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Assessing energy and thermal comfort of different low-energy cooling concepts for non-residential buildings

机译:评估非住宅建筑的各种低能耗制冷概念的能耗和热舒适度

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Energy consumption for cooling is growing dramatically. In the last years, electricity peak consumption grew significantly, switching from winter to summer in many EU countries. This is endangering the stability of electricity grids. This article outlines a comprehensive analysis of an office building performances in terms of energy consumption and thermal comfort (in accordance with static - ISO 7730:2005 - and adaptive thermal comfort criteria - EN 15251:2007 -) related to different cooling concepts in six different European climate zones. The work is based on a series of dynamic simulations carried out in the Trnsys 17 environment for a typical office building. The simulation study was accomplished for five cooling technologies: natural ventilation (NV), mechanical night ventilation (MV), fan-coils (FC), suspended ceiling panels (SCP), and concrete core conditioning (CCC) applied in Stockholm, Hamburg, Stuttgart, Milan, Rome, and Palermo. Under this premise, the authors propose a methodology for the evaluation of the cooling concepts taking into account both, thermal comfort and energy consumption.
机译:冷却能耗正在急剧增长。过去几年中,许多欧盟国家的用电高峰用电量显着增加,从冬季切换到夏季。这危及电网的稳定性。本文概述了与六种不同制冷概念有关的能耗和热舒适度(符合静态-ISO 7730:2005-和自适应热舒适性标准-EN 15251:2007)方面的办公楼性能的综合分析。欧洲气候区。该工作基于在Trnsys 17环境中针对典型办公大楼进行的一系列动态模拟。仿真研究针对以下五种冷却技术完成:自然通风(NV),夜间机械通风(MV),风机盘管(FC),吊顶面板(SCP)和混凝土芯调节(CCC),这些技术在斯德哥尔摩,汉堡,斯图加特,米兰,罗马和巴勒莫。在此前提下,作者提出了一种评估散热概念的方法,同时考虑了热舒适性和能耗。

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