depth ground coupled heat transfer tests. The present research aim is to test implement reliable calculation procedures for the thermal dispersion through the building envelope towards the ground, in dynamic simulation modelling systems. In this work, a test case of the EN ISO 13370 standard has been modelled with FEM codes, both in steady-state conditions and also in periodic external conditions. Different types of floor have been considered, with different thickness and position of the insulation layer. The results have been compared with those calculated following the prescriptions of the standard EN ISO 13370.
机译:在建筑物的动态模拟和拟稳态分析中,要进行详细建模的最复杂的配置之一是通过与地面接触的墙壁和地板的热扩散。问题在于确定直接暴露于土壤的外壁表面的边界条件,不能认为其温度不受干扰。在过去的几十年中,为了确定地面边界条件,进行了不同的实验和数值研究,其中一些已用于详细说明技术标准EN ISO 13370。在使用准稳态方法时以及在动态仿真中均已考虑在内。在地面传热的特定环境下对仿真软件的评估,也促使IEA定义了一系列特定的验证案例,即BESTEST深度地面耦合传热测试。本研究的目的是在动态模拟建模系统中测试通过建筑物围护结构向地面的热扩散的可靠计算程序。在这项工作中,无论是在稳态条件下还是在周期性外部条件下,都已使用FEM代码对EN ISO 13370标准的测试案例进行了建模。已经考虑了具有不同厚度和位置的隔热层的不同类型的地板。将结果与按照标准EN ISO 13370的规定计算出的结果进行了比较。

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