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Nonconvex Thermal Modelling and Energy Optimization for Multizone Commercial Buildings with VAV Type HVAC Units

机译:具有VAV型HVAC单位的多态商业建筑的非渗透热建筑和能量优化

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Energy efficiency is an important issue for buildings as they are among the largest users of electricity in the U.S. As a substantial and controllable load in buildings, Heating, Ventilation, and Air Conditioning (HVAC) systems have been seen as a major candidate for optimization processes. Variable air volume (VAV) type HVAC units though most familiar, have not been modeled in a detailed way for optimization due to their nonconvex attributes. The contemporary optimization solvers can deal with such non-convexities. Leveraging this attribute, detailed modeling of VAV type HVAC units was done for a multi-zone single-storied commercial building and an optimization problem was formulated to minimize the total power usage of all HVAC units in the building. The results showed that 3.91% energy savings and 5.55% maximum peak reduction were achieved using this optimization. Moreover, the zone temperature setpoints became much more stable while staying within the human thermal comfort range. Energy and peak demand savings will also provide economic and environmental benefits if it can be widely implemented.
机译:能源效率是建筑物的重要问题,因为它们是美国电力最大的用户之一,作为建筑物,加热,通风和空调(HVAC)系统的大量可控载荷被视为优化过程的主要候选者。变量空气量(VAV)型HVAC单元虽然最熟悉,但尚未以详细的方式为由于其非渗透属性而进行优化。现代优化溶剂可以处理这种非凸起。利用此属性,为VAV型HVAC单位的详细建模是为多区的单层商业建筑完成的,并配制了优化问题,以最大限度地减少建筑物中所有HVAC单元的总功率使用。结果表明,使用该优化实现了3.91%的节能和5.55%的最高峰值减少。此外,区域温度设定点在留在人的热舒适度范围内变得更加稳定。如果它可以广泛实施,能源和峰值需求储蓄还将提供经济和环境效益。

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