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Energy and environmental performance of the office building facade scenarios

机译:办公大楼立面场景的能源和环境绩效

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Energy efficiency is one of the main requirements that buildings must satisfy nowadays, both when designing new buildings or when major renovation takes place. The main issues that need to be considered in designing energy efficient buildings are: reduction of energy consumption generated from fossil fuels and reduction of environment pollution. Building envelope is the most responsible architectural element of the building that impacts thermal comfort and energy balance. Besides thermal properties of the envelope, equipment for heating, cooling and lighting influence largely on energy consumption in buildings. From the design point of view, the analysis of various facade scenarios, in terms of their contribution to reducing energy consumption, is crucial and necessary for each specific case and climate. This paper presents the estimation of energy performances of different scenarios of the hypothetical models of facade design, in case of an office building in Belgrade climate conditions. For the analysis, the model of the typical office was created and three various facade concepts were applied. Methodological approach entails three steps: design of different facade concepts - models, numerical energy simulations of the models and comparison of the results. For each of the three shading concepts, the following scenarios have been created: the basic scenario without shadings, and three scenarios of different facade design solutions related to types of shading devices. Assessment of the scenarios includes consideration of energy demands for heating and cooling, reduction of energy consumption for cooling by implementation of different shading devices and comparison of the results. The results of the simulations show how much the various alternatives of shadings contribute to the reduction of total energy demands, and how much the application of shadings affects the reduction of environmental pollution. The design method, as well as the results, can generally be applicable for the design of new and renovation of existing office buildings, both in Belgrade and in places with similar climatic conditions. (C) 2019 Published by Elsevier Ltd.
机译:无论是设计新建筑物还是进行重大装修时,能源效率都是当今建筑物必须满足的主要要求之一。设计节能建筑时需要考虑的主要问题是:减少化石燃料产生的能源消耗以及减少环境污染。建筑围护结构是影响热量舒适性和能量平衡的建筑物中最负责任的建筑元素。除了外壳的热性能外,用于加热,冷却和照明的设备还会对建筑物的能耗产生很大影响。从设计的角度出发,对于每种立面场景在减少能耗方面的贡献,进行分析对于每个特定的案例和气候而言都是至关重要且必要的。本文介绍了在贝尔格莱德气候条件下的办公楼情况下,幕墙设计假想模型的不同情景下的能源性能估计。为了进行分析,创建了典型办公室的模型,并应用了三种不同的立面概念。方法论方法包括三个步骤:设计不同的立面概念-模型,模型的数值能量模拟以及结果比较。对于这三种阴影概念中的每一个,都创建了以下场景:不带阴影的基本场景,以及与阴影设备类型相关的不同外观设计解决方案的三个场景。对方案的评估包括考虑加热和冷却的能源需求,通过实施不同的遮阳设备减少冷却能耗以及比较结果。仿真结果表明,各种阴影替代品对减少总能量需求有多大作用,以及阴影的应用对减少环境污染有多大影响。设计方法及其结果通常可适用于贝尔格莱德和气候条件相似的地方的新办公楼和现有办公楼的翻新设计。 (C)2019由Elsevier Ltd.发布

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