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Towards development of tropical solar architecture : the use of solar chimney as stack induced ventilation strategy

机译:走向热带太阳能建筑的发展:利用太阳能烟囱作为烟囱诱导的通风策略

摘要

This research investigates the possibility of using solar chimney as stack induced ventilation strategy in terraced house in Malaysia. The existing terraced house design complies with the minimum requirement of natural ventilation as stipulated in the Malaysian Uniform Building By-Law. Unfortunately, the architectural design solutions do not permit good natural ventilation for thermal comfort. This can be illustrated by the low internal air velocity and high temperature experienced during the day time. The wind effect is also not well captured especially in the single sided ventilation. Solar chimney ventilation has been suggested by many researcher as possible alternative techniques for natural ventilation. The solar chimney study in this research involved both physical modelling and computer simulation using Computational Fluid Dynamics (CFD) technique. The specific software called Flo Vent is used. Validation of CFD FloVent is done by comparing the computer simulation result with the field measurement on site and in experiment existing terraced house. The result of the final model solar chimney prototype shows that it can increase indoor air velocity until 0.8 m/s. The other important factor is that it can continuously induce the flow of natural ventilation regardless of the available wind outside of the house. This effect is significant toward improving the thermal comfort performance in the terraced house through passive natural ventilation.
机译:这项研究调查了在马来西亚的排屋中使用太阳能烟囱作为烟囱引起的通风策略的可能性。现有的排屋设计符合马来西亚《统一建筑条例》规定的最低自然通风要求。不幸的是,建筑设计解决方案不允许良好的自然通风以获得热舒适性。这可以通过白天的低内部空气速度和高温来说明。风的效果也不能很好地捕捉到,尤其是在单侧通风中。许多研究人员已建议使用太阳能烟囱通风作为自然通风的替代技术。该研究中的太阳烟囱研究涉及物理建模和使用计算流体动力学(CFD)技术的计算机仿真。使用称为Flo Vent的特定软件。 CFD FloVent的验证是通过将计算机模拟结果与现场测量以及在实验中的现有联排别墅中进行的现场测量进行比较来完成的。太阳烟囱原型的最终模型结果表明,它可以将室内空气速度提高到0.8 m / s。另一个重要因素是,无论屋外有无风,它都可以持续引起自然通风。该效果对于通过被动自然通风改善排屋的热舒适性能非常重要。

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