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Exploring the relationship between structurally defined geometrical parameters of reinforced concrete beams and the thermal comfort on indoor environment

机译:探讨钢筋混凝土梁结构定义几何参数与室内环境热舒适性的关系

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The paper presents a research exploring the thermal mass effect of reinforced concrete beams with structurally optimised geometrical forms. Fully exposed concrete soffits in architectural contexts create more than just visual impacts on the indoor climate through their possible interferences with light, sound and thermal conditions. It is considered that the characteristics of interferences would have close relationship with material and geometrical properties of the soffits; especially when the soffits are other than flat form. In the current investigation the relationship between the thermal mass effect (and the implication on thermal comfort) and the given geometrical parameters of exposed soffit reinforced concrete beams are explored. The geometrical parameters of the beams are initially defined in means of structural optimisation. The beams consist of flange and web in likeness of T-sectioned beams. However, both flange and web are curved vertically for the required bending and shear capacity of the sections. At the same time, the web is also curved horizontally for increased shear capacities. In the research, both the vertical and horizontal geometrical parameters are varied to observe the resultant heat exchange behaviour, and the implication on thermal comfort indoor environment. However, the current paper presents the thermal mass characteristics of one geometrical type. The study is based on results derived from computational fluid dynamics (CFD) analysis, where Rhino 3D is used for geometrical modelling of the beams and office space.
机译:本文介绍了一种研究探索钢筋混凝土梁的热质量射线在结构优化的几何形状。建筑环境中的完全暴露的混凝土拱腹通过可能的干扰来创造出对室内气候的显着影响,通过光,声音和热条件的干扰。据认为,干扰的特征将与缝隙的材料和几何特性密切相关;特别是当剖腹产除外形式时。在目前调查中,探讨了热质量效应(以及热舒适性的含义之间的关系和暴露的Soffit钢筋混凝土梁的给定几何参数。梁的几何参数最初以结构优化的方式定义。梁由法兰和纸卷组成,符合T型梁的相似之处。然而,对于所需的弯曲和剪切容量,垂直弯曲垂直弯曲。同时,幅材也水平弯曲以增加剪切容量。在该研究中,垂直和水平几何参数都变化以观察结果的热交换行为,以及对热舒适室内环境的含义。然而,目前纸张呈现了一种几何类型的热质量特性。该研究基于来自计算流体动力学(CFD)分析的结果,其中犀牛3D用于光束和办公空间的几何模拟。

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