半干旱气候下使用不同玻璃窗的建筑能源模型的能源效率评估

Niima Es-sakali, S. I. Kaitouni, Imad Ait Laasri, Mohamed Oualid Mghazli, Moha Cherkaoui, J. Pfafferott
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引用次数: 8

摘要

为了提高建筑的能源效率,需要评估许多参数,包括建筑围护结构、能源负荷、职业和暖通空调系统。开窗是影响住宅建筑室内温度的最重要变量之一。因此,在建筑中使用最节能的窗户玻璃来减少能源消耗,同时提供视觉日光舒适和热舒适是至关重要的。许多研究都集中在提高建筑能源效率上,主要集中在建筑围护结构或采暖、通风和冷却系统上。但很少有研究关注玻璃对建筑能耗的影响。因此,本文旨在研究不同玻璃类型对建筑采暖和制冷能耗的影响。在半干旱气候下使用了一个真实的案例研究建筑。建筑能耗模型是使用OpenStudio仿真引擎进行的。使用ASHRAE的统计指数校正建筑物室内温度。然后使用七种不同类型的窗户进行了比较分析,包括单层、双层和三层充满空气和氩气的玻璃。带有氩气空间的三层玻璃窗和双层玻璃窗每年可节省37%和32%的能源。应该强调的是,本文中开发的方法可以用于进一步研究如何使用最佳窗户玻璃来提高建筑能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of the energy efficiency for a building energy model using different glazing windows in a semi-arid climate
To improve the building’s energy efficiency many parameters should be assessed considering the building envelope, energy loads, occupation, and HVAC systems. Fenestration is among the most important variables impacting residential building indoor temperatures. So, it is crucial to use the most optimal energy-efficient window glazing in buildings to reduce energy consumption and at the same time provide visual daylight comfort and thermal comfort. Many studies have focused on the improvement of building energy efficiency focusing on the building envelope or the heating, ventilation, and cooling systems. But just a few studies have focused on studying the effect of glazing on building energy consumption. Thus, this paper aims to study the influence of different glazing types on the building’s heating and cooling energy consumption. A real case study building located under a semi-arid climate was used. The building energy model has been conducted using the OpenStudio simulation engine. Building indoor temperature was calibrated using ASHRAE’s statistical indices. Then a comparative analysis was conducted using seven different types of windows including single, double, and triple glazing filled with air and argon. Tripleglazed and double-glazed windows with argon space offer 37% and 32% of annual energy savings. It should be stressed that the methodology developed in this paper could be useful for further studies to improve building energy efficiency using optimal window glazing.
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