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A New Model for Optimal Mechanical and Thermal Performance of Cement-Based Partition Wall

机译:水泥基隔墙最佳力学和热性能的新模型

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摘要

The prefabricated cement-based partition wall has been widely used in assembled buildings because of its high manufacturing efficiency, high-quality surface, and simple and convenient construction process. In this paper, a general porous partition wall that is made from cement-based materials was proposed to meet the optimal mechanical and thermal performance during transportation, construction and its service life. The porosity of the proposed partition wall is formed by elliptic-cylinder-type cavities. The finite element method was used to investigate the mechanical and thermal behaviour, which shows that the proposed model has distinct advantages over the current partition wall that is used in the building industry. It is found that, by controlling the eccentricity of the elliptic-cylinder cavities, the proposed wall stiffness can be adjusted to respond to the imposed loads and to improve the thermal performance, which can be used for the optimum design. Finally, design guidance is provided to obtain the optimal mechanical and thermal performance. The proposed model could be used as a promising candidate for partition wall in the building industry.
机译:预制的水泥基隔墙以其高的生产效率,高质量的表面以及简单便捷的施工过程而被广泛应用于组装建筑中。在本文中,提出了一种由水泥基材料制成的通用多孔隔墙,以在运输,施工及其使用寿命期间达到最佳的机械和热性能。所提出的分隔壁的孔隙率是由椭圆圆柱型腔形成的。有限元方法被用来研究机械和热性能,这表明所提出的模型比目前在建筑业中使用的隔墙具有明显的优势。已经发现,通过控制椭圆形缸腔的偏心率,可以调节所提出的壁刚度以响应所施加的载荷并改善热性能,这可以用于最佳设计。最后,提供设计指南以获得最佳的机械和热性能。该模型可作为建筑工业隔墙的有前途的候选者。

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