ASSESSMENT OF ENERGY PERFORMANCE GAP OF AN OFFICE BUILDING

Rasa Džiugaitė-Tumėnienė, Domas Madeikis
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Abstract

The high share of global energy costs to create an indoor climate has been of increasing interest to the global community for several decades and is increasingly the focus of policy. This paper analyses the energy performance gap between actual energy consumption and energy demand obtained during the dynamic energy simulation and building certification. To identify the energy performance gap, an existing office of energy efficiency class B was selected as a case study. The simulation program IDA Indoor Climate and Energy was used to create a dynamic energy model, based on the designed documentation and the actual indoor climate parameters recorded by the building management system. The results of the case study showed that the accuracy and reliability of the results presented by the dynamic energy model of the building directly depend on the assumptions. The correct values of the internal heat gains, indoor climate parameters, human behavior, air quality levels at different times of the day and season, HVAC system operation parameters and operation modes, specific fan powers of ventilation systems, the seasonal energy efficiency of cooling equipment and characteristics of sun protection measures have to be selected.
某办公楼能源性能差距评估
几十年来,创造室内气候在全球能源成本中所占的高份额一直是全球社会日益关注的问题,并日益成为政策的焦点。本文分析了动态能源模拟和建筑认证过程中实际能耗与能源需求之间的能源性能差距。为了确定能源绩效差距,我们选择了一个现有的能效B级办公室作为案例研究。根据设计文件和建筑管理系统记录的实际室内气候参数,使用IDA室内气候与能源仿真程序创建动态能源模型。算例分析结果表明,建筑动态能量模型计算结果的准确性和可靠性直接取决于假设条件。必须选择正确的内部热增益值、室内气候参数、人类行为、一天中不同时间和季节的空气质量水平、暖通空调系统运行参数和运行模式、通风系统的特定风扇功率、冷却设备的季节性能效和防晒措施的特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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