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Study of the Roof Shape of a Wooden Detached House for Minimization of LCCO_2 Emission by Genetic Algorithm

机译:用遗传算法研究最小化LCCO_2排放的木制独立式房屋的屋顶形状

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摘要

A simulation methodology has been proposed for evaluating the performance of LCCO_2 emission of the roof shape of a Wooden Detached House (WDH) using Genetic Algorithm (GA). Annual LCCO_2 emission acting as an evaluation index was studied in this paper. The geometrical shape of a roof located in Tokyo is simulated by a Beier surface. Two types of roofs are considered in this paper: the Tiled roof shape (TRS) and the Green roof shape (GRS). Two kinds of boundary condition, which are fixed corners with free boundaries and fixed boundaries, are taken into account for both TRS and GRS. Through numerical roof shape representation evaluated by GA, we conclude that: 1) A flattened TRS is more efficient in minimizing LCCO_2 emission; 2) Dome-shaped GRS with a larger surface area and fully covered with green lawn performs the best in LCCO_2 emission minimization; 3) CO_2 absorption by green lawn has a significant effect in minimizing total LCCO_2 emission from the roof of WDH, and even LCCO_2 emission with a value below zero may occur when green lawn is laid out on a rooftop.
机译:提出了一种模拟方法,用于使用遗传算法(GA)评估木质独立式房屋(WDH)屋顶形状的LCCO_2排放性能。本文研究了年度LCCO_2排放作为评价指标。位于东京的屋顶的几何形状由Beier表面模拟。本文考虑了两种类型的屋顶:平铺屋顶形状(TRS)和绿色屋顶形状(GRS)。 TRS和GRS都考虑了两种边界条件,即具有自由边界的固定角和固定边界。通过由GA评估的数字屋顶形状表示,我们得出以下结论:1)平坦的TRS在最小化LCCO_2排放方面更有效; 2)圆顶形GRS具有较大的表面积,并被绿色草坪完全覆盖,在最小化LCCO_2排放方面表现最佳; 3)绿色草坪吸收CO_2在最大程度地减少WDH屋顶的总LCCO_2排放方面具有显著作用,并且当绿色草坪放在屋顶上时,甚至可能会发生值低于零的LCCO_2排放。

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