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Thermal transients simulations of a building by a dynamic model based on thermal-electrical analogy: Evaluation and implementation issue

机译:基于热电类比的动态模型对建筑物的热瞬态仿真:评估和实施问题

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The thermal behaviour of buildings in transient conditions is established by the temperature evolution of the external environment. Determining the thermal evolution of buildings is of crucial importance for building energy design, as well as for energetic performance evaluation. Building energy performance evaluation and calculation of energy use for space heating and cooling can be carried out by several methods of various degrees of complexity and accuracy. These methods are implemented in such simulation codes as NBLSD, II DOE-II, ENERGY PLUS and others. In order to comply with the Energy Performance of Buildings Directive (EPBD), the studies and research in this field start from the Directive 91/2002/CE and subsequently lead to the EN ISO 13790:2007. The latter proposes a thermal model for a building composed of five resistances and one capacity, called R5C1, and also offers its dynamic solution with a simple hourly computational model. The present paper suggests the solution and dynamic simulation of the R5C1 model and an evaluation of its use in building energy design. Finally, a case study regarding a typical average day in June in Catania (Sicily, Italy) is presented. The implemented model and the relative simulation results have confirmed the advantages of such a solution and have been validated for some modules of the CONPHOEBUS scrl Research Building in Catania. The proposed model has the advantage of a small number of parameters (5 thermal resistances and 1 thermal capacity) and has a simple formulation and then requires low computational resources. Furthermore, this model allows the correct estimation of the user profile with few and not sufficiently precise input data. Due to the above listed properties the proposed model was adopted by the Italian National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA) for an extensive energy consumption simulation campaign involving 5000 buildings in Italy (a campaign of measurements on 20,000 buildings planned for 2017) for the calculation of statistical consumption data for public buildings.
机译:建筑物在瞬态条件下的热行为是由外部环境的温度变化确定的。确定建筑物的热演化对建筑物的能源设计以及能量性能评估至关重要。建筑物的能源性能评估和空间供暖和制冷能耗的计算可以通过多种方法进行,这些方法的复杂程度和准确性各不相同。这些方法以NBLSD,II DOE-II,ENERGY PLUS等仿真代码实现。为了符合《建筑物能源性能指令》(EPBD),该领域的研究和研究始于第91/2002 / CE号指令,随后又导致了EN ISO 13790:2007。后者提出了一个由五个电阻和一个容量组成的建筑物的热模型,称为R5C1,并通过简单的每小时计算模型提供了其动态解决方案。本文提出了R5C1模型的解决方案和动态仿真,并对其​​在建筑能源设计中的使用进行了评估。最后,提供了一个关于6月卡塔尼亚(意大利西西里岛)典型平均一天的案例研究。所实现的模型和相关的仿真结果证实了这种解决方案的优势,并已在卡塔尼亚的CONPHOEBUS scrl研究大楼的某些模块中得到验证。所提出的模型的优点是参数数量少(5个热阻和1个热容),并且公式简单,因此需要较少的计算资源。此外,该模型允许使用很少且不够精确的输入数据来正确估计用户配置文件。由于以上列出的特性,该提议的模型被意大利国家新技术,能源和可持续经济发展局(ENEA)采用,用于涉及意大利5000座建筑物的大规模能耗模拟活动(一项针对20,000座建筑物的测量活动) 2017年)以计算公共建筑的统计消费数据。

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