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Innovative control approaches to assess energy implications of adaptive facades based on simulation using EnergyPlus

机译:基于使用EnergyPlus的仿真评估自适应外观的能量影响的创新控制方法

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The current development of shading systems which respond to both environmental and human inputs; leads to envisioning an envelope that is multifunctional, responsive and dynamic, named as Adaptive Facades (AFs). The key aspect of any external shading system is to control solar radiation that might cause unwanted thermal and visual stresses for occupants which can lead to higher cooling loads significantly. Recent studies attempted to develop non-conventional AFs such as folding structures to fulfill the incapability of conventional systems (e.g. venetian blinds) for delivering multi-objective user demands due to their different design features. Therefore, in this paper motorized venetian blinds were initially used as conventional AFs in Energy Management System (EMS) of EnergyPlus to develop a reference case study. Furthermore, an automatic control was assigned to venetian blinds based on two indoor sensors to control slat angles on hourly basis, Daylight Glare Index (DGI) and task horizontal illuminance. Then, two new control algorithm were derived as hourly transmittance schedule (hTs) and shade factor through extended calculation methods that were used to modify the properties of a roller shade as to take into account the same adjustment of venetian blinds based on indoor sensors. Finally, a comparison was conducted based on annual energy consumption including heating and cooling loads, in which results showed that both methods have discrepancy lower than 6% and can be alternative solutions to evaluate the performance of non-conventional adaptive systems. However, there are several limitations and applicability of the suggested methodologies that were also discussed.
机译:目前对环境和人类投入响应的着色系统的发展;导致设想一个具有多功能,响应性和动态的信封,名为Adaptive外墙(AFS)。任何外部遮阳系统的关键方面是控制太阳辐射,这可能导致乘员对乘员产生不必要的热敏和视觉应力,这可能会导致更高的冷却载荷。最近的研究试图开发非传统的AFS,例如折叠结构,以满足传统系统(例如威尼斯百叶窗)的无法造成的,因为它们由于其不同的设计特征而提供多目标用户需求。因此,在本文中,机动威尼斯百叶窗最初被用作能量管理系统(EMS)中的传统AFS,以开发参考案例研究。此外,基于两个室内传感器将自动控制分配给威尼斯百叶窗,以在每小时控制Slat角度,日光眩光指数(DGI)和任务水平照度。然后,通过使用用于修改辊子阴影的性质的扩展计算方法作为每小时透射率调度(HTS)和阴影系数来推导出两次新的控制算法,以考虑基于室内传感器的威尼斯百叶窗的相同调整。最后,基于年度能量消耗进行了比较,包括加热和冷却载荷,其中结果表明,两种方法都具有低于6%的差异,可以是评估非传统自适应系统的性能的替代解决方案。但是,还有几种局限性和适用性的建议方法也讨论。

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