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Whole building energy simulation and energy saving potential analysis of a large public building

机译:大型公共建筑的整体建筑节能模拟与节能潜力分析

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This article explores how to use EnergyPlus to construct models to accurately simulate complex building systems as well as the inter-relationships among sub-systems such as heating, ventilation and air conditioning (HVAC), lighting and service hot water systems. The energy consumption and cost of a large public building are simulated and calculated for Leadership in Energy and Environmental Design (LEED) certification using EnergyPlus. American Society of Heating, Refrigerating and Air Conditioning Engineers (ASHRAE) baseline model is constructed according to ASHRAE 90.1 standard and the comparison of annual energy consumption between ASHRAE baseline model and proposed model is carried out. Moreover, an energy efficiency (EE) model is built based on the design model. Meanwhile, other energy conservation measures (ECMs) such as daylighting dimming and occupant sensors are considered. The simulation results show 4.7% electricity consumption decrease but 6.9% gas consumption increase of the EE model compared to ASHRAE baseline model. In summary, the annual energy cost of the EE model is reduced by 7.75%.
机译:本文探讨了如何使用EnergyPlus来构建模型,以准确地模拟复杂的建筑系统以及子系统之间的相互关系,例如供暖,通风和空调(HVAC),照明和服务热水系统。使用EnergyPlus对大型公共建筑的能耗和成本进行了模拟和计算,以获取能源与环境设计领导力(LEED)认证。根据ASHRAE 90.1标准构建了美国供热,制冷和空调工程师协会(ASHRAE)基线模型,并对ASHRAE基线模型和建议模型之间的年度能耗进行了比较。此外,基于设计模型构建了能效(EE)模型。同时,还考虑了其​​他节能措施(ECM),例如采光调暗和乘员传感器。仿真结果表明,与ASHRAE基准模型相比,EE模型的耗电量减少了4.7%,而耗气量却增加了6.9%。综上所述,EE模型的年度能源成本降低了7.75%。

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