Optimizing Operational Energy Performance through Dynamic Computer Simulations

C. Coeckelenbergh, K. Achten, P. Baudin
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Abstract

A detailed energy audit is carried out for a complex of 6 office buildings in Brussels representing over 30 000 m2 of occupied space. The results show very high energy consumption for both heating and electricity. Detailed computers models are created of all 6 buildings and calibrated based on real consumption, monitoring results from Building Energy Management Systems, actual occupation profiles and real meteorological data for Brussels. Based on the model, a series of measures to increase the energy efficiency of the buildings are then proposed. A technical and economic analysis which evaluates the environmental impact and payback time of each measure is carried out. The objective of the study is to reduce energy consumption of existing buildings by 30% while keeping improvement measures economically interesting. Results show that energy savings of 27% are feasible with an overall payback time of approximately 3 years.
通过动态计算机模拟优化操作能源性能
对位于布鲁塞尔的6座办公大楼进行了详细的能源审计,占用空间超过3万平方米。结果表明,无论是供暖还是用电,能耗都非常高。详细的计算机模型创建了所有6栋建筑,并根据实际消耗、建筑能源管理系统的监测结果、实际职业概况和布鲁塞尔的实际气象数据进行校准。在此基础上,提出了一系列提高建筑能效的措施。对各项措施的环境影响和投资回收期进行了技术经济分析。这项研究的目的是将现有建筑物的能源消耗减少30%,同时保持改善措施的经济效益。结果表明,节能27%是可行的,总体投资回收期约为3年。
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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