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Nearly zero energy office building without conventional heating

机译:无需常规供暖的近零能耗办公楼

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A case study of the first nearly zero energy office building (nZEB) in Rakvere, Estonia was conducted to determine whether an office building can be built without a conventional space heating system while ensuring adequate thermal comfort in the offices. Energy and indoor climate simulations of alternative solutions were carried out and the feasibility of the solutions, ensuring heated rooms throughout the year, was assessed based on investment cost and payback calculations. The results showed that despite of the low heat losses, a nZEB still needs a space heating system with room based temperature control. Heating needs primarily occurred during weekends and at night; however, without space heating the air temperatures in the rooms dropped down to 16.7 °C during occupancy and were below 21 °C during about 700 occupied hours. Supply air heating with variable air volume system, controlled according to the coldest room and on demand night operation, was able to keep +21 °C temperature in all rooms, but resulted in significant energy penalty caused by overheating of offices with lower heat losses and increased fan electricity use. The economic analysis showed that a building with simple constant air volume ventilation system and radiator heating was most feasible. The investment cost increase of the variable air flow ventilation system was too high compared to the savings in energy cost that was already low.
机译:对爱沙尼亚拉克韦雷的第一座几乎零能耗的办公大楼(nZEB)进行了案例研究,以确定是否可以在不使用常规空间供暖系统的情况下建造办公大楼,同时确保办公室中足够的热舒适性。进行了替代解决方案的能源和室内气候模拟,并根据投资成本和投资回收期评估了确保全年供暖房间的解决方案的可行性。结果表明,尽管热量损失低,但nZEB仍需要具有基于室温的温度控制的空间加热系统。供暖需求主要发生在周末和晚上。但是,在没有空间供暖的情况下,房间中的空气温度在占用期间下降至16.7°C,在约700个占用小时内降至21°C以下。根据最冷的房间和按需夜间运行进行控制的带可变风量系统的送风供暖系统,可使所有房间的温度保持在+21°C,但由于办公室过热而造成的能源损失显着,热量损失较低,并且风扇用电量增加。经济分析表明,具有简单恒定风量通风系统和散热器供暖系统的建筑物最为可行。与已经很低的能源成本节省相比,可变气流通风系统的投资成本增幅过高。

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