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Evaluation on energy performance in a low-energy building using new energy conservation index based on monitoring measurement system with sensor network

机译:基于带传感器网络的监测系统,利用新的节能指标评估低能耗建筑的能源性能

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Improving building energy efficiency and decreasing building energy consumption through monitoring of-heating, ventilation and air conditioning (HVAC) and heat recovery systems are becoming increasingly significant due to global energy crisis and carbon emission. Therefore, evaluation on building energy efficiency and energy conservation is extremely necessary. In the present work, energy conservation performance of one low-energy school building will be intensively investigated based on more than three-year measurement results from the monitoring system with sensor network. Heat recovery efficiency and new energy conservation parameter were analytically modeled, taking the building mechanical ventilation network into account. Following that, building energy performance has been experimentally investigated concerning the effects of mechanical ventilation rates, outdoor temperature and the efficiency of the heat recovery facility. Subsequent energy performance analysis demonstrates that building energy demands for ventilation and winter heating could be decreased with the enhancement of heat recovery efficiency of the ventilation facility, and the energy conservation ratio of the air conditioning unit increases with the temperature of supply fresh air. Diverse situations of energy conservation ratio and heat recovery efficiency have been detailedly correlated according to measurement results. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于全球能源危机和碳排放,通过监控供暖,通风和空调(HVAC)和热回收系统来提高建筑能效并减少建筑能耗正在变得越来越重要。因此,对建筑能效和节能进行评估非常必要。在目前的工作中,将基于传感器网络监控系统三年以上的测量结果,对一栋低能耗学校建筑的节能性能进行深入研究。考虑建筑机械通风网络,对热回收效率和新的节能参数进行了建模。随后,通过机械通风速率,室外温度和热回收设施效率的影响,对建筑能源性能进行了实验研究。随后的能源性能分析表明,随着通风设备的热回收效率的提高,建筑物通风和冬季取暖的能源需求可以降低,空调单元的节能率随新鲜空气供应温度的增加而增加。根据测量结果,对节能比和热回收效率的各种情况进行了详细的关联。 (C)2016 Elsevier B.V.保留所有权利。

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