TRNSYS公司
建筑围护结构
屋顶
热质量
包络线(雷达)
热的
环境科学
能源消耗
热舒适性
瞬态(计算机编程)
厚板
建筑设计
计算机科学
工程类
建筑工程
土木工程
气象学
结构工程
航空航天工程
雷达
物理
电气工程
操作系统
作者
Cristina Baglivo,Paolo Maria Congedo,Matteo Di Cataldo,Luigi Coluccia,Delia D'Agostino
出处
期刊:Energies
[Multidisciplinary Digital Publishing Institute]
日期:2017-11-09
卷期号:10 (11): 1808-1808
被引量:34
摘要
Finding the most appropriate configuration of building components at the design stage can reduce energy consumption in new buildings. This study aims to optimize the design of the envelope of a new residential building located in a warm climate (southern Italy). The thermal behaviour of the building has been analysed to evaluate the indoor operative air temperature for several configurations. The building prototype has been modelled using the dynamic simulation software TRNSYS 17 (A transient system simulation program, University of Wisconsin, Solar Energy Laboratory, USA, 2010) using a sequential search technique. Starting from the simplest building configuration, the main evaluated components are: walls, slab-on-ground floor, roof, shading, windows and internal heat loads. For each of these components, different design options have been modelled and compared in terms of indoor thermal comfort. Comfort parameters have also been taken into account to evaluate users’ satisfaction with the optimized configurations. The study of the operative air temperature demonstrates that the absence of insulating layers in the ground floor ensures a lower internal temperature in summer. The paper shows how each component impacts the thermal behaviour of the whole building. It highlights the usefulness of the envelope design optimization that is characterized by high values of heat storage capacity, enabling internal temperature fluctuations to be kept under control, especially during summer.
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