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Thermal design optimization of lightweight concrete blocks for internal one-way spanning slabs floors by FEM

机译:有限元法对内部单向跨接楼板轻质混凝土砌块进行热设计优化

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In the present work, numerical thermal analysis is used in order to optimize the lightweight hollow block design for internal floors with respect to the energy saving, by the finite element method (FEM). From an initial block design with 0.57 m × 0.25 m × 0.20 m constant external dimensions, other five different configurations were built varying the number the vertical and horizontal intermediate bulkheads. Besides, five different compositions of lightweight concrete have been taken into account, giving place to sixty different configurations of the floors, thirty per each heat flow direction: upward and downward heat flows. Based on the non-linear thermal analysis of the different configurations, it is possible to choose the best candidate block from the CTE rule requirements. Mathematically, the non-linearity is due to the radiation boundary condition inside the inner recesses of the blocks. Also, the temperature distribution and thermal characteristic values of the floors, both for downward and upward heat flows, are provided. From the numerical results, we can conclude that the main variables in the thermal performance are: the number of the horizontal intermediate bulkheads and the material conductivities. Therefore, increasing the number of horizontal intermediate bulkheads and decreasing the material conductivities, the best thermal efficiency is obtained. Optimization of the floors is carried out from the finite element analysis by means of the average mass overall thermal efficiency and the equivalent thermal conductivity. In order to select the appropriate floor satisfying the CTE rule requirements, detailed instructions are given. Finally, conclusions of this work are exposed.
机译:在本工作中,通过有限元方法(FEM)使用数值热分析来优化内部地板的轻质空心砌块设计,从而节省能源。从具有0.57 m×0.25 m×0.20 m恒定外部尺寸的初始块设计开始,通过改变垂直和水平中间舱壁的数量,可以构建其他五种不同的配置。此外,已考虑了五种不同的轻质混凝土成分,从而形成了六十种不同的地板构造,每个热流方向为三十种:向上和向下的热流。基于不同配置的非线性热分析,可以从CTE规则要求中选择最佳候选块。在数学上,非线性是由于块的内部凹槽内的辐射边界条件所致。而且,提供了向下和向上热流的地板的温度分布和热特性值。从数值结果可以得出,热性能的主要变量是:水平中间舱壁的数量和材料的电导率。因此,增加水平中间隔板的数量并降低材料的电导率,可获得最佳的热效率。地板的优化是通过平均总质量热效率和等效导热系数从有限元分析中进行的。为了选择满足CTE规则要求的合适地板,给出了详细说明。最后,公开了这项工作的结论。

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