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Analysis of a Fixed Passive Louver Shading Device

机译:固定无源百叶窗着色装置的分析

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摘要

This research has implemented simulation modeling software, Energy Plus, to predict the effect of passive louver shades across a standard year on a home within the Midwest. This energy model of the building has been validated against actual experimental data, over the course of six months. This research optimized a passive louver shading array, unique to this latitude, by generating converging simulations to track energy demands of the heating and cooling systems of the home. The optimized array characteristics are derived from the minimization of the overall energy performance of these systems. Based on a proposed louver configuration a reduction of 17% in overall energy consumption was predicted when compared to a similar house model without a louver array. A Louver Configuration Input Program was developed to allow a user to input continuous values within the range of variable and be output an estimate of energy loading.
机译:该研究已经实施了模拟建模软件,能量加,以预测在中西部地区的房屋中的标准年份中的被动百叶窗着色的效果。该建筑能量模型已在六个月内针对实际实验数据验证。这项研究通过产生会聚模拟来追踪家庭加热和冷却系统的能源需求,优化了这种纬度的被动百叶窗着色阵列。优化的阵列特性源于这些系统的整体能量性能的最小化。基于一个拟议的百叶窗配置,与没有百叶窗阵列的类似房屋模型相比,预测了整体能耗的减少17%。开发了一种百叶窗配置输入程序,以允许用户在变量范围内输入连续值,并输出能量负载的估计。

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