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A full 34 factorial experimental design for the low energy building’s external wall

机译:低能耗建筑外墙的全面34个局域实验设计

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The low energy building concept is based on improving the building envelope to reduce heating and cooling loads. Improvements in building envelopes depend not only on climatic conditions but also on insulation. In this study, the thermal performance of external walls was studied by using a three-level full factorial statistical experimental design. An opaque wall in low energy buildings was chosen in order to study the effect of selected factors of city (A), orientation (B), insulation location (C), and month of the year (D) on heat loss or gain. A software was used to calculate the ANOVA table. As a result, all three factors of months of the year, city and orientation of the building fa?ade were found to be significant factor effects for heat transfer. Two-factor interactions of AB, AD, BD, and CD were found to be significant. Therefore, the effects of season, location and orientation were successfully shown to be effective parameters.
机译:低能量建筑概念基于改善建筑信封以减少加热和冷却载荷。建筑信封的改进不仅取决于气候条件,还取决于绝缘条件。在这项研究中,通过使用三级全部统计实验设计研究了外墙的热性能。选择低能量建筑的不透明墙,以研究城市(A),定向(B),绝缘位置(C)和年份(D)的所选因素对热量损失或收益的影响。用于计算ANOVA表的软件。因此,全年几个月,建筑物的城市和方向的所有三个因素被发现是传热的重要因素影响。发现AB,AD,BD和CD的双因素相互作用是显着的。因此,成功显示了季节,位置和方向的影响是有效的参数。

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