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Case study assessment for natural ventilation performance of heritage buildings in the Mediterranean city of Alexandria (Egypt)

机译:地中海亚历山大地中海(埃及)遗产建筑物自然通风性能案例评估

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Historic buildings are an important aspect of any city in their capacity to provide cultural reference points. Demonstrating capacity for better levels of energy efficiency and thermal comfort has become a critical challenge to such buildings' survival. Wind driven natural ventilation in buildings is one way of reducing energy use by dependence on mechanical ventilation. This paper is a case study assessment of a nineteenth-century listed residential building located in the historic business district of the Mediterranean city of Alexandria (Egypt). From an architectural perspective, the European style courtyarded building offers good potential for healthy indoor air replacement, and the Mediterranean climate of the city provides enhanced possibilities for promoting indoor thermal comfort. Yet observation of the building today demonstrates that occupants rely heavily on mechanical ventilation (air conditioning). It is clear that the building's original layout has been modified. In this research, we use 3D RANS CFD simulation to investigate the potential for the original layout of the building to enable natural air flow patterns. Simulations are validated against air speed measurements in parts of the building. The results show a detailed natural ventilation deficiency performance in the case study building as modified today, and indicate potential for future improvement. This investigation can help in the understanding of conservation approaches that not only preserve the building's cultural value but also reclaim its natural ventilation performance.
机译:历史建筑是其能力,以提供文化参照点任何一个城市的一个重要方面。为示范的能源效率和热舒适性更好水平的能力已成为这些建筑的生存的一个关键挑战。在建筑风力驱动的自然通风是通过对机械通风的依赖减少能源使用的一种方式。本文是十九世纪上市的住宅楼坐落在地中海城市亚历山大(埃及)的历史商业区的案例研究评估。从体系结构的角度来看,欧洲风格的建筑courtyarded提供了良好的潜力,健康的室内空气置换,和城市的地中海气候提供了增强的促进室内热舒适性的可能性。然而,建筑今日观察表明,乘客在很大程度上依赖于机械通气(空调)。显然,原有建筑的布局已被修改。在这项研究中,我们使用三维RANS CFD模拟来调查潜在的建筑的原有布局,使自然空气流动模式。模拟是在建筑物的部分对空气速度测量验证。结果表明,在案例研究大楼今天修改了详细的自然通风不足的表现,并表示对未来改进的潜力。在保护的理解本次调查可以帮助方法,不仅保留了建筑的文化价值,而且恢复其自然通风性能。

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